UCSB 4-Hybrid Thermal Test System Status - PowerPoint PPT Presentation

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UCSB 4-Hybrid Thermal Test System Status

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Measured Relative Humidity with System Sensor using sub vi (subroutine) ... Design and Fabricate Pitch Adapter Antenna. Complete T/E Element Cabling ... – PowerPoint PPT presentation

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Title: UCSB 4-Hybrid Thermal Test System Status


1
UCSB 4-Hybrid Thermal Test System Status
30 June Sam Burke UCSB HEP Group
2
Progress
  • Measured Relative Humidity with System Sensor
    using sub vi (subroutine)
  • RH 46.8 -2.3 with System
  • RH 49.0 -0.98 with Sensirion Reference
  • Fabricated Analog Input/Output Board
  • (photo later)
  • Fabricated Sensor Input/Output Board
  • (photo later)

3
Progress
  • Generated Sensor Interconnect Schematics
  • Air Flow Sensor
  • Peltier Power Source Constant Current Control
  • Received dc/dc converter for flow sensors
  • 12vdc _at_83mA from 5 vdc on Analog I/O Bd.
  • Acceptance testing unit ie. Verify Vo f
    (load)
  • Reverse Engineering on Coolie Box Relay Board

4
Progress
  • Coolie Box AC Power Transformer Board Fabricated.
  • Fabricated four Hybrid Temperature Sensors
  • Digital addressing
  • Calibration check
  • LabView Sensor File created

5
CERN Cold Box
  • Note Following Details
  • Antenna
  • Humidity Sensor
  • Hybrid Pitch Adapter
  • Foam Insulation

6
CERN Cold Box
  • Blue lines are N2
  • Clear lines are water
  • Note Hybrid boxes with bar codes

7
UCSB Cold Box
  • Note
  • Sensor penetrations
  • Test Tail Interface
  • ARC Board
  • Hybrid/Pitch Adapter on plate
  • Humidity Sensor and cable
  • Temperature Sensor and cable

8
UCSB Cold Box

9
UCSB Cold Box
  • PENITRATIONS
  • 1.T/E Power
  • 2.T/E Power -
  • 3. T/E High Temp
  • 4. Hybrid 1 Temp
  • 5. Hybrid 2 Temp
  • 6. Hybrid 3 Temp
  • 7. Hybrid 4 Temp
  • 8. Humidity
  • 9. Pulser (RG58)
  • 10. Spare
  • 11. Water IN
  • 12. Water Out
  • 13. Dry Air Low
  • 14.Dry Air High

10
Sensor Interface
  • SENSOR Interface Board (left)
  • 4ea Hybrid Temps
  • Box Humidity
  • High Temp Interlock
  • ANALOG I/O Board (right)
  • Air Flow Sensor
  • Water Flow Sensor
  • Peltier Current Control Output

11
Sensor Interface
  • Backside of Analog Input/Output Board

12
Coolie Box Relay Board
  • Bench Tested
  • Red LED (heat)
  • Blue LED (cool)
  • Schematic generated

13
UCSB Cold Box Equipment
  • Hybrid Cold Box Equipment Rack in clean room test
    area
  • NIM Modules (pulser)
  • ARC Power Supplies
  • ARC Modules in crate with Coolie Controller
  • ARC Power Supplies
  • Peltier Constant Current Power Supply
  • Flow Control Panel (future)

14
Coolie Controller
  • New Back Panel
  • note high current connectors
  • high current connector pins
  • pin removal tool

15
Flow Control Panel
  • Note following components
  • Digital I/O board
  • Solid State Relays
  • Solenoid valves
  • Flow sensor

16
Future Plans
  • Design and Fabricate Pitch Adapter Antenna
  • Complete T/E Element Cabling
  • Test T/E Element using Sub LabView
  • Fabricate Flow Control Panel (see photo)
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