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updated calibration log, added more pdfs, small edits to user docs
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eseverett committed Mar 7, 2024
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2 changes: 1 addition & 1 deletion docs/build/html/.buildinfo
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# Sphinx build info version 1
# This file hashes the configuration used when building these files. When it is not found, a full rebuild will be done.
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tags: 645f666f9bcd5a90fca523b33c5a78b7
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12 changes: 10 additions & 2 deletions docs/build/html/_sources/index.rst.txt
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Expand Up @@ -10,8 +10,8 @@
<div style="margin-bottom: 25px;"></div>


Welcome to the CXLS Interlock System Documentation's documentation!
===================================================================
Welcome to the CXLS Interlock System documentation!
===================================================

.. toctree::
:maxdepth: 2
Expand All @@ -23,6 +23,8 @@ About This Documentation
The purpose of this documentation is to provide a complete guide to the CXLS interlock system.
This document will outline user guides to all interlock subsystems, as well as provide documentation on testing and troubleshooting the system.

-----

CXLS Facility Overview
----------------------

Expand All @@ -32,6 +34,8 @@ CXLS Facility Overview

|small_space|

-----

Ionizing Radiation Hazards
--------------------------

Expand All @@ -40,6 +44,8 @@ These Coulomb interactions between the relativistic electrons and atomic nuclei
This process is known as Bremsstrahlung. These emitted gamma rays can then interact with nuclei and through the process of photodisintegration neutron radiation is produced.
These processes cause elevated radiation felids in Vault-1 and Hutch-1.

-----

Laser Hazards
-------------

Expand All @@ -49,6 +55,8 @@ Once these electrons are at relativistic speeds, they collide with an IR laser a
These x-rays will interact with a test sample in pump-prove configuration where the pump laser can produce light in the THz spectrum.
Due to these high power lasers throughout the facility, laser enclosures have been designed to create laser safe areas while lasers are operational.

-----

Interlocks System
-----------------

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Expand Up @@ -14,9 +14,10 @@ The following fall under the scope of this testing procedure:
- Trouble tungsten shutter control.
- Ionizing radiation monitoring interlocks.

-----

Starting Conditions
-------------------
-------------------

The default state for testing of the Hutch-1 ionizing radiation interlock system is in a completely disarmed state.

Expand Down Expand Up @@ -138,6 +139,9 @@ The default state for testing of the Hutch-1 ionizing radiation interlock system
Additionally, the other double tungsten shutter is rotated 180 degrees around the beam pipe from this one.
Because it is rotated, the contact being on the upper sensors is the closed position for the other shutter.

-----


Search Procedure
----------------

Expand Down Expand Up @@ -172,6 +176,8 @@ Search Procedure
**Figure 6:** This is the Hutch-1 Control IONIZING RADIATION INTERLOCK protocase when Hutch-1 is secured.


-----


Changing Beam Status
--------------------
Expand Down Expand Up @@ -222,6 +228,8 @@ Changing Beam Status
When the beam stop is open a shutter will automatically open to whatever beam select is set to before hand.


-----

Returning to Starting Conditions
--------------------------------

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Expand Up @@ -11,7 +11,7 @@ Hutch-1 Laser Interlock System Testing Protocol

The purpose of this document is to describe the testing protocol for the Hutch-1 laser interlock system including the interlocks for the Astrella laser and enclosure.


-----

Starting Conditions
-------------------
Expand Down Expand Up @@ -110,7 +110,7 @@ Starting Conditions
**Figure 6:** Astrella enclosure showing all e-stops off.



-----

Arming Hutch-1 as a Laser Lab
-----------------------------
Expand Down Expand Up @@ -169,7 +169,7 @@ Arming Hutch-1 as a Laser Lab

**Figure 9:** Hutch-1 Control Entry Keypad showing INTERLOCKED.


-----

Arming the Astrella Enclosure and Laser
---------------------------------------
Expand Down Expand Up @@ -263,7 +263,7 @@ Arming the Astrella Enclosure and Laser
**Figure 11:** Astrella enclosure showing the room interlock module armed.



-----

Administrative Override on the Astrella Enclosure
-------------------------------------------------
Expand Down Expand Up @@ -302,6 +302,8 @@ Administrative Override on the Astrella Enclosure
**Figure 13:** Astrella enclosure showing the INTERLOCK OVERRIDE panel set to OVERRIDE.


-----

Safe Astrella E-Stop Test
-------------------------

Expand All @@ -313,6 +315,9 @@ Safe Astrella E-Stop Test

#. Verify that the Astrella power supply is cut off.


-----

Crashing the Astrella
---------------------

Expand All @@ -321,6 +326,7 @@ Crashing the Astrella

#. If 6 months have passed, arm the Astrella laser and use one the the Astrella laser e-stop to crash the laser and verify that power has been cut.

-----

Return to Starting Conditions
-----------------------------
Expand Down
13 changes: 12 additions & 1 deletion docs/build/html/_sources/testing_documentation/Laser-1.rst.txt
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Expand Up @@ -15,6 +15,8 @@ This includes:
- Arming the Dira.


------

Starting Conditions
-------------------

Expand Down Expand Up @@ -163,7 +165,7 @@ Starting Conditions
**Figure 8:** This is the arming panel for Laser-1.



-----

Arming Laser-1
--------------
Expand Down Expand Up @@ -262,6 +264,8 @@ Arming Laser-1
**Figure 13:** This is the e-stop module in Laser-1 in a safe condition.


-----

Arming the Dira
---------------

Expand Down Expand Up @@ -310,6 +314,8 @@ Arming the Dira
**Figure 14:** These are all the VIEWMARQ displays that will update when the Dira is armed.


-----

Safe Dira E-Stop Test
---------------------

Expand All @@ -322,6 +328,8 @@ Safe Dira E-Stop Test
#. Verify that the Dira power supply is cut off.


-----

RF-1 Door
---------

Expand All @@ -335,6 +343,9 @@ RF-1 Door

**Figure 15:** This is the Laser-1 to RF-1 door monitor when the door is open.

-----


Crashing the Dira
-----------------

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Expand Up @@ -9,6 +9,7 @@ O2 Sensor Testing Protocol

The purpose of this document is to test the functionality of the O2 sensors in Vault-1, Hutch-1, and RF-1.

-----

Staring Conditions
------------------
Expand Down Expand Up @@ -57,6 +58,10 @@ Staring Conditions
**Figure 2:** These are the yellow 4 contact blocks in the Vault-1 Control west aggregator panel.
If any of the O2 sensors alarm, these blocks will loose continuity with each other.


-----


Testing Connectivity Between Main and Remote Units
--------------------------------------------------

Expand All @@ -70,6 +75,8 @@ Testing Connectivity Between Main and Remote Units
- Hutch-1 / Hutch-1 Control (top)
- Astrella enclosure / Hutch-1 Control (bottom)

-----


Testing Alarming
----------------
Expand All @@ -91,6 +98,7 @@ Testing Alarming
- Hutch-1 / Hutch-1 Control (top)
- Astrella enclosure / Hutch-1 Control (bottom)

-----

Emergency Tungsten Shutter Crash
--------------------------------
Expand Down
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Expand Up @@ -15,6 +15,8 @@ The following falls under the scope of this testing procedure:
- Ionizing radiation monitoring interlocks.


-----

Starting Conditions
-------------------

Expand Down Expand Up @@ -93,6 +95,8 @@ The default state for testing the Vault-1 ionizing radiation interlock system is
.. Vault-1 search buttons on
-----


Testing Unsecure Vault-1 Conditions
-----------------------------------
Expand All @@ -117,6 +121,7 @@ When Vault-1 is in a non-secure state, neither the accelerator nor the transmitt

**Figure 4:** Vault-1 Control west panel relays for arming the accelerator and transmitters.

-----

Searching Procedure
-------------------
Expand Down Expand Up @@ -166,6 +171,8 @@ Searching Procedure
**Figure 7:** Vault-1 Control west panel when the Vault-1 shield door is closed, turing on relay R1.


-----

Arming the Accelerator and transmitters
---------------------------------------

Expand Down Expand Up @@ -277,6 +284,9 @@ Arming the Accelerator and transmitters
**Figure 12:** These are the VIEWMARQ displays in Vault-1 Control and Accelerator Lab when the RF is armed.


-----


Overriding and Resetting Transmitters and Accelerator
-----------------------------------------------------

Expand Down Expand Up @@ -322,6 +332,8 @@ Overriding and Resetting Transmitters and Accelerator

**Figure 13:** Vault-1 Control west panel relays for overriding the transmitters.

-----


Timing out the Shield Door and Search sequence
----------------------------------------------
Expand All @@ -335,7 +347,7 @@ Timing out the Shield Door and Search sequence
#. Go through the search procedure again except do not close the shield door and allow the system to trip.
After :red:`x`, the search lamps should turn :red:`red`.


-----


Return to Starting Conditions
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Expand Up @@ -12,6 +12,8 @@ Vault-1 Laser Interlock System Testing Protocol
The purpose of this testing procedure if the Verify the functionality of the Vault-1 laser interlock system including arming Vault-1 as a laser lab, and arming the Pharos system.
Additionally, the administrative override on the Pharos and Dira enclosures will be tested.

-----

Starting Conditions
-------------------

Expand Down Expand Up @@ -142,6 +144,8 @@ Starting Conditions
**Figure 7:** This is the laser e-stop button when the system is in a safe state.


-----


Arming Vault-1 as a Laser Lab
-----------------------------
Expand Down Expand Up @@ -200,6 +204,7 @@ Arming Vault-1 as a Laser Lab
**Figure 10:** This is the Vault-1 entry modules when the system is armed.


-----


Arming the Pharos Enclosure and Laser
Expand Down Expand Up @@ -273,7 +278,7 @@ Arming the Pharos Enclosure and Laser
**Figure 13:** This is the laser e-stop button when the system is armed.



-----

Safe Pharos E-Stop Test
-----------------------
Expand All @@ -289,6 +294,8 @@ Safe Pharos E-Stop Test



-----

Administrative Override on the Pharos Enclosure
-----------------------------------------------

Expand Down Expand Up @@ -355,6 +362,8 @@ Administrative Override on the Pharos Enclosure

**Figure 15:** This is the Pharos LASER ENCLOSURE INTERLOCK protocase when the system is overridden.

-----


Arming the Dira Enclosure and Laser
-----------------------------------
Expand All @@ -368,6 +377,9 @@ Arming the Dira Enclosure and Laser
The STATUS LED remains :green:`green`. Change back to INTERLOCK.


-----


Administrative Override on the Dira Enclosure
---------------------------------------------

Expand Down Expand Up @@ -434,6 +446,8 @@ Administrative Override on the Dira Enclosure
**Figure 17:** This is the Dira LASER ENCLOSURE INTERLOCK protocase when the system is overridden.


-----


Crashing the Dira Laser
-------------------------
Expand All @@ -444,6 +458,9 @@ Crashing the Dira Laser
#. If 6 months have passed, arm the Pharos laser, and use one of the laser e-stops to crash the laser and verify that power has been cut.



-----

Return to Starting Conditions
-----------------------------

Expand Down
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