RadioLibSmol/examples/RF69_Receive/RF69_Receive.ino
2018-07-11 17:26:21 +02:00

71 lines
1.8 KiB
C++

/*
* KiteLib RF69 Receive Example
*
* This example receives packets using RF69 FSK radio module.
*/
// include the library
#include <KiteLib.h>
// RF69 module is in slot A on the shield
RF69 rf = Kite.ModuleA;
// create empty instance of Packet class
Packet pack;
void setup() {
Serial.begin(9600);
// initialize RF69 with default settings
Serial.print(F("[RF69] Initializing ... "));
// carrier frequency: 434.0 MHz
// bit rate: 48.0 kbps
// Rx bandwidth: 125.0 kHz
// frequency deviation: 50.0 kHz
// output power: 13 dBm
byte state = rf.begin();
if(state == ERR_NONE) {
Serial.println(F("success!"));
} else {
Serial.print(F("failed, code 0x"));
Serial.println(state, HEX);
while(true);
}
}
void loop() {
Serial.print(F("[RF69] Waiting for incoming transmission ... "));
// wait for single packet
byte state = rf.receive(pack);
if(state == ERR_NONE) {
// packet was successfully received
Serial.println(F("success!"));
// print the source of the packet
Serial.print(F("[RF69] Source:\t\t"));
Serial.println(pack.getSourceStr());
// print the destination of the packet
Serial.print(F("[RF69] Destination:\t"));
Serial.println(pack.getDestinationStr());
// print the length of the packet
Serial.print(F("[RF69] Length:\t\t"));
Serial.println(pack.length);
// print the data of the packet
Serial.print(F("[RF69] Data:\t\t"));
Serial.println(pack.data);
} else if(state == ERR_RX_TIMEOUT) {
// timeout occurred while waiting for a packet
Serial.println(F("timeout!"));
} else if(state == ERR_CRC_MISMATCH) {
// packet was received, but is malformed
Serial.println(F("CRC error!"));
}
}