kopia lustrzana https://github.com/RPiks/pico-hf-oscillator
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README.md
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@ -10,7 +10,7 @@ precise PLL digital frequency oscillator of the portion of HF radio spectrum
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The library provides 1 Hz frequency resolution in initialize function. This
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resolution can be easily increased to 23 millihertz, which is limited by
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24-bit register which is used in algorithm.
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Currently the upper freq. limit is about 9.8 MHz and it is achieved only using
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Currently the upper freq. limit is about 9.4 MHz and it is achieved only using
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pi pico overclocking to 270MHz.
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# Phased locked loop in C
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@ -20,17 +20,25 @@ The DCO uses phase locked loop principle programmed in C.
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The DCO does *NOT* use any floating point operations - all time-critical
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instructions run in 1 CPU cycle.
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# Dual-core
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The DCO uses extensively the secodary core of the pico. The first one is for
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your iseas how to modulate the DCO to obtain desired signal.
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# Radio transmitters
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Owing to the meager frequency step, it is possible to use 3, 5, or 7th harmonics
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of generated frequency. Such solution completely cover all HF and low band up to
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65.8 MHz.
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of generated frequency. The practical resolution will be quite the same. Such
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solution completely cover all HF and low band up to 65.8 MHz.
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# For what?
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This is an experimental project of amateur radio class and it is devised by me on
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the free will base in order to experiment with QRP narrowband digital modes.
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I am licensed radio amateur who is extremely keen on experiments in the area
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of the digital modes on HF. My QRZ page is https://www.qrz.com/db/R2BDY
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# Feedback
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I gracefully appreciate any thoughts or comments on that matter.
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I strongly appreciate if you use this project as a part of your one.
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I have plans of building a transceiver on the base of this library.
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# Quick-start
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1. Install Raspberry Pi Pico SDK. Configure environment variables. Test whether
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