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CSG14K_CSG8K 数据表(PDF) 46 Page - OSRAM GmbH |
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CSG14K_CSG8K 数据表(HTML) 46 Page - OSRAM GmbH |
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46 / 114 page ![]() Document Feedback CSG14K_CSG8K Functional Description Datasheet • PUBLIC DS000571 • v2-01 • 2023-Feb-10 113 │ 45 Figure 46: Timing Diagram: Triggered Internal Mode In the example, the programmed 'frame time' is longer than the sum of GLOB length and READOUT length. This situation is allowed and provides an easy mechanism to fine-tune frame rate. In the most extreme case, the programmed frame time exactly matches the minimum length of the GLOB and READOUT phases together. This will start a new GLOB period as soon as the previous READOUT is finished, which results in the maximum frame rate for given GLOB and READOUT settings. Because this mode is internally controlled based on register settings, there are no invalid control timing conditions. Invalid register settings do exist (for example: frame time shorter than GLOB+READOUT length), but these are specified in the relevant sections describing those registers later in this document. The table below lists the special timing conditions of this mode. Figure 47: Triggered Internal Mode: Special Control Timing # Special Control Timing Sensor Response TI_s0 REQ_EXP before last READOUT of sequence has started Will do nothing else than increase the sequence length (add the number of frames of the new request to the total length of this sequence, with a maximum total of 255 frames). TI_s1 REQ_EXP after last READOUT of sequence has started Will initiate a new 'first' EXPOSURE, followed by a complete new sequence. Depending on the timing of the new request, the frame rate may be temporally change. See below. TI_s2 Any pulse on REQ_FRAME Will be ignored The behavior in case of TI_s1 depends on the relation between (1) the programmed exposure time of the new request and (2) the time remaining to complete the active frame (see last 'Frame time' in Figure 46). ● If (1) < (2): ● The start of the new EXPOSURE will be delayed. ● It will be started at the correct moment so its end will coincide with the end of the active frame. ● The frame rate will not change: the first GLOB of the new sequence will be exactly 'frame time' after the last GLOB of the active sequence. EXPOSURE (2) EXPOSURE (1) REQ_EXP SENSOR STATE EXPOSURE (0) IDLE GLOB READOUT (0) GLOB READOUT (1) GLOB IDLE READOUT (2) Frame time Frame time Exposure time ExpDelay |
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