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AD9850 DDS Signal Generator Module
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AD9850 DDS Signal Generator Module

Modulo generatore di segnale DDS AD9850 (Direct Digital Synthesis). Genera onde sinusoidali e quadre da circa 0 a 40 MHz usando un clock di riferimento integrato da 125 MHz. La frequency tuning word viene caricata tramite una semplice interfaccia seriale (W_CLK, FQ_UD, DATA, RESET) oppure tramite un bus parallelo a 8 bit (D0-D7). Uscite sinusoidali ZOUT1/ZOUT2, uscite quadre/comparatore QOUT1/QOUT2. Alimentazione a 5V.

Protocolli: serial, parallel Larghezza: 27.5 mm

Pinout — AD9850 DDS Signal Generator Module

Pin Segnale Descrizione
ZOUT2 analog Sine-wave DDS analog output from the AD9850 output network.
ZOUT1 analog Sine-wave DDS analog output from the AD9850 output network.
QOUT2 digital Square-wave comparator output derived from the DDS sine signal.
QOUT1 digital Square-wave comparator output derived from the DDS sine signal.
GND ground Ground reference for power, logic control, and output signals.
RESET reset AD9850 reset control input; use to initialize the DDS state.
DATA data Serial programming data input for loading frequency and control words.
FU_UD digital Frequency update strobe; latches loaded tuning word into the DDS.
W_CLK clock Serial word clock input for shifting programming data into the AD9850.
VCC power Module power input, typically 5 V for AD9850 operation.
GND.1 ground Ground reference for power, logic control, and output signals.
D7 data Parallel programming data bus bit 7 input for the AD9850.
D6 data Parallel programming data bus bit 6 input for the AD9850.
D5 data Parallel programming data bus bit 5 input for the AD9850.
D4 data Parallel programming data bus bit 4 input for the AD9850.
D3 data Parallel programming data bus bit 3 input for the AD9850.
D2 data Parallel programming data bus bit 2 input for the AD9850.
D1 data Parallel programming data bus bit 1 input for the AD9850.
D0 data Parallel programming data bus bit 0 input for the AD9850.
VCC.1 power Module power input, typically 5 V for AD9850 operation.

Note di cablaggio

Alimenta il modulo con 5V (VCC) e GND. Controllo seriale (consigliato, 4 fili): W_CLK (word clock), FQ_UD (frequency update / latch), DATA (dati seriali) e RESET, ciascuno verso un pin digitale libero del microcontrollore. Nota: su questo modulo il pin di update è etichettato FU_UD (= FQ_UD). In alternativa, si può usare il bus parallelo a 8 bit D0-D7 più W_CLK/FQ_UD/RESET. Uscite: ZOUT1/ZOUT2 forniscono la sinusoide, QOUT1/QOUT2 l’uscita quadra/comparatore. Il modulo ha un proprio clock di riferimento da 125 MHz integrato; non servono componenti di protezione esterni per schede a 5V. Su una scheda a 3,3V (ESP32/ESP8266), collegare le linee di controllo tramite un level shifter.

Schema di cablaggio di esempio — AD9850 DDS Signal Generator Module

Da A Filo
board:5V x1:VCC red
board:GND x1:GND black
board:D8 x1:W_CLK green
board:D9 x1:FU_UD blue
board:D10 x1:DATA yellow
board:D11 x1:RESET purple

Codice Arduino di esempio — AD9850 DDS Signal Generator Module

Questo esempio è stato scritto e verificato in compilazione per arduino-uno. Codey Online lo adatta a qualsiasi altra scheda supportata.

// Canonical beginner example for the AD9850 DDS Signal Generator Module
// This sketch sends a serial programming word to set an output frequency.
// Wiring used:
//   D8  -> W_CLK
//   D9  -> FU_UD
//   D10 -> DATA
//   D11 -> RESET
//   5V  -> VCC
//   GND -> GND

const int PIN_W_CLK = 8;
const int PIN_FQ_UD = 9;   // Module label is FU_UD
const int PIN_DATA  = 10;
const int PIN_RESET = 11;

const unsigned long CLOCK_HZ = 125000000UL; // AD9850 reference clock on the module

void pulsePin(int pin) {
  digitalWrite(pin, HIGH);
  delayMicroseconds(1);
  digitalWrite(pin, LOW);
  delayMicroseconds(1);
}

void ad9850Reset() {
  digitalWrite(PIN_RESET, HIGH);
  delayMicroseconds(1);
  digitalWrite(PIN_RESET, LOW);
  delayMicroseconds(1);
  pulsePin(PIN_W_CLK);
  pulsePin(PIN_FQ_UD);
}

void ad9850SetFrequency(double frequencyHz) {
  // DDS tuning word = frequency * 2^32 / clock
  uint32_t tuningWord = (uint32_t)((frequencyHz * 4294967296.0) / (double)CLOCK_HZ);

  // Send 32-bit tuning word, LSB first
  for (int i = 0; i < 32; i++) {
    digitalWrite(PIN_DATA, (tuningWord >> i) & 0x01);
    pulsePin(PIN_W_CLK);
  }

  // Control byte: 0x00 for normal 28-bit frequency mode
  for (int i = 0; i < 8; i++) {
    digitalWrite(PIN_DATA, LOW);
    pulsePin(PIN_W_CLK);
  }

  // Latch the new frequency
  pulsePin(PIN_FQ_UD);
}

void setup() {
  pinMode(PIN_W_CLK, OUTPUT);
  pinMode(PIN_FQ_UD, OUTPUT);
  pinMode(PIN_DATA, OUTPUT);
  pinMode(PIN_RESET, OUTPUT);

  digitalWrite(PIN_W_CLK, LOW);
  digitalWrite(PIN_FQ_UD, LOW);
  digitalWrite(PIN_DATA, LOW);
  digitalWrite(PIN_RESET, LOW);

  Serial.begin(9600);
  while (!Serial) {
    ;
  }

  Serial.println(F("AD9850 DDS generator starting..."));
  ad9850Reset();

  // Set a beginner-friendly test frequency
  ad9850SetFrequency(1000000.0); // 1 MHz
  Serial.println(F("Output frequency set to 1 MHz"));
}

void loop() {
  // Nothing to do here for the canonical example.
  delay(1000);
}

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