working DTMF
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@@ -1,20 +1,17 @@
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/* Hamshield
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* Example: HandyTalkie
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* This is a simple example to demonstrate HamShield receive
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* and transmit functionality.
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* Example: DTMF
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* This is a simple example to demonstrate how to ues DTMF.
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*
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* Connect the HamShield to your Arduino. Screw the antenna
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* into the HamShield RF jack. Plug a pair of headphones into
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* the HamShield. Connect the Arduino to wall power and then
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* to your computer via USB. After uploading this program to
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* your Arduino, open the Serial Monitor. Press the button on
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* the HamShield to begin setup. After setup is complete, type
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* your desired Tx/Rx frequency, in hertz, into the bar at the
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* top of the Serial Monitor and click the "Send" button.
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* To test with another HandyTalkie (HT), key up on your HT
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* and make sure you can hear it through the headphones
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* attached to the HamShield. Key up on the HamShield by
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* holding the button.
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*/
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* into the HamShield RF jack.
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* Connect the Arduino to wall power and then to your computer
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* via USB. After uploading this program to your Arduino, open
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* the Serial Monitor. Press the button on the HamShield to
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* begin setup. After setup is complete, type in a DTMF value
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* (0-9, A, B, C, D, *, #) and hit enter. The corresponding
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* DTMF tones will be transmitted. The sketch will also print
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* any received DTMF tones to the screen.
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**/
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#include <HamShield.h>
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@@ -55,16 +52,13 @@ void setup() {
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// verify connection
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Serial.println("Testing device connections...");
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Serial.println(radio.testConnection() ? "RDA radio connection successful" : "RDA radio connection failed");
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Serial.println(radio.testConnection() ? "HamShield connection successful" : "HamShield connection failed");
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// initialize device
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Serial.println("Initializing I2C devices...");
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radio.initialize(); // initializes automatically for UHF 12.5kHz channel
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Serial.println("setting default Radio configuration");
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radio.dangerMode();
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// set frequency
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Serial.println("setting squelch");
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radio.setSQHiThresh(-10);
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@@ -76,20 +70,16 @@ void setup() {
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radio.setSQOn();
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//radio.setSQOff();
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// set frequency
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Serial.println("changing frequency");
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freq = 415000;
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freq = 420000;
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radio.frequency(freq);
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// set RX volume to minimum to reduce false positives on DTMF rx
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radio.setVolume1(0);
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radio.setVolume1(4);
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radio.setVolume2(0);
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// set to receive
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radio.setModeReceive();
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Serial.print("config register is: ");
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Serial.println(radio.readCtlReg());
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Serial.println(radio.readRSSI());
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radio.setRfPower(0);
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@@ -97,7 +87,7 @@ void setup() {
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pinMode(LED_PIN, OUTPUT);
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// set up DTMF
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radio.enableDTMFReceive(); // enabled DTMF
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radio.enableDTMFReceive();
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Serial.println("ready");
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}
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@@ -117,8 +107,11 @@ void loop() {
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} else {
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Serial.println('?'); // invalid code
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}
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while (radio.getDTMFSample() == 1) {
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// wait until this code is done
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int j = 0;
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while (j < 4) {
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if (radio.getDTMFSample() == 0) {
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j++;
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}
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delay(10);
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}
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}
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@@ -130,7 +123,7 @@ void loop() {
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if (c == '#') {
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code = 0xF;
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} else if (c=='*') {
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code == 0xE;
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code = 0xE;
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} else if (c >= 'A' && c <= 'D') {
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code = c - 'A' + 0xA;
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} else if (c >= '0' && c <= '9') {
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@@ -141,27 +134,25 @@ void loop() {
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return;
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}
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// set tones
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radio.setDTMFCode(code);
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// start transmitting
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radio.setDTMFCode(code); // set first
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radio.setTxSourceTones();
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radio.setModeTransmit();
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// TODO: may need to set DTMF enable again
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delay(300); // wait for TX to come to full power
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// wait until done
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// wait until ready
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while (radio.getDTMFTxActive() != 1) {
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// wait until we're ready for a new code
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delay(10);
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}
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radio.setDTMFCode(code);
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// TODO: fix timing
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//while (radio.getDTMFTxActive() != 0) {
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while (radio.getDTMFTxActive() != 0) {
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// wait until this code is done
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delay(1000);
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//}
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delay(10);
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}
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// done with tone
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radio.setModeReceive();
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radio.setTxSourceMic();
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}
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}
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}
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