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AD9957/PCBZ 数据表(PDF) 46 Page - Analog Devices |
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AD9957/PCBZ 数据表(HTML) 46 Page - Analog Devices |
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46 / 62 page ![]() Data Sheet AD9957 Rev. E | Page 45 of 61 I/Q PATH LATENCY The I/Q latency through the AD9957 is easiest to describe in terms of system clock (SYSCLK) cycles and is a function of the AD9957 configuration (that is, which mode and which optional features are engaged). The I/Q latency is primarily affected by the programmable CCI rate. The values in Table 12 should be considered estimates because observed latency may be data dependent. The latency was calculated using the linear delay model for FIR filters. N = CCI rate (programmable interpolation rate, 2 to 63, 1 if bypassed). In BFI mode, the latency through the AD9957 may not be con- stant for multiple transmissions. This is due to the relationship between the phase of the clock that drives the first half-band filter and the frame sync signal coming from the Blackfin, which is unknown and denoted as x in Table 12. The design successfully transfers data from the data assembler logic to the signal process path by updating a parallel register at the proper time. The data is transferred from the parallel register to the signal processing chain and all timing has been verified regard- less of the phase relationship between the updating of the parallel register and the signal processing clock. Example Quadrature modulation mode = 18-bit parallel data Reference clock multiplier = bypassed Input scale multiplier = off Inverse CCI = off CCI rate = 20 Inverse SINC = on Output scale = off Latency = (16 × 20) + (4 × 20) + (4 × 20) + (69 × 20) + (4 × 20 + 8) + 22 + 8 + 2 + 8 = 1988 SYSCLKs Table 12. Stage Quadrature Modulation Mode—Parallel Quadrature Modulation Mode—BFI Interpolation DAC Mode Input Demuxplexer 16N (16 + x)N 28N where x = 0 to 15 Input Scale Multiplier Active: 8N Not available in BFI mode Active: 8N Bypassed: 4N Bypassed: 4N Inverse CCI Filter Active: 8N Active: 8N Active: 8N Bypassed: 4N Bypassed: 4N Bypassed: 4N Half-Band Filters 69N 345N 69N CCI Filter Active: 4N + 8 Active: 4N + 8 Active: 4N + 8 Bypass: 2N + 4 Bypass: 2N + 4 Bypass: 2N + 4 Modulator 22 22 0 Inverse Sinc Filter Active: 8 Active: 8 Active: 8 Bypass: 2 Bypass: 2 Bypass: 2 Output Scale Multiplier Active: 12 Active: 12 Active: 12 Bypass: 2 Bypass: 2 Bypass: 2 DAC Interface 8 8 8 |
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