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Term | Description |
---|---|
AC | Alternate Current |
ATCA | Advanced Telecommunications Computing Architecture |
CPU | Central Processing Unit |
EPICS | Experimental Physics and Industrial Control System |
FPGA | Field Programmable Gate Array |
IOC | Input Output Controller |
LCLS | Linac Coherent Light Source |
NC | Normal-Conducting |
RF | Radio Frequency |
SC | Super-Conducting |
SHM | Shelf Manager |
VMTG | VME-based Master Trigger Generator |
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The 2856MHz from Sector-10 is locked to the 2856MHz from Sector-2, but that doesn't necessarily hold true for their respective 476MHz signals. To fix thisprovide the triggers we want, we need to align the fiducials. We need NC and SC timing to align at 71kHz so they can coordinate with the beam generation. Two options: either design the VME-based Master Trigger Generator (VMTG) which drives the Fiducial Generator at 360Hz to trigger at 71kHz or slide the RF buckets until they align. The LCLS VMTG samples the AC power line at the 71.4kHz subharmonic of its RF input and each 360Hz fiducial is coincident with the 71.4kHz subharmonic. A TPR card processes both timing systems simultaneously and it measures the relative delay between the NC and SC 71.4kHz subharmonic.
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