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Published byPiers Lyons Modified over 9 years ago
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Chopper wheel Rotates at 100 Hz and contains a timing photodiode to signal position on each turn. A slot cut in the disc passes a 130 s laser pulse train every turn. TTL Pulse shaper TTL Driver which takes the voltage-source timing pulses from chopper wheel sensor, and creates a current- source TTL drive pulse Quantum Composer 8-Channel timing unit This unit is triggered by the Repetition Rate DG535, and takes a clock input from the 81.25 MHz RF reference. On triggering, it waits for the next RF clock cycle, then cascades trigger signals to the Mechanical Shutter (selecting a specific macropulse), and to the Macropulse Length DG535 to set the macropulse length. Additional trigger signals are provided to the rack room and the TW laser. Mechanical Shutter The mechanical shutter selects specific macropulses from the 100 Hz macropulse train to define the 1, 2, 5, 10 or 20 Hz repetition rate Stanford DG535 (Macropulse Length) This unit provides trigger to the Pockels cell driver to define the macropulse length
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Quantum Composers Timing Unit Settings Sync.ChannelWidthDelayPolOutputMode Wait PulsesDriving Alternative for ‘other’ chopper sensor location T0T0 'A'100 us0 msAct highTTL/CMOSNormal0Main RF trigger (via #1 on roof feed-thru box) ‘A’'B'4 ms24. msAct highTTL/CMOSNormal0Mechanical chopper4.5 ms / 4.0 ms T0T0 'C'150 us0Act highTTL/CMOSNormal0Not used (suspected faulty) T0T0 'D'150 us7.06 msAct highTTL/CMOSNormal0Trigger to DG535 7.085 ms / 150 s T0T0 'E'100 us7.00 msAct highTTL/CMOSNormal0Feed to rack room (via #7 on roof feed-thru box) T0T0 'F'100 us7.06 msAct highTTL/CMOSNormal0EMMA RF System Trigger T0T0 'G'100 us 27.56 889 msAct highTTL/CMOSNormal0Streak Camera trigger T0T0 'H'91 ms1.1 msAct highTTL/CMOSNormal0Macropulse repetition rate (setting for 10 Hz) Gate: Mode (Chan Menu) – Source Ext. w/PLL; Level - 2.50 V; Rate - 81.25 MHz; Level - 0.1 V; Ref. out - To pulse; Ext. Opt. - Force OFF; T 0 clock rate - 0.010000000 Trig: Mode – Triggered; Level – 1.00 V; Edge – Rising Edge Incorrect timing settings which do not drive EMMA RF correctly due to a 20 ms offset in the main R trigger, changed 2011 02 25
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Quantum Composers Timing Unit Settings Sync.ChannelWidthDelayPolOutputMode Wait PulsesDriving Alternative for ‘other’ chopper sensor location T0T0 'A'140 us20.31 msAct highTTL/CMOSNormal0Main RF trigger (via #1 on roof feed-thru box) ‘A’'B'4 ms24.0 msAct highTTL/CMOSNormal0Mechanical chopper4.5 ms / 4.0 ms T0T0 'C'150 us0Act highTTL/CMOSNormal0Not used (suspected faulty) T0T0 'D'150 us 27.37 msAct highTTL/CMOSNormal0Trigger to DG535 7.085 ms / 150 s T0T0 'E'100 us27.31 msAct highTTL/CMOSNormal0Feed to rack room (via #7 on roof feed-thru box) T0T0 'F'100 us7.01 msAct highTTL/CMOSNormal0EMMA RF System Trigger T0T0 'G'100 us 27.56889 msAct highTTL/CMOSNormal0Streak Camera trigger T0T0 'H'95 ms1.1 msAct highTTL/CMOSNormal0Macropulse repetition rate (setting for 10 Hz) Gate: Mode (Chan Menu) – Source Ext. w/PLL; Level - 2.50 V; Rate - 81.25 MHz; Level - 0.1 V; Ref. out - To pulse; Ext. Opt. - Force OFF; T 0 clock rate - 0.010000000 Trig: Mode – Triggered; Level – 1.00 V; Edge – Rising Edge New timing settings established to drive EMMA RF correctly using timing sensor located on the left-hand side of the chopper wheel, set 2011 02 25
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DG535 Unit Settings: Macro Pulse Repetition Rate ChannelDelayDriving ‘EXT’ 'A'A = T + 0 'B'B = T + 0.001 150 500Quantum Composers Master Timing Unit 'C'C = T + 0.092ms delay, specify 10 Hz repetition rate 'D'D = C + 0Trigger to DG535 ‘A-B'14 usA-B Signal triggers Quantum Composers unit at macropulse repetition rate This setup is no longer valid as the QC9530 is providing a timing-inhibit function to set the macropulse repetition rate
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DG535 Unit Settings: Macro Pulse Length (Pockels Cell) ChannelDelayDriving 'A'A = T + 0.000 290 010Trigger onset delay 'B'B = A + 0.000 000 010Macro Pulse length (example shows 10 ns) 'C'C = T + 0 'D'D = T + 0.000 200Trigger to rack room feedthrough #3 for the BPM system T0T0 Trigger to rack room feedthrough #4 Trig: Ext.; Threshold = +0.16 V; Slope (+/-) = +; Trigger term = High Z Output: AB; AB & -AB Loads = High Z; AB: TTL
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