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made small edits throughout the testing procedures, added two extensi…
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…ons to test out
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eseverett committed Mar 6, 2024
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Expand Up @@ -32,7 +32,7 @@ The default state for testing of the Hutch-1 ionizing radiation interlock system
- BEAM SELECT
- BEAM STOP

#. THe following Hutch-1 Control Ionizing Radiation Interlock protocase lamps are :green:`green`.
#. The following Hutch-1 Control Ionizing Radiation Interlock protocase lamps are :green:`green`.

- AREA MONITOR
- BEAM status
Expand Down Expand Up @@ -132,10 +132,11 @@ The default state for testing of the Hutch-1 ionizing radiation interlock system
It can be seen here that the contact plate is on the bottom sensors. :white-cell:`====`

.. table-caption::
**Figure 4:** This is the upright double tungsten shutter, and an example of this shutter being in the closed position.
If the plate where to be on the top sensors, the shutters would be open.
Additionally, the other double tungsten shutter is rotated 180 degrees from this one, which can be seen in the first image as the closer shutter only shows its top.
Because it is rotated, the contact on the upper sensors is the closed position for the other shutter.
**Figure 4:** This is the upright double tungsten shutter in the closed position.
This shutter corresponds to the convergent beam.
If the plate in image 2 where to be on the top sensors, the shutters would be open.
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 All @@ -151,11 +152,12 @@ Search Procedure
- Button 2
- Button 3

#. When the third search button is hit, there will be an audible chime and a flashing light.
#. When the third search button is hit, there will be an audible chime and a flashing light from the chime.
The chime is located on the west wall of Hutch-1.

#. Once all three search buttons have been hit in order, close the shield door. The Hutch-1 Control Ionizing Radiation Interlock protocase shield door lamp turns :green:`green`.
#. Once all three search buttons have been hit in order, close the shield door. The Hutch-1 Control IONIZING RADIATION INTERLOCK protocase shield door lamp turns :green:`green`.

#. The Hutch-1 Control Ionizing Radiation Interlock protocase Beam Select Divergent lamp turns :green:`green`.
#. The Hutch-1 Control IONIZING RADIATION INTERLOCK protocase Beam Select Divergent lamp turns :green:`green`.

.. figure:: /images/user_docs/Hutch-1_ionizing_radiation/Hutch-1_searched.jpg
:scale: 20 %
Expand All @@ -181,23 +183,24 @@ Changing Beam Status

#. Change the Hutch-1 Ionizing Radiation Interlock protocase Beam Select key to Collimated.

- The Beam Select Divergent lamp turn :red:`red`.
- The Beam Select Collimated lamp turn :green:`green`.
- The Status Divergent lamp turns :red:`red`.
- The Beam Status Collimated lamp turn :orange:`orange` while the shutter is moving, and then turns :green:`green` when the shutter is closed.
- Verify that the shutters are physically closed.
- The BEAM SELECT DIVERGENT lamp turn :red:`red`.
- The BEAM SELECT COLLIMATED lamp turn :green:`green`.
- The BEAM STATUS DIVERGENT lamp turns :red:`red`.
- The BEAM STATUS COLLIMATED lamp turn :orange:`orange` while the shutter is moving, and then turns :green:`green` when the shutter is open.
- Verify that the divergent shutter is physically closed and the collimated shutter is physically open on the double tungsten shutters in Vault-1.

#. Change the Beam Select key back to Divergent. The inverse of step three should occur.

- The Beam Select Collimated lamp turns :red:`red`.
- The Beam Select Divergent lamp turns :green:`green`.
- The Beam Status Collimated lamp turns :red:`red`.
- The Beam Status Divergent lamp turns :orange:`orange` while the shutter is moving, and then turns :green:`green` when the shutter is closed.
- Verify that the shutters are physically closed.
- The BEAM SELECT COLLIMATED lamp turns :red:`red`.
- The BEAM SELECT DIVERGENT lamp turns :green:`green`.
- The BEAM STATUS COLLIMATED lamp turns :red:`red`.
- The BEAM STATUS DIVERGENT lamp turns :orange:`orange` while the shutter is moving, and then turns :green:`green` when the shutter is open.
- Verify that the divergent shutter is physically open and the collimated shutter is physically closed on the double tungsten shutters in Vault-1.

#. Press the Reset button.
All Hutch-1 Control Ionizing Radiation Interlock protocase Beam Status lamps are :green:`green`.
Verify the shutters are physically in the correct position.
All Hutch-1 Control IONIZING RADIATION INTERLOCK protocase BEAM STATUS lamps are :green:`green`.

- Verify that both shutters are closed.

.. list-table::
:align: center
Expand Down
Original file line number Diff line number Diff line change
Expand Up @@ -20,7 +20,7 @@ Starting Conditions

#. The Vault-1 Control VIEWMARQ only displays :green:`LASER SAFE`.

#. The Vault-1 beacon stacks show only green LEDs on.
#. The Vault-1 beacon stacks show only :green:`green` LEDs on.

- Vault-1 Control
- Vault-1 east wall
Expand All @@ -45,7 +45,7 @@ Starting Conditions

#. Push to exit module is not on.

#. Laser-1 -estops are not engaged and LEDs are off.
#. Laser-1 e-stops are not engaged and LEDs are off.

- Laser-1 south-West
- Laser-1 north-West
Expand Down Expand Up @@ -168,7 +168,8 @@ Starting Conditions
Arming Laser-1
--------------

#. When entering Laser-1, there should be an audible chime.
#. When entering Laser-1, there should be an audible chime and a flashing LED on the chime.
The chime is on the west wall of the Laser-1 airlock.

#. Attempt to arm all the local interlock modules before arming Laser-1.
The Dira will not arm.
Expand Down
Original file line number Diff line number Diff line change
Expand Up @@ -102,5 +102,5 @@ Emergency Tungsten Shutter Crash
#. Spray compressed gas into a O2 unit. In response:

- Hutch-1 Control Ionizing Radiation Interlock protocase lamps for Beam Status turn :red:`red`.
- The DIVERGENT shutter (closest, upside down shutter) closed.
- The DIVERGENT shutter (closest, upside down shutter) is closed.

Original file line number Diff line number Diff line change
Expand Up @@ -99,6 +99,8 @@ Testing Unsecure Vault-1 Conditions

When Vault-1 is in a non-secure state, neither the accelerator nor the transmitters should be able to be armed.

#. Relay R1 in Vault-1 Control west panel is off.

#. Switch the ENABLE key for the accelerator.
The accelerator lamp remains :red:`red`.

Expand All @@ -107,7 +109,7 @@ When Vault-1 is in a non-secure state, neither the accelerator nor the transmitt
#. Switch the ENABLE keys for transmitters 1 and 2.
Both transmitter lamps remain :red:`red`.

- Relays R3 and R4 in Vault-1 Control west panel remain off.
- Relays R3, R5 for transmitter 1 and R4, R6 for transmitter 2 in Vault-1 Control west panel remain off.

.. figure:: /images/testing_documentation/Vault-1_ionizing_radiation/arming_relays.jpg
:scale: 20 %
Expand All @@ -125,18 +127,21 @@ Searching Procedure
- Button 2

#. Go through the vault and in sequence, click the three search buttons.
The LED on the search button should glow and the corresponding lamp on the Vault-1 Control IONIZING RADIATION INTERLOCK protocase should turn :green:`green`.
The LED on the search button should turn on and the corresponding lamp on the Vault-1 Control IONIZING RADIATION INTERLOCK protocase should turn :green:`green`.

- Button 1
- Button 2
- Button 3

#. When the third search button is hit, a chime will start, and the LED on the chime will flash.
The chime is located on the Vault-1 east wall.



#. Once all three search buttons have been hit in order, close the shield door.
The shield door lamp on the Vault-1 Control IONIZING RADIATION INTERLOCK protocase will turn green once the mechanical door switches are fully actuated.
The shield door lamp on the Vault-1 Control IONIZING RADIATION INTERLOCK protocase will turn :green:`green` once the mechanical door switches are fully actuated.

- R1 in Vault-1 Control west panel turns on.

.. figure:: /images/user_docs/Vault-1_ionizing_radiation/Vault-1_searched.jpg
:scale: 20 %
Expand All @@ -153,6 +158,14 @@ Searching Procedure
**Figure 6:** Vault-1 IONIZING RADIATION INTERLOCK protocase when the shield door is closed and Vault-1 is secured.
Under this state the accelerator can now be armed.


.. figure:: /images/testing_documentation/Vault-1_ionizing_radiation/R1_door_closed.jpg
:scale: 20 %
:align: center

**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 All @@ -164,7 +177,7 @@ Arming the Accelerator and transmitters
#. Turn the ENABLE key for transmitter 1 on the Vault-1 Control IONIZING RADIATION INTERLOCK protocase.
The transmitter 1 status lamp should turn :green:`green`.

- Relay R3 in Vault-1 Control west panel turns on.
- Relay R3 and R5 in Vault-1 Control west panel turns on.

#. Once the transmitter is enabled, the VIEWMARQ displays will show :red:`VAULT SECURE - RF ARMED`.

Expand All @@ -178,14 +191,14 @@ Arming the Accelerator and transmitters

#. Hit the reset button and repeat 2-4 with transmitter 2.

- Relay R4 in Vault-1 Control west panel turns on.
- Relay R4 and R6 in Vault-1 Control west panel turns on.

.. figure:: /images/user_docs/Vault-1_ionizing_radiation/Vault-1_protocase_accelerator_armed.jpg
:scale: 20 %
:align: center
:alt: Vault-1 protocase accelerator armed

**Figure 7:** Vault-1 Control IONIZING RADIATION INTERLOCK protocase when the accelerator is armed.
**Figure 8:** Vault-1 Control IONIZING RADIATION INTERLOCK protocase when the accelerator is armed.

.. .. figure:: /images/user_docs/Vault-1_ionizing_radiation/Vault-1_protocase_transmitter_armed_1.jpg
.. :scale: 20 %
Expand All @@ -194,6 +207,15 @@ Arming the Accelerator and transmitters
.. Vault-1 protocase transmitter armed
.. figure:: /images/testing_documentation/Vault-1_ionizing_radiation/R1R2_accelerator_armed.jpg
:scale: 20 %
:align: center

**Figure 9:** Vault-1 Control west panel when the accelerator is armed, turning on relays R2.



.. list-table::
:align: center

Expand All @@ -209,7 +231,32 @@ Arming the Accelerator and transmitters
- Vault-1 Control IONIZING RADIATION INTERLOCK protocase when transmitter 2 is armed. :white-cell:`============`

.. table-caption::
**Figure 8:** This is the Vault-1 Control IONIZING RADIATION INTERLOCK protocase when the transmitters are armed.
**Figure 10:** This is the Vault-1 Control IONIZING RADIATION INTERLOCK protocase when the transmitters are armed.


.. list-table::
:align: center

* - .. image:: /images/testing_documentation/Vault-1_ionizing_radiation/R1R2R3R5_transmitter_1_armed.jpg
:scale: 20 %
:align: center

- .. image:: /images/testing_documentation/Vault-1_ionizing_radiation/R1R2R4_transmitter_2_armed.jpg
:scale: 20 %
:align: center

- .. image:: /images/testing_documentation/Vault-1_ionizing_radiation/R1R2R3R4R5_both_transmitters_armed.jpg
:scale: 20 %
:align: center

* - Vault-1 Control west panel when transmitter 1 is armed, turning on relays R3 and R5 :white-cell:`===============`
- Vault-1 Control west panel when transmitter 2 is armed, turning on relays R4 and R6. :white-cell:`==============`
- Vault-1 Control west panel when both transmitters are armed, turning on all 4 relays. :white-cell:`=============`


.. table-caption::
**Figure 11:** These are the Vault-1 Control west panel relays for arming the transmitters.



.. list-table::
Expand All @@ -227,7 +274,7 @@ Arming the Accelerator and transmitters
- Accelerator Lab VIEWMARQ display when the RF is armed. :white-cell:`=================================`

.. table-caption::
**Figure 9:** These are the VIEWMARQ displays in Vault-1 Control and Accelerator Lab when the RF is armed.
**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 All @@ -236,7 +283,6 @@ Overriding and Resetting Transmitters and Accelerator
#. With the accelerator and transmitters armed, switch the OVERRIDE keys on the Vault-1 Control IONIZING RADIATION INTERLOCK protocase.
The TRANSMITTERS lamps will turn :orange:`orange`.

- Relays R5 and R6 in Vault-1 Control west panel turn on.

#. Switch the OVERRIDE keys back to interlock.
The TRANSMITTERS lamps will turn :green:`green`.
Expand Down Expand Up @@ -267,21 +313,21 @@ Overriding and Resetting Transmitters and Accelerator
- Vault-1 Control IONIZING RADIATION INTERLOCK protocase when both transmitters are in override. :white-cell:`==`

.. table-caption::
**Figure 10:** This is the Vault-1 Control IONIZING RADIATION INTERLOCK protocase when the transmitters are in override.
**Figure 11:** This is the Vault-1 Control IONIZING RADIATION INTERLOCK protocase when the transmitters are in override.


.. figure:: /images/testing_documentation/Vault-1_ionizing_radiation/override_relays.jpg
:scale: 20 %
:align: center

**Figure 11:** Vault-1 Control west panel relays for overriding the transmitters.
**Figure 13:** Vault-1 Control west panel relays for overriding the transmitters.


Timing out the Shield Door and Search sequence
----------------------------------------------

#. Rearm the accelerator and transmitters and open the shield door.
The accelerator and transmitter lamps should turn :red:`red`.
The ACCELERATOR, TRANSMITTERS, and SECURE PERIMETER lamps should turn :red:`red`.

#. Push only the first search button.
After :red:`x` seconds, the button LED should turn off.
Expand Down
Original file line number Diff line number Diff line change
Expand Up @@ -379,8 +379,8 @@ Administrative Override on the Dira Enclosure
- Dira and Pharos LASER ENCLOSURE INTERLOCK protocase door monitor will display nothing.
- Pharos UV and IR shutters will close.
- Dira UV and IR shutters will close.
- Dira will lose power.
- Pharos will lose power.
- The Dira power supply is cut off.
- The Pharos power supply is cut off.

#. Rearm the Dira.

Expand Down
Original file line number Diff line number Diff line change
Expand Up @@ -23,12 +23,8 @@ Starting Conditions
- Laser-1
- RF-1
- Vault-1 Control
- Vault-1

.. note::
Check calibration sheet in Accelerator Lab.

.. warning::
Make calibration sheet and find a place to post it.

#. The Ionizing Radiation Interlock protocase AREA MONITOR RADIATION lamps are :green:`green`.

Expand Down Expand Up @@ -65,6 +61,35 @@ Starting Conditions
**Figure 2:** These are the yellow and white contact blocks in the Vault-1 Control west panel.


.. list-table::
:align: center


* - .. image:: /images/testing_documentation/apantec/relays.jpg
:align: center
:scale: 20 %

- .. image:: /images/testing_documentation/apantec/relay8.jpg
:align: center
:scale: 20 %

* - Relays R3-R8. :white-cell:`=====================================================================`

- Relay 8. :white-cell:`==========================================================================`

.. table-caption::
**Figure 3:** These are the relays that correspond to the radiation chain in the Vault-1 Control west panel.
Note that these relays are different from the ones referenced in the Vault-1 Ionizing Radiation Testing Protocol.


.. .. figure:: /images/testing_documentation/apantec/relays.jpg
.. :align: center
.. :scale: 20 %
.. **Figure 3:** These are the relays that correspond to the radiation chain in the Vault-1 Control west panel.
.. Note that these relays are different from the ones referenced in the Vault-1 Ionizing Radiation Testing Protocol.
Testing Alert alarm
-------------------

Expand Down Expand Up @@ -97,13 +122,13 @@ Testing Alert alarm
:align: center
:scale: 20 %

**Figure 3:** This is an example of the RMW1 rate meter control in an alert state.
**Figure 4:** This is an example of the RMW1 rate meter control in an alert state.

.. figure:: /images/testing_documentation/apantec/Hutch-1_Control_protocase_radiation_fail.jpg
:align: center
:scale: 20 %

**Figure 4:** This is an example of the Hutch-1 Control IONIZING RADIATION INTERLOCK protocase AREA MONITOR RADIATION lamp in a fail state.
**Figure 5:** This is an example of the Hutch-1 Control IONIZING RADIATION INTERLOCK protocase AREA MONITOR RADIATION lamp in a fail state.
This should occur on the Vault-1 Control IONIZING RADIATION INTERLOCK protocase AREA MONITOR RADIATION lamp as well.


Expand Down Expand Up @@ -143,7 +168,7 @@ Testing High Alarm
:align: center
:scale: 20 %

**Figure 5:** This is an example of the RMW1 rate meter control in an alarm state.
**Figure 6:** This is an example of the RMW1 rate meter control in an alarm state.


.. TESTING FAIL ALARM
Expand Down Expand Up @@ -196,5 +221,5 @@ Emergency Tungsten Shutter Crash
#. Change the Apantec gamma probe high alarm set point to 0 in Hutch-1.
In response:

- Hutch-1 Control Ionizing Radiation Interlock protocase lamps for Beam Status turn :red:`red`.
- The COLLIMATED shutter (furthest, right side up shutter) closed.
- Hutch-1 Control IONIZING RADIATION INTERLOCK protocase lamps for Beam Status turn :red:`red`.
- The COLLIMATED shutter (furthest, right side up shutter) is closed.
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