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DAC5687MPZPEP датащи(PDF) 59 Page - Texas Instruments |
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DAC5687MPZPEP датащи(HTML) 59 Page - Texas Instruments |
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59 / 75 page ![]() www.ti.com Location of the Spurious Signals fSIG/fDAC −0.5 −0.4 −0.3 −0.2 −0.1 −0.0 0.1 0.2 0.3 0.4 0.5 0.0 0.1 0.2 0.3 0.4 0.5 G026 fSIG fSIG − fDAC/2 (a) Complex Output in X2 Mode (b) Real Output in X2 Mode fSIG/fDAC 0.00 0.05 0.10 0.15 0.20 0.25 0.30 0.35 0.40 0.45 0.50 0.0 0.1 0.2 0.3 0.4 0.5 G027 fSIG fSIG − fDAC/2 DAC5687-EP SGLS333 – JUNE 2006 To calculate the non-harmonic clock related spurious signals for a particular condition, we first determine the location of the spurious signals and then the amplitude. The location of the spurious signals is determined by the DAC5687 output frequency (fSIG) and whether the output is used as a dual output complex signal to be fed to an analog quadrature modulator (AQM) or as a real IF signal from a single DAC output. Figure 68 shows the location of spurious signals for X2 mode as a function of fSIG/fDAC. For complex outputs, the spurious frequencies cover a range of –0.5 × f DAC to 0.5 × fDAC, with the negative complex frequency indicating that the spurious signal will fall in the opposite sideband at the output of the QAM from the wanted signal. For the real output, the phase information for the spurious signal is lost, and therefore what was a negative frequency for the complex output is a positive frequency for a real output. For the X2 mode, there is one spurious frequency with an absolute frequency less than 0.5 × f DAC. For a complex output in X2 mode, the spurious signal will always be offset fDAC/2 from the wanted signal at fSIG– fDAC/2. For a real output, as fSIG approaches fDAC/4, the spurious signal frequency falls at fDAC/2 – fSIG, which will also approach fDAC/4. Figure 68. Frequency of Clock Mixing Spurious Images in X2 Mode Figure 69 shows the location of spurious signals for X4 and X4L mode as a function of fSIG/fDAC. The addition of the fDAC/4 clock frequency for the first interpolation filter creates three new spurious signals. For a complex output, the nearest spurious signals are fDAC/4 offset from fSIG. For a real output, the signal due to fSIG– fDAC/4 and fSIG– fDAC × 3/4 falls in band as fSIG approaches fDAC/8 and fDAC × 3/8. This creates optimum real output frequencies fSIG = fDAC × N/16 (N = 1, 3, 5, and 7), where the minimum spurious product offset from fSIG is fDAC/8. 59 Submit Documentation Feedback |
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