Goodman Mfg Furnace ACVC9 AMVC95 User Manual

TECHNICAL MANUAL  
TM  
ACVC9/AMVC95  
GCVC9/GMVC95  
90%-95% Gas Furnace Units  
Refer to Service Manual RS6200004 for installation, operation, and troubleshooting information.  
All safety information must be followed as provided in the Service Manual.  
Refer to the appropriate Parts Catalog for part number information.  
Models listed on page 3.  
®
US  
C
RT6612021Rev.3  
August 2010  
This manual is to be used by qualified, professionally trained HVAC technicians only. Goodman does  
not assume any responsibility for property damage or personal injury due to improper service  
procedures performed by an unqualified person.  
Copyright ©2009-2010 Goodman Manufacturing Company, L.P.  
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PRODUCT IDENTIFICATION  
The model and manufacturing number are used for positive identification of component parts used in manufacturing. Please  
use these numbers when requesting service or parts information.  
GMVC950453BXAA  
GMVC950704CXAA  
GMVC950905CXAA  
GMVC950905DXAA  
AMVC950453BXAA  
AMVC950704CXAA  
AMVC950905CXAA  
AMVC950905DXAA  
GMVC951155DXAA  
AMVC951155DXAA  
GCVC90704CXAA  
GCVC90905DXAA  
GCVC91155DXAA  
ACVC90704CXAA  
ACVC90905DXAA  
AMVC950453BXAB  
AMVC950704CXAB  
AMVC950905DXAB  
GMVC950453BXAB  
GMVC950704CXAB  
GMVC950905DXAB  
AMVC951155DXAB  
GMVC951155DXAB  
ACVC90704CXAB  
ACVC90905DXAB  
GCVC90704CXAB  
GCVC90905DXAB  
GCVC91155DXAB  
ACVC950714CXAA  
ACVC950915DXAA  
GCVC950714CXAA  
GCVC950915DXAA  
The United States Environmental Protection Agency (“EPA”) has issued various regulations re-  
garding the introduction and disposal of refrigerants introduced into this unit. Failure to follow  
these regulations may harm the environment and can lead to the imposition of substantial fines.  
These regulations may vary by jurisdiction. Should questions arise, contact your local EPA office.  
WARNING  
WARNING  
Do not connect or use any device  
To prevent the risk of property  
WARNING  
that is not design certified by  
damage, personal injury, or death,  
Goodman for use with this unit.  
do not store combustible materials or use gasoline or  
Serious property damage, personal injury, reduced unit  
performance and/or hazardous conditions may result  
from the use of such non-approved devices.  
other flammable liquids or vapors in the vicinity of this  
appliance.  
3
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PRODUCT DESIGN  
installation (1 or 2 pipes). The optional Combustion Air  
Pipe is dependent on installation/code requirements and  
must be 2” or 3” diameter PVC.  
General Operation  
Models covered by this manual come with a new 4-wire com-  
municating PCB. When paired with a compatible communi-  
cating indoor unit and a CTK01AA communicating thermo-  
stat, these models can support 4-wire communication pro-  
tocol and provide more troubleshooting information. These  
models are also backward compatible with the legacy ther-  
mostat wiring.  
2. Line voltage wiring can enter through the right or left side  
of the furnace. Low voltage wiring can enter through the  
right or left side of furnace.  
3. Conversion kits for propane gas and high altitude natural  
and propane gas operation are available. See High Alti-  
tude Derate chart for details.  
The GCVC9, GCVC95, GMVC95, AMVC95, ACVC9 and  
ACVC95 furnaces are equipped with an electronic ignition  
device to light the burners and an induced draft blower to  
exhaust combustion products.  
4. Installer must supply the following gas line fittings, de-  
pending on which entrance is used:  
Left -- Two 90° Elbows, one close nipple, straight pipe  
Right -- Straight pipe to reach gas valve.  
An interlock switch prevents furnace operation if the blower  
door is not in place. Keep the blower access doors in place  
except for inspection and maintenance.  
Accessibility Clearances (Minimum)  
These furnaces are also equipped with a self-diagnosing elec-  
tronic control module. In the event a furnace component is  
not operating properly, the control module's dual 7-segment  
LED's will display an alpha-numeric code, depending upon  
the problem encountered. These LED's may be viewed  
through the observation window in the blower access door.  
Refer to the Troubleshooting Chart for further explanation of  
the LED codes and Abnormal Operation - Integrated Igni-  
tion Control section in the Service Instructions for an expla-  
nation of the possible problem.  
*MVC95* MINIMUM CLEARANCES TO COMBUSTIBLE MATERIALS  
(INCHES)  
POSITION* FRONT SIDES REAR  
TOP  
FLUE  
FLOOR  
Upflow  
3
0
6
0
0
1
4
0
0
C
C
Horizontal Alcove  
*= All positioning is determined as installed unit is viewed from the front.  
C= If placed on combustible floor, floor MUST be wood only.  
NC= For instalaltion on non-combustible floors only. A combustible  
subbase must be used for installations on combustible flooring.  
The rated heating capacity of the furnace should be greater  
than or equal to the total heat loss of the area to be heated.  
The total heat loss should be calculated by an approved  
method or in accordance with “ASHRAE Guide” or “Manual  
J-Load Calculations” published by the Air Conditioning Con-  
tractors of America.  
*CVC9 MINIMUM CLEARANCES TO COMBUSTIBLE MATERIALS  
(INCHES)  
POSITION* FRONT SIDES REAR  
TOP  
FLUE  
FLOOR  
NC  
Upflow  
1
0
6
0
0
1
4
0
0
Horizontal Alcove  
C
*= All positioning is determined as installed unit is viewed from the front.  
C= If placed on combustible floor, floor MUST be wood only.  
*Obtain from: American National Standards Institute 1430  
Broadway New York, NY 10018  
NC= For instalaltion on non-combustible floors only. A combustible  
subbase must be used for installations on combustible flooring.  
Location Considerations  
The furnace should be as centralized as is practical  
with respect to the air distribution system.  
AlcoveIllustration  
Do not install the furnace directly on carpeting, tile, or  
combustible material other than wood flooring.  
REAR  
When suspending the furnace from rafters or joists,  
use 3/8" threaded rod and 2” x 2” x 1/8” angle as  
shown in the Installation and Service Instructions. The  
length of the rod will depend on the application and  
clearance necessary.  
ALCOVE  
When installed in a residential garage, the furnace  
must be positioned so the burners and ignition source  
are located not less than 18 inches (457 mm) above  
the floor and protected from physical damage by ve-  
hicles.  
24" at front is required for servicing or cleaning.  
Note: In all cases accessibility clearance shall take  
precedence over clearances from the enclosure where  
accessibility clearances are greater. All dimensions are  
given in inches.  
Notes:  
1. Installer must supply one or two PVC pipes: one for com-  
bustion air (optional) and one for the flue outlet (required).  
Vent pipe must be either 2” or 3” in diameter, depending  
upon furnace input, number of elbows, length of run and  
HighAltitudeDerate  
When this furnace is installed at high altitude, the appropri-  
ate High Altitude orifice kit must be installed. This is re-  
4
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PRODUCT DESIGN  
quired due to the natural reduction in the density of both the  
gas fuel and combustion air as altitude increases. The kit  
will provide the proper design certified input rate within the  
specified altitude range.  
of time before stepping up to high stage to satisfy the  
thermostat’s call for heat. The delay period prior to stepping  
up can be set at either a fixed 5 minute time delay or a load  
based variable time between 1 and 12 minutes (AUTO mode).  
If the AUTOmode is selected, the control averages the cycle  
times of the previous three cycles and uses the average to  
determine the time to transition from low stage to high stage.  
High altitude kits are purchased according to the installa-  
tion altitude and usage of either natural or propane gas. Refer  
to the chart above for a tabular listing of appropriate altitude  
ranges and corresponding manufacturer’s high altitude Natu-  
ral Gas and Propane Gas kits. For a tabular listing of appro-  
priate altitude ranges and corresponding manufacturer's High  
Altitude Pressure Switch kits, refer to either the Pressure  
Switch Trip Points & Usage Chart in this manual or the Ac-  
cessory Charts in Service Instructions.  
To use a single-stage thermostat, turn off power to the fur-  
nace, move the thermostat selection DIP switch to the OFF  
position. Set the desired transition time by setting the tran-  
sition delay DIP switch to the desired ON/OFF position. Turn  
power back on. Refer to the following figure.  
ON OFF  
Move to the ON position  
to select two-stage  
thermostat or OFF to  
select single stage  
thermostat  
Heat OFF Delay  
DIP Switches  
Single Stage Thermostat  
A single-stage thermostat with only one heating stage may  
be used to control this furnace. The application of a single-  
stage thermostat does not offer “true” thermostat-driven two-  
stage operation, but provides a timed transition from low to  
high fire. The furnace will run on low stage for a fixed period  
3
4
Thermostat  
Stage Delay  
Move to the ON position  
to select Auto transition  
delay or OFF for 5 minute  
transition delay  
S1  
"STANDARD" and "HIGH ALTITUDE" KITS  
7,001 - 9,000 Feet  
0 - 7,000 Feet  
(Standard Altitude)  
9,001 - 11,000 Feet  
Gas Orifices  
Gas Orifices  
Gas Orifices  
ID Blwr  
Pressure  
Switch  
ID Blwr  
Pressure  
Switch  
ID Blw r  
Pressure  
Sw itch  
Furnace  
GMVC950453BX*  
GMVC950704CX*  
AMVC950453BX* Change  
LPM-05*(1)  
LPM-06*(2)  
#55 Orifice  
HANG13 HALP11  
HANG14 HALP11  
No  
No  
Change  
#44  
#56  
HAPS28  
#45  
#56  
HAPS28  
Orifice  
Orifice  
Orifice  
Orifice  
AMVC950704CX*  
LPM-05*(1)  
LPM-06*(2)  
#55 Orifice  
GMVC950905CX*  
AMVC950905CX* Change  
No  
No  
Change  
N/A  
N/A  
N/A  
N/A  
N/A  
N/A  
GMVC950905DX*  
GMVC951155DX*  
AMVC950905DX* Change  
AMVC951155DX*  
LPM-05*(1)  
LPM-06*(2)  
HANG13 HALP11  
HANG14 HALP11  
No  
No  
Change  
#44  
#56  
HAPS29  
#45  
#56  
HAPS29  
Orifice  
Orifice  
Orifice  
Orifice  
#55 Orifice  
GCVC90704CX*  
GCVC90905DX*  
LPM-05*(1)  
LPM-06*(2)  
HANG13 HALP11  
HANG14 HALP11  
No  
No  
Change  
GCVC91155DX*  
Change  
#44  
#56  
HAPS29  
#45  
#56  
HAPS31  
ACVC90704CX*  
Orifice  
Orifice  
Orifice  
Orifice  
#55 Orifice  
ACVC90905DX*  
GCVC950714CX*  
GCVC950915DX*  
ACVC950714CX* Change  
ACVC950915DX*  
LPM-05*(1)  
LPM-06*(2)  
#55 Orifice  
No  
No  
Change  
N/A  
N/A  
N/A  
N/A  
N/A  
N/A  
1 LPM-05* supports White-Rodgers 2-stage valves only  
2 LPM-06* supports Honeywell and White-Rodgers 2-stage valves  
5
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COMPONENT IDENTIFICATION  
6
23  
10  
5
8
26  
9
5
27  
7
10  
7
32  
25  
11  
4
11  
3
3
12  
*
*
*
*
*
*
*
2
24  
*
28  
*
13  
1
15  
14  
17  
31  
18  
3
16  
3
15  
18  
20  
21  
14  
31  
17  
18  
19  
19  
29  
16  
20  
30  
18  
19  
12  
19  
20  
28  
20  
13  
2
21  
25  
1
26  
9
6
4
8
27  
23  
7
7
Upflow/Horizontal  
Counterflow /Horizontal  
1 Two-Stage Gas Valve  
18 Coil Front Cover Pressure Tap  
19 Coil Front Cover Drain Port  
20 Drain Line Penetrations  
21 Drain Trap  
2 Gas Line Entrance (Alternate)  
3 Pressure Switch(es)  
4 Gas Manifold  
5 Combustion Air Intake Connection  
6 Hot Surface Igniter  
22 Blower Door Interlock Switch  
23 Inductor (Not All Models)  
7 Rollout Limit  
24 Two-Stage Integrated Control Module  
(with fuse and diagnostic LED)  
25 24 Volt Thermostat Connections  
26 Transformer (40 VA)  
8 Burners  
9 Flame Sensor  
10 Flue Pipe Connection  
11 Flue Pipe  
27 ECM Variable Speed Circulator Blower  
28 Auxiliary Limit  
12 Primary Limit  
13 Gas Line Entrance  
14 Flue Pipe Connection (Alternate)  
15 Rubber Elbow  
29 Junction Box  
30 Electrical Connection Inlets  
31 Coil Front Cover  
16 Two-Speed Induced Draft Blower  
17 Electrical Connection Inlets (Alternate)  
32 Combustion Air Inlet Pipe (*CVC9/95 only)  
6
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PRODUCT DIMENSIONS  
GMVC95/AMVC95___X*  
7
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PRODUCT DIMENSIONS  
GCVC9/ACVC9_____X*  
8
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PRODUCT DESIGN  
PRESSURE SWITCH TRIP POINTS AND USAGE CHART  
NEGATIVE PRESSURE  
NEGATIVE PRESSURE  
ID BLOWER  
NEGATIVE PRESSURE  
NEGATIVE PRESSURE  
COIL COVER  
ID BLOWER  
WITH FLUE  
NOT FIRING  
COIL COVER  
WITH FLUE  
NOT FIRING  
WITH FLUE  
FIRING  
WITH FLUE  
FIRING  
MODEL  
TYPICAL SEA LEVEL  
DATA(1)  
TYPICAL SEA LEVEL  
TYPICAL SEA LEVEL  
TYPICAL SEA LEVEL  
DATA(2)  
DATA(1)  
DATA(2)  
LOW FIRE  
HIGH FIRE  
LOW FIRE  
HIGH FIRE  
LOW FIRE  
HIGH FIRE  
LOW FIRE  
HIGH FIRE  
GMVC950453BX*  
GMVC950704CX*  
AMVC950453BX*  
AMVC950704CX*  
-0.45  
-0.90  
-0.50  
-0.95  
-0.25  
-0.25  
-0.25  
-0.25  
GMVC950905CX*  
AMVC950905CX*  
-0.75  
-0.65  
-1.85  
-1.20  
-.060  
-0.70  
-1.70  
-1.25  
-0.10  
-0.25  
-0.10  
-0.25  
-0.10  
-0.25  
-0.10  
-0.25  
GMVC950905DX*  
GMVC951155DX*  
AMVC950905DX*  
AMVC951155DX*  
GCVC90704CX*  
ACVC90704CX*  
-0.35  
-0.95  
-0.35  
-0.95  
-0.35  
-0.70  
-1.75  
-0.70  
-1.75  
-0.70  
-0.20  
-1.00  
-0.20  
-1.00  
-0.20  
-0.55  
-1.80  
-0.55  
-1.80  
-0.55  
-0.52  
-0.10  
-0.52  
-0.10  
-0.52  
-0.52  
-0.10  
-0.52  
-0.10  
-0.52  
-0.37  
-0.10  
-0.37  
-0.10  
-0.37  
-0.37  
-0.10  
-0.37  
-0.10  
-0.37  
GCVC950714CX*  
ACVC950714CX*  
GCVC90905DX*  
ACVC90905DX*  
GCVC950915DX*  
ACVC950915DX*  
GCVC91155DX*  
(1) Data given is least negative pressure required for pressure switch to close.  
(2) Data given is least negative pressure required for pressure switch to remain closed.  
Note: The typical sea level negative pressure data represents the minimum pressures expected. Shorter length of flue pipe or single pipe systems compared to  
dual pipe systems should show higher (greater negative) pressures.  
9
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PRODUCT DESIGN  
10  
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PRODUCT DESIGN  
PRIMARY LIMIT  
Part Number  
20162903  
20162904  
20162905  
20162907  
20162908  
0130F00105  
160  
---  
150  
---  
145  
1
155  
---  
170  
---  
130  
---  
Open Setting (°F)  
GMVC950453BX*  
AMVC950453BX*  
GMVC950704CX*  
AMVC950704CX*  
---  
---  
---  
---  
1
---  
---  
---  
1
---  
---  
1
1
---  
---  
---  
---  
---  
---  
---  
----  
---  
---  
---  
---  
---  
---  
1
---  
1
GMVC950905CX*  
AMVC950905CX*  
GMVC950905DX*  
AMVC950905DX*  
---  
---  
---  
---  
---  
1
GMVC951155DX*  
AMVC951155DX*  
---  
---  
---  
---  
---  
1
GCVC90704CX*  
ACVC90704CX*  
---  
1
GCVC950714CX*  
ACVC950714CX*  
---  
---  
---  
----  
GCVC90905DX*  
ACVC90905DX*  
---  
---  
----  
GCVC950915DX*  
ACVC950915DX*  
---  
----  
---  
GCVC91155DX*  
ROLLOUT LIMIT SWITCHES  
Part Number  
10123512  
10123517  
10123518  
10123533  
10123534  
10123537  
325  
---  
210  
---  
170  
1
200  
---  
220  
---  
190  
---  
Open Setting (°F)  
GMVC950453BX*  
AMVC950453BX*  
GMVC950704CX*  
AMVC950704CX*  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
2
2
---  
---  
---  
---  
---  
---  
2
GMVC950905CX*  
AMVC950905CX*  
GMVC950905DX*  
AMVC950905DX*  
---  
2
GMVC951155DX*  
AMVC951155DX*  
---  
GCVC90704CX*  
ACVC90704CX*  
----  
----  
---  
---  
2
---  
----  
---  
---  
----  
---  
2
---  
----  
---  
GCVC950714CX*  
ACVC950714CX*  
----  
---  
GCVC90905DX*  
ACVC90905DX*  
2
GCVC950915DX*  
ACVC950915DX*  
---  
2
---  
---  
---  
---  
----  
2
----  
----  
----  
---  
GCVC91155DX*  
11  
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PRODUCT DESIGN  
AUXILIARY LIMIT SWITCHES  
Part Number  
10123534  
10123535  
10123537  
190  
10123536  
180  
10123533  
200  
0130F00038  
220  
---  
150  
2
120  
---  
Open Setting (°F)  
GMVC950453BX*  
AMVC950453BX*  
---  
---  
---  
GMVC950704CX*  
AMVC950704CX*  
---  
---  
---  
---  
---  
---  
---  
---  
2
---  
---  
2
---  
---  
---  
2
---  
2
GMVC950905CX*  
AMVC950905CX*  
---  
---  
---  
GMVC950905DX*  
AMVC950905DX*  
---  
---  
GMVC951155DX*  
AMVC951155DX*  
---  
GCVC90704CX*  
ACVC90704CX*  
2
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
---  
2
---  
---  
---  
---  
---  
---  
2
GCVC950714CX*  
ACVC950714CX*  
---  
---  
---  
---  
GCVC90905DX*  
ACVC90905DX*  
---  
2
GCVC950915DX*  
ACVC950915DX*  
---  
2
---  
GCVC911555DX*  
12  
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PRODUCT DESIGN  
Coil Matches:  
A large array of Amana® brand coils are available for use with the GCVC9 and ACVC9 furnaces, in either counterflow or  
horizontal applications & with GMVC95 and AMVC95 furnaces, in either upflow or horizontal applications. These coils are  
available in both cased and uncased models (with the option of a field installed TXV expansion device). These 92%+ and  
95%+ furnaces match up with the existing Amana® brand coils as shown in the chart below.  
Coil Matches (for Goodman® andAmana® Brand units using R22 and R-410A):  
C
A
P
F 1824 A  
6
A
EXPANSION  
DEVICE:  
F: Flowrater  
REVISION  
A: Revision  
PRODUCT  
TYPE:  
C: Indoor Coil  
REFRIGERANT  
CHARGE:  
6: R-410A or R-22  
2: R-22  
4: R-410a  
CABINET FINISH:  
U: Unpainted  
P: Painted  
N: Unpainted Case  
NOMINAL WIDTH FOR GAS FURNACE  
A: Fits 14" Furnace Cabinet  
B: Fits 17 1/2" Furnace Cabinet  
C: Fits 21" Furnace Cabinet  
D: Fits 24 1/2" Furnace Cabinet  
N: Does Not Apply (Horizontal Slab Coils)  
APPLICATION  
A: Upflow/Downflow Coil  
H: Horizontal A Coil  
S: Horizontal Slab Coil  
NOMINAL CAPACITY RANGE  
@ 13 SEER  
1824: 1 1/2 to 2 Tons  
3030: 2 1/2 Tons  
3636: 3 Tons  
3642: 3 to 3 1/2 Tons  
3743: 3 to 3 1/2 Tons  
4860: 4 & 5 Tons  
4961: 4 & 5 Tons  
• All CAPF coils in B, C, & D widths have insulated blank off plates for use with one size smaller furnaces.  
• All CAPF coils have a CAUF equivalent.  
• All CHPF coils in B, C & D heights have an insulated Z bracket for use with one size smaller furnace.  
• All proper coil combinations are subject to being ARI rated with a matched outdoor unit.  
13  
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PRODUCT DESIGN  
Thermostats:  
ComfortNet™ CTK01A* Thermostat Kit  
Filters:  
Filters are required with this furnace and must be provided by the installer. The filters used must comply with UL900 or  
CAN/ULCS111 standards. Installing this furnace without filters will void the unit warranty  
Upflow Filters  
Returnairfiltersmaybeinstallatedatthefurnacesideand/orbottomreturnopenings. Thefurnacebottomreturnopening  
and side openings will accommodate the following filter sizes depending on cabinet size:  
Side Return Opening(s)  
Bottom Return Opening  
Approx.  
Approx.  
Cabinet  
Width  
(in.)  
Nominal  
Filter Size  
(in.)  
Cabinet  
Width  
(in.)  
Nominal  
Filter Size  
(in.)  
Flow Area  
Flow Area  
(in2)  
(in2)  
All  
16 x 25 x 1  
400  
17-1/2  
21  
14 x 25 x 1  
16 x 25 x 1  
20 x 25 x 1  
350  
400  
500  
24-1/2  
RefertoMinimumFilterAreatablestodeterminefilterarearequirement. NOTE:Filterscanalsobeinstalledelsewherein  
the duct system such as a central return.  
UPFLOW  
COOLING AIRFLOW REQUIREMENT (CFM)  
600  
415*  
---  
800  
415*  
---  
1000  
480  
636*  
---  
1200  
576  
1400  
---  
1600  
---  
1800  
---  
2000  
---  
0453__X*  
0704__X*  
0905__X*  
1155__X*  
636*  
826*  
875*  
672  
826*  
875*  
768  
826*  
875*  
---  
---  
---  
---  
864  
875*  
960  
960  
---  
---  
---  
COUNTERFLOW  
COOLING AIRFLOW REQUIREMENT (CFM)  
600  
800  
1000  
1200  
1400  
1600  
1800  
2000  
0704__X*  
0714__X*  
---  
---  
634*  
634*  
672  
768  
---  
---  
0905__X*  
0915__X*  
---  
---  
---  
---  
---  
---  
819*  
860*  
819*  
860*  
819*  
860*  
864  
864  
960  
960  
1155__X*  
*Minimum filter area dictated by heating airflow requirement.  
Disposable Minimum Filter Area (in2)  
[Based on a 300 ft/min filter face velocity]  
14  
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PRODUCT DESIGN  
UPFLOW  
COOLING AIRFLOW REQUIREMENT (CFM)  
600  
207*  
---  
800  
207*  
---  
1000  
240  
318*  
---  
1200  
288  
1400  
---  
1600  
---  
1800  
---  
2000  
---  
0453__X*  
0704__X*  
0905__X*  
1155__X*  
318*  
413*  
437*  
336  
413*  
437*  
384  
413*  
437*  
---  
---  
---  
---  
432  
432  
480  
480  
---  
---  
---  
COUNTERFLOW  
COOLING AIRFLOW REQUIREMENT (CFM)  
600  
800  
1000  
1200  
1400  
1600  
1800  
2000  
0704__X*  
0714__X*  
---  
---  
316*  
316*  
336  
384  
---  
---  
0905__X*  
0915__X*  
---  
---  
---  
---  
---  
---  
409*  
430*  
409*  
430*  
409*  
430*  
432  
432  
480  
480  
1155__X*  
*Minimum filter area dictated by heating airflow requirement.  
Disposable Minimum Filter Area (in2)  
[Based on a 600 ft/min filter face velocity]  
Counterflow Filters  
Returnairfiltersmaybeinstallatedattheatthecounterflowtopreturn. Afieldsuppliedcenterfiltersupportmustbeprovided  
bytheinstallerinordertousethetopreturn. Thefurnacewillaccommodatethefollowingcounterflowtopreturnfiltersizes  
depending on cabinet size:  
Counterflow Top Return  
Filter Size Dimension "A"  
Filter Area  
(in2)  
Cabinet Width  
Qty  
Return Air  
(in)  
(in)  
17 1/2  
21  
14.2  
13.0  
11.3  
19.7  
18.8  
17.7  
25.0  
24.3  
23.4  
Optional  
Access  
Door  
600  
800  
2
15 X 20 X 1  
"A"  
Min  
24 1/2  
17 1/2  
21  
2
2
20 X 20 X 1  
25 X 20 X 1  
24 1/2  
17 1/2  
21  
1000  
24 1/2  
Refer to Minimum Filter Area tables to determine filter area requirement. NOTE: Filters can also be installed elsewhere  
in the duct system such as a central return.  
15  
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FURNACE SPECIFICATIONS  
GMVC95  
GMVC950453BX* GMVC950704CX* GMVC950905CX* GMVC950905DX* GMVC951155DX*  
MODEL  
Btuh Input (US) High Fire  
46,000  
44,300  
32,000  
30,800  
95%  
69,000  
66,900  
48,000  
46,400  
95%  
92,000  
88,800  
64,000  
61,700  
95%  
92,000  
88,800  
64,000  
61,700  
95%  
115,000  
111,100  
80,000  
77,400  
95%  
Output (US) High Fire  
Btuh Input (US) Low Fire  
Output (US) Low Fire  
A.F.U.E.  
Rated External Static (" w.c.)  
Temperature Rise (°F)  
.10 - .50  
30 - 60  
-0.75  
.10 - .50  
30 - 60  
-0.75  
.10 - .50  
30 - 60  
-1.70  
.10 - .50  
30 - 60  
-1.10  
.10 - .50  
35 - 65  
-1.10  
High Stage Pressure Switch Trip Point (" w.c.)  
Low Stage Pressure Switch Trip Point (" w.c.)  
Front Cover Pressure Switch Trip Point (" w.c)  
Blower Wheel (D" x W")  
-0.30  
-0.30  
-0.60  
-0.50  
-0.50  
-0.10  
-0.10  
-0.10  
-0.10  
-0.10  
10 x 8  
1/2  
10 x 10  
3/4  
11 x 10  
1
11 x 10  
1
11 x 10  
1
Blower Horsepower  
Blower Speeds  
Refer to airflow charts in this manual.  
Max CFM @ 0.5 E.S.P.  
Power Supply  
115-60-1  
11.3  
115-60-1  
115-60-1  
14.4  
115-60-1  
115-60-1  
14.4  
Minimum Circuit Ampacity (MCA)  
Maximum Overcurrent Device  
Transformer (VA)  
14.1  
15  
14.4  
15  
15  
15  
15  
40  
40  
40  
40  
40  
Heat Anticipator (Amps)  
0.7  
0.7  
0.7  
0.7  
0.7  
Primary Limit Setting (°F)  
Auxiliary Limit Setting (°F)  
Rollout Limit Setting (°F)  
145  
155  
130  
145  
150  
150  
190  
120  
180  
200  
170  
200  
200  
190  
200  
Fan Delay On Heating  
30 secs.  
150 secs.  
5 secs.  
45 secs.  
5 secs.  
7 / 11  
3.5 / 10  
1.9 / 6.0  
#43 / #55  
2
30 secs.  
150 secs.  
5 secs.  
45 secs.  
5 secs.  
7 / 11  
3.5 / 10  
1.9 / 6.0  
#43 / #55  
3
30 secs.  
150 secs.  
5 secs.  
45 secs.  
5 secs.  
7 / 11  
3.5 /10  
1.9 / 6.0  
#43 / #55  
4
30 secs.  
150 secs.  
5 secs.  
45 secs.  
5 secs.  
7 / 11  
3.5 /10  
1.9 / 6.0  
#43 / #55  
4
30 secs.  
150 secs.  
5 secs.  
45 secs.  
5 secs.  
7 / 11  
3.5 /10  
1.9 / 6.0  
#43 / #55  
5
Off Heating *  
Fan Delay On Cooling  
Off Cooling  
Fan Delay On - Fan Only  
Gas Supply Pressure (Natural/Propane) (" w.c.)  
Manifold Pressure (Natural/Propane) High Stage (" w.c.)  
Manifold Pressure (Natural/Propane) Low Stage ("w.c.)  
Orifice Size (Natural/Propane)  
Number of Burners  
Vent Connector Diameter (inches)  
Combustion Air Connector Diameter (inches)  
Shipping Weight (lbs.)  
2
2
2
2
2
2
2
2
2
2
133  
157  
172  
172  
184  
* Off Heating - This fan delay timing is adjustable (90, 120, 150 or 180 seconds), 150 seconds as shipped.  
1. These furnaces are manufactured for natural gas operation. Optional Kits are available for conversion to propane gas operation.  
2. For elevations above 2000 ft. the rating should be reduced by 4% for each 1000 ft. above sea level. The furnace must not be derated, orifice  
changes should only be made if necessary for altitude.  
3. The total heat loss from the structure as expressed in TOTAL BTU/HR must be calculated by the manufactures method in accordance with the  
"A.S.H.R.A.E. GUIDE" or "MANUAL J-LOAD CALCULATIONS" published by the AIR CONDITIONING CONTRACTORS OF AMERICA. The total  
heat loss calculated should be equal to or less than the heating capacity. Output based on D.O.E. test procedures, steady state efficiency times  
output.  
4. Minimum Circuit Ampacity calculated as: (1.25 x Circulator Blower Amps) + I.D. Blower Amps.  
16  
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FURNACE SPECIFICATIONS  
AMVC95  
AMVC950453BX* AMVC950704CX* AMVC950905CX* AMVC950905DX* AMVC951155DX*  
MODEL  
Btuh Input (US) High Fire  
46,000  
44,300  
32,000  
30,800  
99%  
69,000  
66,900  
48,000  
46,400  
95.5%  
.10 - .50  
30 - 60  
-0.75  
92,000  
88,800  
64,000  
61,700  
95.7%  
.10 - .50  
30 - 60  
-1.70  
92,000  
88,800  
64,000  
61,700  
95.7%  
.10 - .50  
30 - 60  
-1.10  
115,000  
111,100  
80,000  
77,400  
95.8%  
.10 - .50  
35 - 65  
-1.10  
Output (US) High Fire  
Btuh Input (US) Low Fire  
Output (US) Low Fire  
A.F.U.E.  
Rated External Static (" w.c.)  
Temperature Rise (°F)  
.10 - .50  
30 - 60  
-0.75  
High Stage Pressure Switch Trip Point (" w.c.)  
Low Stage Pressure Switch Trip Point (" w.c.)  
Front Cover Pressure Switch Trip Point (" w.c)  
Blower Wheel (D" x W")  
-0.30  
-0.30  
-0.60  
-0.50  
-0.50  
-0.10  
-0.10  
-0.10  
-0.10  
-0.10  
10 x 8  
1/2  
10 x 10  
3/4  
11 x 10  
1
11 x 10  
1
11 x 10  
1
Blower Horsepower  
Blower Speeds  
Refer to airflow charts in this manual.  
Max CFM @ 0.5 E.S.P.  
Power Supply  
115-60-1  
11.3  
115-60-1  
115-60-1  
14.4  
115-60-1  
115-60-1  
14.4  
Minimum Circuit Ampacity (MCA)  
Maximum Overcurrent Device  
Transformer (VA)  
14.1  
15  
14.4  
15  
15  
15  
15  
40  
40  
40  
40  
40  
Heat Anticipator (Amps)  
0.7  
0.7  
0.7  
0.7  
0.7  
Primary Limit Setting (°F)  
Auxiliary Limit Setting (°F)  
Rollout Limit Setting (°F)  
145  
155  
130  
145  
150  
150  
190  
120  
180  
200  
170  
200  
200  
190  
200  
Fan Delay On Heating  
30 secs.  
150 secs.  
5 secs.  
45 secs.  
5 secs.  
7 / 11  
3.5 / 10  
1.9 / 6.0  
#43 / #55  
2
30 secs.  
150 secs.  
5 secs.  
45 secs.  
5 secs.  
7 / 11  
3.5 / 10  
1.9 / 6.0  
#43 / #55  
3
30 secs.  
150 secs.  
5 secs.  
45 secs.  
5 secs.  
7 / 11  
3.5 /10  
1.9 / 6.0  
#43 / #55  
4
30 secs.  
150 secs.  
5 secs.  
45 secs.  
5 secs.  
7 / 11  
3.5 /10  
1.9 / 6.0  
#43 / #55  
4
30 secs.  
150 secs.  
5 secs.  
45 secs.  
5 secs.  
7 / 11  
3.5 /10  
1.9 / 6.0  
#43 / #55  
5
Off Heating *  
Fan Delay On Cooling  
Off Cooling  
Fan Delay On - Fan Only  
Gas Supply Pressure (Natural/Propane) (" w.c.)  
Manifold Pressure (Natural/Propane) High Stage (" w.c.)  
Manifold Pressure (Natural/Propane) Low Stage ("w.c.)  
Orifice Size (Natural/Propane)  
Number of Burners  
Vent Connector Diameter (inches)  
Combustion Air Connector Diameter (inches)  
Shipping Weight (lbs.)  
2
2
2
2
2
2
2
2
2
2
133  
157  
172  
172  
184  
* Off Heating - This fan delay timing is adjustable (90, 120, 150 or 180 seconds), 150 seconds as shipped.  
1. These furnaces are manufactured for natural gas operation. Optional Kits are available for conversion to propane gas operation.  
2. For elevations above 2000 ft. the rating should be reduced by 4% for each 1000 ft. above sea level. The furnace must not be derated, orifice  
changes should only be made if necessary for altitude.  
3. The total heat loss from the structure as expressed in TOTAL BTU/HR must be calculated by the manufactures method in accordance with the  
"A.S.H.R.A.E. GUIDE" or "MANUAL J-LOAD CALCULATIONS" published by the AIR CONDITIONING CONTRACTORS OF AMERICA. The total  
heat loss calculated should be equal to or less than the heating capacity. Output based on D.O.E. test procedures, steady state efficiency times  
output.  
4. Minimum Circuit Ampacity calculated as: (1.25 x Circulator Blower Amps) + I.D. Blower Amps.  
17  
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FURNACE SPECIFICATIONS  
GCVC9  
GCVC90704CX*  
GCVC90905DX*  
GCVC91155DX*  
MODEL  
Btuh Input (US) High Fire  
69,000  
65,300  
48,000  
45,000  
93.0%  
.10 - .50  
30 - 60  
-0.55  
92,000  
86,500  
64,000  
60,100  
92.0%  
.10 - .50  
30 - 60  
-0.55  
115,000  
109,000  
80,000  
77,400  
93%  
Output (US) High Fire  
Btuh Input (US) Low Fire  
Output (US) Low Fire  
A.F.U.E.  
Rated External Static (" w.c.)  
Temperature Rise (°F)  
.10 - .50  
40 - 70  
-0.55  
High Stage Pressure Switch Trip Point (" w.c.)  
Low Stage Pressure Switch Trip Point (" w.c.)  
Front Cover Pressure Switch Trip Point (" w.c)  
Blower Wheel (D" x W")  
-0.20  
-0.20  
-0.20  
-0.37  
-0.37  
-0.37  
10 x 10  
3/4  
11 x 10  
1
11 x 10  
1
Blower Horsepower  
Blower Speeds  
Refer to airflow charts in this manual.  
Max CFM @ 0.5 E.S.P.  
Power Supply  
115-60-1  
14.1  
115-60-1  
14.4  
115-60-1  
14.4  
Minimum Circuit Ampacity (MCA)  
Maximum Overcurrent Device  
Transformer (VA)  
15  
15  
15  
40  
40  
40  
Heat Anticipator (Amps)  
0.7  
0.7  
0.7  
Primary Limit Setting (°F)  
Auxiliary Limit Setting (°F)  
Rollout Limit Setting (°F)  
160  
170  
145  
220  
180  
180  
220  
210  
210  
Fan Delay On Heating  
30 secs.  
150 secs.  
5 secs.  
45 secs.  
5 secs.  
7 / 11  
3.5 / 10  
1.9 / 6.0  
#43 / #55  
3
30 secs.  
150 secs.  
5 secs.  
45 secs.  
5 secs.  
7 / 11  
3.5 /10  
1.9 / 6.0  
#43 / #55  
4
30 secs.  
150 secs.  
5 secs.  
45 secs.  
5 secs.  
7 / 11  
3.5 /10  
1.9 / 6.0  
#43 / #55  
5
Off Heating *  
Fan Delay On Cooling  
Off Cooling  
Fan Delay On - Fan Only  
Gas Supply Pressure (Natural/Propane) (" w.c.)  
Manifold Pressure (Natural/Propane) High Stage (" w.c.)  
Manifold Pressure (Natural/Propane) Low Stage ("w.c.)  
Orifice Size (Natural/Propane)  
Number of Burners  
Vent Connector Diameter (inches)  
Combustion Air Connector Diameter (inches)  
Shipping Weight (lbs.)  
2
2
2
2
2
2
157  
172  
175  
* Off Heating - This fan delay timing is adjustable (90, 120, 150 or 180 seconds), 150 seconds as shipped.  
1. These furnaces are manufactured for natural gas operation. Optional Kits are available for conversion to propane gas operation.  
2. For elevations above 2000 ft. the rating should be reduced by 4% for each 1000 ft. above sea level. The furnace must not be derated, orifice  
changes should only be made if necessary for altitude.  
3. The total heat loss from the structure as expressed in TOTAL BTU/HR must be calculated by the manufactures method in accordance with the  
"A.S.H.R.A.E. GUIDE" or "MANUAL J-LOAD CALCULATIONS" published by the AIR CONDITIONING CONTRACTORS OF AMERICA. The total  
heat loss calculated should be equal to or less than the heating capacity. Output based on D.O.E. test procedures, steady state efficiency times  
output.  
4. Minimum Circuit Ampacity calculated as: (1.25 x Circulator Blower Amps) + I.D. Blower Amps.  
18  
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FURNACE SPECIFICATIONS  
GCVC95  
GC VC 950714CX*  
69,000  
65,300  
48,000  
45,000  
95.0%  
GC VC950915D X*  
MO D EL  
Btuh Input (US) High Fire  
9 2,000  
8 6,500  
6 4,000  
6 0,100  
95 .0 %  
.1 0 - .50  
2 5 - 55  
-1.60  
Output (US) Hig h Fire  
Btuh Input (US) Low Fire  
Output (US) Lo w Fire  
A.F.U.E.  
R ated Exte rnal Static (" w .c.)  
Te m perature R ise (°F)  
.1 0 - .50  
2 5 - 55  
-1.60  
H igh Stage Pressure Switch Trip Point (" w .c.)  
Low Stage Pressure Switch T rip Point (" w.c.)  
Front C over Pressure Switch T rip Point (" w .c)  
Blow er W heel (D " x W ")  
-0.80  
-0.80  
-0.10  
-0.10  
10 x 1 0  
3/4  
11 x 10  
1
Blow er Horse pow er  
Blow er Speeds  
R efer to airflow ch arts in this m an ual.  
M ax CF M @ 0.5 E.S.P.  
Power Supply  
115-60-1  
11.2  
115-60-1  
15.0  
M inim um C ircuit Am pacity (M C A)  
M axim um Overcurrent D evice  
Transform er (VA)  
15  
15  
40  
40  
H eat Anticipator (Am ps)  
0.7  
0.7  
Prim ary Lim it Setting (°F )  
150  
130  
Auxiliary Lim it Setting (°F )  
R ollout Lim it Setting (°F )  
120  
120  
210  
210  
Fan D elay On H eating  
30 secs.  
15 0 secs.  
5 secs.  
45 secs.  
5 secs.  
7 / 11  
3.5 / 10  
1.9 / 6.0  
#43 / #55  
3
30 secs.  
1 50 secs.  
5 secs.  
45 secs.  
5 secs.  
7 / 11  
3 .5 /10  
1.9 / 6.0  
#43 / #55  
4
Off Heating *  
Fa n D ela y On C ooling  
Off Cooling  
Fa n D ela y On - F an O nly  
Gas Supply Pressure (N atural/Prop ane ) (" w .c.)  
M anifold Pre ssure (Natura l/Propa ne) H igh Stag e (" w .c.)  
M anifold Pre ssure (Natura l/Propa ne) Low Stage ("w .c.)  
Orifice Size (N atural/Propane)  
N um ber of Burners  
Vent C onnector Diam eter (inches)  
C om bu stio n Air C on nector Diam eter (inches)  
Shipping W eight (lbs.)  
2
2
2
2
157  
172  
* O ff H ea tin g - T his fan delay tim ing is a dju stable (90, 120 , 15 0 or 1 80 s ec ond s), 150 se co nds as shipped .  
1. These furnaces are manufactured for natural gas operation. Optional Kits are available for conversion to propane gas operation.  
2. For elevations above 2000 ft. the rating should be reduced by 4% for each 1000 ft. above sea level. The furnace must not be derated, orifice  
changes should only be made if necessary for altitude.  
3. The total heat loss from the structure as expressed in TOTAL BTU/HR must be calculated by the manufactures method in accordance with the  
"A.S.H.R.A.E. GUIDE" or "MANUAL J-LOAD CALCULATIONS" published by the AIR CONDITIONING CONTRACTORS OF AMERICA. The total  
heat loss calculated should be equal to or less than the heating capacity. Output based on D.O.E. test procedures, steady state efficiency times  
output.  
4. Minimum Circuit Ampacity calculated as: (1.25 x Circulator Blower Amps) + I.D. Blower Amps.  
19  
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FURNACE SPECIFICATIONS  
ACVC9  
ACV C90704CX *  
ACV C90905DX *  
M OD E L  
B tuh Input (US ) High Fire  
69,000  
65,300  
48,000  
45,000  
93.3%  
.10 - .50  
30 - 60  
-0.55  
92,000  
86,500  
64,000  
60,100  
92.7%  
.10 - .50  
30 - 60  
-0.55  
Output (US ) High Fire  
B tuh Input (US ) Low Fire  
Output (US ) Low Fire  
A .F.U.E .  
Rated E xternal S tatic (" w.c .)  
Tem perature Ris e (°F)  
High S tage P res sure S witch Trip P oint (" w.c.)  
Low S tage P res sure S witc h Trip P oint (" w.c.)  
Front Cover P ress ure S witch Trip P oint (" w.c )  
B lower W heel (D" x W ")  
-0.20  
-0.20  
-0.37  
-0.37  
10 x 10  
3/4  
11 x 10  
1
B lower Horsepower  
B lower S peeds  
Refer to airflow c harts in this m anual.  
M ax CFM @ 0.5 E .S .P .  
P ower S upply  
115-60-1  
14.1  
115-60-1  
14.4  
M inim um Circuit A m pacity (M CA )  
M axim um O vercurrent Devic e  
Transform er (V A )  
15  
15  
40  
40  
Heat A nticipator (A m ps )  
0.7  
0.7  
P rim ary Lim it S etting (°F)  
A ux iliary Lim it S etting (°F)  
Rollout Lim it S etting (°F)  
160  
170  
220  
180  
220  
210  
Fan Delay On Heating  
30 s ec s.  
150 s ec s.  
5 secs .  
45 s ec s.  
5 secs .  
7 / 11  
3.5 / 10  
1.9 / 6.0  
#43 / #55  
3
30 s ec s.  
150 secs.  
5 s ec s.  
45 s ec s.  
5 s ec s.  
7 / 11  
3.5 /10  
1.9 / 6.0  
#43 / #55  
4
O ff Heating *  
Fan Delay On Cooling  
O ff Cooling  
Fan Delay On - Fan O nly  
G as S upply P ress ure (Natural/P ropane) (" w.c .)  
M anifold P res sure (Natural/P ropane) High S tage (" w.c.)  
M anifold P res sure (Natural/P ropane) Low S tage ("w.c .)  
O rifice S ize (Natural/P ropane)  
Num ber of B urners  
V ent Connec tor Diam eter (inches )  
Com bus tion A ir Connec tor Diam eter (inc hes)  
S hipping W eight (lbs .)  
2
2
2
2
157  
172  
* Off H ea tin g - Th is fan d ela y tim ing is ad jus ta ble (9 0, 12 0, 15 0 o r 1 80 s eco nd s ), 1 50 s e co nd s a s s h ipp ed .  
1. These furnaces are manufactured for natural gas operation. Optional Kits are available for conversion to propane gas operation.  
2. For elevations above 2000 ft. the rating should be reduced by 4% for each 1000 ft. above sea level. The furnace must not be derated, orifice  
changes should only be made if necessary for altitude.  
3. The total heat loss from the structure as expressed in TOTAL BTU/HR must be calculated by the manufactures method in accordance with the  
"A.S.H.R.A.E. GUIDE" or "MANUAL J-LOAD CALCULATIONS" published by the AIR CONDITIONING CONTRACTORS OF AMERICA. The total  
heat loss calculated should be equal to or less than the heating capacity. Output based on D.O.E. test procedures, steady state efficiency times  
output.  
4. Minimum Circuit Ampacity calculated as: (1.25 x Circulator Blower Amps) + I.D. Blower Amps.  
20  
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FURNACE SPECIFICATIONS  
ACVC95  
AC V C9 5 07 1 4C X *  
A C V C9 50 9 15 D X *  
MO D EL  
B tu h In p ut (US ) Hig h Fire  
O u tp ut (US ) Hig h Fire  
69 ,0 0 0  
65 ,3 0 0  
48 ,0 0 0  
45 ,0 0 0  
9 5.0%  
.1 0 - .50  
2 5 - 5 5  
-1 .6 0  
92 ,0 0 0  
86 ,5 0 0  
64 ,0 0 0  
60 ,1 0 0  
9 5.0%  
.1 0 - .5 0  
2 5 - 5 5  
-1 .6 0  
B tu h In p ut (US ) Lo w Fire  
O u tp ut (US ) Lo w Fire  
A .F.U.E .  
R ated E xte rn al S tatic (" w .c.)  
Te m p era tu re R ise (°F)  
H ig h S ta ge P re ssu re S witch Trip P o in t (" w .c.)  
L ow S ta g e P ressu re S witch T rip P o int (" w.c.)  
Fro n t C o ver Pre ssu re S witch T rip Po in t (" w .c)  
B low er W h ee l (D " x W ")  
-0 .8 0  
-0 .8 0  
-0 .1 0  
-0 .1 0  
1 0 x 1 0  
3 /4  
1 1 x 1 0  
1
B low er Ho rse po w er  
B low er S pe e ds  
R e fe r to a irflow ch a rts in th is m an u al.  
M a x CF M @ 0.5 E.S.P .  
P o we r S u pp ly  
1 15 -6 0-1  
1 1 .2  
1 15 -6 0-1  
1 5 .0  
M in im um C ircuit A m pa city (M C A )  
M axim um O ve rcurre n t D e vice  
Tra n sfo rm er (V A)  
1 5  
1 5  
4 0  
4 0  
H ea t An ticipa to r (A m p s)  
0.7  
0.7  
P rim ary Lim it S e ttin g (°F )  
A u xilia ry L im it S e ttin g (°F )  
R ollou t L im it Se ttin g (°F )  
1 50  
1 30  
1 20  
1 20  
2 10  
2 10  
Fa n D ela y On H ea tin g  
30 se cs.  
1 5 0 secs.  
5 se cs.  
45 se cs.  
5 se cs.  
7 / 11  
3 .5 / 10  
1 .9 / 6 .0  
# 43 / # 55  
3
30 se cs.  
1 5 0 secs.  
5 se cs.  
45 se cs.  
5 se cs.  
7 / 11  
3.5 /1 0  
1 .9 / 6 .0  
# 43 / # 55  
4
O ff He a ting *  
Fa n D ela y On C oo lin g  
O ff Co o lin g  
Fa n D ela y On - F an O nly  
Ga s S u pp ly P re ssure (N a tu ral/Pro p an e ) (" w .c.)  
M a nifo ld Pre ssu re (Na tu ra l/P rop a ne ) H igh S tag e (" w .c.)  
M a nifo ld Pre ssu re (Na tu ra l/P rop a ne ) L o w Stag e ("w .c.)  
Orifice S ize (N a tu ral/P ro p an e )  
N um b e r o f Bu rne rs  
V e nt C on n ector Dia m eter (in ch es)  
C om b u stio n A ir C on n ector Dia m eter (in ch es)  
S h ip pin g W e ig h t (lb s.)  
2
2
2
2
1 57  
1 72  
* O ff H ea tin g - T his fan delay tim ing is a dju st able (90, 120 , 15 0 or 1 80 s ec ond s), 150 se co nds as s hipped .  
1. These furnaces are manufactured for natural gas operation. Optional Kits are available for conversion to propane gas operation.  
2. For elevations above 2000 ft. the rating should be reduced by 4% for each 1000 ft. above sea level. The furnace must not be derated, orifice  
changes should only be made if necessary for altitude.  
3. The total heat loss from the structure as expressed in TOTAL BTU/HR must be calculated by the manufactures method in accordance with the  
"A.S.H.R.A.E. GUIDE" or "MANUAL J-LOAD CALCULATIONS" published by the AIR CONDITIONING CONTRACTORS OF AMERICA. The total  
heat loss calculated should be equal to or less than the heating capacity. Output based on D.O.E. test procedures, steady state efficiency times  
output.  
4. Minimum Circuit Ampacity calculated as: (1.25 x Circulator Blower Amps) + I.D. Blower Amps.  
21  
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BLOWER PERFORMANCE SPECIFICATIONS  
GMVC95/AMVC95 Heating Speed Charts  
GMVC950453BX*  
AMVC950453BX*  
GMVC950704CX*  
AMVC950704CX*  
(Rise Range: 30 - 60°F)  
(Rise Range: 30 - 60°F)  
Low Stage  
CFM  
at .1" - .5" w.c.  
ESP  
High Stage  
CFM  
at .1" - .5" w.c. (°F)  
ESP  
Low Stage  
CFM  
at .1" - .5" w.c.  
ESP  
High Stage  
CFM  
at .1" - .5" w.c. (°F)  
ESP  
Heating  
Speed  
Tap  
Heating  
Speed  
Tap  
Adjust  
Tap  
Rise  
Adjus t  
Tap  
Rise  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
495  
550  
605  
540  
600  
660  
585  
650  
715  
630  
700  
770  
713  
792  
871  
778  
864  
950  
842  
936  
1030  
907  
1008  
1109  
57  
41  
46  
52  
47  
43  
48  
43  
39  
45  
40  
36  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
756  
840  
1089  
1210  
1331  
1192  
1325  
1457  
1296  
1440  
1584  
1400  
1555  
1711  
56  
50  
46  
51  
46  
42  
47  
42  
38  
43  
39  
35  
A
B
C
D
A
B
C
D
924  
828  
920  
1012  
900  
1000  
1100  
972  
1080  
1188  
GMVC950905CX*  
AMVC950905CX*  
(Rise Range: 30 - 60°F)  
Low Stage  
CFM  
at .1" - .5" w.c.  
ESP  
High Stage  
CFM  
at .1" - .5" w.c. (°F)  
ESP  
Heating  
Speed  
Tap  
Adjust  
Tap  
Rise  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
945  
1341  
1490  
1639  
1413  
1570  
1727  
1521  
1690  
1859  
1602  
1780  
1958  
60  
54  
49  
57  
51  
47  
53  
48  
43  
50  
45  
41  
A
B
C
D
1050  
1155  
1008  
1120  
1232  
1080  
1200  
1320  
1125  
1250  
1375  
1. Units are shipped without filter(s). CFM in chart is without filter(s).  
2. All furnaces shipped with heating speed set at "B" and cooling speed set at "D". Installer should adjust blower speed  
as needed. The first task is to determine the proper aiflow for the cooling system.  
3. For most cooling applications, about 400 CFM per ton is desirable.  
4. The chart is for information only. For satisfactory operation, external static pressure not to exceed value shown on  
rating plate.  
5. Do not operate above 0.5" w.c. ESP in heating mode. Operating between 0.5" w.c. and 0.8" w.c. is tabulated for cooling  
purposes only.  
6. * Motor CFM minimum.  
22  
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BLOWER PERFORMANCE SPECIFICATIONS  
GMVC95/AMVC95 Heating Speed Charts  
GMVC950905DX*  
AMVC950905DX*  
GMVC951155DX*  
AMVC951155DX*  
(Rise Range: 30 - 60°F)  
(Rise Range: 35 - 65°F)  
Low Stage  
CFM  
at .1" - .5" w.c.  
ESP  
High Stage  
Low Stage  
CFM  
at .1" - .5" w.c.  
ESP  
High Stage  
Heating  
Speed  
Tap  
Heating  
Speed  
Tap  
Adjust  
Tap  
CFM  
at .1" - .5" w.c.  
ESP  
Rise  
(°F)  
Adjust  
Tap  
CFM  
at .1" - .5" w.c.  
ESP  
Rise  
(°F)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
1013  
1125  
1238  
1076  
1195  
1315  
1139  
1265  
1392  
1202  
1335  
1469  
1458  
1620  
1782  
1549  
1721  
1893  
1639  
1822  
2004  
1730  
1922  
2115  
56  
50  
45  
52  
47  
43  
49  
44  
40  
47  
42  
38  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
1107  
1230  
1353  
1139  
1265  
1392  
1170  
1300  
1430  
1202  
1335  
1469  
1594  
1771  
1948  
1639  
1822  
2004  
1685  
1872  
2059  
1730  
1922  
2115  
63  
57  
52  
62  
56  
50  
60  
54  
49  
58  
53  
48  
A
B
C
D
A
B
C
D
1. Units are shipped without filter(s). CFM in chart is without filter(s).  
2. All furnaces shipped with heating speed set at "B" and cooling speed set at "D". Installer should adjust blower speed  
as needed. The first task is to determine the proper aiflow for the cooling system.  
3. For most cooling applications, about 400 CFM per ton is desirable.  
4. The chart is for information only. For satisfactory operation, external static pressure not to exceed value shown on  
rating plate.  
5. Do not operate above 0.5" w.c. ESP in heating mode. Operating between 0.5" w.c. and 0.8" w.c. is tabulated for cooling  
purposes only.  
6. * Motor CFM minimum.  
23  
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BLOWER PERFORMANCE SPECIFICATIONS  
GMVC95/AMVC95 High (Single) Stage Cooling Speed Charts  
GMVC950453BX*  
AMVC950453BX*  
GMVC950704CX*  
AMVC950704CX*  
GMVC950905CX*  
AMVC950905CX*  
Cooling  
Speed  
Tap  
CFM at Cooling  
CFM at  
.1" - .8"  
w.c. ESP  
Cooling  
Speed  
Tap  
CFM at  
.1" - .8"  
w.c. ESP  
Adjus t  
Tap  
Adjus t  
Tap  
Adjus t  
Tap  
.1" - .8"  
Speed  
Tap  
w.c. ESP  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
540  
600  
Minus(-)  
Norm al  
Plus (+)  
Minus(-)  
Norm al  
Plus (+)  
Minus(-)  
Norm al  
Plus (+)  
Minus(-)  
Norm al  
Plus (+)  
540  
600  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
729  
810  
A
B
C
D
A
B
C
D
A
B
C
D
660  
660  
891  
720  
720  
990  
800  
800  
1100  
1210  
1323  
1470  
1617  
1629  
1810  
1991  
880  
880  
900  
990  
1000  
1100  
1080  
1200  
1320  
1100  
1210  
1286  
1429  
1572  
GMVC950905DX*  
AMVC950905DX*  
GMVC951155DX*  
AMVC951155DX*  
Cooling  
Speed  
Tap  
CFM at Cooling  
CFM at  
.1" - .8"  
w.c. ESP  
Adjus t  
Tap  
Adjus t  
Tap  
.1" - .8"  
Speed  
Tap  
w.c. ESP  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
720  
800  
Minus(-)  
Norm al  
Plus (+)  
Minus(-)  
Norm al  
Plus (+)  
Minus(-)  
Norm al  
Plus (+)  
Minus(-)  
Norm al  
Plus (+)  
720  
800  
A
B
C
D
A
B
C
D
880  
880  
990  
990  
1100  
1210  
1260  
1400  
1540  
1620  
1800  
1980  
1100  
1210  
1260  
1400  
1540  
1620  
1800  
1980  
1. Units are shipped without filter(s). CFM in chart is without filter(s).  
2. All furnaces shipped with heating speed set at "B" and cooling speed set at "D". Installer should adjust blower speed  
as needed. The first task is to determine the proper aiflow for the cooling system.  
3. For most cooling applications, about 400 CFM per ton is desirable.  
4. The chart is for information only. For satisfactory operation, external static pressure not to exceed value shown on  
rating plate.  
5. Do not operate above 0.5" w.c. ESP in heating mode. Operating between 0.5" w.c. and 0.8" w.c. is tabulated for cooling  
purposes only.  
6. * Motor CFM minimum.  
24  
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BLOWER PERFORMANCE SPECIFICATIONS  
GMVC95/AMVC95 Low Stage Cooling Speed Charts  
GMVC950453BX*  
AMVC950453BX*  
GMVC950704CX*  
AMVC950704CX*  
GMVC950905CX*  
AMVC950905CX*  
Cooling  
Speed  
Tap  
CFM at Cooling  
CFM at Cooling  
CFM at  
.1" - .8"  
w.c. ESP  
Adjust  
Tap  
Adjust  
Tap  
Adjust  
Tap  
.1" - .8"  
Speed  
Tap  
.1" - .8"  
Speed  
Tap  
w.c. ESP  
w.c. ESP  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
351  
390  
429  
468  
520  
572  
585  
650  
715  
702  
780  
858  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
351  
390  
429  
468  
520  
572  
644  
715  
787  
836  
929  
1022  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
495  
550  
A
B
C
D
A
B
C
D
A
B
C
D
605  
693  
770  
847  
900  
1000  
1100  
1125  
1250  
1375  
GMVC950905DX*  
AMVC950905DX*  
GMVC951155DX*  
AMVC951155DX*  
Cooling  
Speed  
Tap  
CFM at Cooling  
CFM at  
.1" - .8"  
w.c. ESP  
Adjust  
Tap  
Adjust  
Tap  
.1" - .8"  
Speed  
Tap  
w.c. ESP  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
468  
520  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
468  
520  
A
B
C
D
A
B
C
D
572  
572  
644  
644  
715  
715  
787  
787  
819  
819  
910  
910  
1001  
1053  
1170  
1287  
1001  
1053  
1170  
1287  
1. Units are shipped without filter(s). CFM in chart is without filter(s).  
2. All furnaces shipped with heating speed set at "B" and cooling speed set at "D". Installer should adjust blower speed  
as needed. The first task is to determine the proper aiflow for the cooling system.  
3. For most cooling applications, about 400 CFM per ton is desirable.  
4. The chart is for information only. For satisfactory operation, external static pressure not to exceed value shown on  
rating plate.  
5. Do not operate above 0.5" w.c. ESP in heating mode. Operating between 0.5" w.c. and 0.8" w.c. is tabulated for cooling  
purposes only.  
6. * Motor CFM minimum.  
25  
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BLOWER PERFORMANCE SPECIFICATIONS  
GMVC95/AMVC95 Continuous Fan Speed Chart  
Continuous Fan  
Speed1,2  
Furnace Maximum  
Model  
CFM  
GMVC950453BX*  
AMVC950453BX*  
1400  
1760  
2200  
2200  
2200  
420  
530  
660  
660  
660  
GMVC950704CX*  
AMVC950704CX*  
GMVC950905CX*  
AMVC950905CX*  
GMVC950905DX*  
AMVC950905DX*  
GMVC951155DX*  
AMVC951155DX*  
1 Continuous fan speed is 30% of furnace m aximum CFM  
2 Three continuous fan speeds are possible with the CTK01AA  
thermostat: 30%, 50%, and 70% of furnace maximum CFM  
GCVC9/ACVC9 Continuous Fan Speed Chart  
Continuous Fan  
Speed1,2  
Furnace Maximum  
CFM  
Model  
GCVC90704CX*  
ACVC90704CX*  
1760  
530  
GCVC90905DX*  
ACVC90905DX*  
2200  
2350  
660  
705  
GCVC91155DX*  
1 Continuous fan speed is 30% of furnace maximum CFM  
2 Three continuous fan speeds are possible with the CTK01AA  
thermostat: 30%, 50%, and 70% of furnace maximum CFM.  
GCVC95/ACVC95 Continuous Fan Speed Chart  
Continuous Fan  
Speed1,2  
Furnace Maximum  
CFM  
Model  
GCVC950714CX*  
ACVC950714CX*  
1760  
2200  
530  
660  
GCVC950915DX*  
ACVC950915DX*  
1 Continuous fan speed is 30% of furnace maximum CFM  
2 Three continuous fan speeds are possible with the CTK01AA  
thermostat: 30%, 50%, and 70% of furnace maximum CFM.  
1. Units are shipped without filter(s). CFM in chart is without filter(s).  
2. All furnaces shipped with heating speed set at "B" and cooling speed set at "D". Installer should adjust blower speed  
as needed. The first task is to determine the proper aiflow for the cooling system.  
3. For most cooling applications, about 400 CFM per ton is desirable.  
4. The chart is for information only. For satisfactory operation, external static pressure not to exceed value shown on  
rating plate.  
5. Do not operate above 0.5" w.c. ESP in heating mode. Operating between 0.5" w.c. and 0.8" w.c. is tabulated for cooling  
purposes only.  
6. * Motor CFM minimum.  
26  
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BLOWER PERFORMANCE SPECIFICATIONS  
GCVC9/ACVC9 Heating Speed Charts  
GCVC90704CX*  
ACVC90704CX*  
GCVC90905DX*  
ACVC90905DX*  
(Rise Range: 30 - 60°F)  
(Rise Range: 30 - 60°F)  
Low Stage  
CFM  
at .1" - .5" w.c. at .1" - .5" w.c. (°F)  
High Stage  
CFM  
Low Stage  
CFM  
at .1" - .5" w.c. at .1" - .5" w.c. (°F)  
High Stage  
CFM  
Heating  
Speed  
Tap  
Heating  
Speed  
Tap  
Adjust  
Tap  
Rise  
Adjust  
Tap  
Rise  
ESP  
ESP  
ESP  
ESP  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
747  
830  
1,076  
1,195  
1,315  
1,186  
1,318  
1,449  
1,296  
1,440  
1,584  
1,408  
1,562  
1,719  
56  
50  
46  
51  
46  
42  
47  
42  
38  
43  
39  
35  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
999  
1,439  
1,598  
1,758  
1,536  
1,706  
1,876  
1,633  
1,814  
1,996  
1,730  
1,922  
2,115  
56  
50  
46  
52  
47  
43  
49  
44  
40  
46  
42  
38  
1,110  
1,221  
1,067  
1,185  
1,303  
1,134  
1,260  
1,386  
1,202  
1,335  
1,469  
A
B
C
D
A
B
C
D
913  
824  
915  
1,007  
900  
1,000  
1,100  
978  
1,085  
1,194  
GCVC91155DX*  
(Rise Range: 40 - 70°F)  
Low Stage  
CFM  
at .1" - .5" w.c. at .1" - .5" w.c. (°F)  
High Stage  
CFM  
Heating  
Speed  
Tap  
Adjust  
Tap  
Rise  
ESP  
ESP  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
1,093  
1,214  
1,335  
1,106  
1,229  
1,352  
1,166  
1,296  
1,426  
1,172  
1,302  
1,432  
1,583  
1,759  
1,935  
1,612  
1,791  
1,970  
1,654  
1,838  
2,022  
1,690  
1,878  
2,066  
63  
56  
51  
61  
55  
50  
60  
54  
49  
59  
53  
48  
A
B
C
D
1. Units are shipped without filter(s). CFM in chart is without filter(s).  
2. All furnaces shipped with heating speed set at "B" and cooling speed set at "D". Installer should adjust blower speed  
as needed. The first task is to determine the proper aiflow for the cooling system.  
3. For most cooling applications, about 400 CFM per ton is desirable.  
4. The chart is for information only. For satisfactory operation, external static pressure not to exceed value shown on  
rating plate.  
5. Do not operate above 0.5" w.c. ESP in heating mode. Operating between 0.5" w.c. and 0.8" w.c. is tabulated for cooling  
purposes only.  
6. * Motor CFM minimum.  
27  
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BLOWER PERFORMANCE SPECIFICATIONS  
GCVC95/ACVC95 Heating Speed Charts  
GCVC950714CX*  
ACVC950714CX*  
GCVC950915DX*  
ACVC950915DX*  
(Rise Range: 25 - 55°F)  
(Rise Range: 25 - 55°F)  
Low Stage  
CFM  
at .1" - .5" w.c. at .1" - .5" w.c. (°F)  
High Stage  
CFM  
Low Stage  
CFM  
at .1" - .5" w.c. at .1" - .5" w.c. (°F)  
High Stage  
CFM  
Heating  
Speed  
Tap  
Heating  
Speed  
Tap  
Adjust  
Tap  
Rise  
Adjust  
Tap  
Rise  
ESP  
ESP  
ESP  
ESP  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
783  
870  
1107  
1230  
1353  
1215  
1350  
1485  
1323  
1470  
1617  
1440  
1600  
1760  
55  
49  
45  
50  
45  
41  
46  
41  
37  
42  
38  
34  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
1008  
1120  
1232  
1098  
1220  
1342  
1152  
1280  
1408  
1206  
1340  
1474  
1458  
1620  
1782  
1575  
1750  
1925  
1674  
1860  
2046  
1773  
1970  
2167  
55  
50  
45  
51  
46  
42  
48  
43  
39  
45  
41  
37  
A
B
C
D
A
B
C
D
957  
855  
950  
1045  
936  
1040  
1144  
1017  
1130  
1243  
1. Units are shipped without filter(s). CFM in chart is without filter(s).  
2. All furnaces shipped with heating speed set at "B" and cooling speed set at "D". Installer should adjust blower speed  
as needed. The first task is to determine the proper aiflow for the cooling system.  
3. For most cooling applications, about 400 CFM per ton is desirable.  
4. The chart is for information only. For satisfactory operation, external static pressure not to exceed value shown on  
rating plate.  
5. Do not operate above 0.5" w.c. ESP in heating mode. Operating between 0.5" w.c. and 0.8" w.c. is tabulated for cooling  
purposes only.  
6. * Motor CFM minimum.  
28  
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BLOWER PERFORMANCE SPECIFICATIONS  
GCVC9/ACVC9 High (Single) Stage Cooling Speed Charts  
GCVC90704CX*  
ACVC90704CX*  
GCVC90905DX*  
ACVC90905DX*  
GCVC91155DX*  
Cooling  
Speed  
Tap  
CFM at  
.1" - .8"  
w.c. ESP  
Cooling  
Speed  
Tap  
CFM at  
.1" - .8"  
w.c. ESP  
Cooling  
Speed  
Tap  
CFM at  
.1" - .8"  
w.c. ESP  
Adjust  
Tap  
Adjust  
Tap  
Adjust  
Tap  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
705  
783  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
540  
600  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
720  
800  
A
B
C
D
A
B
C
D
A
B
C
D
861  
660  
880  
982  
720  
990  
1091  
1200  
1265  
1406  
1547  
1628  
1809  
1990  
800  
1100  
1210  
1260  
1400  
1540  
1620  
1800  
1980  
880  
990  
1100  
1210  
1286  
1429  
1572  
GCVC9/ACVC9 Low Stage Cooling Speed Charts  
GCVC90704CX*  
ACVC90704CX*  
GCVC90905DX*  
ACVC90905DX*  
GCVC91155DX*  
Cooling  
Speed  
Tap  
CFM at Cooling  
.1" - .8" Speed  
CFM at  
.1" - .8"  
w.c. ESP  
Cooling  
Speed  
Tap  
CFM at  
.1" - .8"  
w.c. ESP  
Adjust  
Tap  
Adjust  
Tap  
Adjust  
Tap  
w.c. ESP  
Tap  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
351  
390  
429  
468  
520  
572  
644  
715  
787  
836  
929  
1022  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
468  
520  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
457  
508  
559  
621  
690  
759  
815  
906  
997  
1049  
1165  
1282  
A
B
C
D
A
A
B
C
D
572  
644  
B
C
D
715  
787  
819  
910  
1001  
1053  
1170  
1287  
1. Units are shipped without filter(s). CFM in chart is without filter(s).  
2. All furnaces shipped with heating speed set at "B" and cooling speed set at "D". Installer should adjust blower speed  
as needed. The first task is to determine the proper aiflow for the cooling system.  
3. For most cooling applications, about 400 CFM per ton is desirable.  
4. The chart is for information only. For satisfactory operation, external static pressure not to exceed value shown on  
rating plate.  
5. Do not operate above 0.5" w.c. ESP in heating mode. Operating between 0.5" w.c. and 0.8" w.c. is tabulated for cooling  
purposes only.  
6. * Motor CFM minimum.  
29  
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BLOWER PERFORMANCE SPECIFICATIONS  
GCVC95/ACVC95 High (Single) Stage Cooling Speed Charts  
GCVC950714CX*  
ACVC950714CX*  
GCVC950915DX*  
ACVC950915DX*  
Cooling  
Speed  
Tap  
CFM at Cooling  
.1" - .8" Speed  
w.c. ESP Tap  
CFM at  
.1" - .8"  
w.c. ESP  
Adjust  
Tap  
Adjust  
Tap  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
594  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
729  
810  
A
B
C
D
660  
726  
A
B
C
D
891  
747  
999  
830  
1110  
1221  
1287  
1430  
1573  
1674  
1860  
2046  
913  
1017  
1130  
1243  
1314  
1460  
1606  
GCVC95/ACVC95 Low Stage Cooling Speed Charts  
GCVC950714CX*  
ACVC950714CX*  
GCVC950915DX*  
ACVC950915DX*  
Cooling  
Speed  
Tap  
CFM at Cooling  
.1" - .8" Speed  
w.c. ESP Tap  
CFM at  
.1" - .8"  
w.c. ESP  
Adjust  
Tap  
Adjust  
Tap  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
378  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
Minus(-)  
Normal  
Plus (+)  
504  
560  
A
B
C
D
420  
462  
531  
590  
649  
702  
780  
858  
864  
960  
1056  
A
B
C
D
616  
666  
740  
814  
828  
920  
1012  
1071  
1190  
1309  
1. Units are shipped without filter(s). CFM in chart is without filter(s).  
2. All furnaces shipped with heating speed set at "B" and cooling speed set at "D". Installer should adjust blower speed  
as needed. The first task is to determine the proper aiflow for the cooling system.  
3. For most cooling applications, about 400 CFM per ton is desirable.  
4. The chart is for information only. For satisfactory operation, external static pressure not to exceed value shown on  
rating plate.  
5. Do not operate above 0.5" w.c. ESP in heating mode. Operating between 0.5" w.c. and 0.8" w.c. is tabulated for cooling  
purposes only.  
6. * Motor CFM minimum.  
30  
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BLOWER PERFORMANCE SPECIFICATIONS  
Circulator Blower Speed Adjustment Switches  
Note: There are dual 7-segment LED's adjacent  
Sw itch Bank: S3  
Sw itch Bank: S3  
DIP Sw itch No.  
to the selection dipswitches. The airflow rounded  
to the nearest 100 CFM, is displayed on the dual  
7-segment LED's. The CFM display alternates  
with the operating mode.  
DIP Sw itch No.  
Cooling Speed  
Adjust Taps  
3
4
Taps  
1
2
Normal*  
10%  
OFF  
ON  
OFF  
OFF  
ON  
A
B
OFF  
ON  
OFF  
OFF  
ON  
Example:  
-10%  
OFF  
ON  
C
OFF  
ON  
If the airlfow demand is 1230 CFM, the LED's will  
display 12. If the airflow demand is 1275 CFM,  
the LED's will display 13.  
Normal  
ON  
D*  
ON  
(*Indicates factory setting)  
(*Indicates factory setting)  
Sw itch Bank: S4  
Note: Continuous fan speed will be 30% of the  
furnace's maximum airflow capability. If the fur-  
nace maximum CFM capaibility is 1760 CFM, the  
continuous fan speed will be 0.30 X 1760 CFM =  
530 CFM.  
DIP Sw itch No.  
Heating Speed  
Taps  
7
8
A
B*  
C
OFF  
ON  
OFF  
OFF  
ON  
OFF  
ON  
Example: If the furnace maximum CFM capaibility  
is 1760 CFM, the continuous fan speed will be  
0.30 X 1760 CFM = 530 CFM.  
D
ON  
(*Indicates factory setting)  
Dehumidification Enable Switch  
Note: The optional usage of a dehumidistat allows  
the furnace’s circulator blower to operate at a slightly  
lower speed (85% of desired speed) during a combined  
thermostat call for cooling and dehumidistat call for  
dehumidification. This can be done through an  
independent dehumidistat or through a thermostat’s  
DEHUM terminal (if available). This lower blower speed  
enhances dehumidification of the conditioned air as it  
passes through the AC coil. For proper function, a  
dehumidistat applied to this furnace must operate on  
24 VAC and utilize a switch which opens on humidity  
rise.  
ON OFF  
9
DEHUM  
Unused  
Move to the ON position  
to enable dehumidification  
10  
S5  
1. Units are shipped without filter(s). CFM in chart is without filter(s).  
2. All furnaces shipped with heating speed set at "B" and cooling speed set at "D". Installer should adjust blower speed  
as needed. The first task is to determine the proper aiflow for the cooling system.  
3. For most cooling applications, about 400 CFM per ton is desirable.  
4. The chart is for information only. For satisfactory operation, external static pressure not to exceed value shown on  
rating plate.  
5. Do not operate above 0.5" w.c. ESP in heating mode. Operating between 0.5" w.c. and 0.8" w.c. is tabulated for cooling  
purposes only.  
6. * Motor CFM minimum.  
31  
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BLOWER PERFORMANCE SPECIFICATIONS  
Ramping Profile  
Note: The multi-speed circulator blower also offers several custom ON/OFF ramping profiles. These profiles may be used  
to enhance cooling performance and increase comfort level. The ramping profiles are selected using DIP switches 5 and  
6. Refer to the following figure for switch positions and their corresponding taps. Refer to the bullet points below for a  
description of each ramping profile. Verify CFM by noting the number displayed on the dual 7-segment LED display.  
Switch Bank: S4  
100% CFM  
100% CFM  
1 min  
DIP Switch No.  
Ramping  
Profiles  
OFF  
OFF  
5
6
A*  
B
OFF  
ON  
OFF  
OFF  
ON  
Profile A: provides only an OFF delay of one (1) minute at  
100% of the cooling demand airflow.  
C
D
OFF  
ON  
ON  
(*Indicates factory setting)  
100% CFM  
100% CFM  
1 min  
50% CFM  
1/2 min  
OFF  
OFF  
Profile B: ramps up to full cooling demand airflow by first  
stepping up to 50% of the full demand for 30 seconds. The  
motor then ramps to 100% of the required airflow. A one (1)  
minute OFF delay at 100% of the cooling airflow is provided.  
100% CFM  
OFF  
OFF  
Profile C: ramps up to 82% of the full cooling demand airflow  
and operates there for approximately 7 1/2 minutes. The motor  
then steps up to the full demand airflow. Profile C also has a  
one (1) minute 100% OFF delay.  
OFF  
OFF  
Profile D: ramps up to 50% of the demand for 1/2 minute,  
then ramps to 82% of the full cooling demand airflow and  
operates there for approximately 7 1/2 minutes. The motor  
then steps up to the full demand airflow. Profile D has a 1/2  
minute at 50% airflow OFF delay.  
1. Units are shipped without filter(s). CFM in chart is without filter(s).  
2. All furnaces shipped with heating speed set at "B" and cooling speed set at "D". Installer should adjust blower speed  
as needed. The first task is to determine the proper aiflow for the cooling system.  
3. For most cooling applications, about 400 CFM per ton is desirable.  
4. The chart is for information only. For satisfactory operation, external static pressure not to exceed value shown on  
rating plate.  
5. Do not operate above 0.5" w.c. ESP in heating mode. Operating between 0.5" w.c. and 0.8" w.c. is tabulated for cooling  
purposes only.  
6. * Motor CFM minimum.  
32  
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PERFORMANCE  
E I S E U A T P E T E  
33  
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WIRING DIAGRAMS  
*CVC9/*MVC95_AA  
HIGH VOLTAGE!  
DISCONNECT ALL POWER BEFORE SERVICING OR INSTALLING THIS  
UNIT. MULTIPLE POWER SOURCES MAY BE PRESENT. FAILURE TO  
DO SO MAY CAUSE PROPERTY DAMAGE, PERSONAL INJURY OR DEATH.  
TO  
GND  
115 VAC/ 1Ø /60 HZ  
POWER SUPPLY WITH  
OVERCURRENT  
PROTECTION DEVICE  
ID BLOWER TWO-STAGE PRESSURE  
SWITCH ASSEMBLY  
L
BK  
24V HUM.  
OR  
HIGH FIRE  
PRESSURE  
SWITC  
HOT  
SURFACE  
IGNITER  
LOW FIRE  
PRESSURE  
SWITCH  
N
C
WH  
C
NO  
NO  
DISCONNECT  
2 CIRCUIT  
CONNECTOR  
2 1  
TO 115VAC/ 1Ø /60 HZ POWER SUPPLY WITH  
OVERCURRENT PROTECTION DEVICE  
OR  
3
HI  
PU  
GND  
L
N
2
BR  
C
FLAME  
SENSOR  
TWO STAGE  
GAS VALVE  
R
C
1
GY  
GY  
FRONT COVER  
PM  
NO  
PRESSURE SWITCH  
DISCONNECT  
MANUAL RESET ROLLOUT LIMIT  
CONTROLS (SINGLE CONTROL ON  
45 kBTU)  
BL  
PK  
OR  
DOOR  
SWITCH  
JUNCTION BOX  
AUTO RESET PRIMARY  
LIMIT CONTROL  
INDUCTOR COIL  
70kBTU,90kBTU,  
115kBTU MODELS  
ONLY  
PU  
INDUCED  
DRAFT  
BLOWER  
INDOOR  
AIR  
CIRCULATOR  
BLWR  
3
WH  
2
RD  
1
BK  
GN  
GND  
BURNER COMPARTMENT  
BLOWER COMPARTMENT  
LINE  
EAC  
NEUTRAL  
NEUTRAL  
ELECTRONIC  
AIR CLEANER  
G
PU  
MANUAL RESET  
AUXILIARY  
LIMIT CONTROL  
YL  
IND HI  
NEUTRAL  
ID  
BLWR  
IND LO  
24 V THERMO TAT CONNE TIONS  
S
C
FUSE  
24 V  
3 A  
1
HUM  
IGN  
NEUTRAL  
NEUTRAL  
HUMIDIFIER  
HOT SURFACE  
IGNITER  
BR  
SEE  
NOTE  
DIAGNO STIC  
LED'S  
5
FS  
3
6
2
1
4
OR  
FLAME SENSOR  
115 VAC  
5
8
OR  
OR  
PK  
2ND STG DLY  
NEUTRAL  
LINE  
9
7
HEAT OFF  
DELAY  
10  
40 VA  
TRANSFORMER  
12  
15  
11  
FUSE 3 A  
TH (4)  
UNUSED  
DEHUM  
R
13  
GY  
BR  
14  
24 VAC  
HEAT  
TO +VDC  
PU  
1
2
3
4
YL  
HLO (10)  
PSO (7)  
DELAY  
Y1  
GY  
ADJUST  
COOL  
LOW FIRE PRESS.  
SW ITCH  
C
24V HUM.  
NO  
W 1  
W 2  
PS1 (2)  
BL  
NO  
LINE  
PS2 (12)  
TO  
MICRO  
1
2
BK  
Y2  
G
O
HIGH FIRE  
PRESS. SWTICH  
FS  
4
HLI (1)  
WH  
NEUTRAL  
WH  
DEHUM  
MVL (13)  
NO  
PM  
HI  
C
FRONT COVER  
PRESS. SWITCH  
C
MVH (14)  
RD  
C
BL  
MVC (8)  
ECM MTR  
HARNESS  
WH  
WH  
GAS  
VALVE  
GND (5)  
TR (11)  
GY  
BK  
BK  
BK  
GND  
BK  
5
BK  
TO  
GND (4)  
+ VDC (1)  
4
3
2
1
WH  
R
GR  
PK  
GND  
BLOWER  
INDOOR  
RX (2)  
TX (3)  
AIR  
CIRCULATOR  
BLWR  
COMPARTMENT  
DOOR SWITCH  
(OPEN WHEN  
DOOR OPEN)  
TO  
MICRO  
CIRCULATOR  
BLOWER  
INDUCTOR COIL  
70kBTU,90kBTU,  
115kBTU MODELS  
ONLY  
INTEGRATED CONTROL MODULE  
HUMIDIFIER  
NOTES:  
LOW VOLTAGE (24V)  
EQUIPMENT GND  
FIELD GND  
COLOR CODES:  
PK PINK  
BR BROWN  
WH WHITE  
BL BLUE  
GY GRAY  
RD RED  
YL YELLOW  
OR ORANGE  
PU PURPLE  
GN GREEN  
BK BLACK  
1. SET HEAT ANTICIPATOR ON ROOM THERMOSTAT AT 0.7 AMPS.  
LOW VOLTAGE FIELD  
HI VOLTAGE (115V)  
2. MANUFACTURER'S SPECIFIED REPLACEMENT PARTS MUST BE  
USED WHEN SERVICING.  
3. IF ANY OF THE O RIGINAL WIRE AS SUPPLIED WITH THE  
FURNACE MUST BE  
WIRING MATER  
LEAST 105°C. USE COPPER CONDUCTORS ONLY.  
4. UNIT MUST BE PERMANENTLY GROUNDED AND CONFORM TO  
N.E.C. AND LOCAL CODES.  
FIELD SPLICE  
HI VO TAGE F  
L
IELD  
ACED, IT MUST BE  
R
CED WITH  
EPLA  
REPL  
AVING A TEMPERATURE RATING OF AT  
SWITCH (TEMP.)  
IGNITER  
IAL H  
JUNCTION  
TERMINAL  
5. TO RECALL THE LAST 6 FAULT S, MOST RECENT TO LEAST  
RECENT, DEPRESS SWITCH FOR MORE THAN 2 SECONDS WHILE  
IN STANDBY (NO THERMOSTAT INPUTS)  
SWITCH (PRES  
S.)  
INTERNAL TO  
INTEGRATED C  
TROL  
ON  
OVERCURRENT  
PROT. DEVICE  
PLUG CONNECTION  
0140F00530  
REV. B  
Wiring is subject to change. Always refer to the wiring diagram on the unit for the most up-to-date wiring.  
34  
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WIRING DIAGRAMS  
*CVC9/*MVC95_AB  
HIGH VOLTAGE!  
DISCONNECT ALL POWER BEFORE SERVICING OR INSTALLING THIS  
UNIT. MULTIPLE POWER SOURCES MAY BE PRESENT. FAILURE TO  
DO SO MAY CAUSE PROPERTY DAMAGE, PERSONAL INJURY OR DEATH.  
TO  
GND  
115VAC/1 Ø/60HZ  
POWERSUPPLYWITH  
OVERCURRENT  
IDBLOWERTWO-STAGEPRESSURE  
SWITCHASSEMBLY  
PROTECTIONDEVICE  
L
WARNING:DISCONNECT  
POWERBEFORE  
SERVICING.WIRING  
TOUNITMUSTBE  
PROPERLYPOLARIZED  
ANDGROUNDED.  
BK  
24VHUM.  
OR  
HIGHFIRE  
PRESSURE  
SWITCH  
HOT  
SURFACE  
IGNITER  
LOWFIRE  
PRESSUR  
ESWITCH  
N
C
WH  
C
NO  
NO  
DISCONNECT  
2CIRCUIT  
2
1
CONNECTOR  
TO115VAC/1 Ø/60HZPOWERSUPPLYWITH  
OVERCURRENTPROTECTIONDEVICE  
OR  
2
3
HI  
PU  
GND  
TWOSTAGE  
GASVALVE  
(HONEYWELL)  
L
N
BR  
C
FLAME  
SENSOR  
WARNING:  
DISCONNECTPOWER  
BEFORESERVICING.  
WIRINGTOUNIT  
C
1
GY  
PM  
GY  
NO  
FRONTCOVER  
PRESSURESWITCH  
MUSTBEPROPERLY  
POLARIZEDAND  
GROUNDED.  
DISCONNECT  
MANUALRESETROLLOUTLIMIT  
CONTROLS(SINGLECONTROLON  
45kBTU)  
BL  
PK  
OR  
DOOR  
SWITCH  
JUNCTIONBOX  
AUTORESETPRIMARY  
LIMITCONTROL  
INDUCTORCOIL  
70kBTU,90kBTU,  
115kBTUMODELS  
ONLY  
PU  
INDUCED  
DRAFT  
BLOWER  
INDOOR  
AIR  
CIRCULATOR  
BLWR  
3
2
1
WH  
RD  
BK  
GND  
GND  
BURNERCOMPARTMENT  
BLOWERCOMPARTMENT  
NEUTRAL  
NEUTRAL  
LINE  
EAC  
ELECTRONIC  
AIRCLEANER  
PU  
YL  
MANUALRESET  
AUXILIARY  
LIMITCONTROL  
INDHI  
NEUTRAL  
ID  
BLWR  
INDLO  
HUM  
24VTHERMOSTATCONNECTIONS  
FUSE  
24V  
3A  
NEUTRAL  
NEUTRAL  
HUMIDIFIER  
IGN  
FS  
HOTSURFACE  
IGNITER  
BR  
SEE  
NOTE5  
DIAGNOSTIC  
LED'S  
3
2
1
4
OR  
OR  
OR  
FLAMESENSOR  
115VAC  
6
5
2NDSTGDLY  
T-STAT  
NEUTRAL  
LINE  
9
12  
15  
7
8
HEATOFF  
DELAY  
10  
40VA  
TRANSFORMER  
11  
PK  
GY  
FUSE3A  
TH(4)  
UNUSED  
DEHUM  
R
13  
14  
24VAC  
AUTORESETPRIMARY  
MANUALRESETAUXILIARYLIMIT  
CONTROLS  
LIMITCONTROL  
BR  
HEAT  
TO+VDC  
PU  
1
2
YL  
HLO(10)  
DELAY  
Y1  
OR  
GY  
3
4
PSO(7)  
PS1(2)  
ADJUST  
COOL  
24  
LOWFIREPRESS.  
SWITCH  
C
VAC  
24VHUM.  
NO  
W1  
W2  
115  
VAC  
BL  
NO  
LINE  
PS2(12)  
40VA  
TRANSFORMER  
TO  
1
2
3
4
5
C
BK  
MICRO  
Y2  
G
HIGHFIRE  
PRESS.SWTICH  
HLI(1)  
MANUALRESETROLLOUT  
LIMITCONTROLS  
FS  
WH  
O
NEUTRAL  
WH  
DEHUM  
MVL(13)  
NO  
PM  
HI  
C
FRONTCOVER  
PRESS.SWITCH  
C
MVH(14)  
RD  
C
BL  
MVC(8)  
ECMMTR  
HARNESS  
WH  
WH  
GAS  
VALVE  
GND(5)  
TR(11)  
GY  
BK  
BK  
BK  
GND  
BK  
5
BK  
TO  
GND(4)  
+VDC(1)  
4
3
2
WH  
R
GR  
PK  
GND  
1
BLOWER  
INDOOR  
AIR  
CIRCULATOR  
RX(2)  
TX(3)  
COMPARTMENT  
DOORSWITCH  
(OPENWHEN  
DOOROPEN)  
TO  
MICRO  
BLWR  
CIRCULATOR  
BLOWER  
INDUCTORCOIL  
70kBTU,90kBTU,  
115kBTUMODELS  
ONLY  
INTEGRATEDCONTROLMODULE  
HUMIDIFIER  
NOTES:  
EQUIPMENTGND  
FIELDGND  
LOWVOLTAGE(24V)  
COLORCODES:  
PKPINK  
BRBROWN  
WHWHITE  
BLBLUE  
1.SETHEATANTICIPATORONROOMTHERMOSTATAT0.7AMPS.  
LOWVOLTAGEFIELD  
HIVOLTAGE(115V)  
HIVOLTAGEFIELD  
2.MANUFACTURER'SSPECIFIEDREPLACEMENTPARTSMUSTBE  
USEDWHENSERVICING.  
3.IFANYOFTHEORIGINALWIREASSUPPLIEDWITHTHE  
FURNACEMUSTBEREPLACED,ITMUSTBEREPLACEDWITH  
WIRINGMATERIALHAVINGATEMPERATURERATINGOFAT  
LEAST105°C.USECOPPERCONDUCTORSONLY.  
4.UNITMUSTBEPERMANENTLYGROUNDEDANDCONFORMTO  
N.E.C.ANDLOCALCODES.  
FIELDSPLICE  
SWITCH(TEMP.)  
IGNITER  
GYGRAY  
RDRED  
JUNCTION  
YLYELLOW  
ORORANGE  
PU PURPLE  
GNGREEN  
BKBLACK  
TERMINAL  
5.TORECALLTHELAST6FAULTS,MOSTRECENTTOLEAST  
RECENT,DEPRESSSWITCHFORMORETHAN2SECONDSWHILE  
INSTANDBY(NOTHERMOSTATINPUTS)  
SWITCH(PRESS.)  
INTERNALTO  
INTEGRATEDCONTROL  
OVERCURRENT  
PROT.DEVICE  
PLUGCONNECTION  
0140F00661  
REV.B  
Wiring is subject to change. Always refer to the wiring diagram on the unit for the most up-to-date wiring.  
35  
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SCHEMATICS  
HIGH VOLTAGE!  
DISCONNECT ALL POWER BEFORE SERVICING OR INSTALLING THIS  
UNIT. MULTIPLE POWER SOURCES MAY BE PRESENT. FAILURE TO  
DO SO MAY CAUSE PROPERTY DAMAGE, PERSONAL INJURY OR DEATH.  
1 N I P  
2 N I P  
3 N I P  
4 N I P  
5 N I P  
R
59-4715 REV.  
F
ANSI Z21.20 AUTOMATIC IGNITION SYSTEM 24VAC 60Hz 0.8 A. MAX.  
BLOWER ASSEMBLY SCHEMATIC  
ACVC9/AMVC95/GCVC9/GMVC95_____X* MODEL FURNACES  
This schematic is for reference only. Not all wiring is as shown above,  
refer to the appropriate wiring diagram for the unit being serviced.  
Wiring is subject to change. Always refer to the wiring diagram on the unit for the most up-to-date wiring.  
36  
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SCHEMATICS  
HIGH VOLTAGE!  
DISCONNECT ALL POWER BEFORE SERVICING OR INSTALLING THIS  
UNIT. MULTIPLE POWER SOURCES MAY BE PRESENT. FAILURE TO  
DO SO MAY CAUSE PROPERTY DAMAGE, PERSONAL INJURY OR DEATH.  
Wiring is subject to change. Always refer to the wiring diagram on the unit for the most up-to-date wiring.  
37  
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