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69 lines
1.9 KiB
69 lines
1.9 KiB
4 years ago
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// TestFFT1024iq.ino for Teensy 3.x, 4.x
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// Bob Larkin 3 March 2021// Rev to include xAxis control. 6 Mar 2021
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// Generate Sin and Cosine pair and input to IQ FFT.
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// Serial Print out powers of all 1024 bins in
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// dB relative to Sine Wave Full Scale
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// Public Domain
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#include "OpenAudio_ArduinoLibrary.h"
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#include "AudioStream_F32.h"
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// GUItool: begin automatically generated code
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AudioSynthSineCosine_F32 sine_cos1; //xy=76,532
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AudioAnalyzeFFT1024_IQ_F32 FFT1024iq1; //xy=243,532
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AudioOutputI2S_F32 audioOutI2S1; //xy=246,591
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AudioConnection_F32 patchCord1(sine_cos1, 0, FFT1024iq1, 0);
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AudioConnection_F32 patchCord2(sine_cos1, 1, FFT1024iq1, 1);
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// GUItool: end automatically generated code
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void setup(void) {
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float* pPwr;
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Serial.begin(9600);
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delay(1000);
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AudioMemory_F32(50);
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Serial.println("FFT1024IQ Test");
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sine_cos1.amplitude(1.0f); // Initialize Waveform Generator
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// Pick T3.6 bin center
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//sine_cos1.frequency(689.33);
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// or pick T4.x bin center
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sine_cos1.frequency(689.0625f);
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// or pick any old frequency
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//sine_cos1.frequency(7100.0);
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// elect the output format
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FFT1024iq1.setOutputType(FFT_DBFS);
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// Select the wndow function
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//FFT1024iq1.windowFunction(AudioWindowNone);
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//FFT1024iq1.windowFunction(AudioWindowHanning1024);
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//FFT1024iq1.windowFunction(AudioWindowKaiser1024, 55.0f);
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FFT1024iq1.windowFunction(AudioWindowBlackmanHarris1024);
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// Uncomment to Serial print window function
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//float* pw = FFT1024iq1.getWindow(); // Print window
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//for (int i=0; i<512; i++) Serial.println(pw[i], 4);
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// xAxis, bit 0 left/right; bit 1 low to high; default 0X03
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FFT1024iq1.setXAxis(0X03);
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delay(1000);
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// Print output, once
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if( FFT1024iq1.available() ) {
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pPwr = FFT1024iq1.getData();
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for(int i=0; i<1024; i++)
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Serial.println(*(pPwr + i), 8 );
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}
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Serial.println("");
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}
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void loop(void) {
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}
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