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There are four cold mirrors in KAGRA, two at the center and one each at the end of the 3km tunnels.

Each cold mirror is installed in a cryostat. Each cryostat has 4 cryocoolers. Each cryocooler is powered by a compressor.
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We use the diagnostic interface connector to (1) turn On and Off the compressor, (2) read the compressor pressure, (3) monitor the temperature, (4) monitor the water flow. We use the diagnostic interface connector. The pin-out is listed in Table 1 of p54 (p50 at the bottom of the page).
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== Vacuum Gauge ==
== Pressure Gauge ==
4-20mA output, 10 channels per room. Total 40 channels
We will use pin #10 and #14 to #20.

There will be four compressors per cryostat. Therefore, the total number of compressors is 16.

== Temperature Sensors ==
We will have 64 temperature sensors per cryostat. There are 4 cryostats. Therefore the total number of the temperature sensors is 256. Each temperature sensor has a differential voltage output. The voltage range is 0-2V for diode sensors (43 sensors out of 64). PtCo sensors have 0-150mV range (21 sensors out of 64). 16bit ADC is fine for

Cryo-system control

There are four cold mirrors in KAGRA, two at the center and one each at the end of the 3km tunnels.

Each cold mirror is installed in a cryostat. Each cryostat has 4 cryocoolers. Each cryocooler is powered by a compressor.

Compressor

Manual p54-55

We use the diagnostic interface connector. The pin-out is listed in Table 1 of p54 (p50 at the bottom of the page).

We will use pin #10 and #14 to #20.

There will be four compressors per cryostat. Therefore, the total number of compressors is 16.

Temperature Sensors

We will have 64 temperature sensors per cryostat. There are 4 cryostats. Therefore the total number of the temperature sensors is 256. Each temperature sensor has a differential voltage output. The voltage range is 0-2V for diode sensors (43 sensors out of 64). PtCo sensors have 0-150mV range (21 sensors out of 64). 16bit ADC is fine for

PLC/Cryo (last edited 2018-01-18 15:52:23 by YoichiAso)