310 lines
11 KiB
C++
310 lines
11 KiB
C++
/**********************************************************************************************************
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10kHz to 225MHz VFO / RF Generator with Si5351 and Arduino Nano, with Intermediate Frequency (IF) offset
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(+ or -), RX/TX Selector for QRP Transceivers, Band Presets and Bargraph S-Meter. See the schematics for
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wiring and README.txt for details. By J. CesarSound - ver 2.0 - Feb/2021.
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***********************************************************************************************************/
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//Libraries
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#include <Wire.h> //IDE Standard
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#include <Rotary.h> //Ben Buxton https://github.com/brianlow/Rotary
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#include <si5351.h> //Etherkit https://github.com/etherkit/Si5351Arduino
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#include <Adafruit_GFX.h> //Adafruit GFX https://github.com/adafruit/Adafruit-GFX-Library
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#include <Adafruit_SSD1306.h> //Adafruit SSD1306 https://github.com/adafruit/Adafruit_SSD1306
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//User preferences
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//------------------------------------------------------------------------------------------------------------
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#define IF 0 //Enter your IF frequency, ex: 455 = 455kHz, 10700 = 10.7MHz, 0 = to direct convert receiver or RF generator, + will add and - will subtract IF offfset.
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#define BAND_INIT 7 //Enter your initial Band (1-21) at startup, ex: 1 = Freq Generator, 2 = 800kHz (MW), 7 = 7.2MHz (40m), 11 = 14.1MHz (20m).
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#define XT_CAL_F 33000 //Si5351 calibration factor, adjust to get exatcly 10MHz. Increasing this value will decreases the frequency and vice versa.
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#define S_GAIN 303 //Adjust the sensitivity of Signal Meter A/D input: 101 = 500mv; 202 = 1v; 303 = 1.5v; 404 = 2v; 505 = 2.5v; 1010 = 5v (max).
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#define tunestep A0 //The pin used by tune step push button.
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#define band A1 //The pin used by band selector push button.
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#define rx_tx A2 //The pin used by RX / TX selector switch, RX = switch open, TX = switch closed to GND. When in TX, the IF value is not considered.
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#define adc A3 //The pin used by Signal Meter A/D input.
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#define rotary1 2 //First pin for rotary encoder.
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#define rotary2 3 //Second pin for rotary encoder.
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//------------------------------------------------------------------------------------------------------------
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Rotary r = Rotary(rotary1, rotary2);
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Adafruit_SSD1306 display = Adafruit_SSD1306(128, 64, &Wire);
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Si5351 si5351(0x60); //Si5351 I2C Address 0x60
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unsigned long freq, freqold, fstep;
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long interfreq = IF, interfreqold = 0;
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long cal = XT_CAL_F;
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unsigned int smval;
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byte encoder = 1;
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byte stp, n = 1;
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byte count, x, xo;
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bool sts = 0;
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unsigned int period = 100;
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unsigned long time_now = 0;
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void set_frequency(short dir) {
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if (encoder == 1) { //Up/Down frequency
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if (dir == 1) freq = freq + fstep;
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if (freq >= 225000000) freq = 225000000;
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if (dir == -1) freq = freq - fstep;
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if (fstep == 1000000 && freq <= 1000000) freq = 1000000;
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else if (freq < 10000) freq = 10000;
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}
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if (encoder == 1) { //Up/Down graph tune pointer
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if (dir == 1) n = n + 1;
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if (n > 42) n = 1;
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if (dir == -1) n = n - 1;
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if (n < 1) n = 42;
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}
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}
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ISR(PCINT2_vect) {
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char result = r.process();
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if (result == DIR_CW) set_frequency(1);
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else if (result == DIR_CCW) set_frequency(-1);
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}
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void tunegen() {
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si5351.set_freq((freq + (interfreq * 1000ULL)) * 100ULL, SI5351_CLK0);
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}
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void displayfreq() {
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unsigned int m = freq / 1000000;
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unsigned int k = (freq % 1000000) / 1000;
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unsigned int h = (freq % 1000) / 1;
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display.clearDisplay();
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display.setTextSize(2);
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char buffer[15] = "";
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if (m < 1) {
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display.setCursor(41, 1); sprintf(buffer, "%003d.%003d", k, h);
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}
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else if (m < 100) {
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display.setCursor(5, 1); sprintf(buffer, "%2d.%003d.%003d", m, k, h);
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}
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else if (m >= 100) {
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unsigned int h = (freq % 1000) / 10;
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display.setCursor(5, 1); sprintf(buffer, "%2d.%003d.%02d", m, k, h);
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}
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display.print(buffer);
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}
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void setstep() {
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switch (stp) {
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case 1: stp = 2; fstep = 1; break;
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case 2: stp = 3; fstep = 10; break;
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case 3: stp = 4; fstep = 1000; break;
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case 4: stp = 5; fstep = 5000; break;
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case 5: stp = 6; fstep = 10000; break;
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case 6: stp = 1; fstep = 1000000; break;
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}
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}
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void bandpresets() {
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switch (count) {
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case 1: freq = 100000; tunegen(); break;
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case 2: freq = 800000; break;
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case 3: freq = 1800000; break;
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case 4: freq = 3650000; break;
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case 5: freq = 4985000; break;
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case 6: freq = 6180000; break;
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case 7: freq = 7200000; break;
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case 8: freq = 10000000; break;
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case 9: freq = 11780000; break;
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case 10: freq = 13630000; break;
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case 11: freq = 14100000; break;
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case 12: freq = 15000000; break;
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case 13: freq = 17655000; break;
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case 14: freq = 21525000; break;
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case 15: freq = 27015000; break;
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case 16: freq = 28400000; break;
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case 17: freq = 50000000; break;
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case 18: freq = 100000000; break;
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case 19: freq = 130000000; break;
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case 20: freq = 144000000; break;
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case 21: freq = 220000000; break;
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}
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si5351.pll_reset(SI5351_PLLA);
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stp = 4; setstep();
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}
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void inc_preset() {
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count++;
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if (count > 21) count = 1;
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bandpresets();
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delay(50);
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}
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void bandlist() {
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display.setTextSize(2);
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display.setCursor(0, 25);
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if (count == 1) display.print("GEN"); if (count == 2) display.print("MW"); if (count == 3) display.print("160m"); if (count == 4) display.print("80m");
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if (count == 5) display.print("60m"); if (count == 6) display.print("49m"); if (count == 7) display.print("40m"); if (count == 8) display.print("31m");
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if (count == 9) display.print("25m"); if (count == 10) display.print("22m"); if (count == 11) display.print("20m"); if (count == 12) display.print("19m");
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if (count == 13) display.print("16m"); if (count == 14) display.print("13m"); if (count == 15) display.print("11m"); if (count == 16) display.print("10m");
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if (count == 17) display.print("6m"); if (count == 18) display.print("WFM"); if (count == 19) display.print("AIR"); if (count == 20) display.print("2m");
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if (count == 21) display.print("1m");
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if (count == 1) interfreq = 0; else if (!sts) interfreq = IF;
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}
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void drawbargraph() {
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byte y = map(n, 1, 42, 1, 14);
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display.setTextSize(1);
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//Pointer
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display.setCursor(0, 48); display.print("TU");
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switch (y) {
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case 1: display.fillRect(15, 48, 2, 6, WHITE); break;
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case 2: display.fillRect(20, 48, 2, 6, WHITE); break;
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case 3: display.fillRect(25, 48, 2, 6, WHITE); break;
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case 4: display.fillRect(30, 48, 2, 6, WHITE); break;
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case 5: display.fillRect(35, 48, 2, 6, WHITE); break;
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case 6: display.fillRect(40, 48, 2, 6, WHITE); break;
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case 7: display.fillRect(45, 48, 2, 6, WHITE); break;
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case 8: display.fillRect(50, 48, 2, 6, WHITE); break;
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case 9: display.fillRect(55, 48, 2, 6, WHITE); break;
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case 10: display.fillRect(60, 48, 2, 6, WHITE); break;
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case 11: display.fillRect(65, 48, 2, 6, WHITE); break;
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case 12: display.fillRect(70, 48, 2, 6, WHITE); break;
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case 13: display.fillRect(75, 48, 2, 6, WHITE); break;
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case 14: display.fillRect(80, 48, 2, 6, WHITE); break;
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}
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//Bargraph
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display.setCursor(0, 57); display.print("SM");
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switch (x) {
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case 14: display.fillRect(80, 58, 2, 6, WHITE);
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case 13: display.fillRect(75, 58, 2, 6, WHITE);
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case 12: display.fillRect(70, 58, 2, 6, WHITE);
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case 11: display.fillRect(65, 58, 2, 6, WHITE);
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case 10: display.fillRect(60, 58, 2, 6, WHITE);
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case 9: display.fillRect(55, 58, 2, 6, WHITE);
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case 8: display.fillRect(50, 58, 2, 6, WHITE);
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case 7: display.fillRect(45, 58, 2, 6, WHITE);
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case 6: display.fillRect(40, 58, 2, 6, WHITE);
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case 5: display.fillRect(35, 58, 2, 6, WHITE);
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case 4: display.fillRect(30, 58, 2, 6, WHITE);
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case 3: display.fillRect(25, 58, 2, 6, WHITE);
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case 2: display.fillRect(20, 58, 2, 6, WHITE);
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case 1: display.fillRect(15, 58, 2, 6, WHITE);
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}
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}
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void layout() {
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display.setTextColor(WHITE);
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display.drawLine(0, 20, 127, 20, WHITE);
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display.drawLine(0, 43, 127, 43, WHITE);
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display.drawLine(105, 24, 105, 39, WHITE);
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display.drawLine(87, 24, 87, 39, WHITE);
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display.drawLine(87, 48, 87, 63, WHITE);
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display.drawLine(15, 55, 82, 55, WHITE);
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display.setTextSize(1);
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display.setCursor(59, 23);
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display.print("STEP");
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display.setCursor(54, 33);
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if (stp == 2) display.print(" 1Hz"); if (stp == 3) display.print(" 10Hz"); if (stp == 4) display.print(" 1kHz");
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if (stp == 5) display.print(" 5kHz"); if (stp == 6) display.print("10kHz"); if (stp == 1) display.print(" 1MHz");
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display.setTextSize(1);
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display.setCursor(92, 48);
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display.print("IF:");
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display.setCursor(92, 57);
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display.print(interfreq);
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display.print("k");
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display.setTextSize(1);
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display.setCursor(110, 23);
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if (freq < 1000000) display.print("kHz");
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if (freq >= 1000000) display.print("MHz");
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display.setCursor(110, 33);
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if (interfreq == 0) display.print("VFO");
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if (interfreq != 0) display.print("L O");
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display.setCursor(91, 28);
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if (!sts) display.print("RX"); if (!sts) interfreq = IF;
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if (sts) display.print("TX"); if (sts) interfreq = 0;
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bandlist(); drawbargraph();
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display.display();
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}
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void sgnalread() {
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smval = analogRead(adc); x = map(smval, 0, S_GAIN, 1, 14); if (x > 14) x = 14;
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}
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void statup_text() {
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display.setTextSize(1); display.setCursor(13, 18);
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display.print("Si5351 VFO/RF GEN");
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display.setCursor(6, 40);
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display.print("JCR RADIO - Ver 2.0");
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display.display(); delay(2000);
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}
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void setup() {
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Wire.begin();
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display.begin(SSD1306_SWITCHCAPVCC, 0x3C);
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display.clearDisplay();
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display.setTextColor(WHITE);
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display.display();
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pinMode(2, INPUT_PULLUP);
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pinMode(3, INPUT_PULLUP);
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pinMode(tunestep, INPUT_PULLUP);
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pinMode(band, INPUT_PULLUP);
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pinMode(rx_tx, INPUT_PULLUP);
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//statup_text(); //If you hang on startup, comment
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si5351.init(SI5351_CRYSTAL_LOAD_8PF, 0, 0);
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si5351.set_correction(cal, SI5351_PLL_INPUT_XO);
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si5351.drive_strength(SI5351_CLK0, SI5351_DRIVE_8MA);
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si5351.output_enable(SI5351_CLK0, 1); //1 - Enable / 0 - Disable CLK
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si5351.output_enable(SI5351_CLK1, 0);
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si5351.output_enable(SI5351_CLK2, 0);
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PCICR |= (1 << PCIE2);
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PCMSK2 |= (1 << PCINT18) | (1 << PCINT19);
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sei();
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count = BAND_INIT;
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bandpresets();
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stp = 4;
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setstep();
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}
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void loop() {
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if (freqold != freq) {
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time_now = millis();
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tunegen();
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freqold = freq;
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}
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if (interfreqold != interfreq) {
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time_now = millis();
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tunegen();
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interfreqold = interfreq;
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}
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if (xo != x) {
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time_now = millis();
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xo = x;
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}
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if (digitalRead(tunestep) == LOW) {
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time_now = (millis() + 300);
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setstep();
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delay(300);
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}
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if (digitalRead(band) == LOW) {
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time_now = (millis() + 300);
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inc_preset();
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delay(300);
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}
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if (digitalRead(rx_tx) == LOW) {
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time_now = (millis() + 300);
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sts = 1;
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} else sts = 0;
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if ((time_now + period) > millis()) {
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displayfreq();
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layout();
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}
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sgnalread();
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} |