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= Introduction =
== Introduction ==
Welcome to the installation guide for your new SensorLink system. This article provides instructions to ensure a safe and efficient installation. Safety is paramount throughout this process. Railroad environments present unique hazards, and strict adherence to all safety protocols is mandatory. Precise workmanship is equally critical for the reliable operation of this SensorLink system. Carefully follow each step, double-check connections, and ensure all components are securely mounted. Your diligence in both safety and workmanship will guarantee a successful and long-lasting installation.
Welcome! This guide provides instructions on installing your new Cinq Edge.


<br>'''Read Instructions Thoroughly Before Beginning; Understanding all of the Steps will Help Avoid Difficult Situations'''
Read all instructions thoroughly before beginning installation. Understanding the complete procedure will help to prevent errors and delays.


== Scope of Supply ==
Safety is essential when working in railroad environments. Ensure that you follow all required protocols.


The installation package includes all necessary components for the complete installation of your SensorLink system.
[[File:Overview photo horizontal.jpg|border|614x614px]]
== '''Scope of supply''' ==
COMET Electronics supplies the materials below as part of the Cinq Edge installation package:


[[File:Open Nema box.jpg|300px|right|thumb|Inside the SensorLink NEMA Enclosure]]
* '''<u>National Electrical Manufacturers Association (NEMA) enclosure and internal hardware:</u>'''
** Cinq Edge processor.
** MPRX (multiprotocol reader).
** Surge suppression.
** Cellular modem.
** Cellular antenna (mounted on top of enclosure).
** Battery charger.
** Sodium-ion battery.


'''Provided Components:'''
* <u>Mounting hardware:</u>
*NEMA Enclosure, which houses the SensorLink System
** Three 4” x 4” x 10’ galvanized metal posts:   
***SensorLink Processor
***  Enclosure post with strut channel.     
***MPRX
*** Antenna post with mounting brackets.
***Surge Suppression
*** Radar post with mounting brackets.
***Cellular Modem
***Battery Charger
***Sodium Ion Battery
***Cellular Antenna (mounted on top of enclosure)
*Two 4" x 4", 10-foot Galvanized Metal Posts
*Cables, Conduit and Fittings for system connections
*Two RFID Antennas
*Frauscher Wheel detector and accessories
*Radar Presence kit<br>


== Tools and Materials Needed ==
* <u>Grounding hardware:</u>
** Grounding rods.
** Copper grounding wire and connectors.


Installation also requires:
* <u>Antennas and RF components:</u>
*Basic hand tools
** Two radio‑frequency identification (RFID) antennas.
*Drill driver with Phillips and star bits
** Far- and near‑side antenna cables. 
*Pickaxe
** Cable hoods.
*Two-person auger, with a bit that is 8" in diameter and 36" long<br>
** 1” Sealtight conduit.
*250 lbs dry concrete
*5 gallons of water
*Two magnetic levels
*Block-and-tackle rig (recommended)


== Process Overview ==
* <u>Frauscher wheel detector and clamp.</u>
The following is a general installation process overview for a SensorLink system, broken down into key stages:
#Site Preparation and Planning:
##Site Survey: Conduct a thorough site survey to determine optimal reader and antenna placement. Identify potential obstructions and assess cabling pathways. If the site is to be served by an electrical circuit, check for access to power.
##Permitting and Approvals: Obtain all necessary permits and approvals from relevant authorities.
##Safety Planning: Develop a detailed safety plan, including emergency response procedures, as sites are often remote.
##Material Acquisition: Gather all required materials.
#Post and Ground Rod Installation
#SensorLink Subsystems
#<span style="background-color: rgb(251, 238, 184);" >Electrical InstallationXXX</span>
#<span style="background-color: rgb(251, 238, 184);" >System Configuration and Commissioning (Optimization)</span>
##<span style="background-color: rgb(251, 238, 184);" >Power-Up and Initial Checks: Power on the system and perform initial checks to verify proper operation.</span><br>
##<span style="background-color: rgb(251, 238, 184);" >Tag Testing: Perform tag testing to verify accurate tag reads and system performance.</span>
##<span style="background-color: rgb(251, 238, 184);" >Data Verification: Verify that the system is transmitting data correctly to the designated data collection system.</span>
#<span style="background-color: rgb(251, 238, 184);" >Final Inspection and Documentation:</span>
##<span style="background-color: rgb(251, 238, 184);" >Final Inspection: Conduct a thorough final inspection to ensure all components are properly installed and functioning.</span>
##<span style="background-color: rgb(251, 238, 184);" >Documentation: Complete all necessary documentation and optimization checklist</span>.<br>


= Site Considerations =
* <u>Solar power components:</u>
** Solar panel. 
** Solar wiring.


*Site should be readily accessible to nearby roads to facilitate maintenance.
* <u>Radar presence system:</u>
*Site should be located near commercial power source '''(NOT necessary for solar installations)'''.
** Radar presence unit.  
*Site should be located with consideration to the availability of appropriate communication facilities for system reporting and maintenance (cell coverage).
** Radar cable.
*Site should be located to avoid discontinuities in the track structure (joints, switches, grade or rail crossings) in the immediate vicinity of the SensorLink system.
*Site should provide sufficient space to install wayside equipment with respect to railroad clearance restriction requirements.
*The site should be located in order to satisfy railroad application requirements and with a consideration of the communication and processing lead-time required by the user of the data.<br>
*High vandalism areas should be avoided.
*Avoid low areas where flooding may occur.<br>
*Site selections should be made with an understanding of the railroad traffic patterns.
*If feasible, sites should be located to avoid potential sources of interference including large metallic objects and obstructions in close proximity to the reading area, reflective surfaces, and high voltage power lines, and other fixed and portable AEI reader systems.
*<span style="background-color: rgb(241, 196, 15);" >In order to reduce the potential for interference and subsequent performance degradation, site selection should be made to avoid having two AEI systems powered on at the same frequency at the same time. Two like frequencies should be kept a minimum of 1,500 Ft. apart. AEI transmitter frequencies are: 902.25 MHz, 903.75 MHz, 910.00 MHz, '''911.50 MHz''', 913.00 MHz, 915.00 MHz, 917.00 MHz, 918.50 MHz, 920.00 MHz, and 921.25 MHz</span><br>


= Pre-construction =
== Prerequisites ==
<div style="margin-left: 2em;">


#<span class="fontstyle0">Determine the transducer location first. This is the center of the site. The center of the </span><span class="fontstyle0">transducer must be located between two ties. This allows for the transducer claw to clamp under the rail.</span>
=== Required tool and materials ===
#<span class="fontstyle0">Mark the 4" x 4" post locations. Posts should be directly out from the transducer -- 12 feet, 6 inches from center of track.</span>
<blockquote>NOTE: While a single technician can complete the installation, a two‑ to three‑person crew is recommended for efficiency and safe handling of equipment.</blockquote>Ensure that your installation crew has access to the following tools and materials:


<span class="fontstyle0">Before digging, contact a qualified utility locator service. Utilities need to be marked before digging to safely avoid them. </span>
* Basic hand tools.
<span class="fontstyle0">See below a non-comprehensive list of utility locator services. Local authorities need to be notified before work begins.</span>
* 25-30 ft tape measure.
{| class="wikitable" style="border-collapse: collapse; width: 60%; margin-left: auto; margin-right: auto; height: 121px;" border="1px" cellpadding="2px"
* 20” mason line for level measuring.
|- style="height: 23px;"
* Drill driver with Phillips and bits: Phillips bit, ⅜”, hex socket bit and ½” hex socket bit.
| style="width: 31.6921%; height: 23px; background-color: #ced4d9;" | Service Provider
* Pickaxe.
| style="width: 36.7892%; height: 23px; background-color: #ced4d9;" | Locality
* Two‑person auger with an 8” x 36” bit.
| style="width: 31.5187%; height: 23px; background-color: #ced4d9;" | Contact
* Rotary hammer (or demolition hammer) with a grounding‑rod driver bit, or a manual post driver.
|- style="height: 49px;"
* 250 lbs of dry concrete.
| style="width: 31.6921%; height: 49px;" | Call 811
* 5 gallons of water.
| style="width: 36.7892%; height: 49px;" | United States
* Two magnetic levels.
| style="width: 31.5187%; height: 49px;" | Call 811 or visit [https://call811.com/ https://call811.com/]
* 6’ ladder.
|- style="height: 49px;"
* Wire fishing tool or equivalent to route cable.
| style="width: 31.6921%; height: 49px;" | Click Before You Dig
| style="width: 36.7892%; height: 49px;" | Canada
| style="width: 31.5187%; height: 49px;" | Visit [https://www.clickbeforeyoudig.com/ https://www.clickbeforeyoudig.com/]
|}


<span class="fontstyle0">Comet Industries is not affiliated with or endorsed by any of the service providers listed.</span>
=== Choose an installation site ===
Cinq Edge requires specific environmental and track conditions for accurate performance. Evaluate each potential installation site using the criteria below to ensure that operational requirements are met.


= Earthwork =
<u>Choose a site that:</u>
Two 4" x 4" galvanized posts and the 1" Sealtight conduit (with the far-side antenna cable inside) need to be installed below grade.[[File:Guys Auger use this one png.png|300px|thumb]]


'''Post holes'''
* Is accessible by road for maintenance crews.
*Holes should be located 12 feet, six inches from the center of track.
* Has adequate sunlight for solar installations (not required for commercial power installations).
*Holes should be aligned with wheel sensor (transducer)
* Has a commercial power source for AC power installations (not required for solar installations).
*Holes must be 8 inches in diameter and 3 feet deep.
* Has reliable cellular coverage for system reporting and maintenance.
* Has continuous track structure that is free of joints, switches, grade crossings, or rail crossings.
* Offers sufficient space for wayside equipment within railroad clearance limits.
* Allows for consistent and predictable railroad traffic patterns.


<u>Avoid locations that:</u>


* Pose vandalism risk.
* Are in low-lying terrain or otherwise prone to flooding.
* Contain discontinuities or obstructions that interfere with system performance, including:
** Large, metallic objects near the reading area.
** Reflective surfaces.
** High-voltage power lines.
** Fixed or portable automatic equipment identification (AEI) reader systems.


'''Shallow Trench'''
=== '''Contact utility locator services''' ===
*One 3"-deep conduit channel is needed between the two post holes.<br>
Before digging, contact a qualified utility locator service to identify and mark underground utilities. Notify any required local authorities before work begins.
*Use the pickaxe to dig out a small trench from the base of the far-side antenna, under the track, and out the other side to connect with the Enclosure
[[File:Dig trench under track png.png|300px|thumb]]


* United States: Call 811 or visit [https://call811.com call811.com].
* Canada: Visit [https://clickbeforeyoudig.com clickbeforeyoudig.com].


== Installation ==


'''SITE LAYOUT DIAGRAM'''
=== 1. Unpack the installation package ===
Unpack the shipping crate and separate all components needed for installation:


'''SITE ELEVATION DIAGRAM'''
* Remove the lid from the wooden shipping crate.
* Take out any boxed items or loose components not attached to the NEMA enclosure and set them aside for later use.


= Posts =
See Drawing [https://docdepot.railrsm.com/images/d/d1/481403.pdf 481403 Cinq Edge (Solar) Crate Disassembly] for details on unpacking specific elements of the installation package.
4x4 galvanized posts [[400072]] with post caps [[400079]] will be installed on each side of the track.


Posts should be setback per layout, 12 foot 6 inches from center of track. They should be angled parallel with track. Both posts should be set in 100lbs of sack concrete and covered in native backfill. In most cases, adding dry concrete is sufficient. No need to cure before completing installation. Posts are to be hand backfilled and tamped, checking and adjusting for plumb, square, and level.
=== 2. Position the wheel sensor ===
Determine the wheel sensor position along the rail. The wheel sensor centerline sits between two ties, allowing the claw to clamp beneath the rail. Use this position as the reference point for marking the post locations.


*Install post cap on one end of the post prior to erecting the post. A cap should be installed on both posts.
See the site considerations details on the [[Frauscher Wheel Detector Installation and Optimization|Frauscher Wheel Detector Installation and Optimization]] topic for full instructions on positioning the wheel sensor.
*Set the post in ballast, capped end upright.
*Mark on the posts 42.5" from top of rail. This marks where the RF antennas will be placed later.


= Ground Rods =
=== '''3. Excavate post locations''' ===
Drive the ground rods [[400421]] directly after back-fill before further assembly to help keep a clear workspace. If you mushroom the head of the rod during installation, it will need to be ground back to profile in order to CADweld the bonding wire to it. '''NEED PLACEMENT DIAGRAM'''
Set the post locations, dig the mounting holes, cut the conduit trench, and install the support posts as described below:


*Drive one ground rod 2-6" from each post.
==== '''3.1 Find post locations''' ====
*Ground Rods should be driven to 4-8" above grade.
Measure 12 ft 6 in from the track centerline on the near‑side of the track and mark the location to place the enclosure post. Measure 12 ft 6 in from the track centerline on the far‑side of the track and mark the second post location. Align both marks with the wheel sensor.


= Subsystem Install =
==== '''3.2 Dig post holes''' ====
Dig the two post holes at the marked locations using the auger. Excavate each hole to a depth of 36 inches to accommodate each 4” x 4” galvanized post. Break up the top layer of soil with a pickaxe if needed. Optionally, add small amounts of water while drilling to help the auger penetrate compacted ground.


== Solar Panel ==
[[File:Guys Auger use this one.jpg|border|584x584px]]
[[image:img1745655521408.jpeg|300px|right|frameless]]


When attaching the solar panel, be aware of its position relative to the sun. In the northern hemisphere, south facing solar panels allow for optimal exposure to the sun. Depending on positioning of the rail, optimal placement may not be possible.
==== '''3.3 Cut the Conduit Trench''' ====
Cut a shallow trench to form a 3‑in‑deep conduit channel between the two post holes. Use a pickaxe or similar tool to cut a continuous path from post to post. Extend this channel under the rails to connect the two post locations.


* Assemble brackets onto solar panel.
=== '''4. Raise enclosure and antenna posts''' ===
* Attach to nearside post using provided U-bolts according to optimal placement.
To raise the enclosure post, place the post in the near‑side hole. Ensure correct bracket orientation based on '''Note 11''' in Drawing [https://docdepot.railrsm.com/images/a/af/481000.pdf 481000 Cinq Edge (Solar) Install Guide], with the strut channel facing away from the track. Keep the post square to the track and level in both directions. Fill the hole with dry concrete, packing it firmly. (Approximately 2.5 bags of 50‑lb concrete are required.) Adding small amounts of water at intervals is recommended.<blockquote>Important! Use magnetic levels to maintain vertical and horizontal alignment.</blockquote>Install the antenna post using the same procedure. See Note 13 on Drawing [https://docdepot.railrsm.com/images/a/af/481000.pdf 481000 Cinq Edge (Solar) Install Guide]
for correct orientation.


== Radar Presence Detector ==
=== '''5. Align hardware''' ===
The radar must be attached to the nearside post, facing the rail. '''PHOTO NEEDED, MORE PRODUCT INFO NEEDED'''
Complete the following steps to ensure proper alignment for your hardware:


*Attach radar facing the track, using provided U-bolts, to nearside post.
# Use a 20‑ft Mason’s line to determine the top‑of‑rail (TOR) height. See Drawing [https://docdepot.railrsm.com/images/a/a8/481513_TOR_MEASURING.pdf 481513 T.O.R. Measurement Procedure] for details.
# Tie the string to the opposite rail, pull it taut across the track, and mark the post at the point where the string touches the top of the rail.
# Measure 31 inches and 53 inches above TOR to mark the antenna bracket locations.<blockquote>'''NOTE:''' If the strut aligns with the antenna bracket height Move the near‑side strut channel location. If adjustment is required, move both the top and bottom strut brackets equally to maintain 30 inches between the outside edges of the strut channel.</blockquote>


== SensorLink Enclosure ==
=== '''6. Attach the solar panel''' ===
The system is ready for the mounting of the SensorLink Enclosure ''' [INSERT PART NUMBER]'''.
Position the radar post based on the antenna bracket orientation. See '''Note 13''' on Drawing [https://docdepot.railrsm.com/images/a/af/481000.pdf 481000 Cinq Edge (Solar) Install Guide]
for correct orientation. Position the solar panel so it will face south or southeast when the post is raised (see Note 11 solar panel orientation).


{| class="wikitable" style="border-collapse: collapse; width: 100%;"
Attach the solar panel to the top of the radar post while the top end of the post is still accessible. See Note 3 on [https://docdepot.railrsm.com/images/1/1d/481515.pdf 481515 Cinq Edge (Solar) Connections and Install]. Support the post so the panel does not rest on the ground.  
|- style="background-color: rgb(149, 165, 166);"
! style="width: 100%; text-align: center;" | The SensorLink enclosure is heavy and awkward to handle. Plan your movements, this is a multiple person job.
|}
Before attaching the enclosure, mark on the nearside post where the enclosure will be attached. Ideal placement of the SensorLink enclosure will ensure accessibility when working inside the enclosure later. The SensorLink enclosure should be attached on the side of the post that is opposite to the track.


'''[INSERT ORIENTATION DIAGRAM]'''
[[File:Solar panel supported.jpg|border]]


*Attach to nearside post using provided U-Bolts on the side of the post opposite to the track.
=== '''7. Attach the radar''' ===
Secure the radar assembly to the post by attaching the radar box to the radar‑bracket arms on the post. See Note 1 on Drawing [https://docdepot.railrsm.com/images/1/1d/481515.pdf 481515 Cinq Edge (SOLAR) Connections and Install].


<br>
=== '''8. Raise radar post''' ===
== Antenna Mounting ==


[[image:img1745561367454.jpeg|300px|right|frameless]]
# Stand up the radar post.
# Secure the post using large U-bolts see Note 4 Drawing [https://docdepot.railrsm.com/images/1/1d/481515.pdf 481515 Cinq Edge (Solar) Connections and Install] for placement.
# Place U-bolts slightly above and below enclosure strut channel.


'''NEED DIAGRAMS'''<br>Two ParaPanel Antennas [[400942]] need to be installed, one on each post. The vertical center of the antenna should be 42 inches above top of rail, facing the track. If the posts were marked during [[#Posts|Posts]], the mark can be used to aid in mounting the antennas at the proper height.
=== '''9. Drive grounding rods''' ===


<span style="background-color: rgb(251, 238, 184);">Note: Mounting hardware for the parapanel antenna is stainless steel. Caution should be taken to avoid thread galling.&nbsp; This includes thread lubrication (best case "anti-seize"), and careful handling.</span>
# Drive each grounding rod 2-6 inches from the post, in the loosened soil around the post hole. (Avoid driving the grounding rods into the concrete.
*Attach L-brackets to the back of the antennas using provided screws.
# Drive the rod until only 4-8 inches remain above grade.
*Mount the nearside antenna first. The antenna should be attached facing the track, opposite the SensorLink enclosure.<br>
# Cut the grounding wire in half to create two pieces with a terminal on one end. See Drawing [https://docdepot.railrsm.com/images/e/e7/481514.pdf 481514 Cinq Edge Grounding Install] for details.
**The provided plate sits against the long side of the L-bracket.
**The U-bolts attach around the tower post.
*Attach the second antenna directly across from the first in the same manner.


= Antenna Connections =
=== '''10. Attach antennas''' ===
Sealtight conduit [[400514|400514]] is used to connect the RF antennas to the SensorLink enclosure. Sealtight conduit is provided in the kit for this purpose.


The conduit should be laid in the 3" deep channel made in [[#Earthwork|Earthwork]].
# Position the antenna brackets so that they are aligned with the antenna bracket locations from Section 8 Step 3.
# Attach the antennas to the far‑side and near‑side antenna brackets.
# Ensure the antenna brand label is upright at the top.
# Use four bolts to secure each antenna to its bracket.
# Install the grounding‑wire terminal on the lower antenna bracket assembly. See Note 4 on Drawing [https://docdepot.railrsm.com/images/e/e7/481514.pdf 481514 Cinq Edge Grounding Install].
# Apply thread lubrication (anti‑seize preferred) to stainless‑steel parapanel hardware to prevent thread galling. See Note 5 on Drawing [https://docdepot.railrsm.com/images/1/1d/481515.pdf 481515 Cinq Edge (Solar) Connections and Install].


= Wheel Sensor =
=== '''11. Install the enclosure''' ===
[[image:img1745544101928.jpeg|300px|right|frameless]]


Refer to [[Frauscher Wheel Detector Installation and Optimization]] for instruction on installing the wheel sensor to the rail. The mounting point on the track should be in line with the antennas as much as possible.
# Position the enclosure to the near‑side post on the side away from the track.
*Cut the Frauscher's protective hose to the appropriate length and install using the grey cable fitting on the bottom of the enclosure.
# From inside, loosely feed the bolts through the back of the enclosure (from inside) and thread onto the cone nuts.
*Cut the sensor wire to length, (with a service loop) and landed in the enclosure '''as shown'''.&nbsp;'''NEED PHOTO/DIAGRAM'''
# Slide the top and bottom cone nuts on one side into the strut channel.
# Shift the inserted cone nuts slightly towards the center to create space for the opposite side.
# Slide the second set of cone nuts into the strut channel and center the enclosure.
# Adjust the cone nuts vertically if needed.
# Secure the bolts from inside the enclosure. See Note 2 on Drawing [[Media:481515.pdf|481515 Cinq Edge (Solar) Connections and Install]].


= Presence Detector Connections =
=== '''12. Install wheel detector''' ===
'''Materials Needed'''
Install the wheel sensor and clamp, ensuring that the mounting point on the track is aligned with the near-side and far-side poles as closely as possible and located between the two ties.


'''Tools Needed'''
See the [[Frauscher Wheel Detector Installation and Optimization|Frauscher Wheel Detector Installation and Optimization]] topic for detailed instructions.


= Electrical Connections =
=== '''13. Connect antennas''' ===


== Grounding Connections ==
# Lay out the far‑side antenna conduit. Starting at the near‑side post, run the conduit through the shallow trench under the track and to the bottom of the far‑side post. Coil any slack and lay it neatly against the near‑side post.
'''Materials Needed'''
# On both sides of the track, attach the cables and hoods to the antennas. See Note 6 on Drawing [[Media:481515.pdf|481515 Cinq Edge (Solar) Connections and Install]].
*No. 6 Bare Copper Wire
# Bury the conduit by filling in the trench.
'''Tools Needed'''
*Wire cutter<br>
'''Procedure'''
#On the nearside post, partially unscrew the grounding lug's inner bolt and insert copper wire. Secure wire by tightening the inner bolt.
#Secure wire to grounding rod with grounding rod clamp.
#Cut the copper wire on the excess side of the grounding rod.<br>
#On the farside, screw ground lug to antenna.
#Repeat steps 1-3 on the farside post.


== Solar Panel Connections ==
=== '''14. Connect system wiring''' ===
[[image:img1745544101928.jpeg|300px|right|frameless]]
Connections from the solar panel should be run to the enclosure. The cables should run through the second and third black cable fittings. The cable fittings are found on the bottom of the enclosure.


== Batteries ==
==== '''14.1 Connect radar wiring''' ====
An area inside the SensorLink enclosure has been marked for battery [[400266|400266]] placement.  
Feed the radar wiring up the conduit and connect it to the radar box.


*Install the battery in the marked area.
==== '''14.2 Connect grounding wiring''' ====
*Connect the battery using the color codes (Black -)(Red +)
Attach the grounding wire end to the grounding rod with clamp.


= Final Inspection =
===== '''14.3 Connect solar wiring''' =====
Calibrating the wheel sensor, checking the reader and reporting to RSM. '''NEEDS MORE INFORMATION'''
 
# Ensure that the breaker is off and attach the battery wiring to the terminals.
# Feed solar wiring up conduit and connect to solar panel.
# Connect them with the panel: positive to positive; negative to negative.
# Make sure they click firmly in place in the cable connectors.
 
<div style="border:1px solid #ccc; padding:1em; margin:1em 0; background:#f9f9f9;">
=== <b>Verify final install checklist</b> ===
Verify the details below before completing installation. See Drawing [[Media:481001.pdf|481001 Cinq Edge (Solar) Install Checklist]] for details.
<ul>
<li>Solar panel orientation faces south or southeast.</li>
<li>Enclosure orientation faces away from track.</li>
<li>Antenna orientation faces each other and in line with wheel sensor.</li>
<li>Antenna center height 42” above TOR.</li>
<li>Solar panel wiring connected.</li>
<li>Radar wiring connected.</li>
<li>Wiring is secured to post through conduit.</li>
<li>Wheel sensor installed correctly.</li>
<li>Grounding rod buried and attached to antenna.</li>
<li>Battery connected to system.</li>
<li>Enclosure door closed and locked.</li>
<li>Cable conduit is buried and neatly wound at base of posts.</li>
</ul>
</div>
 
=== 15. Perform install test procedure ===
 
# Check all wiring, antenna, and sensor connections.
# Download the VictronConnect app from the Victron Energy web site: https://www.victronenergy.com/support-and-downloads/software.
# For installation and operating instructions, see the latest VictronConnect manual in the Victron Energy site’s Manuals section.
# Turn the breaker on.
# Connect the charger to the VictronConnect app.
# Use the app to verify solar input, charger operation, and battery charging status.
# Locate the modem inside the enclosure, near the top-right and adjacent to the antenna feed. Verify that the modem powers on and shows a green LED. (A steady green LED indicates the modem is powered. A blinking green LED indicates activity and communication.)
 
=== '''16. Test system startup''' ===
 
# Ensure that the battery is charged to 11 V. You can either naturally solar-charge the battery or, for faster results, use a jumper.
# Manually test presence detection at the wheel sensor: On the controller board (red PCB in enclosure), ensure that the presence LED is lit green. Trigger presence by swiping a metallic object (for example, a wrench or railroad spike) across the top of the wheel sensor. Verify that the presence LED changes color from green to purple, then blue.  '''NOTE:''' The LED remains blue while presence is active (default of two minutes).
# Verify that the relay in the lower‑left quadrant of the enclosure activates during the presence test and that its red LED illuminates, indicating that the MPRX is powered.
# Verify that the power meter in the top‑left of the enclosure displays a non‑zero output between 0.7 W and 2.0 W (typically ~1.4 W) when the MPRX is active.
# Log in to Cinq. See the [[CINQ Edge User Quick Start Guide]] for details on using Cinq.
 
== Additional resources ==
 
* [https://docdepot.railrsm.com/images/a/af/481000.pdf 481000 Cinq Edge (Solar) Install Guide]
* [https://docdepot.railrsm.com/images/1/10/481001.pdf 481001 Cinq Edge (Solar) Install Checklist]
* [https://docdepot.railrsm.com/images/d/d1/481403.pdf 481403 Cinq Edge (Solar) Crate Disassembly]
* [https://docdepot.railrsm.com/images/e/e7/481514.pdf 481514 Cinq Edge Grounding Install]
* [https://docdepot.railrsm.com/images/1/1d/481515.pdf 481515 Cinq Edge (Solar) Connections and Install]
* [[CINQ Edge User Quick Start Guide]]
* [[Frauscher Wheel Detector Installation and Optimization|Installation and Optimization]]

Latest revision as of 14:58, 9 September 2026

Introduction

Welcome! This guide provides instructions on installing your new Cinq Edge.

Read all instructions thoroughly before beginning installation. Understanding the complete procedure will help to prevent errors and delays.

Safety is essential when working in railroad environments. Ensure that you follow all required protocols.

Scope of supply

COMET Electronics supplies the materials below as part of the Cinq Edge installation package:

  • National Electrical Manufacturers Association (NEMA) enclosure and internal hardware:
    • Cinq Edge processor.
    • MPRX (multiprotocol reader).
    • Surge suppression.
    • Cellular modem.
    • Cellular antenna (mounted on top of enclosure).
    • Battery charger.
    • Sodium-ion battery.
  • Mounting hardware:
    • Three 4” x 4” x 10’ galvanized metal posts:  
      •  Enclosure post with strut channel.    
      • Antenna post with mounting brackets.
      • Radar post with mounting brackets.
  • Grounding hardware:
    • Grounding rods.
    • Copper grounding wire and connectors.
  • Antennas and RF components:
    • Two radio‑frequency identification (RFID) antennas.
    • Far- and near‑side antenna cables.
    • Cable hoods.
    • 1” Sealtight conduit.
  • Frauscher wheel detector and clamp.
  • Solar power components:
    • Solar panel.
    • Solar wiring.
  • Radar presence system:
    • Radar presence unit.
    • Radar cable.

Prerequisites

Required tool and materials

NOTE: While a single technician can complete the installation, a two‑ to three‑person crew is recommended for efficiency and safe handling of equipment.

Ensure that your installation crew has access to the following tools and materials:
  • Basic hand tools.
  • 25-30 ft tape measure.
  • 20” mason line for level measuring.
  • Drill driver with Phillips and bits: Phillips bit, ⅜”, hex socket bit and ½” hex socket bit.
  • Pickaxe.
  • Two‑person auger with an 8” x 36” bit.
  • Rotary hammer (or demolition hammer) with a grounding‑rod driver bit, or a manual post driver.
  • 250 lbs of dry concrete.
  • 5 gallons of water.
  • Two magnetic levels.
  • 6’ ladder.
  • Wire fishing tool or equivalent to route cable.

Choose an installation site

Cinq Edge requires specific environmental and track conditions for accurate performance. Evaluate each potential installation site using the criteria below to ensure that operational requirements are met.

Choose a site that:

  • Is accessible by road for maintenance crews.
  • Has adequate sunlight for solar installations (not required for commercial power installations).
  • Has a commercial power source for AC power installations (not required for solar installations).
  • Has reliable cellular coverage for system reporting and maintenance.
  • Has continuous track structure that is free of joints, switches, grade crossings, or rail crossings.
  • Offers sufficient space for wayside equipment within railroad clearance limits.
  • Allows for consistent and predictable railroad traffic patterns.

Avoid locations that:

  • Pose vandalism risk.
  • Are in low-lying terrain or otherwise prone to flooding.
  • Contain discontinuities or obstructions that interfere with system performance, including:
    • Large, metallic objects near the reading area.
    • Reflective surfaces.
    • High-voltage power lines.
    • Fixed or portable automatic equipment identification (AEI) reader systems.

Contact utility locator services

Before digging, contact a qualified utility locator service to identify and mark underground utilities. Notify any required local authorities before work begins.

Installation

1. Unpack the installation package

Unpack the shipping crate and separate all components needed for installation:

  • Remove the lid from the wooden shipping crate.
  • Take out any boxed items or loose components not attached to the NEMA enclosure and set them aside for later use.

See Drawing 481403 Cinq Edge (Solar) Crate Disassembly for details on unpacking specific elements of the installation package.

2. Position the wheel sensor

Determine the wheel sensor position along the rail. The wheel sensor centerline sits between two ties, allowing the claw to clamp beneath the rail. Use this position as the reference point for marking the post locations.

See the site considerations details on the Frauscher Wheel Detector Installation and Optimization topic for full instructions on positioning the wheel sensor.

3. Excavate post locations

Set the post locations, dig the mounting holes, cut the conduit trench, and install the support posts as described below:

3.1 Find post locations

Measure 12 ft 6 in from the track centerline on the near‑side of the track and mark the location to place the enclosure post. Measure 12 ft 6 in from the track centerline on the far‑side of the track and mark the second post location. Align both marks with the wheel sensor.

3.2 Dig post holes

Dig the two post holes at the marked locations using the auger. Excavate each hole to a depth of 36 inches to accommodate each 4” x 4” galvanized post. Break up the top layer of soil with a pickaxe if needed. Optionally, add small amounts of water while drilling to help the auger penetrate compacted ground.

3.3 Cut the Conduit Trench

Cut a shallow trench to form a 3‑in‑deep conduit channel between the two post holes. Use a pickaxe or similar tool to cut a continuous path from post to post. Extend this channel under the rails to connect the two post locations.

4. Raise enclosure and antenna posts

To raise the enclosure post, place the post in the near‑side hole. Ensure correct bracket orientation based on Note 11 in Drawing 481000 Cinq Edge (Solar) Install Guide, with the strut channel facing away from the track. Keep the post square to the track and level in both directions. Fill the hole with dry concrete, packing it firmly. (Approximately 2.5 bags of 50‑lb concrete are required.) Adding small amounts of water at intervals is recommended.

Important! Use magnetic levels to maintain vertical and horizontal alignment.

Install the antenna post using the same procedure. See Note 13 on Drawing 481000 Cinq Edge (Solar) Install Guide

for correct orientation.

5. Align hardware

Complete the following steps to ensure proper alignment for your hardware:

  1. Use a 20‑ft Mason’s line to determine the top‑of‑rail (TOR) height. See Drawing 481513 T.O.R. Measurement Procedure for details.
  2. Tie the string to the opposite rail, pull it taut across the track, and mark the post at the point where the string touches the top of the rail.
  3. Measure 31 inches and 53 inches above TOR to mark the antenna bracket locations.

    NOTE: If the strut aligns with the antenna bracket height Move the near‑side strut channel location. If adjustment is required, move both the top and bottom strut brackets equally to maintain 30 inches between the outside edges of the strut channel.

6. Attach the solar panel

Position the radar post based on the antenna bracket orientation. See Note 13 on Drawing 481000 Cinq Edge (Solar) Install Guide for correct orientation. Position the solar panel so it will face south or southeast when the post is raised (see Note 11 solar panel orientation).

Attach the solar panel to the top of the radar post while the top end of the post is still accessible. See Note 3 on 481515 Cinq Edge (Solar) Connections and Install. Support the post so the panel does not rest on the ground.

7. Attach the radar

Secure the radar assembly to the post by attaching the radar box to the radar‑bracket arms on the post. See Note 1 on Drawing 481515 Cinq Edge (SOLAR) Connections and Install.

8. Raise radar post

  1. Stand up the radar post.
  2. Secure the post using large U-bolts see Note 4 Drawing 481515 Cinq Edge (Solar) Connections and Install for placement.
  3. Place U-bolts slightly above and below enclosure strut channel.

9. Drive grounding rods

  1. Drive each grounding rod 2-6 inches from the post, in the loosened soil around the post hole. (Avoid driving the grounding rods into the concrete.
  2. Drive the rod until only 4-8 inches remain above grade.
  3. Cut the grounding wire in half to create two pieces with a terminal on one end. See Drawing 481514 Cinq Edge Grounding Install for details.

10. Attach antennas

  1. Position the antenna brackets so that they are aligned with the antenna bracket locations from Section 8 Step 3.
  2. Attach the antennas to the far‑side and near‑side antenna brackets.
  3. Ensure the antenna brand label is upright at the top.
  4. Use four bolts to secure each antenna to its bracket.
  5. Install the grounding‑wire terminal on the lower antenna bracket assembly. See Note 4 on Drawing 481514 Cinq Edge Grounding Install.
  6. Apply thread lubrication (anti‑seize preferred) to stainless‑steel parapanel hardware to prevent thread galling. See Note 5 on Drawing 481515 Cinq Edge (Solar) Connections and Install.

11. Install the enclosure

  1. Position the enclosure to the near‑side post on the side away from the track.
  2. From inside, loosely feed the bolts through the back of the enclosure (from inside) and thread onto the cone nuts.
  3. Slide the top and bottom cone nuts on one side into the strut channel.
  4. Shift the inserted cone nuts slightly towards the center to create space for the opposite side.
  5. Slide the second set of cone nuts into the strut channel and center the enclosure.
  6. Adjust the cone nuts vertically if needed.
  7. Secure the bolts from inside the enclosure. See Note 2 on Drawing 481515 Cinq Edge (Solar) Connections and Install.

12. Install wheel detector

Install the wheel sensor and clamp, ensuring that the mounting point on the track is aligned with the near-side and far-side poles as closely as possible and located between the two ties.

See the Frauscher Wheel Detector Installation and Optimization topic for detailed instructions.

13. Connect antennas

  1. Lay out the far‑side antenna conduit. Starting at the near‑side post, run the conduit through the shallow trench under the track and to the bottom of the far‑side post. Coil any slack and lay it neatly against the near‑side post.
  2. On both sides of the track, attach the cables and hoods to the antennas. See Note 6 on Drawing 481515 Cinq Edge (Solar) Connections and Install.
  3. Bury the conduit by filling in the trench.

14. Connect system wiring

14.1 Connect radar wiring

Feed the radar wiring up the conduit and connect it to the radar box.

14.2 Connect grounding wiring

Attach the grounding wire end to the grounding rod with clamp.

14.3 Connect solar wiring
  1. Ensure that the breaker is off and attach the battery wiring to the terminals.
  2. Feed solar wiring up conduit and connect to solar panel.
  3. Connect them with the panel: positive to positive; negative to negative.
  4. Make sure they click firmly in place in the cable connectors.

Verify final install checklist

Verify the details below before completing installation. See Drawing 481001 Cinq Edge (Solar) Install Checklist for details.

  • Solar panel orientation faces south or southeast.
  • Enclosure orientation faces away from track.
  • Antenna orientation faces each other and in line with wheel sensor.
  • Antenna center height 42” above TOR.
  • Solar panel wiring connected.
  • Radar wiring connected.
  • Wiring is secured to post through conduit.
  • Wheel sensor installed correctly.
  • Grounding rod buried and attached to antenna.
  • Battery connected to system.
  • Enclosure door closed and locked.
  • Cable conduit is buried and neatly wound at base of posts.

15. Perform install test procedure

  1. Check all wiring, antenna, and sensor connections.
  2. Download the VictronConnect app from the Victron Energy web site: https://www.victronenergy.com/support-and-downloads/software.
  3. For installation and operating instructions, see the latest VictronConnect manual in the Victron Energy site’s Manuals section.
  4. Turn the breaker on.
  5. Connect the charger to the VictronConnect app.
  6. Use the app to verify solar input, charger operation, and battery charging status.
  7. Locate the modem inside the enclosure, near the top-right and adjacent to the antenna feed. Verify that the modem powers on and shows a green LED. (A steady green LED indicates the modem is powered. A blinking green LED indicates activity and communication.)

16. Test system startup

  1. Ensure that the battery is charged to 11 V. You can either naturally solar-charge the battery or, for faster results, use a jumper.
  2. Manually test presence detection at the wheel sensor: On the controller board (red PCB in enclosure), ensure that the presence LED is lit green. Trigger presence by swiping a metallic object (for example, a wrench or railroad spike) across the top of the wheel sensor. Verify that the presence LED changes color from green to purple, then blue. NOTE: The LED remains blue while presence is active (default of two minutes).
  3. Verify that the relay in the lower‑left quadrant of the enclosure activates during the presence test and that its red LED illuminates, indicating that the MPRX is powered.
  4. Verify that the power meter in the top‑left of the enclosure displays a non‑zero output between 0.7 W and 2.0 W (typically ~1.4 W) when the MPRX is active.
  5. Log in to Cinq. See the CINQ Edge User Quick Start Guide for details on using Cinq.

Additional resources