124 lines
3.7 KiB
Arduino
124 lines
3.7 KiB
Arduino
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/*
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RadioLib Si443x Settings Example
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This example shows how to change all the properties of RF69 radio.
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RadioLib currently supports the following settings:
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- pins (SPI slave select, nIRQ, shutdown)
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- carrier frequency
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- bit rate
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- receiver bandwidth
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- frequency deviation
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- output power during transmission
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- sync word
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For default module settings, see the wiki page
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https://github.com/jgromes/RadioLib/wiki/Default-configuration#si443xrfm2x
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For full API reference, see the GitHub Pages
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https://jgromes.github.io/RadioLib/
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*/
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// include the library
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#include <RadioLib.h>
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// Si4432 has the following connections:
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// nSEL pin: 10
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// nIRQ pin: 2
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// SDN pin: 9
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Si4432 radio1 = new Module(10, 2, 9);
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// Si4432 has the following connections:
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// nSEL pin: 8
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// nIRQ pin: 3
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// SDN pin: 7
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Si4432 radio2 = new Module(8, 3, 7);
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// or using RadioShield
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// https://github.com/jgromes/RadioShield
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//Si4432 radio3 = RadioShield.ModuleB;
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void setup() {
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Serial.begin(9600);
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// initialize Si4432 with default settings
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Serial.print(F("[Si4432] Initializing ... "));
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int state = radio1.begin();
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if (state == RADIOLIB_ERR_NONE) {
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Serial.println(F("success!"));
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} else {
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Serial.print(F("failed, code "));
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Serial.println(state);
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while (true);
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}
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// initialize Si4432 with non-default settings
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Serial.print(F("[Si4432] Initializing ... "));
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// carrier frequency: 868.0 MHz
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// bit rate: 200.0 kbps
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// frequency deviation: 60.0 kHz
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// Rx bandwidth: 335.5 kHz
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// output power: 17 dBm
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// preamble length: 32 bits
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state = radio2.begin(868.0, 200.0, 60.0, 335.5, 17, 32);
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if (state == RADIOLIB_ERR_NONE) {
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Serial.println(F("success!"));
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} else {
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Serial.print(F("failed, code "));
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Serial.println(state);
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while (true);
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}
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// you can also change the settings at runtime
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// and check if the configuration was changed successfully
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// set carrier frequency to 433.5 MHz
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if (radio1.setFrequency(433.5) == RADIOLIB_ERR_INVALID_FREQUENCY) {
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Serial.println(F("[Si4432] Selected frequency is invalid for this module!"));
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while (true);
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}
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// set bit rate to 100.0 kbps
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state = radio1.setBitRate(100.0);
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if (state == RADIOLIB_ERR_INVALID_BIT_RATE) {
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Serial.println(F("[Si4432] Selected bit rate is invalid for this module!"));
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while (true);
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} else if (state == RADIOLIB_ERR_INVALID_BIT_RATE_BW_RATIO) {
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Serial.println(F("[Si4432] Selected bit rate to bandwidth ratio is invalid!"));
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Serial.println(F("[Si4432] Increase receiver bandwidth to set this bit rate."));
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while (true);
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}
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// set receiver bandwidth to 284.8 kHz
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state = radio1.setRxBandwidth(284.8);
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if (state == RADIOLIB_ERR_INVALID_RX_BANDWIDTH) {
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Serial.println(F("[Si4432] Selected receiver bandwidth is invalid for this module!"));
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while (true);
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}
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// set frequency deviation to 10.0 kHz
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if (radio1.setFrequencyDeviation(10.0) == RADIOLIB_ERR_INVALID_FREQUENCY_DEVIATION) {
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Serial.println(F("[Si4432] Selected frequency deviation is invalid for this module!"));
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while (true);
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}
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// set output power to 2 dBm
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if (radio1.setOutputPower(2) == RADIOLIB_ERR_INVALID_OUTPUT_POWER) {
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Serial.println(F("[Si4432] Selected output power is invalid for this module!"));
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while (true);
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}
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// up to 4 bytes can be set as sync word
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// set sync word to 0x01234567
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uint8_t syncWord[] = {0x01, 0x23, 0x45, 0x67};
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if (radio1.setSyncWord(syncWord, 4) == RADIOLIB_ERR_INVALID_SYNC_WORD) {
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Serial.println(F("[Si4432] Selected sync word is invalid for this module!"));
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while (true);
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}
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Serial.println(F("[Si4432] All settings changed successfully!"));
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}
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void loop() {
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// nothing here
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}
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