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SDW 2013 Cabling design for a CCD231 based camera www.qucam.com Cabling Design for a CCD231 based camera Dr. Simon Tulloch University of Sheffield.

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Presentation on theme: "SDW 2013 Cabling design for a CCD231 based camera www.qucam.com Cabling Design for a CCD231 based camera Dr. Simon Tulloch University of Sheffield."— Presentation transcript:

1 SDW 2013 Cabling design for a CCD231 based camera www.qucam.com Cabling Design for a CCD231 based camera Dr. Simon Tulloch University of Sheffield

2 SDW 2013 Cabling design for a CCD231 based camera www.qucam.com CCD231 Camera Cryostat Head Board CCD231 Camera Cryostat Head Board SP720 Very poor EMI environment in lab. PCB has option to use differential video. Very poor EMI environment in lab. PCB has option to use differential video. E2V CCD231 graded AR coating. E2V CCD231 graded AR coating. Raw ESD With SP720 protection circuitry 60ns 17V 70V

3 SDW 2013 Cabling design for a CCD231 based camera www.qucam.com Controller cabling : 6-layer rigiflex Differential video (segmented sheathes) Biases Clocks Pre-amp power ARC Controller. Installation process. Buffer op-amps for inverting inputs (controller video board has only 1k input impedance on inverting inputs).

4 SDW 2013 Cabling design for a CCD231 based camera www.qucam.com Single ended. Differential 20 e- RMS 5e- RMS overscan Differential 5e- RMS Centre of a quad-readout image. Upper-left quadrant used in single-ended mode, others in differential Centre of a quad-readout image. Upper-left quadrant used in single-ended mode, others in differential Complete assembly. Gives approx. 2MHz video bandwidth 150kpix/s bias (with some light leakage)


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