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DAC5687IPZP 数据表(PDF) 64 Page - Texas Instruments

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部件名 DAC5687IPZP
功能描述  16-BIT, 500 MSPS 2?? INTERPOLATING DUAL-CHANNEL DIGITAL-TO-ANALOG CONVERTER (DAC)
PDF  79 Pages
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制造商  TI [Texas Instruments]
网页  http://www.ti.com
标志 TI - Texas Instruments

DAC5687IPZP 数据表(HTML) 64 Page - Texas Instruments

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fSIG/fDAC
−20
−10
0
10
20
30
40
0.0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1.0
G040
DAC5687
SLWS164E – FEBRUARY 2005 – REVISED SEPTEMBER 2006
Figure 75. Amplitude Adjustment Factor for fSIG
The steps for calculating the nonharmonic spurious signals are:
1. Find the spurious signal frequencies for the appropriate mode from Figure 70, Figure 71, or Figure 72.
2. Find the amplitude for each spurious frequency for the appropriate mode from Figure 73 or Figure 74.
3. Adjust the amplitude of the spurious signals for fSIG using the adjustment factor in Figure 75.
Consider Example 1 with the following conditions:
1. X4 Mode
2. PLL off
3. Complex output
4. fDAC = 500 MHz
5. fSIG = 160 MHz = 0.32 × fDAC
First, the location of the spurious signals is found for the X4 complex output in Figure 71(a). Three spurious
signals are present in the range –0.5
× f
DAC to 0.5 × fDAC: two from fDAC/4 (35 MHz and –215 MHz) and one from
fDAC/2 (–90 MHz). Consulting Figure 73(c), the raw amplitudes for fDAC/2 and fDAC/4 are 60 and 58 dBc,
respectively. From Figure 75, the amplitude adjustment factor for fSIG = 0.32 × fDAC is estimated at ~1 dB, and so
the fDAC/2 and fDAC/4 are adjusted to 61 and 59 dBc.
Table 16. Example # 1 for Calculating Spurious Signals
Spurious
Frequency
Frequency/fDAC
Raw Amplitude (dBc)
Adjusted Amplitude (dBc)
Signal
(MHz)
fDAC/4
0.07
35
58
59
fDAC/2
–0.18
–90
60
61
fDAC/4
–0.43
–215
58
59
Now consider Example 2 with the following conditions:
1. X2 Mode
2. PLL on
3. Real output
4. fDAC = 400 MHz
5. fSIG = 70 MHz = 0.175 × fDAC
64
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Product Folder Link(s): DAC5687



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