Difference between revisions of "March 17, 2017 - 200kV gun upgrade meeting"
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1. Carlos/Gabriel/Bubba - Move gun to Test Lab. Validate Matt's assertion of plug-and-play of pure alumina vs. conductive insulator, determine stack-up of flange+insulator+electrode. Close layout/geometry loop between chamber + ME drawings + Poisson. Assess stock materials for shed/electrode e.g. Nb/Nb or SS/SS. Main goal is electrode design, but give some thought to testing HV chamber before dismantling. | 1. Carlos/Gabriel/Bubba - Move gun to Test Lab. Validate Matt's assertion of plug-and-play of pure alumina vs. conductive insulator, determine stack-up of flange+insulator+electrode. Close layout/geometry loop between chamber + ME drawings + Poisson. Assess stock materials for shed/electrode e.g. Nb/Nb or SS/SS. Main goal is electrode design, but give some thought to testing HV chamber before dismantling. | ||
− | + | : [[media:170317_Gabriel.pptx]], [[media:170317_Gabriel.pdf]] | |
2. Phil/Joe - See if can locate two large diameter BPM cans, recall existing length of shorter tunnel NEG w/ bellows each end, sketch proposed tube w/ BPM, magnets, does it all fit?, check with Pete about two channels of electronics | 2. Phil/Joe - See if can locate two large diameter BPM cans, recall existing length of shorter tunnel NEG w/ bellows each end, sketch proposed tube w/ BPM, magnets, does it all fit?, check with Pete about two channels of electronics | ||
+ | |||
+ | : Pete says super easy | ||
+ | Installed already: VME electronics, wiring, interconnects, downstairs cables | ||
+ | Already purchased, ready to install: (2) Transport RF modules, Lmr cable sets for 2 bpm cans | ||
+ | To do : Install, RG58 cables, update CED, update IOCINSE4, Menu and BPM screens | ||
3. Marcy - Plan A for vacuum can/diagnostics at gun3 valve, what is useful and makes sense. | 3. Marcy - Plan A for vacuum can/diagnostics at gun3 valve, what is useful and makes sense. |
Revision as of 09:49, 17 March 2017
Last week's action items
1. Carlos/Gabriel/Bubba - Move gun to Test Lab. Validate Matt's assertion of plug-and-play of pure alumina vs. conductive insulator, determine stack-up of flange+insulator+electrode. Close layout/geometry loop between chamber + ME drawings + Poisson. Assess stock materials for shed/electrode e.g. Nb/Nb or SS/SS. Main goal is electrode design, but give some thought to testing HV chamber before dismantling.
2. Phil/Joe - See if can locate two large diameter BPM cans, recall existing length of shorter tunnel NEG w/ bellows each end, sketch proposed tube w/ BPM, magnets, does it all fit?, check with Pete about two channels of electronics
- Pete says super easy
Installed already: VME electronics, wiring, interconnects, downstairs cables Already purchased, ready to install: (2) Transport RF modules, Lmr cable sets for 2 bpm cans To do : Install, RG58 cables, update CED, update IOCINSE4, Menu and BPM screens
3. Marcy - Plan A for vacuum can/diagnostics at gun3 valve, what is useful and makes sense.
4. Joe/Scott - Identify hooks into gun switch software (controls, interlocks), propose modification to allow for gun3 removal
5. John/Matt/Joe - Move Spellman to Test Lab, restore comm for controls to power itself, then test w/ Ross probe, get TOSP ready for HV to Spellman, vacuum chamber, start discussion w/ software for EPICS application.
6. Carlos/John/software - Deploy a radmon at UITF; use FEL control box?, purchase GM tubes, port software app, add to archiver