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AD9923ABBCZ Datasheet(PDF) 25 Page - Analog Devices |
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AD9923ABBCZ Datasheet(HTML) 25 Page - Analog Devices |
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25 / 88 page ![]() AD9923A Rev. 0 | Page 25 of 88 VERTICAL TIMING GENERATION The AD9923A provides a very flexible solution for generating vertical CCD timing; it can support multiple CCDs and different system architectures. The 13-phase vertical transfer clocks, XV1 to XV13, are used to shift lines of pixels into the horizontal output register of the CCD. The AD9923A allows these outputs to be individually programmed into various readout configurations, using a four-step process as shown in Figure 35. 1. Use the vertical pattern group registers to create the individual pulse patterns for XV1 to XV13. 2. Use the V-pattern groups to build the sequences and add more information. 3. Construct the readout for an entire field by dividing the field into regions and assigning a sequence to each region. Each field can contain up to nine regions to accommodate different steps, such as high speed line shifts and unique vertical line transfers, of the readout. The total number of V-patterns, V-sequences, and fields are programmable and limited by the number of registers. High speed line shifts and unique vertical transfers are examples of the different steps required for readout. 4. Use the MODE register to combine fields in any order for various readout configurations. CREATE THE VERTICAL PATTERN GROUPS, UP TO FOUR TOGGLE POSITIONS FOR EACH OUTPUT. XV1 XV2 XV11 XV12 XV1 XV2 XV3 XV3 XV11 XV12 VPAT 0 VPAT 1 1 USE THE MODE REGISTER TO CONTROL WHICH FIELDS ARE USED, AND IN WHAT ORDER (MAXIMUM OF SEVEN FIELDS MAY BE COMBINED IN ANY ORDER). FIELD 3 FIELD 4 FIELD 0 FIELD 1 FIELD 2 FIELD 5 FIELD 1 FIELD 4 FIELD 2 4 BUILD THE V-SEQUENCES BY ADDING START POLARITY, LINE START POSITION, NUMBER OF REPEATS, ALTERNATION, GROUP A/B INFORMATION, AND HBLK/CLPOB PULSES. V-SEQUENCE 0 (VPAT0, 1 REP) V-SEQUENCE 1 (VPAT1, 2 REP) V-SEQUENCE 2 (VPAT1, N REP) XV1 XV2 XV11 XV12 XV3 XV1 XV2 XV11 XV12 XV3 XV1 XV2 XV11 XV12 XV3 2 FIELD 0 FIELD 1 FIELD 2 REGION 0: USE V-SEQUENCE 2 REGION 1: USE V-SEQUENCE 0 REGION 3: USE V-SEQUENCE 0 REGION 4: USE V-SEQUENCE 2 REGION 2: USE V-SEQUENCE 3 3 BUILD EACH FIELD BY DIVIDING IT INTO DIFFERENT REGIONS AND ASSIGNING A V-SEQUENCE TO EACH (MAXIMUM OF NINE REGIONS IN EACH FIELD). Figure 35. Summary of Vertical Timing Generation |
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