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Initial attempt at TI tag reading.
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commit
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1 changed files with 104 additions and 38 deletions
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@ -103,10 +103,10 @@ void AcquireRawAdcSamples125k(BOOL at134khz)
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{
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{
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if(at134khz) {
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if(at134khz) {
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 88); //134.8Khz
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 88); //134.8Khz
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER | FPGA_LF_READER_USE_134_KHZ);
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER);
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} else {
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} else {
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 95); //125Khz
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 95); //125Khz
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER | FPGA_LF_READER_USE_125_KHZ);
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER);
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}
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}
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// Connect the A/D to the peak-detected low-frequency path.
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// Connect the A/D to the peak-detected low-frequency path.
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@ -160,10 +160,10 @@ void ModThenAcquireRawAdcSamples125k(int delay_off,int period_0,int period_1,BYT
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if(at134khz) {
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if(at134khz) {
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 88); //134.8Khz
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 88); //134.8Khz
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER | FPGA_LF_READER_USE_134_KHZ);
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER);
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} else {
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} else {
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 95); //125Khz
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 95); //125Khz
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER | FPGA_LF_READER_USE_125_KHZ);
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER);
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}
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}
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// Give it a bit of time for the resonant antenna to settle.
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// Give it a bit of time for the resonant antenna to settle.
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@ -180,10 +180,10 @@ void ModThenAcquireRawAdcSamples125k(int delay_off,int period_0,int period_1,BYT
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SpinDelayUs(delay_off);
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SpinDelayUs(delay_off);
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if(at134khz) {
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if(at134khz) {
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 88); //134.8Khz
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 88); //134.8Khz
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER | FPGA_LF_READER_USE_134_KHZ);
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER);
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} else {
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} else {
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 95); //125Khz
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 95); //125Khz
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER | FPGA_LF_READER_USE_125_KHZ);
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER);
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}
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}
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LED_D_ON();
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LED_D_ON();
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if(*(command++) == '0')
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if(*(command++) == '0')
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@ -196,16 +196,78 @@ void ModThenAcquireRawAdcSamples125k(int delay_off,int period_0,int period_1,BYT
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SpinDelayUs(delay_off);
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SpinDelayUs(delay_off);
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if(at134khz) {
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if(at134khz) {
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 88); //134.8Khz
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 88); //134.8Khz
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER | FPGA_LF_READER_USE_134_KHZ);
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER);
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} else {
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} else {
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 95); //125Khz
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 95); //125Khz
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER | FPGA_LF_READER_USE_125_KHZ);
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER);
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}
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}
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// now do the read
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// now do the read
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DoAcquisition125k(at134khz);
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DoAcquisition125k(at134khz);
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}
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}
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//-----------------------------------------------------------------------------
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// Read a TI-type tag. We assume that the tag has already been illuminated,
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// and that the exciting signal has been turned off. That means that we just
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// acquire the `one-bit DAC' bits from the comparator.
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//-----------------------------------------------------------------------------
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void AcquireTiType(void)
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{
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int i;
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int n = 4000;
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// clear buffer
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memset(BigBuf,0,sizeof(BigBuf));
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// Set up the synchronous serial port
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PIO_DISABLE = (1<<GPIO_SSC_DIN);
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PIO_PERIPHERAL_A_SEL = (1<<GPIO_SSC_DIN);
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SSC_CONTROL = SSC_CONTROL_RESET;
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SSC_CONTROL = SSC_CONTROL_RX_ENABLE | SSC_CONTROL_TX_ENABLE;
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// Sample at 2 Mbit/s, so TI tags are 16.2 vs. 14.9 clocks long
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// 48/2 = 24 MHz clock must be divided by 12
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SSC_CLOCK_DIVISOR = 12;
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SSC_RECEIVE_CLOCK_MODE = SSC_CLOCK_MODE_SELECT(0);
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SSC_RECEIVE_FRAME_MODE = SSC_FRAME_MODE_BITS_IN_WORD(32) | SSC_FRAME_MODE_MSB_FIRST;
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SSC_TRANSMIT_CLOCK_MODE = 0;
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SSC_TRANSMIT_FRAME_MODE = 0;
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i = 0;
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for(;;) {
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if(SSC_STATUS & SSC_STATUS_RX_READY) {
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BigBuf[i] = SSC_RECEIVE_HOLDING; // store 32 bit values in buffer
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i++; if(i >= n) return;
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}
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WDT_HIT();
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}
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}
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void AcquireRawBitsTI(void)
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{
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LED_D_ON();
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// TI tags charge at 134.2Khz
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 88); //134.8Khz
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER);
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// Charge TI tag for 50ms.
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SpinDelay(50);
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LED_D_OFF();
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LED_A_ON();
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// Place FPGA in passthrough mode so as to stop driving the LF coil,
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// in this mode the CROSS_LO line connects to SSP_DIN
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_PASSTHRU);
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// get TI tag data into the buffer
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AcquireTiType();
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FpgaWriteConfWord(FPGA_MAJOR_MODE_OFF);
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LED_A_OFF();
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}
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//-----------------------------------------------------------------------------
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//-----------------------------------------------------------------------------
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// Read an ADC channel and block till it completes, then return the result
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// Read an ADC channel and block till it completes, then return the result
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// in ADC units (0 to 1023). Also a routine to average 32 samples and
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// in ADC units (0 to 1023). Also a routine to average 32 samples and
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@ -288,7 +350,7 @@ void MeasureAntennaTuning(void)
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c.cmd = CMD_MEASURED_ANTENNA_TUNING;
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c.cmd = CMD_MEASURED_ANTENNA_TUNING;
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c.ext1 = (vLf125 << 0) | (vLf134 << 16);
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c.ext1 = (vLf125 << 0) | (vLf134 << 16);
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c.ext2 = vHf;
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c.ext2 = vHf;
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c.ext3 = peakf | (peakv << 16);
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c.ext3 = peakf | (peakv << 16);
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UsbSendPacket((BYTE *)&c, sizeof(c));
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UsbSendPacket((BYTE *)&c, sizeof(c));
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}
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}
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@ -452,7 +514,7 @@ static void CmdHIDdemodFSK(int findone, int *high, int *low, int ledcontrol)
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DWORD hi=0, lo=0;
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DWORD hi=0, lo=0;
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 95); //125Khz
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FpgaSendCommand(FPGA_CMD_SET_DIVISOR, 95); //125Khz
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER | FPGA_LF_READER_USE_125_KHZ);
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FpgaWriteConfWord(FPGA_MAJOR_MODE_LF_READER);
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// Connect the A/D to the peak-detected low-frequency path.
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// Connect the A/D to the peak-detected low-frequency path.
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SetAdcMuxFor(GPIO_MUXSEL_LOPKD);
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SetAdcMuxFor(GPIO_MUXSEL_LOPKD);
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@ -698,6 +760,10 @@ void UsbPacketReceived(BYTE *packet, int len)
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ModThenAcquireRawAdcSamples125k(c->ext1,c->ext2,c->ext3,c->d.asBytes);
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ModThenAcquireRawAdcSamples125k(c->ext1,c->ext2,c->ext3,c->d.asBytes);
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break;
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break;
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case CMD_ACQUIRE_RAW_BITS_TI_TYPE:
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AcquireRawBitsTI();
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break;
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case CMD_ACQUIRE_RAW_ADC_SAMPLES_ISO_15693:
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case CMD_ACQUIRE_RAW_ADC_SAMPLES_ISO_15693:
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AcquireRawAdcSamplesIso15693();
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AcquireRawAdcSamplesIso15693();
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break;
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break;
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