RadioLib/class_s_x128x.html

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<div id="projectbrief">Universal wireless communication library for Arduino</div>
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<a href="#pub-methods">Public Member Functions</a> &#124;
<a href="class_s_x128x-members.html">List of all members</a> </div>
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<div class="title">SX128x Class Reference</div> </div>
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<p>Base class for SX128x series. All derived classes for SX128x (e.g. <a class="el" href="class_s_x1280.html" title="Derived class for SX1280 modules.">SX1280</a> or <a class="el" href="class_s_x1281.html" title="Derived class for SX1281 modules.">SX1281</a>) inherit from this base class. This class should not be instantiated directly from Arduino sketch, only from its derived classes.
<a href="class_s_x128x.html#details">More...</a></p>
<p><code>#include &lt;<a class="el" href="_s_x128x_8h_source.html">SX128x.h</a>&gt;</code></p>
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Inheritance diagram for SX128x:</div>
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<img src="class_s_x128x.png" usemap="#SX128x_map" alt=""/>
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<area href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN...." alt="PhysicalLayer" shape="rect" coords="0,0,93,24"/>
<area href="class_s_x1281.html" title="Derived class for SX1281 modules." alt="SX1281" shape="rect" coords="0,112,93,136"/>
<area href="class_s_x1280.html" title="Derived class for SX1280 modules." alt="SX1280" shape="rect" coords="0,168,93,192"/>
<area href="class_s_x1282.html" title="Derived class for SX1282 modules." alt="SX1282" shape="rect" coords="0,224,93,248"/>
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<table class="memberdecls">
<tr class="heading"><td colspan="2"><h2 class="groupheader"><a name="pub-methods"></a>
Public Member Functions</h2></td></tr>
<tr class="memitem:a9ccbf51f8304f1041c8eef182be547a7"><td class="memItemLeft" align="right" valign="top">&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a9ccbf51f8304f1041c8eef182be547a7">SX128x</a> (<a class="el" href="class_module.html">Module</a> *mod)</td></tr>
<tr class="memdesc:a9ccbf51f8304f1041c8eef182be547a7"><td class="mdescLeft">&#160;</td><td class="mdescRight">Default constructor. <a href="class_s_x128x.html#a9ccbf51f8304f1041c8eef182be547a7">More...</a><br /></td></tr>
<tr class="separator:a9ccbf51f8304f1041c8eef182be547a7"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a275a9a86934124eab4982ad52bf91aea"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a275a9a86934124eab4982ad52bf91aea">begin</a> (float freq=2400.0, float bw=812.5, uint8_t sf=9, uint8_t cr=7, uint8_t syncWord=RADIOLIB_SX128X_SYNC_WORD_PRIVATE, int8_t pwr=10, uint16_t preambleLength=12)</td></tr>
<tr class="memdesc:a275a9a86934124eab4982ad52bf91aea"><td class="mdescLeft">&#160;</td><td class="mdescRight">Initialization method for LoRa modem. <a href="class_s_x128x.html#a275a9a86934124eab4982ad52bf91aea">More...</a><br /></td></tr>
<tr class="separator:a275a9a86934124eab4982ad52bf91aea"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a6ed60dfbd142315bb4e1abd2555a470a"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a6ed60dfbd142315bb4e1abd2555a470a">beginGFSK</a> (float freq=2400.0, uint16_t br=800, float freqDev=400.0, int8_t pwr=10, uint16_t preambleLength=16)</td></tr>
<tr class="memdesc:a6ed60dfbd142315bb4e1abd2555a470a"><td class="mdescLeft">&#160;</td><td class="mdescRight">Initialization method for GFSK modem. <a href="class_s_x128x.html#a6ed60dfbd142315bb4e1abd2555a470a">More...</a><br /></td></tr>
<tr class="separator:a6ed60dfbd142315bb4e1abd2555a470a"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:ace5ede905bf85aada0c61b9cfaaea127"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#ace5ede905bf85aada0c61b9cfaaea127">beginBLE</a> (float freq=2400.0, uint16_t br=800, float freqDev=400.0, int8_t pwr=10, uint8_t dataShaping=<a class="el" href="group__config__shaping.html#gaa778d14c29d21fe329137a28a3f54a5d">RADIOLIB_SHAPING_0_5</a>)</td></tr>
<tr class="memdesc:ace5ede905bf85aada0c61b9cfaaea127"><td class="mdescLeft">&#160;</td><td class="mdescRight">Initialization method for BLE modem. <a href="class_s_x128x.html#ace5ede905bf85aada0c61b9cfaaea127">More...</a><br /></td></tr>
<tr class="separator:ace5ede905bf85aada0c61b9cfaaea127"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a2c4a24623c5fd27b3cc937e55783d709"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a2c4a24623c5fd27b3cc937e55783d709">beginFLRC</a> (float freq=2400.0, uint16_t br=650, uint8_t cr=3, int8_t pwr=10, uint16_t preambleLength=16, uint8_t dataShaping=<a class="el" href="group__config__shaping.html#gaa778d14c29d21fe329137a28a3f54a5d">RADIOLIB_SHAPING_0_5</a>)</td></tr>
<tr class="memdesc:a2c4a24623c5fd27b3cc937e55783d709"><td class="mdescLeft">&#160;</td><td class="mdescRight">Initialization method for FLRC modem. <a href="class_s_x128x.html#a2c4a24623c5fd27b3cc937e55783d709">More...</a><br /></td></tr>
<tr class="separator:a2c4a24623c5fd27b3cc937e55783d709"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a2643ce22176293631fea2169f5e68e66"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a2643ce22176293631fea2169f5e68e66">reset</a> (bool verify=true)</td></tr>
<tr class="memdesc:a2643ce22176293631fea2169f5e68e66"><td class="mdescLeft">&#160;</td><td class="mdescRight">Reset method. Will reset the chip to the default state using RST pin. <a href="class_s_x128x.html#a2643ce22176293631fea2169f5e68e66">More...</a><br /></td></tr>
<tr class="separator:a2643ce22176293631fea2169f5e68e66"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:af253e1e45361de74aefd01a7c73c28f5"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#af253e1e45361de74aefd01a7c73c28f5">transmit</a> (uint8_t *data, size_t len, uint8_t addr=0) override</td></tr>
<tr class="memdesc:af253e1e45361de74aefd01a7c73c28f5"><td class="mdescLeft">&#160;</td><td class="mdescRight">Blocking binary transmit method. Overloads for string-based transmissions are implemented in <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a>. <a href="class_s_x128x.html#af253e1e45361de74aefd01a7c73c28f5">More...</a><br /></td></tr>
<tr class="separator:af253e1e45361de74aefd01a7c73c28f5"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a32b7b674d63c36f15b7f58a2cb837a99"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a32b7b674d63c36f15b7f58a2cb837a99">receive</a> (uint8_t *data, size_t len) override</td></tr>
<tr class="memdesc:a32b7b674d63c36f15b7f58a2cb837a99"><td class="mdescLeft">&#160;</td><td class="mdescRight">Blocking binary receive method. Overloads for string-based transmissions are implemented in <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a>. <a href="class_s_x128x.html#a32b7b674d63c36f15b7f58a2cb837a99">More...</a><br /></td></tr>
<tr class="separator:a32b7b674d63c36f15b7f58a2cb837a99"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a53892566b0259d348158efe3c3c3601a"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a53892566b0259d348158efe3c3c3601a">transmitDirect</a> (uint32_t frf=0) override</td></tr>
<tr class="memdesc:a53892566b0259d348158efe3c3c3601a"><td class="mdescLeft">&#160;</td><td class="mdescRight">Starts direct mode transmission. <a href="class_s_x128x.html#a53892566b0259d348158efe3c3c3601a">More...</a><br /></td></tr>
<tr class="separator:a53892566b0259d348158efe3c3c3601a"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:aff7d86352c98771595375e17d19a2a97"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#aff7d86352c98771595375e17d19a2a97">receiveDirect</a> () override</td></tr>
<tr class="memdesc:aff7d86352c98771595375e17d19a2a97"><td class="mdescLeft">&#160;</td><td class="mdescRight">Starts direct mode reception. Only implemented for <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a> compatibility, as SX128x series does not support direct mode reception. Will always return RADIOLIB_ERR_UNKNOWN. <a href="class_s_x128x.html#aff7d86352c98771595375e17d19a2a97">More...</a><br /></td></tr>
<tr class="separator:aff7d86352c98771595375e17d19a2a97"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a89cc916f5cd5cdfbd331bb15f8a3d5cb"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a89cc916f5cd5cdfbd331bb15f8a3d5cb">scanChannel</a> ()</td></tr>
<tr class="memdesc:a89cc916f5cd5cdfbd331bb15f8a3d5cb"><td class="mdescLeft">&#160;</td><td class="mdescRight">Performs scan for LoRa transmission in the current channel. Detects both preamble and payload. <a href="class_s_x128x.html#a89cc916f5cd5cdfbd331bb15f8a3d5cb">More...</a><br /></td></tr>
<tr class="separator:a89cc916f5cd5cdfbd331bb15f8a3d5cb"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a1d15e13e15b060ddbbe84257d5fcb66f"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a1d15e13e15b060ddbbe84257d5fcb66f">sleep</a> (bool retainConfig=true)</td></tr>
<tr class="memdesc:a1d15e13e15b060ddbbe84257d5fcb66f"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets the module to sleep mode. To wake the device up, call <a class="el" href="class_s_x128x.html#a2be8cc6c3b61b59cb6a6ca4f6a030b45" title="Sets the module to standby mode (overload for PhysicalLayer compatibility, uses 13 MHz RC oscillator)...">standby()</a>. <a href="class_s_x128x.html#a1d15e13e15b060ddbbe84257d5fcb66f">More...</a><br /></td></tr>
<tr class="separator:a1d15e13e15b060ddbbe84257d5fcb66f"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a2be8cc6c3b61b59cb6a6ca4f6a030b45"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a2be8cc6c3b61b59cb6a6ca4f6a030b45">standby</a> () override</td></tr>
<tr class="memdesc:a2be8cc6c3b61b59cb6a6ca4f6a030b45"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets the module to standby mode (overload for <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a> compatibility, uses 13 MHz RC oscillator). <a href="class_s_x128x.html#a2be8cc6c3b61b59cb6a6ca4f6a030b45">More...</a><br /></td></tr>
<tr class="separator:a2be8cc6c3b61b59cb6a6ca4f6a030b45"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a389aab93e24ec8c7cc9c14de90e5dfae"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a389aab93e24ec8c7cc9c14de90e5dfae">standby</a> (uint8_t mode, bool wakeup=false)</td></tr>
<tr class="memdesc:a389aab93e24ec8c7cc9c14de90e5dfae"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets the module to standby mode. <a href="class_s_x128x.html#a389aab93e24ec8c7cc9c14de90e5dfae">More...</a><br /></td></tr>
<tr class="separator:a389aab93e24ec8c7cc9c14de90e5dfae"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a0759fb31b3ce5bf1c832259c9c2245ed"><td class="memItemLeft" align="right" valign="top">void&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a0759fb31b3ce5bf1c832259c9c2245ed">setDio1Action</a> (void(*func)(void))</td></tr>
<tr class="memdesc:a0759fb31b3ce5bf1c832259c9c2245ed"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets interrupt service routine to call when DIO1 activates. <a href="class_s_x128x.html#a0759fb31b3ce5bf1c832259c9c2245ed">More...</a><br /></td></tr>
<tr class="separator:a0759fb31b3ce5bf1c832259c9c2245ed"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:ab8a3fe8e2843fa039ef369668f1a423f"><td class="memItemLeft" align="right" valign="top"><a id="ab8a3fe8e2843fa039ef369668f1a423f"></a>
void&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#ab8a3fe8e2843fa039ef369668f1a423f">clearDio1Action</a> ()</td></tr>
<tr class="memdesc:ab8a3fe8e2843fa039ef369668f1a423f"><td class="mdescLeft">&#160;</td><td class="mdescRight">Clears interrupt service routine to call when DIO1 activates. <br /></td></tr>
<tr class="separator:ab8a3fe8e2843fa039ef369668f1a423f"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a697880c42c4b1def04c8fe7f3a023ffb"><td class="memItemLeft" align="right" valign="top">void&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a697880c42c4b1def04c8fe7f3a023ffb">setPacketReceivedAction</a> (void(*func)(void))</td></tr>
<tr class="memdesc:a697880c42c4b1def04c8fe7f3a023ffb"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets interrupt service routine to call when a packet is received. <a href="class_s_x128x.html#a697880c42c4b1def04c8fe7f3a023ffb">More...</a><br /></td></tr>
<tr class="separator:a697880c42c4b1def04c8fe7f3a023ffb"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a20b21a4f804b148fede4b7199c4d1e71"><td class="memItemLeft" align="right" valign="top"><a id="a20b21a4f804b148fede4b7199c4d1e71"></a>
void&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a20b21a4f804b148fede4b7199c4d1e71">clearPacketReceivedAction</a> ()</td></tr>
<tr class="memdesc:a20b21a4f804b148fede4b7199c4d1e71"><td class="mdescLeft">&#160;</td><td class="mdescRight">Clears interrupt service routine to call when a packet is received. <br /></td></tr>
<tr class="separator:a20b21a4f804b148fede4b7199c4d1e71"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:acaa115bb9eb3d325d6baba1f578d678b"><td class="memItemLeft" align="right" valign="top">void&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#acaa115bb9eb3d325d6baba1f578d678b">setPacketSentAction</a> (void(*func)(void))</td></tr>
<tr class="memdesc:acaa115bb9eb3d325d6baba1f578d678b"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets interrupt service routine to call when a packet is sent. <a href="class_s_x128x.html#acaa115bb9eb3d325d6baba1f578d678b">More...</a><br /></td></tr>
<tr class="separator:acaa115bb9eb3d325d6baba1f578d678b"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a86000239b7f9871168fdfa8f8c73b377"><td class="memItemLeft" align="right" valign="top"><a id="a86000239b7f9871168fdfa8f8c73b377"></a>
void&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a86000239b7f9871168fdfa8f8c73b377">clearPacketSentAction</a> ()</td></tr>
<tr class="memdesc:a86000239b7f9871168fdfa8f8c73b377"><td class="mdescLeft">&#160;</td><td class="mdescRight">Clears interrupt service routine to call when a packet is sent. <br /></td></tr>
<tr class="separator:a86000239b7f9871168fdfa8f8c73b377"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:aef221e7d463c5228ce00ed6934512848"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#aef221e7d463c5228ce00ed6934512848">startTransmit</a> (uint8_t *data, size_t len, uint8_t addr=0) override</td></tr>
<tr class="memdesc:aef221e7d463c5228ce00ed6934512848"><td class="mdescLeft">&#160;</td><td class="mdescRight">Interrupt-driven binary transmit method. Overloads for string-based transmissions are implemented in <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a>. <a href="class_s_x128x.html#aef221e7d463c5228ce00ed6934512848">More...</a><br /></td></tr>
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<tr class="memitem:a4587409a9b96a0c496cf12b3acac20c4"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a4587409a9b96a0c496cf12b3acac20c4">finishTransmit</a> () override</td></tr>
<tr class="memdesc:a4587409a9b96a0c496cf12b3acac20c4"><td class="mdescLeft">&#160;</td><td class="mdescRight">Clean up after transmission is done. <a href="class_s_x128x.html#a4587409a9b96a0c496cf12b3acac20c4">More...</a><br /></td></tr>
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<tr class="memitem:afe700968c1e02e335c389b59d950ca39"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#afe700968c1e02e335c389b59d950ca39">startReceive</a> ()</td></tr>
<tr class="memdesc:afe700968c1e02e335c389b59d950ca39"><td class="mdescLeft">&#160;</td><td class="mdescRight">Interrupt-driven receive method with default parameters. Implemented for compatibility with <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a>. <a href="class_s_x128x.html#afe700968c1e02e335c389b59d950ca39">More...</a><br /></td></tr>
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<tr class="memitem:a776286e4a267d1d71531bc9df7aa4276"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a776286e4a267d1d71531bc9df7aa4276">startReceive</a> (uint16_t timeout, uint16_t irqFlags=RADIOLIB_SX128X_IRQ_RX_DEFAULT, uint16_t irqMask=RADIOLIB_SX128X_IRQ_RX_DONE, size_t len=0)</td></tr>
<tr class="memdesc:a776286e4a267d1d71531bc9df7aa4276"><td class="mdescLeft">&#160;</td><td class="mdescRight">Interrupt-driven receive method. DIO1 will be activated when full packet is received. <a href="class_s_x128x.html#a776286e4a267d1d71531bc9df7aa4276">More...</a><br /></td></tr>
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<tr class="memitem:ae1f933f767161cc59fdaca816ab93e22"><td class="memItemLeft" align="right" valign="top">uint16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#ae1f933f767161cc59fdaca816ab93e22">getIrqStatus</a> ()</td></tr>
<tr class="memdesc:ae1f933f767161cc59fdaca816ab93e22"><td class="mdescLeft">&#160;</td><td class="mdescRight">Reads the current IRQ status. <a href="class_s_x128x.html#ae1f933f767161cc59fdaca816ab93e22">More...</a><br /></td></tr>
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<tr class="memitem:a94bca43258b09217fb476a2d8db784bb"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a94bca43258b09217fb476a2d8db784bb">readData</a> (uint8_t *data, size_t len) override</td></tr>
<tr class="memdesc:a94bca43258b09217fb476a2d8db784bb"><td class="mdescLeft">&#160;</td><td class="mdescRight">Reads data received after calling startReceive method. When the packet length is not known in advance, getPacketLength method must be called BEFORE calling readData! <a href="class_s_x128x.html#a94bca43258b09217fb476a2d8db784bb">More...</a><br /></td></tr>
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<tr class="memitem:a2043ef7bb806968b9d9dcb64561ca371"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a2043ef7bb806968b9d9dcb64561ca371">setFrequency</a> (float freq)</td></tr>
<tr class="memdesc:a2043ef7bb806968b9d9dcb64561ca371"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets carrier frequency. Allowed values are in range from 2400.0 to 2500.0 MHz. <a href="class_s_x128x.html#a2043ef7bb806968b9d9dcb64561ca371">More...</a><br /></td></tr>
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<tr class="memitem:ae93c99c85deb950fe9bc7101142b5f6a"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#ae93c99c85deb950fe9bc7101142b5f6a">setBandwidth</a> (float bw)</td></tr>
<tr class="memdesc:ae93c99c85deb950fe9bc7101142b5f6a"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets LoRa bandwidth. Allowed values are 203.125, 406.25, 812.5 and 1625.0 kHz. <a href="class_s_x128x.html#ae93c99c85deb950fe9bc7101142b5f6a">More...</a><br /></td></tr>
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<tr class="memitem:ae435f57132f76f4283abb870176acf54"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#ae435f57132f76f4283abb870176acf54">setSpreadingFactor</a> (uint8_t sf)</td></tr>
<tr class="memdesc:ae435f57132f76f4283abb870176acf54"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets LoRa spreading factor. Allowed values range from 5 to 12. <a href="class_s_x128x.html#ae435f57132f76f4283abb870176acf54">More...</a><br /></td></tr>
<tr class="separator:ae435f57132f76f4283abb870176acf54"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a9da544e4a6120f73a078b46c6138505a"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a9da544e4a6120f73a078b46c6138505a">setCodingRate</a> (uint8_t cr, bool longInterleaving=false)</td></tr>
<tr class="memdesc:a9da544e4a6120f73a078b46c6138505a"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets LoRa coding rate denominator. Allowed values range from 5 to 8. <a href="class_s_x128x.html#a9da544e4a6120f73a078b46c6138505a">More...</a><br /></td></tr>
<tr class="separator:a9da544e4a6120f73a078b46c6138505a"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:ad988727ea6c9b4e11562651d312514c0"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#ad988727ea6c9b4e11562651d312514c0">setOutputPower</a> (int8_t pwr)</td></tr>
<tr class="memdesc:ad988727ea6c9b4e11562651d312514c0"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets output power. Allowed values are in range from -18 to 13 dBm. <a href="class_s_x128x.html#ad988727ea6c9b4e11562651d312514c0">More...</a><br /></td></tr>
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<tr class="memitem:a1984a405262f155f16a4759c5f6b0133"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a1984a405262f155f16a4759c5f6b0133">setPreambleLength</a> (uint32_t preambleLength)</td></tr>
<tr class="memdesc:a1984a405262f155f16a4759c5f6b0133"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets preamble length for currently active modem. Allowed values range from 1 to 65535. <a href="class_s_x128x.html#a1984a405262f155f16a4759c5f6b0133">More...</a><br /></td></tr>
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<tr class="memitem:a465ac114dbe6844069b5cb989f87c3ee"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a465ac114dbe6844069b5cb989f87c3ee">setBitRate</a> (float br)</td></tr>
<tr class="memdesc:a465ac114dbe6844069b5cb989f87c3ee"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets FSK or FLRC bit rate. Allowed values are 125, 250, 400, 500, 800, 1000, 1600 and 2000 kbps (for FSK modem) or 260, 325, 520, 650, 1000 and 1300 (for FLRC modem). <a href="class_s_x128x.html#a465ac114dbe6844069b5cb989f87c3ee">More...</a><br /></td></tr>
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<tr class="memitem:a26d0d02e5e53a3172df9208fa343a3f1"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a26d0d02e5e53a3172df9208fa343a3f1">setFrequencyDeviation</a> (float freqDev) override</td></tr>
<tr class="memdesc:a26d0d02e5e53a3172df9208fa343a3f1"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets FSK frequency deviation. Allowed values range from 0.0 to 3200.0 kHz. <a href="class_s_x128x.html#a26d0d02e5e53a3172df9208fa343a3f1">More...</a><br /></td></tr>
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<tr class="memitem:a99491c705e88dddc820f884b778f1660"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a99491c705e88dddc820f884b778f1660">setDataShaping</a> (uint8_t sh) override</td></tr>
<tr class="memdesc:a99491c705e88dddc820f884b778f1660"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets time-bandwidth product of Gaussian filter applied for shaping. Allowed values are RADIOLIB_SHAPING_0_5 or RADIOLIB_SHAPING_1_0. Set to RADIOLIB_SHAPING_NONE to disable data shaping. <a href="class_s_x128x.html#a99491c705e88dddc820f884b778f1660">More...</a><br /></td></tr>
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<tr class="memitem:a0efa595867624a54153d693d16f9f731"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a0efa595867624a54153d693d16f9f731">setSyncWord</a> (uint8_t *syncWord, uint8_t len)</td></tr>
<tr class="memdesc:a0efa595867624a54153d693d16f9f731"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets FSK/FLRC sync word in the form of array of up to 5 bytes (FSK). For FLRC modem, the sync word must be exactly 4 bytes long. <a href="class_s_x128x.html#a0efa595867624a54153d693d16f9f731">More...</a><br /></td></tr>
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<tr class="memitem:a1bef6b6f3058be6b1681c78334342bc1"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a1bef6b6f3058be6b1681c78334342bc1">setSyncWord</a> (uint8_t syncWord, uint8_t controlBits=0x44)</td></tr>
<tr class="memdesc:a1bef6b6f3058be6b1681c78334342bc1"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets LoRa sync word. <a href="class_s_x128x.html#a1bef6b6f3058be6b1681c78334342bc1">More...</a><br /></td></tr>
<tr class="separator:a1bef6b6f3058be6b1681c78334342bc1"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:aa4b1e0b96347011522e053f30202c0fe"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#aa4b1e0b96347011522e053f30202c0fe">setCRC</a> (uint8_t len, uint32_t initial=0x1D0F, uint16_t polynomial=0x1021)</td></tr>
<tr class="memdesc:aa4b1e0b96347011522e053f30202c0fe"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets CRC configuration. <a href="class_s_x128x.html#aa4b1e0b96347011522e053f30202c0fe">More...</a><br /></td></tr>
<tr class="separator:aa4b1e0b96347011522e053f30202c0fe"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a8b3eea268f21bf911b6eaf37c5eb0b5f"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a8b3eea268f21bf911b6eaf37c5eb0b5f">setWhitening</a> (bool enabled)</td></tr>
<tr class="memdesc:a8b3eea268f21bf911b6eaf37c5eb0b5f"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets whitening parameters, not available for LoRa or FLRC modem. <a href="class_s_x128x.html#a8b3eea268f21bf911b6eaf37c5eb0b5f">More...</a><br /></td></tr>
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<tr class="memitem:a9346490a6c56edcff2e12ae0369a8df5"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a9346490a6c56edcff2e12ae0369a8df5">setAccessAddress</a> (uint32_t addr)</td></tr>
<tr class="memdesc:a9346490a6c56edcff2e12ae0369a8df5"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets BLE access address. <a href="class_s_x128x.html#a9346490a6c56edcff2e12ae0369a8df5">More...</a><br /></td></tr>
<tr class="separator:a9346490a6c56edcff2e12ae0369a8df5"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a6e45fbfaec7063e52e188f47a3a585a5"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a6e45fbfaec7063e52e188f47a3a585a5">setHighSensitivityMode</a> (bool enable)</td></tr>
<tr class="memdesc:a6e45fbfaec7063e52e188f47a3a585a5"><td class="mdescLeft">&#160;</td><td class="mdescRight">Enables or disables receiver high sensitivity mode. <a href="class_s_x128x.html#a6e45fbfaec7063e52e188f47a3a585a5">More...</a><br /></td></tr>
<tr class="separator:a6e45fbfaec7063e52e188f47a3a585a5"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a3837662441a9eb3f0a71f4f667db9e91"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a3837662441a9eb3f0a71f4f667db9e91">setGainControl</a> (uint8_t gain=0)</td></tr>
<tr class="memdesc:a3837662441a9eb3f0a71f4f667db9e91"><td class="mdescLeft">&#160;</td><td class="mdescRight">Enables or disables receiver manual gain control. <a href="class_s_x128x.html#a3837662441a9eb3f0a71f4f667db9e91">More...</a><br /></td></tr>
<tr class="separator:a3837662441a9eb3f0a71f4f667db9e91"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a94d3003277925e2dc3372548b3311008"><td class="memItemLeft" align="right" valign="top">float&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a94d3003277925e2dc3372548b3311008">getRSSI</a> ()</td></tr>
<tr class="memdesc:a94d3003277925e2dc3372548b3311008"><td class="mdescLeft">&#160;</td><td class="mdescRight">Gets RSSI (Recorded Signal Strength Indicator) of the last received packet. <a href="class_s_x128x.html#a94d3003277925e2dc3372548b3311008">More...</a><br /></td></tr>
<tr class="separator:a94d3003277925e2dc3372548b3311008"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a89ebf1f4f227cd35c0799c06d5d9c1d2"><td class="memItemLeft" align="right" valign="top">float&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a89ebf1f4f227cd35c0799c06d5d9c1d2">getSNR</a> ()</td></tr>
<tr class="memdesc:a89ebf1f4f227cd35c0799c06d5d9c1d2"><td class="mdescLeft">&#160;</td><td class="mdescRight">Gets SNR (Signal to Noise Ratio) of the last received packet. Only available for LoRa or ranging modem. <a href="class_s_x128x.html#a89ebf1f4f227cd35c0799c06d5d9c1d2">More...</a><br /></td></tr>
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<tr class="memitem:a2b424000856a9dc212f571d0e8890635"><td class="memItemLeft" align="right" valign="top">float&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a2b424000856a9dc212f571d0e8890635">getFrequencyError</a> ()</td></tr>
<tr class="memdesc:a2b424000856a9dc212f571d0e8890635"><td class="mdescLeft">&#160;</td><td class="mdescRight">Gets frequency error of the latest received packet. <a href="class_s_x128x.html#a2b424000856a9dc212f571d0e8890635">More...</a><br /></td></tr>
<tr class="separator:a2b424000856a9dc212f571d0e8890635"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a390fd0749b316eed67da7b54f4f24735"><td class="memItemLeft" align="right" valign="top">size_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a390fd0749b316eed67da7b54f4f24735">getPacketLength</a> (bool update=true) override</td></tr>
<tr class="memdesc:a390fd0749b316eed67da7b54f4f24735"><td class="mdescLeft">&#160;</td><td class="mdescRight">Query modem for the packet length of received payload. <a href="class_s_x128x.html#a390fd0749b316eed67da7b54f4f24735">More...</a><br /></td></tr>
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<tr class="memitem:a2361a94f2e12ebc93e750a027d633232"><td class="memItemLeft" align="right" valign="top">uint32_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a2361a94f2e12ebc93e750a027d633232">getTimeOnAir</a> (size_t len)</td></tr>
<tr class="memdesc:a2361a94f2e12ebc93e750a027d633232"><td class="mdescLeft">&#160;</td><td class="mdescRight">Get expected time-on-air for a given size of payload. <a href="class_s_x128x.html#a2361a94f2e12ebc93e750a027d633232">More...</a><br /></td></tr>
<tr class="separator:a2361a94f2e12ebc93e750a027d633232"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:ac69cc622020419cb3393eac5cc88915b"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#ac69cc622020419cb3393eac5cc88915b">implicitHeader</a> (size_t len)</td></tr>
<tr class="memdesc:ac69cc622020419cb3393eac5cc88915b"><td class="mdescLeft">&#160;</td><td class="mdescRight">Set implicit header mode for future reception/transmission. <a href="class_s_x128x.html#ac69cc622020419cb3393eac5cc88915b">More...</a><br /></td></tr>
<tr class="separator:ac69cc622020419cb3393eac5cc88915b"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a94b7fb26cc99385d30b0c98b76d8188d"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a94b7fb26cc99385d30b0c98b76d8188d">explicitHeader</a> ()</td></tr>
<tr class="memdesc:a94b7fb26cc99385d30b0c98b76d8188d"><td class="mdescLeft">&#160;</td><td class="mdescRight">Set explicit header mode for future reception/transmission. <a href="class_s_x128x.html#a94b7fb26cc99385d30b0c98b76d8188d">More...</a><br /></td></tr>
<tr class="separator:a94b7fb26cc99385d30b0c98b76d8188d"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a8720a388d2cd10fac3112b89f4a80947"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a8720a388d2cd10fac3112b89f4a80947">setEncoding</a> (uint8_t encoding) override</td></tr>
<tr class="memdesc:a8720a388d2cd10fac3112b89f4a80947"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets transmission encoding. Serves only as alias for <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a> compatibility. <a href="class_s_x128x.html#a8720a388d2cd10fac3112b89f4a80947">More...</a><br /></td></tr>
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<tr class="memitem:a5ba683fbc4a46418ce3736f224fb55f2"><td class="memItemLeft" align="right" valign="top">void&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a5ba683fbc4a46418ce3736f224fb55f2">setRfSwitchPins</a> (uint32_t rxEn, uint32_t txEn)</td></tr>
<tr class="memdesc:a5ba683fbc4a46418ce3736f224fb55f2"><td class="mdescLeft">&#160;</td><td class="mdescRight">Some modules contain external RF switch controlled by pins. This function gives RadioLib control over those pins to automatically switch between various modes: When idle both pins will be LOW, during TX the <code>txEn</code> pin will be HIGH, during RX the <code>rxPin</code> will be HIGH. <a href="class_s_x128x.html#a5ba683fbc4a46418ce3736f224fb55f2">More...</a><br /></td></tr>
<tr class="separator:a5ba683fbc4a46418ce3736f224fb55f2"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:ad5789bd27d46b24f54aac9ca55ec9958"><td class="memItemLeft" align="right" valign="top">void&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#ad5789bd27d46b24f54aac9ca55ec9958">setRfSwitchTable</a> (const uint32_t(&amp;pins)[<a class="el" href="class_module.html#a0c11551e12579bbabf57b19e12555b3c">Module::RFSWITCH_MAX_PINS</a>], const <a class="el" href="struct_module_1_1_rf_switch_mode__t.html">Module::RfSwitchMode_t</a> table[])</td></tr>
<tr class="memdesc:ad5789bd27d46b24f54aac9ca55ec9958"><td class="mdescLeft">&#160;</td><td class="mdescRight">Some modules contain external RF switch controlled by pins. This function gives RadioLib control over those pins to automatically switch between various modes. <a href="class_s_x128x.html#ad5789bd27d46b24f54aac9ca55ec9958">More...</a><br /></td></tr>
<tr class="separator:ad5789bd27d46b24f54aac9ca55ec9958"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a95637e8addc48b0e1c30c2cf6f54354a"><td class="memItemLeft" align="right" valign="top">uint8_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a95637e8addc48b0e1c30c2cf6f54354a">randomByte</a> ()</td></tr>
<tr class="memdesc:a95637e8addc48b0e1c30c2cf6f54354a"><td class="mdescLeft">&#160;</td><td class="mdescRight">Dummy random method, to ensure <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a> compatibility. <a href="class_s_x128x.html#a95637e8addc48b0e1c30c2cf6f54354a">More...</a><br /></td></tr>
<tr class="separator:a95637e8addc48b0e1c30c2cf6f54354a"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a1463f0769b815e95d789fd708dc2ffe6"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a1463f0769b815e95d789fd708dc2ffe6">invertIQ</a> (bool enable)</td></tr>
<tr class="memdesc:a1463f0769b815e95d789fd708dc2ffe6"><td class="mdescLeft">&#160;</td><td class="mdescRight">Enable/disable inversion of the I and Q signals. <a href="class_s_x128x.html#a1463f0769b815e95d789fd708dc2ffe6">More...</a><br /></td></tr>
<tr class="separator:a1463f0769b815e95d789fd708dc2ffe6"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:aff1b549077b9d752f53bf9dfc6840236"><td class="memItemLeft" align="right" valign="top">void&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#aff1b549077b9d752f53bf9dfc6840236">setDirectAction</a> (void(*func)(void))</td></tr>
<tr class="memdesc:aff1b549077b9d752f53bf9dfc6840236"><td class="mdescLeft">&#160;</td><td class="mdescRight">Dummy method, to ensure <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a> compatibility. <a href="class_s_x128x.html#aff1b549077b9d752f53bf9dfc6840236">More...</a><br /></td></tr>
<tr class="separator:aff1b549077b9d752f53bf9dfc6840236"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:aceeb18acbfedb20c6cf60e26d5275793"><td class="memItemLeft" align="right" valign="top">void&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#aceeb18acbfedb20c6cf60e26d5275793">readBit</a> (uint32_t pin)</td></tr>
<tr class="memdesc:aceeb18acbfedb20c6cf60e26d5275793"><td class="mdescLeft">&#160;</td><td class="mdescRight">Dummy method, to ensure <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a> compatibility. <a href="class_s_x128x.html#aceeb18acbfedb20c6cf60e26d5275793">More...</a><br /></td></tr>
<tr class="separator:aceeb18acbfedb20c6cf60e26d5275793"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a492b2d057dd803c3884fa1adc8e22534"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a492b2d057dd803c3884fa1adc8e22534">transmit</a> (const char *str, uint8_t addr=0)</td></tr>
<tr class="memdesc:a492b2d057dd803c3884fa1adc8e22534"><td class="mdescLeft">&#160;</td><td class="mdescRight">C-string transmit method. <a href="class_s_x128x.html#a492b2d057dd803c3884fa1adc8e22534">More...</a><br /></td></tr>
<tr class="separator:a492b2d057dd803c3884fa1adc8e22534"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a3dd42f8d5569487ea74f004ca652a709"><td class="memItemLeft" align="right" valign="top">virtual int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a3dd42f8d5569487ea74f004ca652a709">transmit</a> (uint8_t *data, size_t len, uint8_t addr=0)</td></tr>
<tr class="memdesc:a3dd42f8d5569487ea74f004ca652a709"><td class="mdescLeft">&#160;</td><td class="mdescRight">Binary transmit method. Must be implemented in module class. <a href="class_s_x128x.html#a3dd42f8d5569487ea74f004ca652a709">More...</a><br /></td></tr>
<tr class="separator:a3dd42f8d5569487ea74f004ca652a709"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:ab82617fa3fa9f21d4cd427314ecc4af8"><td class="memItemLeft" align="right" valign="top">virtual int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#ab82617fa3fa9f21d4cd427314ecc4af8">receive</a> (uint8_t *data, size_t len)</td></tr>
<tr class="memdesc:ab82617fa3fa9f21d4cd427314ecc4af8"><td class="mdescLeft">&#160;</td><td class="mdescRight">Binary receive method. Must be implemented in module class. <a href="class_s_x128x.html#ab82617fa3fa9f21d4cd427314ecc4af8">More...</a><br /></td></tr>
<tr class="separator:ab82617fa3fa9f21d4cd427314ecc4af8"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a923654706eff5118ef6e84214e837f27"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a923654706eff5118ef6e84214e837f27">startTransmit</a> (const char *str, uint8_t addr=0)</td></tr>
<tr class="memdesc:a923654706eff5118ef6e84214e837f27"><td class="mdescLeft">&#160;</td><td class="mdescRight">Interrupt-driven Arduino String transmit method. Unlike the standard transmit method, this one is non-blocking. Interrupt pin will be activated when transmission finishes. <a href="class_s_x128x.html#a923654706eff5118ef6e84214e837f27">More...</a><br /></td></tr>
<tr class="separator:a923654706eff5118ef6e84214e837f27"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:ad59e37ce0606dc8051e40be9d14cfec3"><td class="memItemLeft" align="right" valign="top">virtual int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#ad59e37ce0606dc8051e40be9d14cfec3">startTransmit</a> (uint8_t *data, size_t len, uint8_t addr=0)</td></tr>
<tr class="memdesc:ad59e37ce0606dc8051e40be9d14cfec3"><td class="mdescLeft">&#160;</td><td class="mdescRight">Interrupt-driven binary transmit method. <a href="class_s_x128x.html#ad59e37ce0606dc8051e40be9d14cfec3">More...</a><br /></td></tr>
<tr class="separator:ad59e37ce0606dc8051e40be9d14cfec3"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a3563453988a83d22dd07d4691543a300"><td class="memItemLeft" align="right" valign="top">virtual int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_s_x128x.html#a3563453988a83d22dd07d4691543a300">readData</a> (uint8_t *data, size_t len)</td></tr>
<tr class="memdesc:a3563453988a83d22dd07d4691543a300"><td class="mdescLeft">&#160;</td><td class="mdescRight">Reads data that was received after calling startReceive method. <a href="class_s_x128x.html#a3563453988a83d22dd07d4691543a300">More...</a><br /></td></tr>
<tr class="separator:a3563453988a83d22dd07d4691543a300"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="inherit_header pub_methods_class_physical_layer"><td colspan="2" onclick="javascript:toggleInherit('pub_methods_class_physical_layer')"><img src="closed.png" alt="-"/>&#160;Public Member Functions inherited from <a class="el" href="class_physical_layer.html">PhysicalLayer</a></td></tr>
<tr class="memitem:add63d7d4fa8b14df5e185813794a49d5 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#add63d7d4fa8b14df5e185813794a49d5">PhysicalLayer</a> (float step, size_t maxLen)</td></tr>
<tr class="memdesc:add63d7d4fa8b14df5e185813794a49d5 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Default constructor. <a href="class_physical_layer.html#add63d7d4fa8b14df5e185813794a49d5">More...</a><br /></td></tr>
<tr class="separator:add63d7d4fa8b14df5e185813794a49d5 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a492b2d057dd803c3884fa1adc8e22534 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a492b2d057dd803c3884fa1adc8e22534">transmit</a> (const char *str, uint8_t addr=0)</td></tr>
<tr class="memdesc:a492b2d057dd803c3884fa1adc8e22534 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">C-string transmit method. <a href="class_physical_layer.html#a492b2d057dd803c3884fa1adc8e22534">More...</a><br /></td></tr>
<tr class="separator:a492b2d057dd803c3884fa1adc8e22534 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:af1bb9a5da26da8829795ebb72e9c666e inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">virtual int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#af1bb9a5da26da8829795ebb72e9c666e">sleep</a> ()</td></tr>
<tr class="memdesc:af1bb9a5da26da8829795ebb72e9c666e inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets module to sleep. <a href="class_physical_layer.html#af1bb9a5da26da8829795ebb72e9c666e">More...</a><br /></td></tr>
<tr class="separator:af1bb9a5da26da8829795ebb72e9c666e inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a7d5da4311092e3df6b193ff303a0c5e8 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">virtual int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a7d5da4311092e3df6b193ff303a0c5e8">standby</a> (uint8_t mode)</td></tr>
<tr class="memdesc:a7d5da4311092e3df6b193ff303a0c5e8 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets module to a specific standby mode. <a href="class_physical_layer.html#a7d5da4311092e3df6b193ff303a0c5e8">More...</a><br /></td></tr>
<tr class="separator:a7d5da4311092e3df6b193ff303a0c5e8 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a13dbafeeb9dd9ede72cc4d907738ac48 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">virtual int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a13dbafeeb9dd9ede72cc4d907738ac48">startReceive</a> (uint32_t timeout, uint16_t irqFlags, uint16_t irqMask, size_t len)</td></tr>
<tr class="memdesc:a13dbafeeb9dd9ede72cc4d907738ac48 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Interrupt-driven receive method. A DIO pin will be activated when full packet is received. Must be implemented in module class. <a href="class_physical_layer.html#a13dbafeeb9dd9ede72cc4d907738ac48">More...</a><br /></td></tr>
<tr class="separator:a13dbafeeb9dd9ede72cc4d907738ac48 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a923654706eff5118ef6e84214e837f27 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a923654706eff5118ef6e84214e837f27">startTransmit</a> (const char *str, uint8_t addr=0)</td></tr>
<tr class="memdesc:a923654706eff5118ef6e84214e837f27 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Interrupt-driven Arduino String transmit method. Unlike the standard transmit method, this one is non-blocking. Interrupt pin will be activated when transmission finishes. <a href="class_physical_layer.html#a923654706eff5118ef6e84214e837f27">More...</a><br /></td></tr>
<tr class="separator:a923654706eff5118ef6e84214e837f27 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a6c71cdc1238e1368274670758431a977 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">virtual int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a6c71cdc1238e1368274670758431a977">setSyncWord</a> (uint8_t *sync, size_t len)</td></tr>
<tr class="memdesc:a6c71cdc1238e1368274670758431a977 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Set sync word. Must be implemented in module class if the module supports it. <a href="class_physical_layer.html#a6c71cdc1238e1368274670758431a977">More...</a><br /></td></tr>
<tr class="separator:a6c71cdc1238e1368274670758431a977 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a85db1ff64e6c56e054f276c511194633 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">virtual int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a85db1ff64e6c56e054f276c511194633">setPreambleLength</a> (size_t len)</td></tr>
<tr class="memdesc:a85db1ff64e6c56e054f276c511194633 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Set preamble length. Must be implemented in module class if the module supports it. <a href="class_physical_layer.html#a85db1ff64e6c56e054f276c511194633">More...</a><br /></td></tr>
<tr class="separator:a85db1ff64e6c56e054f276c511194633 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a6ee1fed6bbb8d3571974153ac6f26751 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">virtual int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a6ee1fed6bbb8d3571974153ac6f26751">setDataRate</a> (<a class="el" href="union_data_rate__t.html">DataRate_t</a> dr)</td></tr>
<tr class="memdesc:a6ee1fed6bbb8d3571974153ac6f26751 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Set data. Must be implemented in module class if the module supports it. <a href="class_physical_layer.html#a6ee1fed6bbb8d3571974153ac6f26751">More...</a><br /></td></tr>
<tr class="separator:a6ee1fed6bbb8d3571974153ac6f26751 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a58d54eeb40fb586013ba48e15318abba inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">virtual int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a58d54eeb40fb586013ba48e15318abba">checkDataRate</a> (<a class="el" href="union_data_rate__t.html">DataRate_t</a> dr)</td></tr>
<tr class="memdesc:a58d54eeb40fb586013ba48e15318abba inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Check the data rate can be configured by this module. Must be implemented in module class if the module supports it. <a href="class_physical_layer.html#a58d54eeb40fb586013ba48e15318abba">More...</a><br /></td></tr>
<tr class="separator:a58d54eeb40fb586013ba48e15318abba inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a977e5236693960bb1c79090a201e9e1c inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">float&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a977e5236693960bb1c79090a201e9e1c">getFreqStep</a> () const</td></tr>
<tr class="memdesc:a977e5236693960bb1c79090a201e9e1c inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Gets the module frequency step size that was set in constructor. <a href="class_physical_layer.html#a977e5236693960bb1c79090a201e9e1c">More...</a><br /></td></tr>
<tr class="separator:a977e5236693960bb1c79090a201e9e1c inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a50c3c0866faa474ae2ea8d5b79a73358 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">virtual uint32_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a50c3c0866faa474ae2ea8d5b79a73358">calculateRxTimeout</a> (uint32_t timeoutUs)</td></tr>
<tr class="memdesc:a50c3c0866faa474ae2ea8d5b79a73358 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Calculate the timeout value for this specific module / series (in number of symbols or units of time) <a href="class_physical_layer.html#a50c3c0866faa474ae2ea8d5b79a73358">More...</a><br /></td></tr>
<tr class="separator:a50c3c0866faa474ae2ea8d5b79a73358 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a1d1fe00d107bbc23b0315fd442bc3292 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">virtual int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a1d1fe00d107bbc23b0315fd442bc3292">irqRxDoneRxTimeout</a> (uint16_t &amp;irqFlags, uint16_t &amp;irqMask)</td></tr>
<tr class="memdesc:a1d1fe00d107bbc23b0315fd442bc3292 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Create the flags that make up RxDone and RxTimeout used for receiving downlinks. <a href="class_physical_layer.html#a1d1fe00d107bbc23b0315fd442bc3292">More...</a><br /></td></tr>
<tr class="separator:a1d1fe00d107bbc23b0315fd442bc3292 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:acb8d8182a32439fe91f2806d73e629f4 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">virtual bool&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#acb8d8182a32439fe91f2806d73e629f4">isRxTimeout</a> ()</td></tr>
<tr class="memdesc:acb8d8182a32439fe91f2806d73e629f4 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Check whether the IRQ bit for RxTimeout is set. <a href="class_physical_layer.html#acb8d8182a32439fe91f2806d73e629f4">More...</a><br /></td></tr>
<tr class="separator:acb8d8182a32439fe91f2806d73e629f4 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:ae30dfbb5445bb674898fc54f5f90b2f9 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">virtual int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#ae30dfbb5445bb674898fc54f5f90b2f9">startChannelScan</a> ()</td></tr>
<tr class="memdesc:ae30dfbb5445bb674898fc54f5f90b2f9 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Interrupt-driven channel activity detection method. interrupt will be activated when packet is detected. Must be implemented in module class. <a href="class_physical_layer.html#ae30dfbb5445bb674898fc54f5f90b2f9">More...</a><br /></td></tr>
<tr class="separator:ae30dfbb5445bb674898fc54f5f90b2f9 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a63979795a7b53557560bb95b65480906 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">virtual int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a63979795a7b53557560bb95b65480906">getChannelScanResult</a> ()</td></tr>
<tr class="memdesc:a63979795a7b53557560bb95b65480906 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Read the channel scan result. <a href="class_physical_layer.html#a63979795a7b53557560bb95b65480906">More...</a><br /></td></tr>
<tr class="separator:a63979795a7b53557560bb95b65480906 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:acd9171bd71aa80fb86113b612c42de53 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">int32_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#acd9171bd71aa80fb86113b612c42de53">random</a> (int32_t max)</td></tr>
<tr class="memdesc:acd9171bd71aa80fb86113b612c42de53 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Get truly random number in range 0 - max. <a href="class_physical_layer.html#acd9171bd71aa80fb86113b612c42de53">More...</a><br /></td></tr>
<tr class="separator:acd9171bd71aa80fb86113b612c42de53 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a76113e10481743094a1cd0280692b0a9 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">int32_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a76113e10481743094a1cd0280692b0a9">random</a> (int32_t min, int32_t max)</td></tr>
<tr class="memdesc:a76113e10481743094a1cd0280692b0a9 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Get truly random number in range min - max. <a href="class_physical_layer.html#a76113e10481743094a1cd0280692b0a9">More...</a><br /></td></tr>
<tr class="separator:a76113e10481743094a1cd0280692b0a9 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a88a10657bd2215a11a2331f937414b55 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a88a10657bd2215a11a2331f937414b55">startDirect</a> ()</td></tr>
<tr class="memdesc:a88a10657bd2215a11a2331f937414b55 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Configure module parameters for direct modes. Must be called prior to "ham" modes like RTTY or AX.25. Only available in FSK mode. <a href="class_physical_layer.html#a88a10657bd2215a11a2331f937414b55">More...</a><br /></td></tr>
<tr class="separator:a88a10657bd2215a11a2331f937414b55 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a8e378fe136a498ea485a9c10f5e15aab inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a8e378fe136a498ea485a9c10f5e15aab">setDirectSyncWord</a> (uint32_t syncWord, uint8_t len)</td></tr>
<tr class="memdesc:a8e378fe136a498ea485a9c10f5e15aab inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Set sync word to be used to determine start of packet in direct reception mode. <a href="class_physical_layer.html#a8e378fe136a498ea485a9c10f5e15aab">More...</a><br /></td></tr>
<tr class="separator:a8e378fe136a498ea485a9c10f5e15aab inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:ab57182d32646861ef0d865e2740d6b26 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#ab57182d32646861ef0d865e2740d6b26">available</a> ()</td></tr>
<tr class="memdesc:ab57182d32646861ef0d865e2740d6b26 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Get the number of direct mode bytes currently available in buffer. <a href="class_physical_layer.html#ab57182d32646861ef0d865e2740d6b26">More...</a><br /></td></tr>
<tr class="separator:ab57182d32646861ef0d865e2740d6b26 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a429796eb2e7ea86781a2e8ca42af43f3 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top"><a id="a429796eb2e7ea86781a2e8ca42af43f3"></a>
void&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a429796eb2e7ea86781a2e8ca42af43f3">dropSync</a> ()</td></tr>
<tr class="memdesc:a429796eb2e7ea86781a2e8ca42af43f3 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Forcefully drop synchronization. <br /></td></tr>
<tr class="separator:a429796eb2e7ea86781a2e8ca42af43f3 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a4d5b30493c8d7fcfb784e128362d596c inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">uint8_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a4d5b30493c8d7fcfb784e128362d596c">read</a> (bool drop=true)</td></tr>
<tr class="memdesc:a4d5b30493c8d7fcfb784e128362d596c inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Get data from direct mode buffer. <a href="class_physical_layer.html#a4d5b30493c8d7fcfb784e128362d596c">More...</a><br /></td></tr>
<tr class="separator:a4d5b30493c8d7fcfb784e128362d596c inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a349e8a22cd28ad89d45460fdeeefc05c inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">virtual int16_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a349e8a22cd28ad89d45460fdeeefc05c">setDIOMapping</a> (uint32_t pin, uint32_t value)</td></tr>
<tr class="memdesc:a349e8a22cd28ad89d45460fdeeefc05c inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Configure DIO pin mapping to get a given signal on a DIO pin (if available). <a href="class_physical_layer.html#a349e8a22cd28ad89d45460fdeeefc05c">More...</a><br /></td></tr>
<tr class="separator:a349e8a22cd28ad89d45460fdeeefc05c inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:ae11c191a7edf3116bf468b9153237260 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top">virtual void&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#ae11c191a7edf3116bf468b9153237260">setChannelScanAction</a> (void(*func)(void))</td></tr>
<tr class="memdesc:ae11c191a7edf3116bf468b9153237260 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Sets interrupt service routine to call when a channel scan is finished. <a href="class_physical_layer.html#ae11c191a7edf3116bf468b9153237260">More...</a><br /></td></tr>
<tr class="separator:ae11c191a7edf3116bf468b9153237260 inherit pub_methods_class_physical_layer"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a169a4d04c5c50d3336e274d70930d9f6 inherit pub_methods_class_physical_layer"><td class="memItemLeft" align="right" valign="top"><a id="a169a4d04c5c50d3336e274d70930d9f6"></a>
virtual void&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_physical_layer.html#a169a4d04c5c50d3336e274d70930d9f6">clearChannelScanAction</a> ()</td></tr>
<tr class="memdesc:a169a4d04c5c50d3336e274d70930d9f6 inherit pub_methods_class_physical_layer"><td class="mdescLeft">&#160;</td><td class="mdescRight">Clears interrupt service routine to call when a channel scan is finished. <br /></td></tr>
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</table>
<a name="details" id="details"></a><h2 class="groupheader">Detailed Description</h2>
<div class="textblock"><p>Base class for SX128x series. All derived classes for SX128x (e.g. <a class="el" href="class_s_x1280.html" title="Derived class for SX1280 modules.">SX1280</a> or <a class="el" href="class_s_x1281.html" title="Derived class for SX1281 modules.">SX1281</a>) inherit from this base class. This class should not be instantiated directly from Arduino sketch, only from its derived classes. </p>
</div><h2 class="groupheader">Constructor &amp; Destructor Documentation</h2>
<a id="a9ccbf51f8304f1041c8eef182be547a7"></a>
<h2 class="memtitle"><span class="permalink"><a href="#a9ccbf51f8304f1041c8eef182be547a7">&#9670;&nbsp;</a></span>SX128x()</h2>
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<td class="memname">SX128x::SX128x </td>
<td>(</td>
<td class="paramtype"><a class="el" href="class_module.html">Module</a> *&#160;</td>
<td class="paramname"><em>mod</em></td><td>)</td>
<td></td>
</tr>
</table>
</div><div class="memdoc">
<p>Default constructor. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">mod</td><td>Instance of <a class="el" href="class_module.html" title="Implements all common low-level methods to control the wireless module. Every module class contains o...">Module</a> that will be used to communicate with the radio. </td></tr>
</table>
</dd>
</dl>
</div>
</div>
<h2 class="groupheader">Member Function Documentation</h2>
<a id="a275a9a86934124eab4982ad52bf91aea"></a>
<h2 class="memtitle"><span class="permalink"><a href="#a275a9a86934124eab4982ad52bf91aea">&#9670;&nbsp;</a></span>begin()</h2>
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<td class="memname">int16_t SX128x::begin </td>
<td>(</td>
<td class="paramtype">float&#160;</td>
<td class="paramname"><em>freq</em> = <code>2400.0</code>, </td>
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<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">float&#160;</td>
<td class="paramname"><em>bw</em> = <code>812.5</code>, </td>
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<tr>
<td class="paramkey"></td>
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<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>sf</em> = <code>9</code>, </td>
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<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>cr</em> = <code>7</code>, </td>
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<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>syncWord</em> = <code>RADIOLIB_SX128X_SYNC_WORD_PRIVATE</code>, </td>
</tr>
<tr>
<td class="paramkey"></td>
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<td class="paramtype">int8_t&#160;</td>
<td class="paramname"><em>pwr</em> = <code>10</code>, </td>
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<tr>
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<td></td>
<td class="paramtype">uint16_t&#160;</td>
<td class="paramname"><em>preambleLength</em> = <code>12</code>&#160;</td>
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<td></td>
<td>)</td>
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<p>Initialization method for LoRa modem. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">freq</td><td>Carrier frequency in MHz. Defaults to 2400.0 MHz. </td></tr>
<tr><td class="paramname">bw</td><td>LoRa bandwidth in kHz. Defaults to 812.5 kHz. </td></tr>
<tr><td class="paramname">sf</td><td>LoRa spreading factor. Defaults to 9. </td></tr>
<tr><td class="paramname">cr</td><td>LoRa coding rate denominator. Defaults to 7 (coding rate 4/7). </td></tr>
<tr><td class="paramname">syncWord</td><td>2-byte LoRa sync word. Defaults to RADIOLIB_SX128X_SYNC_WORD_PRIVATE (0x12). </td></tr>
<tr><td class="paramname">pwr</td><td>Output power in dBm. Defaults to 10 dBm. </td></tr>
<tr><td class="paramname">preambleLength</td><td>LoRa preamble length in symbols. Defaults to 12 symbols. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#ace5ede905bf85aada0c61b9cfaaea127">&#9670;&nbsp;</a></span>beginBLE()</h2>
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<td class="memname">int16_t SX128x::beginBLE </td>
<td>(</td>
<td class="paramtype">float&#160;</td>
<td class="paramname"><em>freq</em> = <code>2400.0</code>, </td>
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<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint16_t&#160;</td>
<td class="paramname"><em>br</em> = <code>800</code>, </td>
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<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">float&#160;</td>
<td class="paramname"><em>freqDev</em> = <code>400.0</code>, </td>
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<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">int8_t&#160;</td>
<td class="paramname"><em>pwr</em> = <code>10</code>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>dataShaping</em> = <code><a class="el" href="group__config__shaping.html#gaa778d14c29d21fe329137a28a3f54a5d">RADIOLIB_SHAPING_0_5</a></code>&#160;</td>
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<tr>
<td></td>
<td>)</td>
<td></td><td></td>
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</table>
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<p>Initialization method for BLE modem. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">freq</td><td>Carrier frequency in MHz. Defaults to 2400.0 MHz. </td></tr>
<tr><td class="paramname">br</td><td>BLE bit rate in kbps. Defaults to 800 kbps. </td></tr>
<tr><td class="paramname">freqDev</td><td>Frequency deviation from carrier frequency in kHz. Defaults to 400.0 kHz. </td></tr>
<tr><td class="paramname">pwr</td><td>Output power in dBm. Defaults to 10 dBm. </td></tr>
<tr><td class="paramname">dataShaping</td><td>Time-bandwidth product of the Gaussian filter to be used for shaping. Defaults to 0.5. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
</div>
<a id="a2c4a24623c5fd27b3cc937e55783d709"></a>
<h2 class="memtitle"><span class="permalink"><a href="#a2c4a24623c5fd27b3cc937e55783d709">&#9670;&nbsp;</a></span>beginFLRC()</h2>
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<td class="memname">int16_t SX128x::beginFLRC </td>
<td>(</td>
<td class="paramtype">float&#160;</td>
<td class="paramname"><em>freq</em> = <code>2400.0</code>, </td>
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<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint16_t&#160;</td>
<td class="paramname"><em>br</em> = <code>650</code>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>cr</em> = <code>3</code>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">int8_t&#160;</td>
<td class="paramname"><em>pwr</em> = <code>10</code>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint16_t&#160;</td>
<td class="paramname"><em>preambleLength</em> = <code>16</code>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>dataShaping</em> = <code><a class="el" href="group__config__shaping.html#gaa778d14c29d21fe329137a28a3f54a5d">RADIOLIB_SHAPING_0_5</a></code>&#160;</td>
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<td></td>
<td>)</td>
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<p>Initialization method for FLRC modem. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">freq</td><td>Carrier frequency in MHz. Defaults to 2400.0 MHz. </td></tr>
<tr><td class="paramname">br</td><td>FLRC bit rate in kbps. Defaults to 650 kbps. </td></tr>
<tr><td class="paramname">cr</td><td>FLRC coding rate. Defaults to 3 (coding rate 3/4). </td></tr>
<tr><td class="paramname">pwr</td><td>Output power in dBm. Defaults to 10 dBm. </td></tr>
<tr><td class="paramname">preambleLength</td><td>FLRC preamble length in bits. Defaults to 16 bits. </td></tr>
<tr><td class="paramname">dataShaping</td><td>Time-bandwidth product of the Gaussian filter to be used for shaping. Defaults to 0.5. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#a6ed60dfbd142315bb4e1abd2555a470a">&#9670;&nbsp;</a></span>beginGFSK()</h2>
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<td class="memname">int16_t SX128x::beginGFSK </td>
<td>(</td>
<td class="paramtype">float&#160;</td>
<td class="paramname"><em>freq</em> = <code>2400.0</code>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint16_t&#160;</td>
<td class="paramname"><em>br</em> = <code>800</code>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">float&#160;</td>
<td class="paramname"><em>freqDev</em> = <code>400.0</code>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">int8_t&#160;</td>
<td class="paramname"><em>pwr</em> = <code>10</code>, </td>
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<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint16_t&#160;</td>
<td class="paramname"><em>preambleLength</em> = <code>16</code>&#160;</td>
</tr>
<tr>
<td></td>
<td>)</td>
<td></td><td></td>
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<p>Initialization method for GFSK modem. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">freq</td><td>Carrier frequency in MHz. Defaults to 2400.0 MHz. </td></tr>
<tr><td class="paramname">br</td><td>FSK bit rate in kbps. Defaults to 800 kbps. </td></tr>
<tr><td class="paramname">freqDev</td><td>Frequency deviation from carrier frequency in kHz. Defaults to 400.0 kHz. </td></tr>
<tr><td class="paramname">pwr</td><td>Output power in dBm. Defaults to 10 dBm. </td></tr>
<tr><td class="paramname">preambleLength</td><td>FSK preamble length in bits. Defaults to 16 bits. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#a94b7fb26cc99385d30b0c98b76d8188d">&#9670;&nbsp;</a></span>explicitHeader()</h2>
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<td class="memname">int16_t SX128x::explicitHeader </td>
<td>(</td>
<td class="paramname"></td><td>)</td>
<td></td>
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<p>Set explicit header mode for future reception/transmission. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">len</td><td>Payload length in bytes. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#a4587409a9b96a0c496cf12b3acac20c4">&#9670;&nbsp;</a></span>finishTransmit()</h2>
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<td class="memname">int16_t SX128x::finishTransmit </td>
<td>(</td>
<td class="paramname"></td><td>)</td>
<td></td>
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</table>
</td>
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<span class="mlabels"><span class="mlabel">override</span><span class="mlabel">virtual</span></span> </td>
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<p>Clean up after transmission is done. </p>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#a1de26f68b939f5af79ec29cc34c7be18">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#a2b424000856a9dc212f571d0e8890635">&#9670;&nbsp;</a></span>getFrequencyError()</h2>
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<td class="memname">float SX128x::getFrequencyError </td>
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<td class="paramname"></td><td>)</td>
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<p>Gets frequency error of the latest received packet. </p>
<dl class="section return"><dt>Returns</dt><dd>Frequency error in Hz. </dd></dl>
</div>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#ae1f933f767161cc59fdaca816ab93e22">&#9670;&nbsp;</a></span>getIrqStatus()</h2>
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<td class="memname">uint16_t SX128x::getIrqStatus </td>
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<p>Reads the current IRQ status. </p>
<dl class="section return"><dt>Returns</dt><dd>IRQ status bits </dd></dl>
</div>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#a390fd0749b316eed67da7b54f4f24735">&#9670;&nbsp;</a></span>getPacketLength()</h2>
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<td class="memname">size_t SX128x::getPacketLength </td>
<td>(</td>
<td class="paramtype">bool&#160;</td>
<td class="paramname"><em>update</em> = <code>true</code></td><td>)</td>
<td></td>
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</table>
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<p>Query modem for the packet length of received payload. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">update</td><td>Update received packet length. Will return cached value when set to false. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd>Length of last received packet in bytes. </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#a2fe95169b5cdc8cabe1f2af66cad6ef6">PhysicalLayer</a>.</p>
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<a id="a94d3003277925e2dc3372548b3311008"></a>
<h2 class="memtitle"><span class="permalink"><a href="#a94d3003277925e2dc3372548b3311008">&#9670;&nbsp;</a></span>getRSSI()</h2>
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<td class="memname">float SX128x::getRSSI </td>
<td>(</td>
<td class="paramname"></td><td>)</td>
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<p>Gets RSSI (Recorded Signal Strength Indicator) of the last received packet. </p>
<dl class="section return"><dt>Returns</dt><dd>RSSI of the last received packet in dBm. </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#aabc94ab27a9ee6daaafa9b47dde5f75b">PhysicalLayer</a>.</p>
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<a id="a89ebf1f4f227cd35c0799c06d5d9c1d2"></a>
<h2 class="memtitle"><span class="permalink"><a href="#a89ebf1f4f227cd35c0799c06d5d9c1d2">&#9670;&nbsp;</a></span>getSNR()</h2>
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<td class="memname">float SX128x::getSNR </td>
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<td class="paramname"></td><td>)</td>
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<p>Gets SNR (Signal to Noise Ratio) of the last received packet. Only available for LoRa or ranging modem. </p>
<dl class="section return"><dt>Returns</dt><dd>SNR of the last received packet in dB. </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#aedddaf9460941b90e43e9005035faa0f">PhysicalLayer</a>.</p>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#a2361a94f2e12ebc93e750a027d633232">&#9670;&nbsp;</a></span>getTimeOnAir()</h2>
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<td class="memname">uint32_t SX128x::getTimeOnAir </td>
<td>(</td>
<td class="paramtype">size_t&#160;</td>
<td class="paramname"><em>len</em></td><td>)</td>
<td></td>
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<p>Get expected time-on-air for a given size of payload. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">len</td><td>Payload length in bytes. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd>Expected time-on-air in microseconds. </dd></dl>
<dl class="todo"><dt><b><a class="el" href="todo.html#_todo000009">Todo:</a></b></dt><dd>implement this mess - <a class="el" href="class_s_x1280.html" title="Derived class for SX1280 modules.">SX1280</a> datasheet v3.0 section 7.4.4.2 </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#a55ccbe60bfc1ab58814dbd5f9cd4939e">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#ac69cc622020419cb3393eac5cc88915b">&#9670;&nbsp;</a></span>implicitHeader()</h2>
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<td class="memname">int16_t SX128x::implicitHeader </td>
<td>(</td>
<td class="paramtype">size_t&#160;</td>
<td class="paramname"><em>len</em></td><td>)</td>
<td></td>
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</table>
</div><div class="memdoc">
<p>Set implicit header mode for future reception/transmission. </p>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#a1463f0769b815e95d789fd708dc2ffe6">&#9670;&nbsp;</a></span>invertIQ()</h2>
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<td class="memname">int16_t SX128x::invertIQ </td>
<td>(</td>
<td class="paramtype">bool&#160;</td>
<td class="paramname"><em>enable</em></td><td>)</td>
<td></td>
</tr>
</table>
</td>
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<span class="mlabels"><span class="mlabel">virtual</span></span> </td>
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<p>Enable/disable inversion of the I and Q signals. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">enable</td><td>QI inversion enabled (true) or disabled (false); </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#a11b4c6d0bf3ae7b9ca04e9434180feab">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#a95637e8addc48b0e1c30c2cf6f54354a">&#9670;&nbsp;</a></span>randomByte()</h2>
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<td class="memname">uint8_t SX128x::randomByte </td>
<td>(</td>
<td class="paramname"></td><td>)</td>
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<p>Dummy random method, to ensure <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a> compatibility. </p>
<dl class="section return"><dt>Returns</dt><dd>Always returns 0. </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#a1a5985308904261dd431f373d47ddee4">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#aceeb18acbfedb20c6cf60e26d5275793">&#9670;&nbsp;</a></span>readBit()</h2>
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<td class="memname">void SX128x::readBit </td>
<td>(</td>
<td class="paramtype">uint32_t&#160;</td>
<td class="paramname"><em>pin</em></td><td>)</td>
<td></td>
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<p>Dummy method, to ensure <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a> compatibility. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">pin</td><td>Ignored. </td></tr>
</table>
</dd>
</dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#acda61fc99cfa373153c50c78380ed885">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#a3563453988a83d22dd07d4691543a300">&#9670;&nbsp;</a></span>readData() <span class="overload">[1/2]</span></h2>
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<p>Reads data that was received after calling startReceive method. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">data</td><td>Pointer to array to save the received binary data. </td></tr>
<tr><td class="paramname">len</td><td>Number of bytes that will be read. When set to 0, the packet length will be retrieved automatically. When more bytes than received are requested, only the number of bytes requested will be returned. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#a94bca43258b09217fb476a2d8db784bb">&#9670;&nbsp;</a></span>readData() <span class="overload">[2/2]</span></h2>
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<td class="memname">int16_t SX128x::readData </td>
<td>(</td>
<td class="paramtype">uint8_t *&#160;</td>
<td class="paramname"><em>data</em>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">size_t&#160;</td>
<td class="paramname"><em>len</em>&#160;</td>
</tr>
<tr>
<td></td>
<td>)</td>
<td></td><td></td>
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<p>Reads data received after calling startReceive method. When the packet length is not known in advance, getPacketLength method must be called BEFORE calling readData! </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">data</td><td>Pointer to array to save the received binary data. </td></tr>
<tr><td class="paramname">len</td><td>Number of bytes that will be read. When set to 0, the packet length will be retrieved automatically. When more bytes than received are requested, only the number of bytes requested will be returned. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#a3563453988a83d22dd07d4691543a300">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#ab82617fa3fa9f21d4cd427314ecc4af8">&#9670;&nbsp;</a></span>receive() <span class="overload">[1/2]</span></h2>
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<td class="memname">int16_t PhysicalLayer::receive</td>
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<p>Binary receive method. Must be implemented in module class. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">data</td><td>Pointer to array to save the received binary data. </td></tr>
<tr><td class="paramname">len</td><td>Number of bytes that will be received. Must be known in advance for binary transmissions. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#a32b7b674d63c36f15b7f58a2cb837a99">&#9670;&nbsp;</a></span>receive() <span class="overload">[2/2]</span></h2>
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<td class="memname">int16_t SX128x::receive </td>
<td>(</td>
<td class="paramtype">uint8_t *&#160;</td>
<td class="paramname"><em>data</em>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">size_t&#160;</td>
<td class="paramname"><em>len</em>&#160;</td>
</tr>
<tr>
<td></td>
<td>)</td>
<td></td><td></td>
</tr>
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</td>
<td class="mlabels-right">
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<p>Blocking binary receive method. Overloads for string-based transmissions are implemented in <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a>. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">data</td><td>Binary data to be sent. </td></tr>
<tr><td class="paramname">len</td><td>Number of bytes to send. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#ab82617fa3fa9f21d4cd427314ecc4af8">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#aff7d86352c98771595375e17d19a2a97">&#9670;&nbsp;</a></span>receiveDirect()</h2>
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<td class="memname">int16_t SX128x::receiveDirect </td>
<td>(</td>
<td class="paramname"></td><td>)</td>
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<p>Starts direct mode reception. Only implemented for <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a> compatibility, as SX128x series does not support direct mode reception. Will always return RADIOLIB_ERR_UNKNOWN. </p>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#ad9d1dbb2041e87af5a80e12f125a60e6">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#a2643ce22176293631fea2169f5e68e66">&#9670;&nbsp;</a></span>reset()</h2>
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<td class="memname">int16_t SX128x::reset </td>
<td>(</td>
<td class="paramtype">bool&#160;</td>
<td class="paramname"><em>verify</em> = <code>true</code></td><td>)</td>
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<p>Reset method. Will reset the chip to the default state using RST pin. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">verify</td><td>Whether correct module startup should be verified. When set to true, RadioLib will attempt to verify the module has started correctly by repeatedly issuing setStandby command. Enabled by default. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#a89cc916f5cd5cdfbd331bb15f8a3d5cb">&#9670;&nbsp;</a></span>scanChannel()</h2>
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<td class="memname">int16_t SX128x::scanChannel </td>
<td>(</td>
<td class="paramname"></td><td>)</td>
<td></td>
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<p>Performs scan for LoRa transmission in the current channel. Detects both preamble and payload. </p>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#abd9e39cc745acbf084cfa0d3f4d10718">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#a9346490a6c56edcff2e12ae0369a8df5">&#9670;&nbsp;</a></span>setAccessAddress()</h2>
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<td class="memname">int16_t SX128x::setAccessAddress </td>
<td>(</td>
<td class="paramtype">uint32_t&#160;</td>
<td class="paramname"><em>addr</em></td><td>)</td>
<td></td>
</tr>
</table>
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<p>Sets BLE access address. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">addr</td><td>BLE access address. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#ae93c99c85deb950fe9bc7101142b5f6a">&#9670;&nbsp;</a></span>setBandwidth()</h2>
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<td class="memname">int16_t SX128x::setBandwidth </td>
<td>(</td>
<td class="paramtype">float&#160;</td>
<td class="paramname"><em>bw</em></td><td>)</td>
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<p>Sets LoRa bandwidth. Allowed values are 203.125, 406.25, 812.5 and 1625.0 kHz. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">bw</td><td>LoRa bandwidth to be set in kHz. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#a465ac114dbe6844069b5cb989f87c3ee">&#9670;&nbsp;</a></span>setBitRate()</h2>
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<td class="memname">int16_t SX128x::setBitRate </td>
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<td class="paramtype">float&#160;</td>
<td class="paramname"><em>br</em></td><td>)</td>
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<p>Sets FSK or FLRC bit rate. Allowed values are 125, 250, 400, 500, 800, 1000, 1600 and 2000 kbps (for FSK modem) or 260, 325, 520, 650, 1000 and 1300 (for FLRC modem). </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">br</td><td>FSK/FLRC bit rate to be set in kbps. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#aedd39ad84b45c6392087b12d59192d8c">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#a9da544e4a6120f73a078b46c6138505a">&#9670;&nbsp;</a></span>setCodingRate()</h2>
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<td class="memname">int16_t SX128x::setCodingRate </td>
<td>(</td>
<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>cr</em>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">bool&#160;</td>
<td class="paramname"><em>longInterleaving</em> = <code>false</code>&#160;</td>
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<tr>
<td></td>
<td>)</td>
<td></td><td></td>
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<p>Sets LoRa coding rate denominator. Allowed values range from 5 to 8. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">cr</td><td>LoRa coding rate denominator to be set. </td></tr>
<tr><td class="paramname">longInterleaving</td><td>Whether to enable long interleaving mode. Not available for coding rate 4/7, defaults to false. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#aa4b1e0b96347011522e053f30202c0fe">&#9670;&nbsp;</a></span>setCRC()</h2>
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<td class="memname">int16_t SX128x::setCRC </td>
<td>(</td>
<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>len</em>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint32_t&#160;</td>
<td class="paramname"><em>initial</em> = <code>0x1D0F</code>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint16_t&#160;</td>
<td class="paramname"><em>polynomial</em> = <code>0x1021</code>&#160;</td>
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<td></td>
<td>)</td>
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<p>Sets CRC configuration. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">len</td><td>CRC length in bytes, Allowed values are 1, 2 or 3, set to 0 to disable CRC. </td></tr>
<tr><td class="paramname">initial</td><td>Initial CRC value. Defaults to 0x1D0F (CCIT CRC), not available for LoRa modem. </td></tr>
<tr><td class="paramname">polynomial</td><td>Polynomial for CRC calculation. Defaults to 0x1021 (CCIT CRC), not available for LoRa or BLE modem. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#a99491c705e88dddc820f884b778f1660">&#9670;&nbsp;</a></span>setDataShaping()</h2>
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<td class="memname">int16_t SX128x::setDataShaping </td>
<td>(</td>
<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>sh</em></td><td>)</td>
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<p>Sets time-bandwidth product of Gaussian filter applied for shaping. Allowed values are RADIOLIB_SHAPING_0_5 or RADIOLIB_SHAPING_1_0. Set to RADIOLIB_SHAPING_NONE to disable data shaping. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">sh</td><td>Time-bandwidth product of Gaussian filter to be set. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#aeba04366a0cf05ff3d8227c4f7c8e1e9">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#a0759fb31b3ce5bf1c832259c9c2245ed">&#9670;&nbsp;</a></span>setDio1Action()</h2>
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<td class="memname">void SX128x::setDio1Action </td>
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<td class="paramtype">void(*)(void)&#160;</td>
<td class="paramname"><em>func</em></td><td>)</td>
<td></td>
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<p>Sets interrupt service routine to call when DIO1 activates. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">func</td><td>ISR to call. </td></tr>
</table>
</dd>
</dl>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#aff1b549077b9d752f53bf9dfc6840236">&#9670;&nbsp;</a></span>setDirectAction()</h2>
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<td class="memname">void SX128x::setDirectAction </td>
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<td class="paramtype">void(*)(void)&#160;</td>
<td class="paramname"><em>func</em></td><td>)</td>
<td></td>
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<p>Dummy method, to ensure <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a> compatibility. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">func</td><td>Ignored. </td></tr>
</table>
</dd>
</dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#abf96cf4f3cb4c82d44be581dbe615966">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#a8720a388d2cd10fac3112b89f4a80947">&#9670;&nbsp;</a></span>setEncoding()</h2>
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<td class="memname">int16_t SX128x::setEncoding </td>
<td>(</td>
<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>encoding</em></td><td>)</td>
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<p>Sets transmission encoding. Serves only as alias for <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a> compatibility. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">encoding</td><td>Encoding to be used. Set to 0 for NRZ, and 2 for whitening. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#acb45b2342400a03a914a91d2ac7fb488">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#a2043ef7bb806968b9d9dcb64561ca371">&#9670;&nbsp;</a></span>setFrequency()</h2>
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<td class="memname">int16_t SX128x::setFrequency </td>
<td>(</td>
<td class="paramtype">float&#160;</td>
<td class="paramname"><em>freq</em></td><td>)</td>
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<p>Sets carrier frequency. Allowed values are in range from 2400.0 to 2500.0 MHz. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">freq</td><td>Carrier frequency to be set in MHz. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#a8a194b0fbb66b1a953288bf3b9478d6e">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#a26d0d02e5e53a3172df9208fa343a3f1">&#9670;&nbsp;</a></span>setFrequencyDeviation()</h2>
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<td class="memname">int16_t SX128x::setFrequencyDeviation </td>
<td>(</td>
<td class="paramtype">float&#160;</td>
<td class="paramname"><em>freqDev</em></td><td>)</td>
<td></td>
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<p>Sets FSK frequency deviation. Allowed values range from 0.0 to 3200.0 kHz. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">freqDev</td><td>FSK frequency deviation to be set in kHz. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#a2f4f9b428d9ea9af886ca85e5088ed7b">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#a3837662441a9eb3f0a71f4f667db9e91">&#9670;&nbsp;</a></span>setGainControl()</h2>
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<td class="memname">int16_t SX128x::setGainControl </td>
<td>(</td>
<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>gain</em> = <code>0</code></td><td>)</td>
<td></td>
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<p>Enables or disables receiver manual gain control. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">gain</td><td>Use 0 for automatic gain, 1 for minimum gain and up to 13 for maximum gain. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
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<h2 class="memtitle"><span class="permalink"><a href="#a6e45fbfaec7063e52e188f47a3a585a5">&#9670;&nbsp;</a></span>setHighSensitivityMode()</h2>
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<td class="memname">int16_t SX128x::setHighSensitivityMode </td>
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<td class="paramtype">bool&#160;</td>
<td class="paramname"><em>enable</em></td><td>)</td>
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<p>Enables or disables receiver high sensitivity mode. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">enable</td><td>True to enable and false to disable. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#ad988727ea6c9b4e11562651d312514c0">&#9670;&nbsp;</a></span>setOutputPower()</h2>
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<td class="memname">int16_t SX128x::setOutputPower </td>
<td>(</td>
<td class="paramtype">int8_t&#160;</td>
<td class="paramname"><em>pwr</em></td><td>)</td>
<td></td>
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<p>Sets output power. Allowed values are in range from -18 to 13 dBm. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">pwr</td><td>Output power to be set in dBm. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#ad2286dc78dbf8e3084f38e9159b99ae5">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#a697880c42c4b1def04c8fe7f3a023ffb">&#9670;&nbsp;</a></span>setPacketReceivedAction()</h2>
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<td class="memname">void SX128x::setPacketReceivedAction </td>
<td>(</td>
<td class="paramtype">void(*)(void)&#160;</td>
<td class="paramname"><em>func</em></td><td>)</td>
<td></td>
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<p>Sets interrupt service routine to call when a packet is received. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">func</td><td>ISR to call. </td></tr>
</table>
</dd>
</dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#aec928bb26f65752aa20cd236fbabb95c">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#acaa115bb9eb3d325d6baba1f578d678b">&#9670;&nbsp;</a></span>setPacketSentAction()</h2>
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<td class="memname">void SX128x::setPacketSentAction </td>
<td>(</td>
<td class="paramtype">void(*)(void)&#160;</td>
<td class="paramname"><em>func</em></td><td>)</td>
<td></td>
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<p>Sets interrupt service routine to call when a packet is sent. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">func</td><td>ISR to call. </td></tr>
</table>
</dd>
</dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#a32b512b34f6575b2109ae3c3f35d1369">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#a1984a405262f155f16a4759c5f6b0133">&#9670;&nbsp;</a></span>setPreambleLength()</h2>
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<td class="memname">int16_t SX128x::setPreambleLength </td>
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<td class="paramtype">uint32_t&#160;</td>
<td class="paramname"><em>preambleLength</em></td><td>)</td>
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<p>Sets preamble length for currently active modem. Allowed values range from 1 to 65535. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">preambleLength</td><td>Preamble length to be set in symbols (LoRa) or bits (FSK/BLE/FLRC). </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#a5ba683fbc4a46418ce3736f224fb55f2">&#9670;&nbsp;</a></span>setRfSwitchPins()</h2>
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<td class="memname">void SX128x::setRfSwitchPins </td>
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<td class="paramtype">uint32_t&#160;</td>
<td class="paramname"><em>rxEn</em>, </td>
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<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint32_t&#160;</td>
<td class="paramname"><em>txEn</em>&#160;</td>
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<p>Some modules contain external RF switch controlled by pins. This function gives RadioLib control over those pins to automatically switch between various modes: When idle both pins will be LOW, during TX the <code>txEn</code> pin will be HIGH, during RX the <code>rxPin</code> will be HIGH. </p>
<p>Radiolib will automatically set the pin mode and value of these pins, so do not control them from the sketch.</p>
<p>When more than two pins or more control over the output values are needed, use the <a class="el" href="class_s_x128x.html#ad5789bd27d46b24f54aac9ca55ec9958" title="Some modules contain external RF switch controlled by pins. This function gives RadioLib control over...">setRfSwitchTable()</a> function.</p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">rxEn</td><td>RX enable pin. </td></tr>
<tr><td class="paramname">txEn</td><td>TX enable pin. </td></tr>
</table>
</dd>
</dl>
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<h2 class="memtitle"><span class="permalink"><a href="#ad5789bd27d46b24f54aac9ca55ec9958">&#9670;&nbsp;</a></span>setRfSwitchTable()</h2>
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<td class="memname">void SX128x::setRfSwitchTable </td>
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<td class="paramtype">const uint32_t(&amp;)&#160;</td>
<td class="paramname"><em>pins</em>[Module::RFSWITCH_MAX_PINS], </td>
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<td class="paramkey"></td>
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<td class="paramtype">const <a class="el" href="struct_module_1_1_rf_switch_mode__t.html">Module::RfSwitchMode_t</a>&#160;</td>
<td class="paramname"><em>table</em>[]&#160;</td>
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<p>Some modules contain external RF switch controlled by pins. This function gives RadioLib control over those pins to automatically switch between various modes. </p>
<p>Radiolib will automatically set the pin mode and value of these pins, so do not control them from the sketch.</p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">pins</td><td>A reference to an array of pins to control. This should always be an array of 3 elements. If you need less pins, use RADIOLIB_NC for the unused elements.</td></tr>
<tr><td class="paramname">table</td><td>A reference to an array of pin values to use for each supported mode. Each element is an RfSwitchMode_T struct that lists the mode for which it applies and the values for each of the pins passed in the pins argument respectively.</td></tr>
</table>
</dd>
</dl>
<p>The <code>pins</code> array will be copied into the <a class="el" href="class_module.html" title="Implements all common low-level methods to control the wireless module. Every module class contains o...">Module</a> object, so the original array can be deallocated after this call. However, a reference to the <code>table</code> array will be stored, so that array must remain valid as long RadioLib is being used.</p>
<p>The <code>mode</code> field in each table row should normally use any of the <code>MODE_*</code> constants from the <a class="el" href="class_module.html#a5a67b3a63420d762ecba9448671c99bf" title="Constants to use in a mode table set be setRfSwitchTable. These constants work for most radios,...">Module::OpMode_t</a> enum. However, some radios support additional modes and will define their own OpMode_t enum.</p>
<p>The length of the table is variable (to support radios that add additional modes), so the table must always be terminated with the special END_OF_MODE_TABLE value.</p>
<p>Normally all modes should be listed in the table, but for some radios, modes can be omitted to indicate they are not supported (e.g. when a radio has a high power and low power TX mode but external circuitry only supports low power). If applicable, this is documented in the radio class itself.</p>
<h4>Example</h4>
<p>For example, on a board that has an RF switch with an enable pin connected to PA0 and a TX/RX select pin connected to PA1:</p>
<div class="fragment"><div class="line"><span class="comment">// In global scope, define the pin array and mode table</span></div>
<div class="line"><span class="keyword">static</span> <span class="keyword">const</span> uint32_t rfswitch_pins[] =</div>
<div class="line"> {PA0, PA1, RADIOLIB_NC};</div>
<div class="line"><span class="keyword">static</span> <span class="keyword">const</span> <a class="code" href="struct_module_1_1_rf_switch_mode__t.html">Module::RfSwitchMode_t</a> rfswitch_table[] = {</div>
<div class="line"> {<a class="code" href="class_module.html#a5a67b3a63420d762ecba9448671c99bfa505acc66c5e0faa83d2216aca5f3e671">Module::MODE_IDLE</a>, {LOW, LOW}},</div>
<div class="line"> {<a class="code" href="class_module.html#a5a67b3a63420d762ecba9448671c99bfa7664838bb0818663f55b3354fec8a18f">Module::MODE_RX</a>, {HIGH, LOW}},</div>
<div class="line"> {<a class="code" href="class_module.html#a5a67b3a63420d762ecba9448671c99bfa269f4bc8ba3eb3d8568feb7b2decf571">Module::MODE_TX</a>, {HIGH, HIGH}},</div>
<div class="line"> Module::END_OF_MODE_TABLE,</div>
<div class="line">};</div>
<div class="line"> </div>
<div class="line"><span class="keywordtype">void</span> setup() {</div>
<div class="line"> ...</div>
<div class="line"> <span class="comment">// Then somewhere in setup, pass them to radiolib</span></div>
<div class="line"> radio.setRfSwitchTable(rfswitch_pins, rfswitch_table);</div>
<div class="line"> ...</div>
<div class="line">}</div>
<div class="ttc" id="aclass_module_html_a5a67b3a63420d762ecba9448671c99bfa269f4bc8ba3eb3d8568feb7b2decf571"><div class="ttname"><a href="class_module.html#a5a67b3a63420d762ecba9448671c99bfa269f4bc8ba3eb3d8568feb7b2decf571">Module::MODE_TX</a></div><div class="ttdeci">@ MODE_TX</div><div class="ttdoc">Transmission mode.</div><div class="ttdef"><b>Definition:</b> Module.h:114</div></div>
<div class="ttc" id="aclass_module_html_a5a67b3a63420d762ecba9448671c99bfa505acc66c5e0faa83d2216aca5f3e671"><div class="ttname"><a href="class_module.html#a5a67b3a63420d762ecba9448671c99bfa505acc66c5e0faa83d2216aca5f3e671">Module::MODE_IDLE</a></div><div class="ttdeci">@ MODE_IDLE</div><div class="ttdoc">Idle mode.</div><div class="ttdef"><b>Definition:</b> Module.h:108</div></div>
<div class="ttc" id="aclass_module_html_a5a67b3a63420d762ecba9448671c99bfa7664838bb0818663f55b3354fec8a18f"><div class="ttname"><a href="class_module.html#a5a67b3a63420d762ecba9448671c99bfa7664838bb0818663f55b3354fec8a18f">Module::MODE_RX</a></div><div class="ttdeci">@ MODE_RX</div><div class="ttdoc">Receive mode.</div><div class="ttdef"><b>Definition:</b> Module.h:111</div></div>
<div class="ttc" id="astruct_module_1_1_rf_switch_mode__t_html"><div class="ttname"><a href="struct_module_1_1_rf_switch_mode__t.html">Module::RfSwitchMode_t</a></div><div class="ttdoc">Description of RF switch pin states for a single mode. See setRfSwitchTable for details.</div><div class="ttdef"><b>Definition:</b> Module.h:84</div></div>
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<h2 class="memtitle"><span class="permalink"><a href="#ae435f57132f76f4283abb870176acf54">&#9670;&nbsp;</a></span>setSpreadingFactor()</h2>
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<td class="memname">int16_t SX128x::setSpreadingFactor </td>
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<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>sf</em></td><td>)</td>
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<p>Sets LoRa spreading factor. Allowed values range from 5 to 12. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">sf</td><td>LoRa spreading factor to be set. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
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<h2 class="memtitle"><span class="permalink"><a href="#a0efa595867624a54153d693d16f9f731">&#9670;&nbsp;</a></span>setSyncWord() <span class="overload">[1/2]</span></h2>
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<td class="memname">int16_t SX128x::setSyncWord </td>
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<td class="paramtype">uint8_t *&#160;</td>
<td class="paramname"><em>syncWord</em>, </td>
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<td class="paramkey"></td>
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<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>len</em>&#160;</td>
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<p>Sets FSK/FLRC sync word in the form of array of up to 5 bytes (FSK). For FLRC modem, the sync word must be exactly 4 bytes long. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">syncWord</td><td>Sync word to be set. </td></tr>
<tr><td class="paramname">len</td><td>Sync word length in bytes. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<dl class="todo"><dt><b><a class="el" href="todo.html#_todo000008">Todo:</a></b></dt><dd>add support for multiple sync words </dd></dl>
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<h2 class="memtitle"><span class="permalink"><a href="#a1bef6b6f3058be6b1681c78334342bc1">&#9670;&nbsp;</a></span>setSyncWord() <span class="overload">[2/2]</span></h2>
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<td class="memname">int16_t SX128x::setSyncWord </td>
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<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>syncWord</em>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>controlBits</em> = <code>0x44</code>&#160;</td>
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<p>Sets LoRa sync word. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">syncWord</td><td>LoRa sync word to be set. </td></tr>
<tr><td class="paramname">controlBits</td><td>Undocumented control bits, required for compatibility purposes. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
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<h2 class="memtitle"><span class="permalink"><a href="#a8b3eea268f21bf911b6eaf37c5eb0b5f">&#9670;&nbsp;</a></span>setWhitening()</h2>
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<td class="memname">int16_t SX128x::setWhitening </td>
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<p>Sets whitening parameters, not available for LoRa or FLRC modem. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">enabled</td><td>Set to true to enable whitening. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
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<h2 class="memtitle"><span class="permalink"><a href="#a1d15e13e15b060ddbbe84257d5fcb66f">&#9670;&nbsp;</a></span>sleep()</h2>
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<td class="memname">int16_t SX128x::sleep </td>
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<td class="paramtype">bool&#160;</td>
<td class="paramname"><em>retainConfig</em> = <code>true</code></td><td>)</td>
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<p>Sets the module to sleep mode. To wake the device up, call <a class="el" href="class_s_x128x.html#a2be8cc6c3b61b59cb6a6ca4f6a030b45" title="Sets the module to standby mode (overload for PhysicalLayer compatibility, uses 13 MHz RC oscillator)...">standby()</a>. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">retainConfig</td><td>Set to true to retain configuration and data buffer or to false to discard current configuration and data buffer. Defaults to true. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
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<h2 class="memtitle"><span class="permalink"><a href="#a2be8cc6c3b61b59cb6a6ca4f6a030b45">&#9670;&nbsp;</a></span>standby() <span class="overload">[1/2]</span></h2>
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<td class="memname">int16_t SX128x::standby </td>
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<p>Sets the module to standby mode (overload for <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a> compatibility, uses 13 MHz RC oscillator). </p>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#acbcaf6aefcb77a354797e66222fe5018">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#a389aab93e24ec8c7cc9c14de90e5dfae">&#9670;&nbsp;</a></span>standby() <span class="overload">[2/2]</span></h2>
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<td class="memname">int16_t SX128x::standby </td>
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<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>mode</em>, </td>
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<td class="paramkey"></td>
<td></td>
<td class="paramtype">bool&#160;</td>
<td class="paramname"><em>wakeup</em> = <code>false</code>&#160;</td>
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<p>Sets the module to standby mode. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">mode</td><td>Oscillator to be used in standby mode. Can be set to RADIOLIB_SX128X_STANDBY_RC (13 MHz RC oscillator) or RADIOLIB_SX128X_STANDBY_XOSC (52 MHz external crystal oscillator). </td></tr>
<tr><td class="paramname">wakeup</td><td>Whether to force the module to wake up. Setting to true will immediately attempt to wake up the module. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
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<h2 class="memtitle"><span class="permalink"><a href="#afe700968c1e02e335c389b59d950ca39">&#9670;&nbsp;</a></span>startReceive() <span class="overload">[1/2]</span></h2>
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<p>Interrupt-driven receive method with default parameters. Implemented for compatibility with <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a>. </p>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#a18664ad615c5507ff1690baaca90b094">PhysicalLayer</a>.</p>
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<h2 class="memtitle"><span class="permalink"><a href="#a776286e4a267d1d71531bc9df7aa4276">&#9670;&nbsp;</a></span>startReceive() <span class="overload">[2/2]</span></h2>
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<td class="memname">int16_t SX128x::startReceive </td>
<td>(</td>
<td class="paramtype">uint16_t&#160;</td>
<td class="paramname"><em>timeout</em>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint16_t&#160;</td>
<td class="paramname"><em>irqFlags</em> = <code>RADIOLIB_SX128X_IRQ_RX_DEFAULT</code>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint16_t&#160;</td>
<td class="paramname"><em>irqMask</em> = <code>RADIOLIB_SX128X_IRQ_RX_DONE</code>, </td>
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<td class="paramkey"></td>
<td></td>
<td class="paramtype">size_t&#160;</td>
<td class="paramname"><em>len</em> = <code>0</code>&#160;</td>
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<p>Interrupt-driven receive method. DIO1 will be activated when full packet is received. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">timeout</td><td>Raw timeout value, expressed as multiples of 15.625 us. Defaults to RADIOLIB_SX128X_RX_TIMEOUT_INF for infinite timeout (Rx continuous mode), set to RADIOLIB_SX128X_RX_TIMEOUT_NONE for no timeout (Rx single mode). If timeout other than infinite is set, signal will be generated on DIO1.</td></tr>
<tr><td class="paramname">irqFlags</td><td>Sets the IRQ flags, defaults to RADIOLIB_SX128X_IRQ_RX_DEFAULT. </td></tr>
<tr><td class="paramname">irqMask</td><td>Sets the mask of IRQ flags that will trigger DIO1, defaults to RADIOLIB_SX128X_IRQ_RX_DONE. </td></tr>
<tr><td class="paramname">len</td><td>Only for <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a> compatibility, not used. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
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<h2 class="memtitle"><span class="permalink"><a href="#a923654706eff5118ef6e84214e837f27">&#9670;&nbsp;</a></span>startTransmit() <span class="overload">[1/3]</span></h2>
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<p>Interrupt-driven Arduino String transmit method. Unlike the standard transmit method, this one is non-blocking. Interrupt pin will be activated when transmission finishes. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">str</td><td>C-string that will be transmitted. </td></tr>
<tr><td class="paramname">addr</td><td>Node address to transmit the packet to. Only used in FSK mode. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
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<h2 class="memtitle"><span class="permalink"><a href="#ad59e37ce0606dc8051e40be9d14cfec3">&#9670;&nbsp;</a></span>startTransmit() <span class="overload">[2/3]</span></h2>
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<td class="memname">int16_t PhysicalLayer::startTransmit</td>
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<p>Interrupt-driven binary transmit method. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">data</td><td>Binary data that will be transmitted. </td></tr>
<tr><td class="paramname">len</td><td>Length of binary data to transmit (in bytes). </td></tr>
<tr><td class="paramname">addr</td><td>Node address to transmit the packet to. Only used in FSK mode. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
</div>
<a id="aef221e7d463c5228ce00ed6934512848"></a>
<h2 class="memtitle"><span class="permalink"><a href="#aef221e7d463c5228ce00ed6934512848">&#9670;&nbsp;</a></span>startTransmit() <span class="overload">[3/3]</span></h2>
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<td class="memname">int16_t SX128x::startTransmit </td>
<td>(</td>
<td class="paramtype">uint8_t *&#160;</td>
<td class="paramname"><em>data</em>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">size_t&#160;</td>
<td class="paramname"><em>len</em>, </td>
</tr>
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<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>addr</em> = <code>0</code>&#160;</td>
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<td></td>
<td>)</td>
<td></td><td></td>
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<td class="mlabels-right">
<span class="mlabels"><span class="mlabel">override</span><span class="mlabel">virtual</span></span> </td>
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<p>Interrupt-driven binary transmit method. Overloads for string-based transmissions are implemented in <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a>. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">data</td><td>Binary data to be sent. </td></tr>
<tr><td class="paramname">len</td><td>Number of bytes to send. </td></tr>
<tr><td class="paramname">addr</td><td>Address to send the data to. Unsupported, compatibility only. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#ad59e37ce0606dc8051e40be9d14cfec3">PhysicalLayer</a>.</p>
</div>
</div>
<a id="a492b2d057dd803c3884fa1adc8e22534"></a>
<h2 class="memtitle"><span class="permalink"><a href="#a492b2d057dd803c3884fa1adc8e22534">&#9670;&nbsp;</a></span>transmit() <span class="overload">[1/3]</span></h2>
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<td class="memname">int16_t PhysicalLayer::transmit</td>
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<p>C-string transmit method. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">str</td><td>C-string that will be transmitted. </td></tr>
<tr><td class="paramname">addr</td><td>Node address to transmit the packet to. Only used in FSK mode. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
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<h2 class="memtitle"><span class="permalink"><a href="#a3dd42f8d5569487ea74f004ca652a709">&#9670;&nbsp;</a></span>transmit() <span class="overload">[2/3]</span></h2>
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<td class="memname">int16_t PhysicalLayer::transmit</td>
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<p>Binary transmit method. Must be implemented in module class. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">data</td><td>Binary data that will be transmitted. </td></tr>
<tr><td class="paramname">len</td><td>Length of binary data to transmit (in bytes). </td></tr>
<tr><td class="paramname">addr</td><td>Node address to transmit the packet to. Only used in FSK mode. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
</div>
</div>
<a id="af253e1e45361de74aefd01a7c73c28f5"></a>
<h2 class="memtitle"><span class="permalink"><a href="#af253e1e45361de74aefd01a7c73c28f5">&#9670;&nbsp;</a></span>transmit() <span class="overload">[3/3]</span></h2>
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<td class="memname">int16_t SX128x::transmit </td>
<td>(</td>
<td class="paramtype">uint8_t *&#160;</td>
<td class="paramname"><em>data</em>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">size_t&#160;</td>
<td class="paramname"><em>len</em>, </td>
</tr>
<tr>
<td class="paramkey"></td>
<td></td>
<td class="paramtype">uint8_t&#160;</td>
<td class="paramname"><em>addr</em> = <code>0</code>&#160;</td>
</tr>
<tr>
<td></td>
<td>)</td>
<td></td><td></td>
</tr>
</table>
</td>
<td class="mlabels-right">
<span class="mlabels"><span class="mlabel">override</span><span class="mlabel">virtual</span></span> </td>
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<p>Blocking binary transmit method. Overloads for string-based transmissions are implemented in <a class="el" href="class_physical_layer.html" title="Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....">PhysicalLayer</a>. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">data</td><td>Binary data to be sent. </td></tr>
<tr><td class="paramname">len</td><td>Number of bytes to send. </td></tr>
<tr><td class="paramname">addr</td><td>Address to send the data to. Unsupported, compatibility only. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#a3dd42f8d5569487ea74f004ca652a709">PhysicalLayer</a>.</p>
</div>
</div>
<a id="a53892566b0259d348158efe3c3c3601a"></a>
<h2 class="memtitle"><span class="permalink"><a href="#a53892566b0259d348158efe3c3c3601a">&#9670;&nbsp;</a></span>transmitDirect()</h2>
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<td class="memname">int16_t SX128x::transmitDirect </td>
<td>(</td>
<td class="paramtype">uint32_t&#160;</td>
<td class="paramname"><em>frf</em> = <code>0</code></td><td>)</td>
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<p>Starts direct mode transmission. </p>
<dl class="params"><dt>Parameters</dt><dd>
<table class="params">
<tr><td class="paramname">frf</td><td>Raw RF frequency value. Defaults to 0, required for quick frequency shifts in RTTY. </td></tr>
</table>
</dd>
</dl>
<dl class="section return"><dt>Returns</dt><dd><a class="el" href="group__status__codes.html">Status Codes</a> </dd></dl>
<p>Reimplemented from <a class="el" href="class_physical_layer.html#aa4c99ac794ee653c2061be4201724b65">PhysicalLayer</a>.</p>
</div>
</div>
<hr/>The documentation for this class was generated from the following files:<ul>
<li>src/modules/SX128x/<a class="el" href="_s_x128x_8h_source.html">SX128x.h</a></li>
<li>src/modules/SX128x/SX128x.cpp</li>
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