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|| 10-31-2018 The primary purpose of this vent is to simply replace the VME system with an Acromag system and verify that we are at the same operating state as we are at now (so the pump and gauge hardware is NOT upgraded for now). This amounts to implementing Python logic for the [[https://wiki-40m.ligo.caltech.edu/Vacuum_Interlocks?highlight=%28interlocks%29|INTERLOCKS]] and checking that they work. The zeroth level test can be done o the electronics bench, by just changing EPICS values for pressure indicators and seeing that the appropriate DAC/BIO channels are triggered. https://wiki-40m.ligo.caltech.edu/Vacuum_Interlocks?highlight=%28interlocks%29|| || The primary purpose of this vent is to simply replace the VME system with an Acromag system and verify that we are at the same operating state as we are at now (so the pump and gauge hardware is NOT upgraded for now). This amounts to implementing Python logic for the [[https://wiki-40m.ligo.caltech.edu/Vacuum_Interlocks?highlight=%28interlocks%29|INTERLOCKS]] and checking that they work. The zeroth level test can be done o the electronics bench, by just changing EPICS values for pressure indicators and seeing that the appropriate DAC/BIO channels are triggered. https://wiki-40m.ligo.caltech.edu/Vacuum_Interlocks?highlight=%28interlocks%29||
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 *[[get:40m_Vacuum_System_Signal_flow.pdf|Schematics of current and proposed signal flows.]] Includes a list of new hardware.
 *[[get:slow_channel_list.pdf|List of vacuum EPICS channels]]
Schematics of current and proposed signal flows. Includes a parts list for new hardware. [[attachment:40m_Vacuum_System_Signal_flow.pdf]]

List of all vacuum EPICS channels. [[attachment:slow_channel_list.pdf]]

Fall 2018 Upgrade of 40m Vacuum System

Goals

The primary purpose of this vent is to simply replace the VME system with an Acromag system and verify that we are at the same operating state as we are at now (so the pump and gauge hardware is NOT upgraded for now). This amounts to implementing Python logic for the INTERLOCKS and checking that they work. The zeroth level test can be done o the electronics bench, by just changing EPICS values for pressure indicators and seeing that the appropriate DAC/BIO channels are triggered. https://wiki-40m.ligo.caltech.edu/Vacuum_Interlocks?highlight=%28interlocks%29

Design Documents

Schematics of current and proposed signal flows. Includes a parts list for new hardware. 40m_Vacuum_System_Signal_flow.pdf

List of all vacuum EPICS channels. slow_channel_list.pdf

Options for later hardware upgrades

Component

Notes

New/Replacement/Carryover

Link to product info

e.g., Ethernet gauge

x-end

replacement

https://products.inficon.com/en-us/nav-products/product/detail/vgc50x/

EthernetIP Gateway

pumpspool

option

https://www.frederickscompany.com/wp-content/uploads/2018/06/mx_ag_eip_ds.pdf/

Ethernet-Serialport Adapter

2 purchased

for gauge test Acromag

https://reviewfinch.com/p/ONETAK-TCP-IP-Ethernet-RJ45-to-Serial-RS232-RS485-RS422-Converter-Adapter-Adaptor/170160/

cold cathode gauges

need 7

no serial port

http://www.instrutechinc.com/cold-cathode-vacuum-gauge-hornet/

cold cathode

option

gauge with RS485

https://thyracont-vacuum.com/products/smartline-vacuum-transducers/vsi-vacuum-transducer-cold-cathode/vsi1xd-vacuum-transducer/

cold cathode 971 & 972

cc & or pirani

with RS485

https://www.mksinst.com/docs/ur/970selector.aspx/

972 & 925

ccp & pirani

ethernetCAT_???

https://www.mksinst.com/docs/UR/970-DS.pdf

References

Vacuum-Upgrade-2018 (last edited 2019-07-02 23:30:00 by GautamvenugopalanATligoDOTorg)