Cooper Bussmann Landscape Lighting 858 User Manual

DOCUMENT  
REVISION  
1025  
B
July 14, 2011  
InstructionManual  
Airside Guidance Sign AGS-LED  
858 LED Series  
Sizes 1, 2, 3, 4 and 5  
Cooper Industries  
Crouse-Hinds Division  
Airport Lighting Products  
1200 Kennedy Road  
Windsor, CT 06095  
Copyright © 2011 Cooper Technologies Company  
For Parts or Technical Service Call (860) 683-4300  
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2
Limited Product Warranty  
THE FOLLOWING WARRANTY IS EXCLUSIVE AND IN LIEU OF ALL OTHER  
WARRANTIES, WHETHER EXPRESS, IMPLIED OR STATUTORY, INCLUDING, BUT  
NOT BY WAY OF LIMITATION, ANY WARRANTY OF MERCHANTABILITY OR  
FITNESS FOR ANY PARTICULAR PURPOSE.  
Crouse-Hinds Airport Lighting Products (the “Company”) warrants to each original Buyer of  
Products manufactured by the Company that such Products are, at the time of delivery to the  
Buyer, free of material and workmanship defects, provided that no warranty is made with respect  
to:  
Any Product which has been repaired or altered in such a way, in Company’s judgment, as to  
affect the Product adversely;  
Any Product which has, in Company’s judgment, been subject to negligence, accident or  
improper storage;  
Any Product which has not been operated and maintained in accordance with normal practice and  
in conformity with recommendations and published specification of Company; and,  
Any Products, component parts or accessories manufactured by others but supplied by Company  
(any claims should be submitted directly to the manufacturer thereof).  
Crouse-Hinds Airport Lighting Products’ obligation under this warranty is limited to use of  
reasonable efforts to repair or, at its option, replace, during normal business hours, at any  
authorized service facility of Company, any Products which in its judgment proved not to be as  
warranted within the applicable warranty period. All costs of transportation of Products claimed  
not to be as warranted and of repaired or replacement Products to or from such service facility  
shall be borne by Purchaser. Company may require the return of any Product claimed not to be as  
warranted to one of its facilities as designed by Company, transportation prepaid by Purchaser, to  
establish a claim under this warranty. The cost of labor for installing a repaired or replacement  
product shall be borne by Purchaser. Replacement parts provided under the terms of this  
warranty are warranted for the remainder of the warranty period of the Products upon which they  
are installed to the same extent as if such parts were original components thereof. Warranty  
services provided under the Agreement does not assure uninterrupted operations of Products;  
Company does not assume any liability for damages caused by any delays involving warranty  
service. The warranty period for the Products is 24 months from date of shipment or 12 months  
from date of first use whichever occurs first.  
iii  
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Safety Notices  
This equipment is normally used or connected to circuits that may employ voltages which are  
dangerous and may be fatal if accidentally contacted by operating or maintenance personnel.  
Extreme caution should be exercised when working with this equipment. While practical safety  
precautions have been incorporated in this equipment, the following rules must be strictly  
observed:  
3.1  
Keep Away from Live Circuits  
Operating and maintenance personnel must at all times observe all safety regulations. Do not  
perform maintenance on internal components or service with power ON.  
WARNING:  
DO NOT PERFORM MAINTENANCE ON INTERNAL  
COMPONENTS OR SERVICE WITH POWER ON.  
WARNING  
3.2  
RESUSCITATION  
Maintenance personnel should familiarize themselves with the technique for resuscitation found  
in widely published manuals of first aid instruction.  
iv  
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Safety Symbols  
Danger  
4.1  
DANGER:  
DANGER  
The hazard or unsafe practice will result in severe injury or death.  
4.2  
Warning  
WARNING:  
WARNING  
The hazard or unsafe practice could result in severe injury or death.  
4.3  
Caution  
CAUTION:  
CAUTION  
The hazard or unsafe practice could result in minor injury.  
4.4  
Warning: Notice  
WARNING:  
NOTICE  
Possibly dangerous situation, goods might be damaged.  
4.5  
Warning : Important  
WARNING:  
IMPORTANT  
Helpful information.  
v
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5
Test Equipment and Tools  
There is a wide variety of tools and equipment needed to safely and correctly perform airfield lighting  
equipment installation and maintenance. In addition to the obvious tools (screwdrivers, wrenches, etc.),  
there is a specialized equipment needed to do the job.  
Multimeter  
One of the most important pieces of test equipment is the Multimeter. It is used to measure voltages,  
currents, and resistances. Almost every single maintenance task requires the use of a multimeter at one  
point or another. A quality meter in good repair and calibration is a must because airfield lighting power  
distribution equipment produces non-sinusoidal waveforms, traditional average reading meters are  
inaccurate and have very limited use. Checking or adjusting equipment based upon incorrect current  
reading may dramatically reduce lamp life and adversely affect power equipment performance. A meter  
with TRUE RMS measuring capability and a current clamp-on probe is needed to accurately measure  
distorted or chopped waveforms. All meter manufacturers offer TRUE RMS measuring meters. The  
following is a short list of TRUE RMS Multimeters from Fluke:  
Manufacturer  
Model Number  
87V, 287  
Fluke  
Our recommended meter is the Fluke 87V with the Fluke I800 current clamp.  
Refer to the equipment manufacturer’s manuals for the proper use, maintenance and calibration (if  
necessary) of all meters.  
vi  
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Table of Contents  
1
2
3
Revisions ............................................................................................................................... ii  
Limited Product Warranty.................................................................................................... iii  
Safety Notices........................................................................................................................iv  
Keep Away from Live Circuits.......................................................................................iv  
RESUSCITATION .........................................................................................................iv  
Safety Symbols.......................................................................................................................v  
Danger..............................................................................................................................v  
Warning............................................................................................................................v  
Caution.............................................................................................................................v  
Warning: Notice...............................................................................................................v  
Warning : Important.........................................................................................................v  
Test Equipment and Tools.....................................................................................................vi  
Table of Contents................................................................................................................. vii  
List of Figures and Tables .................................................................................................. viii  
General Information ...............................................................................................................1  
General Description .........................................................................................................1  
Classification of Signs......................................................................................................1  
Part Numbers: ..................................................................................................................2  
Installation ..............................................................................................................................3  
3.1  
3.2  
4
4.1  
4.2  
4.3  
4.4  
4.5  
5
6
7
8
8.1  
8.2  
8.3  
9
10 Maintenance and Troubleshooting .........................................................................................6  
10.1 General.............................................................................................................................6  
10.2 Problem Solving Guide....................................................................................................7  
10.3 Measuring Input Current (Signs Without Optional Power Switch) ...............................10  
10.4 Measuring Input Current (Signs With Optional Power Switch) ....................................10  
10.5 Checking Power Supply LED Cable..............................................................................11  
10.6 Checking LED MODULE Cable Connections ..............................................................12  
10.7 Checking the First LED MODULE ...............................................................................12  
10.8 Checking the Second LED MODULE...........................................................................13  
10.9 Continue Checking the Rest of the LED MODULES....................................................14  
10.10 Replacing an LED MODULE........................................................................................15  
10.11 Sign PC Board P/N 62277 Calibration...........................................................................17  
10.12 Replacing Sign Power Supply Board & Heat Sink P/N 62277......................................17  
11 Figures and Tables................................................................................................................20  
vii  
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List of Figures and Tables  
Figure 1. Single module sign .......................................................................................................20  
Figure 2. Double module sign......................................................................................................21  
Figure 3. Three module sign........................................................................................................22  
Figure 4. Four module sign..........................................................................................................23  
Figure 5. Distance Marker ...........................................................................................................24  
Figure 6. Sign Options.................................................................................................................25  
Figure 7. Heat Sink/LED Assembly showing wiring input and output connections ...................26  
Figure 8. LED Array Wiring, One Module Signs........................................................................27  
Figure 9. LED Array Wiring, Two Module Signs.......................................................................28  
Figure 10. LED Array Wiring, Three Module Signs...................................................................29  
Figure 10. LED Array Wiring, Four Module Signs.....................................................................30  
Figure 11. LED Array Wiring, Distance Marker.........................................................................31  
Figure 12. Recommended Transformer Housing Location &Concrete Foundation/Pad Details 32  
Figure 12a. Expanded left section of Figure 12...........................................................................33  
Figure 12b. Expanded right section of Figure 12 ........................................................................34  
Figure 12c. Expanded top section of Figure 12...........................................................................35  
Figure 14. Concrete Foundation/Pad configurations, Sizes 2......................................................37  
Figure 15. Concrete Foundation/Pad configurations: Two 4-Module Signs, Side by Side.........38  
Figure 16. Sizes 3, & 5 Concrete Foundation/Pad Configurations..............................................39  
Figure 18. Power Supply Box......................................................................................................41  
Figure 21. Power Supply Wiring Diagram..................................................................................42  
Figure 22. Checking the Power Supply Output Voltage After Turn-Off.....................................43  
Table 1. Power Supply Switch and Jumper Selection (FERRO CCR)........................................44  
Table 2. Power Supply Switch and Jumper Selection (SERIES CCR) .......................................45  
Table 3. AGS 858 LED Sign Style 2 VA Load & Matching Isolation Transformer (Ferro).......46  
Table 4. AGS 858 LED Sign Style 3 VA Load & Matching Isolation Transformer (Ferro).......47  
Table 5. AGS 858 LED Sign Style 5 VA Load & Matching Isolation Transformer (Ferro).......48  
Table 6. AGS 858 LED Sign Style 2 VA Load & Matching Isolation Transformer (Series) .....49  
Table 7. AGS 858 LED Sign Style 3 VA Load & Matching Isolation Transformer (Series) .....50  
Table 8. AGS 858 LED Sign Style 5 VA Load & Matching Isolation Transformer (Series) .....51  
Table 9. Style 2 - Three step regulator currents...........................................................................52  
Table 10. Style 3 - Five step regulator currents...........................................................................52  
Table 11. Style 5 – Fixed regulator current .................................................................................52  
Table 12. Power Supply Faults....................................................................................................53  
Table 13. Parts List......................................................................................................................54  
Table 14. Estimated max sustained force on the sign body (Does not include safety margin) ...55  
viii  
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General Information  
General Description  
8.1  
Crouse-Hinds Airport Lighting Products, “AIRSIDE” internally illuminated LED Taxiway and Runway  
Signs provide outstanding message visibility, day or night. White on Red and Yellow on Black and Black  
on Yellow color combinations may be ordered with any desired message. Signs are available as single or  
double faced and are provided with retro-reflective sign face. For further information on Taxiway Signs  
and their use, consult the latest revision FAA Advisory Circulars AC 150/5220-9, AC 150/5340-18, and  
AC 150/5345-44.  
8.2  
Classification of Signs  
The signs covered in this manual are designed and manufactured in accordance with the requirements of  
FAA Advisory Circular AC 150/5345-44J. Specifications for Taxiway and Runway Signs and conform to  
the following classifications as indicated in paragraph 1.2 of the above Advisory.  
Type L-858Y – Direction destination and boundary sign – black legend on a yellow background.  
Type L-858R – Mandatory instruction sign white legend on a red background.  
Type L-858L – Taxiway and runway location sign yellow legend and border on a black background.  
Type L-858B –Runway Distance Remaining sign with a white legend on a black background.  
Type L858C – Taxiway Ending Marker sign yellow strips on black background (2 module sign only)  
A sign may consist of multiple arrays of the above messages.  
NOTE: Size 5 information in this manual is the same as the Size 3 single module unless noted  
otherwise.  
P/N  
Sizes  
858S5-1X-X-X-X-XX Size 1 – 12 inch legend (small body)  
858S5-2X-X-X-X-XX Size 2 – 15 inch legend (mid-size body)  
858S5-3X-X-X-X-XX Size 3 – 18 inch legend (large body)  
858S5-4X-X-X-X-XX Size 4 – 40 inch legend (large body DMS numerals and AGM symbol)  
858S5-5X-X-X-X-XX Size 5 – 25 inch legend (large body DMS numerals only)  
CAT. # FAA Styles  
-3  
-5  
-1  
Style 2 – For operation from a 3 step series lighting circuit (4.8 to 6.6 amperes)  
Style 3 – For operation from a 5 step series lighting circuit (2.8 to 6.6 amperes)  
Style 5 – A (fixed) 5.5 ampere series lighting circuit  
Class 2 – For operation from -40ºC to +55ºC (+131ºF)  
Mode 2 – Sign for use in areas subjected to wind speed of up to 200 mph (322 km/h)  
1
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8.3  
Part Numbers:  
2
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Installation  
WARNING:  
NOTICE  
Sign foundations/pad and their design are the responsibility of the  
installer and/or airport and recommendations/suggestions herein are  
for guidance only. Transformer housing and baseplates and/or  
covers, series isolation transformers, primary connector kits, series  
isolation transformer secondary cable extender, series isolation  
consolidating harness (if required), heat shrink kits, grounding rods,  
ground wire and connectors, floor flange anchor bolts and hardware  
are not included as part of the sign. Underlined items may be ordered  
from Crouse-Hinds Airport Lighting.  
a. Refer to FAA AC 150-5345-18F section 14 for Taxiway Guidance Sign location and for the  
perpendicular distance from the defined pavement edge to the near side of the sign. Similarly, see  
section 25 of FAA AC 150-5345-18F for Runway Distance Remaining Sign location and  
perpendicular distance from the defined pavement edge to the near side of the sign.  
WARNING:  
IMPORTANT  
FAA specifications and Engineering Briefs may be obtained by  
searching the FAA web site: www.faa.gov.  
b. See Figures 12-17 for suggested concrete foundation/pad. Concrete foundations/pads should be of  
adequate mass, reinforcement, and psi strength rating for the maximum sustained force on the sign  
body and floor flange anchors must endure at its maximum plus a safety margin. The concrete  
foundation/pad should be installed in soil conditions that will help facilitate drainage and  
foundation/pad support. The floor flange anchor bolt material should also meet the maximum  
sustained force on the sign body plus a safety margin and must be ½ inch in diameter for use with the  
25684-1 Floor Flange. See Table 14 for estimated maximum sustained force on the sign body.  
c. Concrete foundations/pads should extend at least 12 inches below the local frost line. Contact your  
local or regional building inspector if the depth is unknown for your area. The foundation/pad should  
extend at least 1 foot beyond the sign body to minimize damage from mowers.  
3
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d. The concrete foundation/pad should be not more than 1 inch above grade in order to maintain the 3  
inch maximum overall height above grade to the point of frangibility per FAA Engineering Brief no.  
79. See the Engineering Brief for acceptable grading around the foundation/pad. The foundation/pad  
pad must be level.  
e. It is recommended that the contractor who is to install the concrete foundation/pad use cast in place  
anchor bolts. The threaded portion of the anchor bolts should be 1-5/8 inches minimum to 1-7/8  
maximum above the top of the concrete foundation/pad (See Figures 12, 12a-12c). This requires that  
the anchor bolts be installed accurately as shown in the concrete foundation/pad dimensions Figure  
13. The clearance holes on the floor flange are 5/8 inch diameter on a 4.75 inch diameter bolt circle  
for use with ½ inch anchor bolts.  
f. The concrete foundation/pad should include the series isolation transformer housing. It is  
recommended that this housing not be placed under the sign power leg to allow access to the series  
isolation transformer and connections for ease of troubleshooting and servicing (See Figures 12, 12a-  
12c). This housing would be on the side closest to the Taxiway or Runway. A 2 inch conduit elbow  
with threaded coupling attached at sign end would exit from the transformer housing side to the  
foundation/pad and be flush with the with the top of the concrete foundation/pad grade level centered  
between the floor flange bolts nearest the Taxiway or Runway side of the sign. The sign as viewed  
will have the circuit card box to the right on the “A” side of the sign, which is closest to the Taxiway  
or Runway side of the sign. If the location requires an additional housing to accommodate multiple  
messages, then the separation distance between these signs housings can be 3 inches minimum to 12  
inches maximum (FAA AC 150-5345-44J 3.2.5.2 a.). This first sign body housing (farthest from the  
adjacent Taxiway) will have the circuit card box to the left on the “A” side of the sign. The sign side  
identification is important with regards to its sign panel legend. A grounding rod and clamp should  
be installed at the end opposite the circuit card box in order to ground the sign housing. This  
grounding rod must not be connected to the field counterpoise.  
DANGER:  
DANGER  
Lock out electrical power to the series loop that will power the sign at  
its source before attempting any electrical connections/splices.  
g. Make electrical connections to the series loop power using L-823 Primary Connector Kits. Attach  
the primary connectors to the appropriate size L-830 Series Isolation Transformer (See Tables 3-8).  
These primary connections (single pin plug or receptacle) should have Heat Shrink Kits applied over  
their connections to prevent disconnection and water from entering the cables. If two Series Isolation  
Transformers are required to be attached in series to obtain the correct wattage required for the sign,  
all primary lead connections should have Heat Shrink Kits applied. Two Series Isolation  
Transformers connected in series together will require a Consolidating Harness (Crouse-Hinds Part  
Number 26811-27) at the transformer secondary connectors (two pin receptacle) to series them  
together. Use electrical tape around the connections to prevent accidental disconnection. The Series  
4
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Isolation Transformer should be placed on a brick in order to isolate the transformer from direct  
contact with metal. The Series Isolation Transformer secondary cable should then be inserted from  
inside the housing up the conduit elbow. Using the two 40762 retainers supplied with the sign (looks  
like a cupped washer with a slot), placing one below the secondary cable receptacle (L-823 Style 8,  
looks like a ball), and one above. The bottom cupped washer sits on the conduit elbow top inside the  
threaded conduit coupling and prevents the secondary cable from dropping back down the conduit.  
The top cupped washer prevents the secondary cable from being pulled out of the ground allowing the  
sign power cord to disconnect if the sign is impacted and shears off at its frangible couplings. If a  
consolidating harness is used or a secondary cable extension (use electrical tape around connection) is  
required, use the 25003 (split clamp with screws and hex nuts) retainer supplied with the sign. Secure  
this retainer, flat side down away from sign, around the secondary end (L-823 Style 7, looks like a  
straight tube) that will exit the conduit elbow. The top of the secondary receptacle should be at least  
¼ inch below the conduit elbow threaded coupling top surface.  
WARNING:  
IMPORTANT  
Check the sign for shipping damage upon arrival and in all cases,  
check for damage prior to installation.  
h. Lower the sign with the legs and flanges into place. Plug the sign power cable plug into the secondary  
receptacle inside the conduit elbow while lowering. Check the sign itself with a long carpenter’s  
level to be sure it is level. As an alternate, remove the floor flanges and frangible couplings from the  
sign, unscrewing the frangible couplings from the floor flanges. Install the floor flanges onto the sign  
anchor bolts. Level the floor flanges for ease of installation of the sign. A long carpenter’s level can  
be placed across the top of the floor flanges to be sure they are all in line and level. Do not tighten the  
anchor nuts tight (only finger-tight) until the frangible couplings are installed back into to floor  
flanges. Note: Some vertical adjustments can be obtained by rotating the floor flanges a turn or  
two on the frangible coupling.  
i. Make sure all flanges are in full contact and sit flush on the pad before tightening the anchor bolts.  
Shim and grout as required. Once the sign has been leveled, attach the sign tether to the closest  
anchor bolt and tighten all the anchor nuts securely. (Note: Anchor hardware is not supplied with the  
sign.) Anchor hardware should be corrosion resistant. The sign body must not be bent or distorted due  
to an uneven installation procedure. Install a bare #14 AWG minimum copper ground wire to the  
sign ground stud (stud located on sign bottom extrusion exterior and accepts #4 through #14 AWG)  
and the other end to the grounding rod clamp.  
j. The sign is shipped set for a Ferro-resonant Type L-828 Regulator as illustrated in Table 1. For other  
Regulator types, set sign power supply circuit card jumper according to Table 2.  
k. Return power to series circuit and verify sign illuminates through all Regulator brightness steps.  
5
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10  
Maintenance and Troubleshooting  
WARNING:  
WARNING  
Remove Power Before Attempting Any Servicing.  
10.1 General  
Work on electrical circuits should be done only by a qualified electrician with a working  
knowledge of airfield lighting circuits. Trouble-shooting is accomplished by means of process of  
elimination. It should be checked that the POWER is OFF and secured, and once one solution is  
tried, POWER is reapplied. Then POWER turned OFF and secured and another solution tried,  
etc. Repeat this until the problem is solved.  
It is also assumed that the circuit is in proper working order from the isolation transformer  
secondary connector (L-823 style 7or 8 receptacle) all the way to and including the power source.  
Use of a calibrated true RMS-reading multi-meter with a current sensing clamp-on attachment  
will aid in the trouble shooting of electrical circuits. Warning: Only use OEM replacement sign  
legend panels  
WARNING:  
NOTICE  
Only use OEM replacement sign legend panels. The entire message  
element must be replaced per FAA AC 150-5345-44J 3.2.5.10.2. Our  
proprietary process replacement panels meet the photometric and  
wind loading requirements of the sign as certified to FAA AC 150-  
5345-44J.  
6
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CAUTION:  
CAUTION  
Do not over tighten hex nut on stud retaining bridge rectifier. 8in-lbs  
max. (See Figure 18) Also, remover carriers from thermal pad  
adhesive surfaces before installing.  
WARNING:  
IMPORTANT  
When tightening cover screws, do not use power drivers as you may  
exceed the maximum torque of 75 in-lbs on the cover screws.  
DANGER:  
DANGER  
When replacing parts inside the circuit box or sign housing, lock out  
series circuit power at its source.  
10.2 Problem Solving Guide  
PROBLEM  
POSSIBLE CAUSE  
No input current. (LEDs on Power Measure input current  
Supply board not lit) according to Sections 10.3 and  
CORRECTIVE ACTION  
(P.1) Sign will  
not light  
10.4. If the measured input  
current is not within spec (see  
Tables 9-11), check CCR,  
isolation transformer, and  
primary power connections.  
7
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PROBLEM  
POSSIBLE CAUSE  
CORRECTIVE ACTION  
(P.2) Sign will  
not light  
Input current is below or exceeds  
specification. (Input current is  
specified between 2.8 and 6.6  
Adjust CCR current (See  
Tables 9-11 and/or replace  
isolation transformer with  
amps using a true RMS Ammeter. appropriate wattage for sign  
L858 Power Supply indicator RED (see Tables 3-8).  
LEDs D4 is ON, and D7 is OFF;  
Table 12)  
(P.3) Sign will  
not light  
Optional ON/OFF switch in OFF  
position  
Turn switch to ON position.  
(P.4) Sign will  
not light  
Power Supply Circuit Card +15V  
supply failed (See Table 12)  
Verify Green LED D29 is lit.  
Replace Power Supply Board  
if D29 is not lit.(Section 10.12)  
(P.5) Sign will  
not light  
Power Supply Circuit Card +3.3V Verify Green LED D11 is lit.  
supply failed (See Table 12)  
Replace Power Supply Board  
if D11 is not lit (section  
10.12).  
(P.6) Sign will  
not light  
Loose/broken wire(s)/missing  
connections  
Verify Power Supply  
connections match Power  
Supply Wiring Diagram  
(Figures 18 & 21).  
(P.7) Sign will  
not light  
Output Electrical Open Circuit  
(See Table 12)  
Verify LED cable connectors  
are properly seated in their  
respective receptacles; reseat if  
necessary (See Sections 10.5 &  
10.6)  
(P.8) Sign will  
not light  
LED MODULE(s) mounted/wired Verify that LED MODULES  
incorrectly  
are mounted and wired  
according to LED Array  
Wiring Diagram. (See Figures  
7-11 and Sections 10.7-10.9)  
(P.9) Sign will  
not light  
LED MODULE(s) open circuit  
failure (Assumes P.7 Action taken) LED MODULE with spare  
known good LED  
Replace suspected open circuit  
8
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PROBLEM  
POSSIBLE CAUSE  
CORRECTIVE ACTION  
MODULE(s) (See Sec 10.10)  
(P.10) Upon  
applying power, Circuit Board Switch  
Incorrect LED Power Supply  
Verify/Set Power Supply  
Board Switches and jumpers  
are set according to Table 1  
(Ferro CCR) or Table 2 (Series  
CCR)  
sign  
Configuration  
momentarily  
lights and then  
turns off.  
(P.11) Upon  
applying power, dropped 25% below the calibrated MODULE(s) with non-lit  
LED MODULE Voltage has  
Replace any LED  
sign  
output voltage (See Table 12).  
LEDs and re-calibrate the LED  
Power Supply. (See Sections  
10.10 & 10.11)  
momentarily  
lights and then  
turns off.  
(P.12) Upon  
applying power, than 125% of the expected  
LED MODULE Voltage is greater Verify/Set Power Supply  
Board Switches and jumpers  
are set according to Table 1  
(Ferro CCR) or Table 2 (Series  
CCR)  
sign  
calibrated output voltage (See  
Table 12).  
momentarily  
lights and then  
turns off.  
(P.13) Sign  
flickering  
Incorrect LED Power Supply  
Circuit Board Jumper Setting.  
Verify/Set Jumpers JP1 and  
JP2 according to the Table 1  
(FERRO CCR) or Table 2  
(Series CCR)  
(P.14) Sign  
flickering  
Incorrect Isolation Transformer  
Replace with Isolation  
transformer that matches sign  
type, size, #modules. (See  
Tables 3-8)  
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10.3 Measuring Input Current (Signs Without Optional Power Switch)  
WARNING:  
Failure to turn off power to the sign and wait five minutes could result  
in severe injury or death.  
WARNING  
Turn off power to the sign by turning off the corresponding Constant Current Regulator (CCR) power.  
(WARNING: Wait five minutes after sign power is turned off to service the sign. This will allow  
any residual high voltage stored in Power Supply PCB components to bleed off. ) With your  
multimeter set to DC Volts, verify that the Power Supply Output Voltage is less than 30-VDC at TP6  
(Positive lead) and TP3 (Negative Lead) as indicated in Figure 22. If the Power Supply Output Voltage  
is greater than 30-VDC, then you must wait until the Power Supply Output Voltage drops below 30-VDC  
before you proceed with the next step.  
Open Power Supply cover (See Figure 18). Disconnect female crimp receptacle at CN17 from Power  
Supply Board. (Note: When removing female crimp receptacle, grasp by the terminal, not the wire.)  
Disconnect female crimp receptacle from CN18 and connect to CN17. Place current clamp around  
primary power wire and connect to a true rms current meter. Turn on power to the CCR. Current should  
measure between 2.7-ARMS and 6.7-ARMS depending on the CCR current level or current step.  
Upon completing the measurement of the input current, turn off power to the CCR. Remove the current  
clamp. Disconnect the female crimp receptacle at CN17 and reconnect to CN18. Reconnect the female  
crimp receptacle attached to wire BRPH to CN18. Close the Power Supply Box cover.  
10.4 Measuring Input Current (Signs With Optional Power Switch)  
WARNING:  
Failure to turn off power to the sign and wait five minutes could result  
in severe injury or death.  
WARNING  
Turn off power to sign by toggling sign power switch to the off position (See Figure 6). Turn off power  
to the sign. (WARNING: Wait five minutes after sign power is turned off to service the sign. This  
will allow any residual high voltage stored in Power Supply PCB components to bleed off. ) With  
your multimeter set to DC Volts, verify that the Power Supply Output Voltage is less than 30-VDC at  
TP6 (Positive lead) and TP3 (Negative Lead) as indicated in Figure 22. If the Power Supply Output  
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Voltage is greater than 30-VDC, then you must wait until the Power Supply Output Voltage drops below  
30-VDC before you proceed with the next step.  
Open the Power Supply Box cover. Place current clamp around one of the wires connected to the switch  
labeled with switch marker PWR. Connect the current clamp to the true RMS current meter. Measure  
the input current. Current should measure between 2.7-ARMS and 6.7-ARMS depending on the CCR  
current level or current step.  
Upon completing the measurement of the input current, remove current clamp and close Power Supply  
Box cover.  
10.5 Checking Power Supply LED Cable  
WARNING:  
Failure to turn off power to the sign and wait five minutes could result  
in severe injury or death.  
WARNING  
Turn off power to the sign. (WARNING: Wait five minutes after sign power is turned off to service  
the sign. This will allow any residual high voltage stored in Power Supply PCB components to  
bleed off. ) With your multimeter set to DC Volts, verify that the Power Supply Output Voltage is less  
than 30-VDC at TP6 (Positive lead) and TP3 (Negative Lead) as indicated in Figure 21. If the Power  
Supply Output Voltage is greater than 30-VDC, then you must wait until the Power Supply Output  
Voltage drops below 30-VDC before you proceed with the next step.  
Remove the sign top cover bolts and then lift the top cover from the sign. Remove the front face from the  
sign. Check the Power Supply LED Cable for visible damage. Make sure the Power Supply LED cable  
connector is properly seated in CN9 at the Power Supply Board (see Figure 18). Verify that the Power  
Supply LED cable connector connects to the input connector of the first LED MODULE and is properly  
seated in the input connector housing. The LED MODULE input connector and the output connector are  
clearly marked with inward pointing and outward pointing black arrows, respectively, on the LED  
MODULE PCB (see Figure 7).  
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10.6 Checking LED MODULE Cable Connections  
WARNING:  
Failure to turn off power to the sign and wait five minutes could result  
in severe injury or death.  
WARNING  
Turn off power to the sign by turning off the corresponding Constant Current Regulator (CCR) power.  
(WARNING: Wait five minutes after sign power is turned off to service the sign. This will allow  
any residual high voltage stored in Power Supply PCB components to bleed off.) With your  
multimeter set to DC Volts, verify that the Power Supply Output Voltage is less than 30-VDC at TP6  
(Positive lead) and TP3 (Negative Lead) as indicated in Figure 22. If the Power Supply Output Voltage  
is greater than 30-VDC, then you must wait until the Power Supply Output Voltage drops below 30-VDC  
before you proceed with the next step.  
The LED MODULES are electrically wired in series. This means that if any of the cable connectors are  
improperly seated in their respective LED MODULE housing, then no current can flow through any of  
the LED MODULES and subsequently the sign will not light. Therefore, verify that all cable connectors  
are properly seated in their housing and that the output of one LED MODULE (indicated by the outward  
pointing arrow at the LED MODULE connector Figure 7) is connected to the input of the next LED  
MODULE (indicated by the inward pointing arrow at the LED MODULE connector- Figure 7).  
The Last LED MODULE in the series string is terminated with a black return connector & cable  
assembly(See Figure 7-11). Verify that the black terminator cable connector is properly inserted into the  
connector housing at the Last LED MODULE output connector (indicated by the inward pointing arrow).  
10.7 Checking the First LED MODULE  
WARNING:  
Failure to turn off power to the sign and wait five minutes could result  
in severe injury or death.  
WARNING  
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Turn off power to the sign by turning off the corresponding Constant Current Regulator (CCR) power.  
(WARNING: Wait five minutes after sign power is turned off to service the sign. This will allow  
any residual high voltage stored in Power Supply PCB components to bleed off.) With your  
multimeter set to DC Volts, verify that the Power Supply Output Voltage is less than 30-VDC at TP6  
(Positive lead) and TP3 (Negative Lead) as indicated in Figure 22. If the Power Supply Output Voltage  
is greater than 30-VDC, then you must wait until the Power Supply Output Voltage drops below 30-VDC  
before you proceed with the next step.  
Remove the black return cable connector from the last LED MODULE output cable connector (see  
Figures 7-11 & 20). Replace the output cable connector in the first LED MODULE with the black return  
cable connector. Turn on main power. If the first LED MODULE momentarily lights and then turns off,  
then the first LED MODULE and the Power Supply LED cable and Power Supply board are operating  
normally.  
Turn off main power to the sign. Wait five minutes for the power supply voltages to dissipate. Verify that  
the output voltage is less than 30-VDC with a multimeter as described in the opening paragraph of this  
section. Replace the black return cable connector with the first LED MODULE output cable connector.  
If the sign does not light at all, then replace the LED MODULE #1 and/or the cable connecting from the  
output of the Power Supply to the input of LED MODULE #1(see Section 10.10). Then repeat the test  
described above in this section.  
10.8 Checking the Second LED MODULE  
WARNING:  
Failure to turn off power to the sign and wait five minutes could result  
in severe injury or death.  
WARNING  
Turn off power to the sign by turning off the corresponding Constant Current Regulator (CCR) power.  
(WARNING: Wait five minutes after sign power is turned off to service the sign. This will allow  
any residual high voltage stored in Power Supply PCB components to bleed off.) With your  
multimeter set to DC Volts, verify that the Power Supply Output Voltage is less than 30-VDC at TP6  
(Positive lead) and TP3 (Negative Lead) as indicated in Figure 22. If the Power Supply Output Voltage  
is greater than 30-VDC, then you must wait until the Power Supply Output Voltage drops below 30-VDC  
before you proceed with the next step.  
Remove the black return cable connector from the last LED MODULE output cable connector (see Figure  
20). Replace the output cable connector in the second LED MODULE with the black return cable  
connector. Turn on main power to the sign. If both LED MODULES momentarily light and then turn off  
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or stays lit, then the second LED MODULE and the cable from the first LED MODULE to the second  
LED MODULE are operating normally.  
Turn off main power to the sign. Wait five minutes for the high voltage to dissipate. Verify that the  
output voltage is less than 30-VDC with a multimeter as described in the opening paragraph of this  
section. Replace the black return cable connector with the first LED MODULE output cable connector.  
Replace the black return cable connector in the output connector housing of the last LED MODULE.  
If the sign does not light at all, then replace the second LED MODULE and/or the cable connecting from  
the output connector of LED MODULE #1 to the input of LED MODULE #2 (see Section 10.10). Then  
repeat the test outlined above in this section.  
10.9 Continue Checking the Rest of the LED MODULES  
It is assumed that the first two LED MODULES have been checked successfully as described in previous  
two sections. For signs with more than two LED MODULES, continue checking the remaining LED  
MODULES one at a time and in numerical sequence (e.g. LED MODULE #3, LED MODULE #4….LED  
MODULE #Last). Use the same method as we have outlined in previous section.  
For example, suppose we have a sign with 6 LED MODULES (See Size 2, 2-Modules, Figure 9) and we  
have checked all the LED MODULES in sequence from 1 to from 4 and found that the sign momentarily  
lit. Then we would use the following procedure to test the 5th LED MODULE.  
WARNING:  
Failure to turn off power to the sign and wait five minutes could result  
in severe injury or death.  
WARNING  
Turn off power to the sign by turning off the corresponding Constant Current Regulator (CCR) power.  
(WARNING: Wait five minutes after sign power is turned off to service the sign. This will allow  
any residual high voltage stored in Power Supply PCB components to bleed off.) With your  
multimeter set to DC Volts, verify that the Power Supply Output Voltage is less than 30-VDC at TP6  
(Positive lead) and TP3 (Negative Lead) as indicated in Figure 22. If the Power Supply Output Voltage  
is greater than 30-VDC, then you must wait until the Power Supply Output Voltage drops below 30-VDC  
before you proceed with the next step.  
Remove the black return cable connector from the 6th LED MODULE output cable connector (see Figure  
20). Replace the output cable connector in the LED MODULE #5 with the black return cable connector.  
14  
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Turn on main power to the sign. If LED MODULES #1 to #5 momentarily light and then turn off, then  
the LED MODULE #5 and the cable from the LED MODULE #4 to the LED MODULE #5 are operating  
normally.  
WARNING:  
Failure to turn off power to the sign and wait five minutes could result  
in severe injury or death.  
WARNING  
Turn off main power to the sign. Wait five minutes for the high voltage to dissipate. Verify that  
Power Supply Output Voltage measures less than 30-VDC, as described above. Replace the black  
return cable connector with the LED MODULE #5 output cable connector. Replace the black return  
cable connector into the output connector housing of the 6th LED MODULE.  
If the sign does not light at all, then replace the LED MODULE #5 and/or the cable connecting from the  
output connector of LED MODULE #4 to the input of LED MODULE #5 (see Section 10.10). Then  
repeat the test as described in this section.  
10.10 Replacing an LED MODULE  
In the case where an LED MODULE has failed and needs to be replaced use the following instructions:  
INSTRUCTIONS FOR REPLACING AN LED MODULE  
The following instructions assume that the sign front face is removed and that the failed LED  
MODULE has been previously identified.  
WARNING:  
Failure to turn off power to the sign and wait five minutes could result  
in severe injury or death.  
WARNING  
1. Turn off power to the sign by turning off the corresponding Constant Current Regulator (CCR)  
power. (WARNING: Wait five minutes after sign power is turned off to service the sign. This  
will allow any residual high voltage stored in Power Supply PCB components to bleed off.)  
15  
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2. With your multimeter set to DC Volts, verify that the Power Supply Output Voltage is less than 30-  
VDC at TP6 (Positive lead) and TP3 (Negative Lead) as indicated in Figure 22. If the Power Supply  
Output Voltage is greater than 30-VDC, then you must wait until the Power Supply Output Voltage  
drops below 30-VDC before you proceed with the next step.  
3. Carefully remove the input and output cables from the failed LED MODULE. (Mark the cable  
connected to the LED MODULE input connector. Note: The input connector on the LED  
MODULE is denoted by a black arrow pointing toward the input connector (see Figure 7).  
4. Loosen and remove the nuts on the LED MODULE mounting bracket bolts. Remove the LED  
MODULE bracket bolts with one hand while support the LED MODULE with your other hand.  
5. Carefully remove the failed LED MODULE from the LED MODULE mounting bracket.  
6. Mount the replacement LED MODULE into the mounting bracket such that the holes in the LED  
MODULE heat sink are aligned with the mounting bracket holes. (Note: The replacement LED  
MODULE input connector should be closest to the marked input cable connector.)  
7. Push the mounting bracket bolts through the mounting bracket and the LED MODULE heat sink  
holes.  
8. Attach nuts to the mounting bracket bolts and tighten.  
9. Gently slide the input cable connector into the replacement LED MODULE connector input housing.  
10. Likewise, slide the output cable connector into the replacement LED MODULE output connector  
housing.  
11. The LED MODULE replacement is complete.  
12. Power Supply Board must be re-calibrated after replacing an LED MODULE (see Section 10.11).  
WARNING:  
Power Supply Board must be re-calibrated after replacing an  
IMPORTANT  
LED MODULE (see Section 10.11).  
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10.11 Sign PC Board P/N 62277 Calibration  
The 62277 PC Board doesn’t normally need to be calibrated in the field unless an LED MODULE is  
replaced.  
WARNING:  
In this section, it is assumed that the Sign PC Board P/N 62277 is  
correctly configured for this particular sign (see Table 1or 2) and  
IMPORTANT  
that the sign lights continuously when main power is applied in  
the normal mode of operation (SW3-1 = OFF).  
INSTRUCTIONS FOR CALIBRATION OF 62277 PC BOARD:  
1. Turn off main power to the sign.  
2. Open the Power Supply Cover and locate SW3-1 on the Power Supply Board (See Figure 18)  
3. On the Power Supply Board, set switch SW3-1 to the ON position.  
4. Apply main power to the sign. Green LED D3 will flash ON/OFF slowly for approximately three  
seconds to indicate the beginning of the calibration process. During calibration, D3, will remain  
OFF. At the conclusion of the calibration process, D3 remain constant ON (see Figure 18).  
5. If D3 does not light and remain constant, then calibration has failed. Based on the assumption listed  
under WARNING above, replace the power supply board (See section 10.12)  
5. Turn off the main power to the sign.  
6. Set SW3-1 to the OFF position.  
7. Close the Power Supply cover.  
8. The Power Supply Board is now calibrated to the sign.  
10.12 Replacing Sign Power Supply Board & Heat Sink P/N 62277  
In this section, it is assumed that the sign has failed and the trouble shooting guide recommends  
replacement of the Power Supply Board.  
INSTRUCTIONS FOR REPLACING 62277 PC BOARD & HEAT SINK:  
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WARNING:  
Power Supply Board must be re-calibrated after replacement.  
(see Section 10.11).  
IMPORTANT  
1. Turn off power to the sign by turning off the corresponding Constant Current Regulator (CCR)  
power. (WARNING: Wait five minutes after sign power is turned off to service the sign. This  
will allow any residual high voltage stored in Power Supply PCB components to bleed off.)  
WARNING:  
Failure to turn off power to the sign and wait five minutes could result  
in severe injury or death.  
WARNING  
2. With your multimeter set to DC Volts, verify that the Power Supply Output Voltage is less than 30-  
VDC at TP6 (Positive lead) and TP3 (Negative Lead) as indicated in Figure 22. If the Power Supply  
Output Voltage is greater than 30-VDC, then you must wait until the Power Supply Output Voltage  
drops below 30-VDC before you proceed with the next step.  
3. Remove input power cabling at CN1, CN2, CN3, CN11, CN17, & CN18 (See Figure 15).  
4. Remove LED Power Supply Cable at CN9 (See Figure 15).  
5. Remove the three nuts that secure the main heat sink to the Power Supply Box.  
6. Remove the six screws that fasten the Power Supply Board onto the Power Supply Box.  
7. Remove the Power Supply Board Assembly by sliding the attached main heat sink off the mounting  
studs extending from the side of the Power Supply Box.  
8. Slide the new Power Supply Board onto the mounting studs extending from the side of the Power  
Supply Box.  
9. Fasten board to the Power Supply Box with six mounting screws.  
10. Attach the three nuts that secure the heat sink to the studs extending from the side of the Power  
Supply Box.  
11. Connect the LED Power Supply cable at CN9.  
12. Connect the input power cabling at CN1, CN2, CN3, CN11, CN17, & CN18.  
13. Set the jumpers JP1 & JP2 for the sign style, size, and number of modules as shown in Table 1 or 2.  
(For locaction, see Figure 18)  
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14. Set DIP switches SW1, SW2, & SW3for the sign style, size, and number of modules as shown in  
Table 1 or 2. (For locations Figure 18)  
15. The Power Supply Board and Heat Sink replacement is complete  
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Figures and Tables  
Figure 1. Single module sign  
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Figure 2. Double module sign  
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Figure 3. Three module sign  
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Figure 4. Four module sign  
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Figure 5. Distance Marker  
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Figure 6. Sign Options  
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Figure 7. Heat Sink/LED Assembly showing wiring input and output connections  
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Figure 8. LED Array Wiring, One Module Signs  
(Reference Figure 7 for LED array orientations)  
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Figure 9. LED Array Wiring, Two Module Signs  
(Reference Figure 7 for LED array orientations)  
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Figure 10. LED Array Wiring, Three Module Signs  
(Reference Figure 7 for LED array orientations)  
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Figure 10. LED Array Wiring, Four Module Signs  
(Reference Figure 7 for LED array orientations)  
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Figure 11. LED Array Wiring, Distance Marker  
(Reference Figure 7 for LED array orientations)  
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Figure 12. Recommended Transformer Housing Location &Concrete Foundation/Pad Details  
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Figure 12a. Expanded left section of Figure 12  
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Figure 12b. Expanded right section of Figure 12  
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Figure 12c. Expanded top section of Figure 12  
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Figure 13. Concrete Foundation/Pad configurations, Size 1  
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Figure 14. Concrete Foundation/Pad configurations, Size 2  
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Figure 15. Concrete Foundation/Pad configurations: Two 4-Module Signs, Side by Side  
NOTE, IF 3 SIGNS ARE USED IN AN ARRAY, MAKE SEPARATION DISTANCE 12 INCHES TO ALLOW CIRCUIT CARD BOX DOOR TO  
OPEN IN THIS SPACE WHEN ANOTHER CIRCUIT CARD BOX IS MOUNTED IN THIS SAME SPACE UTILIZED ON ADJACENT SIGN. THIS  
WILL ALLOW THIS SEPARATION DISTANCE TO REMAIN WITHIN THE FAA SPECIFICATION.  
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Figure 16. Sizes 3, & 5 Concrete Foundation/Pad Configurations  
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Figure 17. Size 4 Concrete Foundation/Pad Configurations  
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Figure 18. Power Supply Box  
41  
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DOCUMENT 1025  
REV. B  
Instruction Manual  
AGS-LED  
858 LED Series  
Sizes 1, 2, 3, 4 and 5  
Figure 21. Power Supply Wiring Diagram  
42  
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DOCUMENT 1025  
REV. B  
Instruction Manual  
AGS-LED  
858 LED Series  
Sizes 1, 2, 3, 4 and 5  
Figure 22. Checking the Power Supply Output Voltage After Turn-Off.  
43  
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DOCUMENT 1025  
REV. B  
Instruction Manual  
AGS-LED  
858 LED Series  
Sizes 1, 2, 3, 4 and 5  
Calibration  
Mode/  
Normal  
Output Current  
Setting  
Input voltage  
configuration  
L858 AGS  
Output LED Configuration  
Ferro CCR  
Operation  
SW1- SW1- SW1- SW2- SW2- SW2- SW2- SW2- SW2-  
Size #Mods  
SW3-1  
JP1  
JP2  
4
5
6
1
2
3
4
5
6
1
1
1
1
2
2
2
2
3
3
3
3
4
1
2
3
4
1
2
3
4
1
2
3
4
2
x
x
ON  
ON  
ON  
ON  
x
OFF  
OFF  
OFF  
OFF  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
OFF  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
OFF  
OFF  
OFF  
OFF  
OFF  
ON  
ON  
ON  
ON  
OFF  
OFF  
OFF  
OFF  
ON  
ON  
ON  
ON  
OFF  
ON  
ON  
ON  
OFF  
ON  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
Close  
Close  
Close  
Close  
Close  
Close  
Close  
Close  
Close  
Close  
Close  
Open  
Close  
Close  
Close  
Close  
Open  
Close  
Close  
Open  
Open  
Close  
Open  
Open  
Open  
Open  
x
ON  
OFF  
OFF  
ON  
x
OFF  
ON  
OFF  
ON  
x
x
x
ON  
ON  
ON  
OFF  
ON  
x
x
ON  
OFF  
OFF  
ON  
OFF  
OFF  
ON  
x
x
ON  
OFF  
ON  
x
ON  
ON  
ON  
ON  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
x
OFF  
OFF  
OFF  
OFF  
ON  
OFF  
ON  
x
OFF  
OFF  
ON  
x
OFF  
ON  
ON  
Table 1. Power Supply Switch and Jumper Selection (FERRO CCR)  
44  
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DOCUMENT 1025  
REV. B  
Instruction Manual  
AGS-LED  
858 LED Series  
Sizes 1, 2, 3, 4 and 5  
Calibration  
Mode/  
Normal  
Output Current  
Setting  
Input voltage  
configuration  
L858 AGS  
Output LED Configuration  
Series CCR  
Operation  
SW1- SW1- SW1- SW2- SW2- SW2- SW2- SW2- SW2-  
Size #Mods  
SW3-1  
JP1  
JP2  
4
5
6
1
2
3
4
5
6
1
1
1
1
2
2
2
2
3
3
3
3
4
1
2
3
4
1
2
3
4
1
2
3
4
2
x
x
ON  
ON  
ON  
ON  
x
OFF  
OFF  
OFF  
OFF  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
OFF  
ON  
ON  
OFF  
OFF  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
OFF  
OFF  
OFF  
OFF  
OFF  
ON  
ON  
ON  
ON  
OFF  
OFF  
OFF  
OFF  
ON  
ON  
ON  
ON  
OFF  
ON  
ON  
ON  
OFF  
ON  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
ON/OFF  
Close  
Close  
Close  
Close  
Close  
Close  
Close  
Open  
Close  
Close  
Open  
Open  
Close  
Close  
Close  
Close  
Open  
Close  
Close  
Open  
Open  
Close  
Open  
Open  
Open  
Open  
x
ON  
OFF  
OFF  
ON  
x
OFF  
ON  
OFF  
ON  
x
x
x
ON  
ON  
ON  
OFF  
ON  
x
x
ON  
OFF  
OFF  
ON  
OFF  
OFF  
ON  
x
x
ON  
OFF  
ON  
x
ON  
ON  
ON  
ON  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
x
OFF  
OFF  
OFF  
OFF  
ON  
OFF  
ON  
x
OFF  
OFF  
ON  
x
OFF  
ON  
ON  
Table 2. Power Supply Switch and Jumper Selection (SERIES CCR)  
45  
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DOCUMENT 1025  
REV. B  
Instruction Manual  
AGS-LED  
858 LED Series  
Sizes 1, 2, 3, 4 and 5  
CCHALP  
CCHALP  
Sign VA  
(Primary  
Isolation  
Xfrmr@  
6.6A)  
53  
Sign  
Watts  
(Primary  
Isolation  
Xfrmr @  
6.6A)  
45  
CCHALP  
CCHALP  
Sign VA  
(Secondary (Secondary  
CCHALP  
Sign Watts  
CCHALP  
Power  
Factor  
Power  
Factor  
(Primary  
Isolation  
Xfrmr)  
0.85  
CCHALP  
Isolation  
Isolation Transformer  
Isolation  
Xfrmr@  
6.6A)  
35  
Isolation (Secondary  
Xfrmr @  
6.6A)  
29  
Style  
2
Sign Size # Modules CCR type  
Xfrmr)  
0.83  
0.86  
0.84  
0.87  
0.85  
0.86  
0.89  
0.90  
0.86  
0.87  
0.90  
0.89  
0.88  
Type  
65W  
1
1
1
1
2
2
2
2
3
3
3
3
4
1
2
3
4
1
2
3
4
1
2
3
4
2
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
2
57  
50  
0.88  
39  
34  
65W  
2
64  
54  
0.84  
48  
41  
100W  
100W  
65W  
2
67  
58  
0.87  
52  
45  
2
51  
44  
0.86  
34  
29  
2
58  
50  
0.87  
41  
35  
65W  
2
62  
55  
0.88  
47  
42  
100W  
100W  
65W  
2
68  
61  
0.89  
53  
48  
2
57  
50  
0.88  
39  
34  
2
67  
58  
0.87  
52  
45  
100W  
100W  
200W  
100W  
2
77  
69  
0.90  
62  
56  
2
102  
88  
0.86  
77  
68  
2
74  
66  
0.90  
60  
53  
Table 3. AGS 858 LED Sign Style 2 VA Load & Matching Isolation Transformer (Ferro)  
46  
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DOCUMENT 1025  
REV. B  
Instruction Manual  
AGS-LED  
858 LED Series  
Sizes 1, 2, 3, 4 and 5  
CCHALP  
CCHALP  
Sign VA  
(Primary  
Isolation  
Xfrmr@  
6.6A)  
53  
Sign  
Watts  
(Primary  
Isolation  
Xfrmr @  
6.6A)  
45  
CCHALP  
CCHALP  
Sign VA  
(Secondary (Secondary  
CCHALP  
Sign Watts  
CCHALP  
Power  
Factor  
Power  
Factor  
(Primary  
Isolation  
Xfrmr)  
0.85  
CCHALP  
Isolation  
Isolation Transformer  
Isolation  
Xfrmr@  
6.6A)  
35  
Isolation (Secondary  
Xfrmr @  
6.6A)  
29  
Style  
3
Sign Size # Modules CCR type  
Xfrmr)  
0.83  
0.86  
0.84  
0.87  
0.85  
0.86  
0.89  
0.90  
0.86  
0.87  
0.90  
0.89  
0.88  
Type  
65W  
1
1
1
1
2
2
2
2
3
3
3
3
4
1
2
3
4
1
2
3
4
1
2
3
4
2
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
3
57  
50  
0.88  
39  
34  
65W  
3
64  
54  
0.84  
48  
41  
100W  
100W  
65W  
3
67  
58  
0.87  
52  
45  
3
51  
44  
0.86  
34  
29  
3
58  
50  
0.87  
41  
35  
65W  
3
62  
55  
0.88  
47  
42  
100W  
100W  
65W  
3
68  
61  
0.89  
53  
48  
3
57  
50  
0.88  
39  
34  
3
67  
58  
0.87  
52  
45  
100W  
100W  
200W  
100W  
3
77  
69  
0.90  
62  
56  
3
102  
88  
0.86  
77  
68  
3
74  
66  
0.90  
60  
53  
Table 4. AGS 858 LED Sign Style 3 VA Load & Matching Isolation Transformer (Ferro)  
47  
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DOCUMENT 1025  
REV. B  
Instruction Manual  
AGS-LED  
858 LED Series  
Sizes 1, 2, 3, 4 and 5  
CCHALP  
CCHALP  
Sign VA  
(Primary  
Isolation  
Xfrmr@  
5.5A)  
42  
Sign  
Watts  
(Primary  
Isolation  
Xfrmr  
@5.5A)  
36  
CCHALP  
CCHALP  
Sign VA  
(Secondary (Secondary  
CCHALP  
Sign Watts  
CCHALP  
Power  
Factor  
Power  
Factor  
(Primary  
Isolation  
Xfrmr)  
0.86  
CCHALP  
Isolation  
Isolation Transformer  
Isolation  
Xfrmr@  
5.5A)  
29  
Isolation (Secondary  
Xfrmr @  
5.5A)  
25  
Style  
5
Sign Size # Modules CCR type  
Xfrmr)  
0.84  
0.88  
0.90  
0.91  
0.86  
0.89  
0.89  
0.91  
0.88  
0.91  
0.92  
0.91  
0.86  
Type  
65W  
65W  
65W  
65W  
65W  
65W  
100W  
100W  
65W  
65W  
100W  
100W  
65W  
1
1
1
1
2
2
2
2
3
3
3
3
4
1
2
3
4
1
2
3
4
1
2
3
4
2
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
Ferro  
5
47  
42  
0.88  
34  
30  
5
51  
46  
0.89  
39  
35  
5
56  
51  
0.91  
45  
41  
5
43  
38  
0.87  
30  
26  
5
49  
44  
0.89  
35  
32  
5
54  
49  
0.90  
43  
39  
5
60  
55  
0.91  
49  
44  
5
47  
42  
0.88  
34  
30  
5
56  
51  
0.91  
45  
41  
5
68  
62  
0.91  
56  
52  
5
82  
75  
0.91  
70  
64  
5
43  
38  
0.87  
30  
26  
Table 5. AGS 858 LED Sign Style 5 VA Load & Matching Isolation Transformer (Ferro)  
48  
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DOCUMENT 1025  
REV. B  
Instruction Manual  
AGS-LED  
858 LED Series  
Sizes 1, 2, 3, 4 and 5  
Sign  
Sign VA  
(Primary  
Isolation  
Xfrmr@  
6.6A)  
180  
Watts  
(Primary  
Isolation  
Xfrmr @  
6.6A)  
87  
Power  
Factor  
Sign VA  
Sign Watts  
(Secondar (Secondar  
Power  
Factor  
(Primary y Isolation y Isolation (Secondar  
Isolation  
#
Modules  
Isolation  
Xfrmr)  
0.49  
Xfrmr@  
6.6A)  
87  
Xfrmr @  
6.6A)  
67  
y Isolation Transforme  
Style  
Sign Size  
CCR type  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Xfrmr)  
0.77  
0.78  
0.78  
0.78  
0.89  
0.78  
0.79  
0.79  
0.78  
0.78  
0.78  
0.80  
0.79  
r Type  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
300W  
200W  
2
1
1
1
1
2
2
2
2
3
3
3
3
4
1
2
3
4
1
2
3
4
1
2
3
4
2
2
2
2
2
2
2
2
2
2
2
2
2
181  
90  
0.50  
89  
70  
182  
92  
0.50  
92  
71  
183  
93  
0.51  
94  
73  
180  
88  
0.49  
41  
37  
181  
91  
0.50  
90  
70  
182  
93  
0.51  
93  
73  
183  
94  
0.51  
95  
75  
181  
90  
0.50  
89  
70  
183  
93  
0.51  
94  
73  
186  
98  
0.53  
99  
77  
277  
101  
97  
0.36  
102  
97  
82  
185  
0.52  
77  
Table 6. AGS 858 LED Sign Style 2 VA Load & Matching Isolation Transformer (Series)  
49  
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DOCUMENT 1025  
REV. B  
Instruction Manual  
AGS-LED  
858 LED Series  
Sizes 1, 2, 3, 4 and 5  
Sign  
Sign VA  
(Primary  
Isolation  
Xfrmr@  
6.6A)  
180  
Watts  
(Primary  
Isolation  
Xfrmr @  
6.6A)  
87  
Power  
Factor  
Sign VA  
Sign Watts  
(Secondar (Secondar  
Power  
Factor  
(Primary y Isolation y Isolation (Secondar  
Isolation  
#
Modules  
Isolation  
Xfrmr)  
0.49  
Xfrmr@  
6.6A)  
87  
Xfrmr @  
6.6A)  
67  
y Isolation Transforme  
Style  
3
Sign Size  
CCR type  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Xfrmr)  
0.77  
0.78  
0.78  
0.78  
0.78  
0.78  
0.79  
0.79  
0.78  
0.78  
0.78  
0.80  
0.79  
r Type  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
300W  
200W  
1
1
1
1
2
2
2
2
3
3
3
3
4
1
2
3
4
1
2
3
4
1
2
3
181  
90  
0.50  
89  
70  
3
182  
92  
0.50  
92  
71  
3
183  
93  
0.51  
94  
73  
3
180  
88  
0.49  
87  
68  
3
181  
91  
0.50  
90  
70  
3
182  
93  
0.51  
93  
73  
3
183  
94  
0.51  
95  
75  
3
181  
90  
0.50  
89  
70  
3
183  
93  
0.51  
94  
73  
3
3
4
2
186  
277  
185  
98  
101  
97  
0.53  
0.36  
0.52  
99  
102  
97  
77  
82  
77  
3
3
Table 7. AGS 858 LED Sign Style 3 VA Load & Matching Isolation Transformer (Series)  
50  
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DOCUMENT 1025  
REV. B  
Instruction Manual  
AGS-LED  
858 LED Series  
Sizes 1, 2, 3, 4 and 5  
Sign  
Sign VA  
(Primary  
Isolation  
Xfrmr@  
5.5A)  
Watts  
(Primary  
Isolation  
Xfrmr @  
5.5A)  
Power  
Factor  
Sign VA  
Sign Watts  
(Secondar (Secondar  
Power  
Factor  
(Primary y Isolation y Isolation (Secondar  
Isolation  
#
Modules  
Isolation  
Xfrmr)  
Xfrmr@  
5.5A)  
Xfrmr @  
5.5A)  
y Isolation Transforme  
Style  
5
Sign Size  
CCR type  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Series  
Xfrmr)  
0.85  
0.86  
0.85  
0.87  
0.85  
0.87  
0.86  
0.86  
0.86  
0.87  
0.88  
0.88  
0.87  
r Type  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
200W  
1
1
1
1
2
2
2
2
3
3
3
3
4
1
2
3
4
1
2
3
4
1
2
3
4
2
108  
109  
111  
112  
110  
110  
111  
112  
109  
112  
116  
121  
115  
56  
58  
60  
63  
56  
59  
61  
65  
58  
63  
70  
78  
69  
0.52  
0.53  
0.54  
0.56  
0.51  
0.53  
0.56  
0.58  
0.53  
0.56  
0.61  
0.65  
0.60  
54  
55  
57  
60  
53  
55  
59  
62  
55  
60  
67  
76  
66  
46  
47  
49  
52  
45  
48  
51  
54  
47  
52  
59  
66  
57  
5
5
5
5
5
5
5
5
5
5
5
5
Table 8. AGS 858 LED Sign Style 5 VA Load & Matching Isolation Transformer (Series)  
51  
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DOCUMENT 1025  
REV. B  
Instruction Manual  
AGS-LED  
858 LED Series  
Sizes 1, 2, 3, 4 and 5  
Regulator Setting  
Current Range (A, RMS)  
B10  
B30  
4.7-4.9 (4.80 nominal)  
5.3-5.7 (5.50 nominal)  
6.4-6.7(6.60 nominal)  
B100  
Table 9. Style 2 - Three step regulator currents  
Regulator Setting  
Current Range (A, RMS)  
2.7-2.9(2.80 nominal)  
3.3-3.5(3.4 nominal)  
4.0-4.2(4.10 nominal)  
5.0-5.4(5.20 nominal)  
6.4-6.7(6.60 nominal)  
B1  
B2  
B3  
B4  
B5  
Table 10. Style 3 - Five step regulator currents  
Regulator Setting  
Current Range (A, RMS)  
Fixed  
5.4-5.6(5.50 nominal)  
Table 11. Style 5 – Fixed regulator current  
Note: See page vi for a list of meters that would be suitable for these measurements.  
52  
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DOCUMENT 1025  
REV. B  
Instruction Manual  
AGS-LED  
858 LED Series  
Sizes 1, 2, 3, 4 and 5  
D4  
(Red)  
D7  
(Red) (Green) (Green)  
D11  
D29  
Fault  
ON  
ON  
ON  
ON  
ON  
ON  
Output open circuit  
ON  
OFF  
Output Voltage is less than or equal to 75% of Calibrated  
Output Voltage or Output Voltage is greater than or equal  
to 125% of Calibrated Output Voltage.  
OFF  
OFF  
OFF  
ON  
OFF  
OFF  
ON  
ON  
ON  
OFF  
OFF  
Input current < 2.5A or Input current > 6.7A  
+3.3 Volt Supply Failure  
OFF  
+15 Volt Supply and/or +3.3 Volt Supply Failure (assumes  
the main AC power is applied to the power supply board)  
Table 12. Power Supply Faults  
53  
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DOCUMENT 1025  
REV. B  
Instruction Manual  
AGS-LED  
858 LED Series  
Sizes 1, 2, 3, 4 and 5  
PART  
DESCRIPTION  
Frangible Coupling  
NUMBER  
USED ON  
62245-1  
62245-2  
62245-3  
62245-4  
Size 1  
Size 2  
Size 3 & 5  
Size 4  
Power Supply PCB (located  
inside circuit box)  
62277  
62288  
62279  
All Sizes  
All Sizes  
All Sizes  
All Sizes  
Heatsink/LED Assembly  
(located inside sign housing)  
Filter PCB (located inside  
circuit box)  
Bridge Rectifier and Thermal 62314  
Pad Replacement Kit (located  
inside circuit box)  
Sign Face Panel (w/Legend)  
62290-X  
Contact Factory with legend  
information  
Sign Panel, Black  
60668-X  
Contact Factory with sign size  
and number of modules  
LED Array to LED array input 62278-1(48”)  
wire, white  
All sizes  
62278-2(12”)  
All sizes except size 3  
1,2,3,4 module and size 5  
All sizes except size 1 & 2  
1,2,3,4 module and size 4  
62278-3(6”)  
Last LED array to power  
supply PCB CN9, return wire,  
black  
62317-1(67”)  
62317-2(85”)  
62317-3(105”)  
62317-4(92”)  
62317-5(120”)  
62317-6(144”)  
62317-7(131”)  
62317-8(162”)  
62317-9(192”)  
Size 1, 1 module  
Size 2, 1 module  
Size 3 & 5, 1 module  
Size 1, 2 module  
Size 2, 2 module  
Size 3, 2 module  
Size 1, 3 module  
Size 2, 3 module  
Size 3, 3 module  
62317-10(158”) Size 1, 4 module  
62317-11(196”) Size 2, 4 module  
62317-12(232”) Size 3, 4 module  
62317-13(118”) Size 4 DMS  
Table 13. Parts List  
54  
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DOCUMENT 1025  
REV. B  
Instruction Manual  
AGS-LED  
858 LED Series  
Sizes 1, 2, 3, 4 and 5  
Sign Size/#Mod  
Size 1, 1module  
Size 1, 2modules  
Size 1, 3modules  
Size 1, 4modules  
Size 2, 1module  
Size 2, 2modules  
Size 2, 3modules  
Size 2, 4modules  
Size 3&5, 1module  
Size 3, 2modules  
Size 3, 3modules  
Size 3, 4modules  
Size 4 DMS  
Force in Newtons  
3,080  
Force in Lbs  
692  
6,186  
1,391  
2,020  
2,817  
1,073  
2,155  
3,247  
4,367  
1,598  
3,070  
4,625  
6,220  
2,604  
8,984  
12,531  
4,773  
9,587  
14,442  
19,420  
7,107  
13,657  
20,573  
27,664  
11,582  
Table 14. Estimated max sustained force on the sign body (Does not include safety margin)  
Based on: CD =  
V = 89,408 M/S  
ꢂ/ꢃꢄ ꢅ  
p = 1.2047 Kg/ M3 (@ 20°C dry)  
CD = 1.16 for 1 module & size 4 and 5 DMS, 1.165 for 2 module, 1.17 for 3 module, and  
1.18 for 4 module.  
55  
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