Title :
V123 beam synchronous encoder module
Author :
Kerner, T. ; Conkling, C.R., Jr. ; Oerter, B.
Author_Institution :
Brookhaven Nat. Lab., Upton, NY, USA
Abstract :
The V123 Synchronous Encoder Module transmits events to distributed trigger modules and embedded decoders around the RHIC rings where they are used to provide beam instrumentation triggers. The RHIC beam synchronous event link hardware is mainly comprised of three VMEbus board designs, the central input modules (V201), and encoder modules (V123), and the distributed trigger modules (V124). Two beam synchronous links, one for each ring, are distributed via fiberoptics and fanned out via twisted wire pair cables. The V123 synchronizes with the RF system clock derived from the beam bucket frequency and a revolution fiducial pulse. The RF system clock is used to create the beam synchronous event link carrier and events are synchronized with the rotation fiducial. A low jitter RF clock is later recovered from this carrier by phase lock loops in the trigger modules. Prioritized hardware and software triggers fill up to 15 beam event code transmission slots per revolution while tracking the ramping RF acceleration frequency and storage frequency. The revolution fiducial event is always the first event transmitted which is used to synchronize the firing of the abort kicker and to locate the first bucket for decoders distributed about the ring
Keywords :
accelerator control systems; colliding beam accelerators; distributed control; ion accelerators; storage rings; synchrotrons; system buses; trigger circuits; RF acceleration frequency; RF system clock; RHIC beam synchronous event link hardware; RHIC rings; V123 beam synchronous encoder module; V124; V201; VMEbus board designs; beam event code transmission slots; beam instrumentation triggers; beam synchronous event link carrier; beam synchronous links; central input modules; distributed trigger modules; embedded decoders; fiberoptics; low jitter RF clock; phase lock loops; revolution fiducial pulse; rotation fiducial; software triggers; storage frequency; twisted wire pair cables; Clocks; Decoding; Frequency synchronization; Hardware; Instruments; Jitter; Optical fiber cables; Particle beams; Radio frequency; Wire;
Conference_Titel :
Particle Accelerator Conference, 1999. Proceedings of the 1999
Conference_Location :
New York, NY
Print_ISBN :
0-7803-5573-3
DOI :
10.1109/PAC.1999.795326