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N. BlaskovicFONT Meeting1 Preliminary resolution study results N. Blaskovic
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Introduction Results from 31 st October for: –IPB to IPC interpolation –Two electronics on one BPM study FONT Meeting2N. Blaskovic
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IPB to IPC interpolation Take jitter run at start of shift with no change to optics other than to steer beam through both IPB and IPC in both x and y Then later calibrate with waist in x and y at each of IPB and IPC Jitter runs and calibrations taken at 0 dB to 50 dB FONT Meeting3N. Blaskovic
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IPB to IPC interpolation Results: –Waveforms –IPB(Y) to IPC(Y) position correlation –Interpolated y paths from IPB to IPC –Interpolated x and y jitter from IPB to IPC FONT Meeting4N. Blaskovic
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FONT Meeting5N. Blaskovic IPB(Y) I IPB(Y) Q IPC(Y) I IPC(Y) Q IPB(X) I IPB(X) Q IPC(X) IRef(X) IPC(X) Q
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FONT Meeting6N. Blaskovic IPB(Y) I IPB(Y) Q IPC(Y) I IPC(Y) Q IPB(X) I IPB(X) Q IPC(X) IRef(X) IPC(X) Q
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FONT Meeting7N. Blaskovic IPB(Y) I IPB(Y) Q IPC(Y) I IPC(Y) Q IPB(X) I IPB(X) Q IPC(X) IRef(X) IPC(X) Q
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FONT Meeting8N. Blaskovic IPB(Y) I IPB(Y) Q IPC(Y) I IPC(Y) Q IPB(X) I IPB(X) Q IPC(X) IRef(X) IPC(X) Q
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FONT Meeting9N. Blaskovic IPB(Y) I IPB(Y) Q IPC(Y) I IPC(Y) Q IPB(X) I IPB(X) Q IPC(X) IRef(X) IPC(X) Q
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FONT Meeting10N. Blaskovic IPB(Y) I IPB(Y) Q IPC(Y) I IPC(Y) Q IPB(X) I IPB(X) Q IPC(X) IRef(X) IPC(X) Q
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2-on-1 resolution Split IPB(Y) signal into two sets of Honda’s electronics Use a calibration at each charge Use MFB1FF for charge normalisation (with 6 dB stripline attenuation) Histograms make use of 10-sample averaging from 37 to 46 FONT Meeting30N. Blaskovic
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FONT Meeting37 Appendix 2-on-1 resolution vs. sampling window
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