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Engineering: MWPC design configuration schemas. Wire Pad Chamber (WPC), one gap Avalanche Cdet in parallel to current source (not shown) will reduce current.

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Presentation on theme: "Engineering: MWPC design configuration schemas. Wire Pad Chamber (WPC), one gap Avalanche Cdet in parallel to current source (not shown) will reduce current."— Presentation transcript:

1 Engineering: MWPC design configuration schemas

2 Wire Pad Chamber (WPC), one gap Avalanche Cdet in parallel to current source (not shown) will reduce current flow to amplifier as ratio of impedances (full Spice-model see below)

3 2-gap/layer Wire Pad Chamber (WPC) OR-ing (double signal) Independent HV sources (for reliability)

4 Cathode Pad Chamber (CPC), one gap Single Cathode Read-Out (SCRO)

5 Cathode Pad Chamber (CPC), one gap Double Cathode Read-Out (DCRO) Double signal

6 Combined Wire strip and Cathode Pad Chamber (WCPC) Bad design Rather large loop

7 WCPC (Single Cathode RO scheme)

8 WCPC (Double Cathode RO scheme) Double signal

9 MWPC readout schemes for M1R1 CPC (DCRO) CPC (SCRO)

10 11.8mm 25.8mm 39.8mm 53.8mm -6.7mm+7.3mm -20.7mm+21.3mm 0mm Anode readout INFN chambers M1+M5 R4 SPB

11 10.2mm 54.8mm -22.3mm+22.3mm 0mm Anode readout PNPI chambers M2+M3,+M4 R4 SPB

12 10.8mm 26.2mm 38.8mm 54.2mm -6.3mm+6.3mm -21.7mm+21.7mm 0mm Anode readout CERN chambers M2+M3 R1+R2 SPB The additional ground connector we have at present is not drawn.

13 Double Cathode readout (CERN chambers) - Single Cathode readout INFN and CERN chambers have just less connectors on equivalent positions - INFN uses no male and female parts, as CERN does ±23.2mm ±18.8mm ± 9.2mm ±4.8mm 0mm OPB


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