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ADCDynArray ha 13 componenti, ciascuna rappresenta un valore letto dagli ADC. Traducendo il chName da float, si ottiene, per ciascun canale
(Vedi tabella a seguito per calcolo degli offset)

e+, e-Accumulator

 0 - BeamPhs Beam Phase

 1 - PhaseWP Phase Working Point

 2 - AGCWP AGC Working Point

 3 - RFFrw RF Forward

 4 - RFLevel RF Level

 5 - RFRvrsm RF Rverse

 6 - PhsFdbk Phase Feedback

 7 - TnrWP Turner Working Point

 8 - ZMdFdbk Zero Mode Feedback

 9 - SlideFbk Slide Feedback

10- PhErrKly Phase Error Klystron

11- WpKlyFbk Working Point Feedback

12- Klystron



DACDynArray ha 19 componenti, ciascuna rappresenta un valore scritto dal DAC. Traducendo il chName da float, si ottiene, per ciascun canale
(Vedi tabella a seguito per calcolo degli offset)

e+, e-Accumulator

0 - AbsPhsR Absolute Phase Reference

1 - PhsFdbkR Phase Feedback Reference

2 - RFLevRef RF Level Reference

3 - AGCGain AGC Gain

4 - PhsLpGn Phase Loop Gain

5 - PhsWndwP Window Cavity Center Phase

6 - PhsWndwM Window Cavity width Pahase

7 - RFLvRefA RF Level Refernce Amplitude

8 - TnrPhsSh Tuner Phase Shifter

9 - ZMdFdbkP Zero Mode feeback refernence

10-Amplitud RF feedback Amplitude

11-phaseFbk RF feedback phase

12-SlopeFbk RF feedback Slope

13-ZeroFbk RF feedback Zero

14-ManPhKly Manual Phase Kystron

15-LowThKly Window Center Klystron Phase

16-HigThKly Window WidthKlystron Phase

17-RfFbkOn RF Feddback On

18-KlyFbkOn Klystron Feddback On



IODynArray ha 14 componenti. Traducendo il chName da float, si ottiene per ciascun canale
(Vedi tabella a seguito per calcolo degli offset)

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