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Halo-Kollimatoren Technical Info Page

Basic Information

# Protonen Halo Kollimatoren Erklärung Auswerte-E-Raum
für Strommessung
E-Raum mit
Schrittmotorelektr.(M-Box)
Alt: 2016 Neu: 2022
1S11DK0
Antriebsart Strommessung? Streufolie:
1 1S11UHAPV.O.p 1S11UP0VO.p 1S11UP0IO (#1) (vertikal oben), p >S1b< >S1g-240<
K0923A.U30.240#RACK401
2 1S11UHAPV.u.p 1S11UP0VU.p 1S11UP0IU (#2) (vertikal unten), p
3 1S11UHAPH.I.p 1S11UP0HI.p 1S11UP0II (#3) (horizontal innen), p
4 1S11UHAPH.A.p 1S11UP0HA.p 1S11UP0IA (#4) (horizontal außen), p
1S11DK1 Kollimator-Absorberstufe 1:
5 1S11DS1VO.s (Motor) 1S11DS1IO (#5) Ein Schrittmotor Leistungsteil
1S11DS1V.GN
1S11.NISCHE.A4
6 1S11DS1VU.s (Motor) 1S11DS1IU (#6)
7 1S11DS1HI.s (Motor) 1S11DS1II (#7)
8 1S11DS1HA.s (Motor) 1S11DS1IA (#8)
1S12DK3 Kollimator-Absorberstufe 2:
9 1S12DS2VO.s (Motor) 1S12DS3VO.s 1S12DS3IO (#9) Ein Schrittmotor Leistungsteil
1S12DS2.GN
1S12.NISCHE.A6
10 1S12DS2VU.s (Motor) 1S12DS3VU.s 1S12DS3IU (#10)
11 1S12DS2HI.s (Motor) 1S12DS3HI.s 1S12DS3II (#11)
12 1S12DS2HA.s (Motor) 1S12DS3HA.s 1S12DS3IA (#12)
Ionen Halo Kollimatoren
13 1S11UHAIV.O.p 1S11UI0V.p 1S11UI0VI (#13) Umladungsfolie vertikal (oben): Sektor 1, Zelle 1, Ende der Zelle wie ob. wie ob.
14 1S12DK1
1S12DS1VU.s
1S12DS1IU (#14) Absorberblock vertikal (unten)
“normaler” Kollimator
1S12.NISCHE.A6
1S52VU_E1)
oder
1S52DK02) ?
Vakuumkammer Septum
Endung E für Extraktion
15 1S52UHAIH.I.p 1S52UIEH.p 1S52UIEII (#15) Umladungsfolie horizontal (innen): Sektor 5, Zelle 2, Ende
Kollimatoren
für langs. Extraktion
1S52DK0
16 1S52DSKHI.s3) 1S52DS0HI.s 1S52DS0II (#16) 2x Achse Schrittmotor an
Ein Schrittmotor Leistungsteil
1S52.NISCHE.A102
>S5b< >S4b<
17 1S52DSKHA.s4) 1S52DS0HA.s 1S52DS0IA (#17)
1S52DK1
18 1S52DS1HI.s5) 1S52DS1II (#18) 2x Achse Schrittmotor
19 1S52DS1HA.s6) 1S52DS1IA (#19)
TP 4.2022
MK 10.2020
E-Septum
1S53DK1
/1S53VKP
/1S13VU_E
20 1S53DS1VO.s 1S53DSPVO.s 1S53DSPIO (#20) Ein Schrittmotor Leistungsteil
1S53.NISCHE.A104
21 1S53DS1VU.s 1S53DSPVU.s 1S53DSPIU (#21)
# Diagnoseelement… ↑………. ………. ↑ in Va-
kuumkammer
Erklärung Auswerte-E-Raum
für Strommessung
E-Raum mit
Schrittmotorelektr.(M-Box)

Updatezwischenschritt: Zwischenschritt » Resultat

Schematic Setup

schematic:

Sensor

Data Acquisition

Cabeling

Measuring cables - Strommessung (42)

Remarks = “Halo-Kollimatoren”

### 21x “Signal cable front end” 1: from BLM to IFC/patch panel in niche ✔
### 21x “IFC control and data cable”: from IFC to VDIO in E-Room (198) ✔
### common “IFC-9V-Power Net main line”: A common power supply bus line realize for BLMs and collimators
### common “IFC-9V-Power Net endpoint line” T-end point line to niche

Messkabel Halokollimatoren

Fragen zu Schrittmotorantrieben

Stepper motor drive cables (50)

Remarks = “Halo-Kollimatoren: Stepper”

Principal

A) Between Steppermotor and PDC (per axsis)

  1. 12pol. cable “Steppermotor Power Cable ”7) with UTG01214S connectors (Sourial) Stepper Motor Power Cable BEA#12 ( motorkabel_5-ph._vero_12_pol._st-bu_5001_.xls )
  2. optional “Encoder cable”
  3. 2pol Lemo Out Put Possition cable (End point switch)

B) Between PDC and M-Box:

  1. per PDC: 9pol Sub-D twisted pair Male (@PDC)-Female (@MBOX) 2x: Serial1: Poti9) Serial Poti 1 BEA#11 (cosylab_twisted-pair_sub-d_9_pol._bu-st_1018_.xls),
  2. per AXIS: 25pol Sub-D twisted pair Male-Male AXIS-Line10) Axis Line BEA#10 ( cosylab_twisted-pair_sub-d_25_pol._st-st_1014_.xls)
  3. per PDC: ( 9pol Sub-D twisted pair Male-Female 2x: “Serial2: Encoder” ) winkelcodierer_ssi_kabel_twisted-pair_sub-d_9_pol._bu-st_1020_.xls ,

Collection of all pinnings (for pass to FAIR S&B as a hole)

Extraction of System manual:

Cable details

Concrete realized

From Beam Instrumentation for L.Bozyk projected cables:

Steppermotor realated Cables for Halo-Kollimators - xlsx
Steppermotor realated Cables for Halo-Kollimators -png

1)
MK 9.2019
2)
TP v. PL
3) , 4)
vorher DS1
5) , 6)
vorher DS2
7) , 8) , 9) , 10)
colors will be found below to mark that type in cable list