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York STELLAR PLUS E*FH018 - Cooling Capacity - Air Handler Matches; Performance Tables

York STELLAR PLUS E*FH018
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036-21031-004 Rev. A (0603)
4 Unitary Products Group
- = Not applicable
COOLING CAPACITY - With Air Handler Coils
UNIT
MODEL
AIR HANDLER
COIL MODEL
1
1. G2FD coils available with a factory installed horizontal drain pan. See price pages for specific model number.
COOLING
MODEL
ELECTRIC
HEAT KW
2
2. Single phase units require single phase 2HK heaters.
W
RATED
CFM
NET MBH
SEER
W/O TXV
SEER
+ TXV
3
3. TXV = Use 1TV700 Series Kit.
EER
TOTAL SENS.
1 Phase 12 SEER HP / N1AH / G2FD
E4FH018
N1AHB08 2,5,7.5,10 17 G2FD024(S,H)17 650 19.0 14.3 12.05 --- 10.65
N1AHB08 2,5,7.5,10 17 G2FD030(S,H)17 650 19.4 14.6 12.15 --- 10.70
E4FH024
N1AHB08 2,5,7.5,10 17 G2FD024(S,H)17 800 23.4 17.6 12.10 --- 10.85
N1AHB08 2,5,7.5,10 17 G2FD030(S,H)17 850 23.4 17.6 12.10 --- 10.85
N1AHB08 2,5,7.5,10 14 G2FD035(S,H)14 850 23.4 17.6 12.10 --- 10.85
E4FH030 N1AHB12 5,7.5,10,15,18 17 G2FD036(S,H)17 1000 29.0 21.8 --- 12.40 10.65
E4FH036 N1AHB12 5,7.5,10,15,18 17 G2FD036(S,H)17 1200 34.6 25.6 -- 12.00 10.50
E4FH042
N1AHC16 5,7.5,10,15,20 21 G2FD042(S,H)21 1400 40.0 29.6 -- 12.00 10.50
N1AHC16 5,7.5,10,15,20 21 G2FD048(S,H)21 1425 41.0 30.3 -- 12.40 10.80
E5FH048
N1AHC16 5.7.5,10,15,20 21 G2FD048(S,H)21 1600 47.5 35.6 -- 12.00 10.50
N1AHD20 5.7.5,10,15,20,25,30 24 G2FD060(S,H)24 1620 48.0 36.0 -- 12.40 10.85
E4FH060
N1AHD20 7.5,10,15,20,25,30 24 G2FD060(S,H)24 1850 58.0 42.0 -- 12.00 10.70
N1AHD20 7.5,10,15,20,25,30 24 G2FD061H24 1875 58.5 41.5 -- 12.20 10.70
1 Phase 12 SEER HP / N1VS / G2FD
E4FH018 N1VSB12 5,7.5,10,15,18 17 G2FD024(S,H)17 650 19.4 14.3 13.35 --- 11.70
E4FH024 N1VSB12 5,7.5,10,15,18 17 G2FD024(S,H)17 800 24.0 18.0 14.00 --- 12.00
E4FH030
N1VSB12 5,7.5,10,15,18 17 G2FD030(S,H)17 1000 29.0 21.8 --- 13.00 11.20
N1VSB12 5,7.5,10,15,18 17 G2FD036(S,H)17 1000 29.2 21.9 --- 13.50 11.40
E4FH036 N1VSB12 5,7.5,10,15,18 17 G2FD036(S,H)17 1200 35.0 25.9 -- 12.80 11.20
E4FH042
N1VSC16 5,7.5,10,15,20 21 G2FD042(S,H)21 1400 40.5 30.0 -- 12.80 11.20
N1VSC16 5,7.5,10,15,20 21 G2FD048(S,H)21 1425 41.5 30.7 -- 13.50 11.40
E5FH048
N1VSC16 5.7.5,10,15,20 21 G2FD048(S,H)21 1600 48.0 36.0 --- 13.40 10.50
N1VSD20 5.7.5,10,15,20,25,30 24 G2FD060(S,H)24 1650 49.0 36.8 --- 13.80 10.80
E4FH060
N1VSD20 7.5,10,15,20,25,30 24 G2FD060(S,H)24 1850 60.5 42.9 -- 13.00 11.60
N1VSD20 7.5,10,15,20,25,30 24 G2FD061H24 1875 59.0 41.5 -- 12.60 11.90
1 Phase 12 SEER HP / F2RP / FP / FV
4,5
4. To meet R=4.2 insulation requirements, substitute F2FP for F2RP, and F2FC for F2RC
.
models. All ratings remain the same.
5. FG8, FG9, and FL8 furnaces and F2RP / F2RC air handlers have B.O.D (Blower on Delay) standard.
E4FH018
F2RP/F2FP018 5,8,10 18 -- 650 18.0 13.5 12.00 --- 10.75
F2RP/F2FP024 5,8,10 18 -- 650 19.0 14.3 12.50 --- 10.50
E4FH024
F2RP/F2FP024 5,8,10 18 -- 800 23.4 17.6 12.00 --- 10.35
F2RP/F2FP030 5,8,10,15 18 -- 800 23.8 17.9 --- 12.50 10.55
E4FH030
F2RP/F2FP030 5,8,10,15 18 --- 1035 28.2 21.2 --- 12.00 10.30
F2RP/F2FP036 5,8,10,15 21 --- 1035 29.0 21.8 --- 12.00 10.30
E4FH036
F2RP036 5,8,10,15 18 -- 1250 34.6 25.6 -- 12.10 10.60
F2RP042 5,8,10,15 21 -- 1250 34.6 25.6 -- 12.10 10.50
E4FH042
F2RP042 5,8,10,15 21 -- 1400 40.0 29.6 -- 12.00 10.40
F2FP048 10,15,20,25 24 -- 1600 41.0 30.3 -- 12.40 10.80
E5FH048
F2FP048 10,15,20,25 24 -- 1600 47.0 35.3 --- 12.00 10.45
F2V060 10,15,20,25 24 -- 1600 48.5 36.4 --- 13.00 11.60
F2FP060 10,15,20,25 24 -- 1600 47.5 35.6 --- 12.00 10.35
E4FH060
F2FP060 10,15,20,25 24 -- 1850 57.0 42.2 -- 11.60 10.40
F2FV060H24 10,15,20,25 24 -- 1875 59.0 43.0 -- 13.00 11.60
Rated in accordance with DOE test procedures (Federal Register 12-27-79 and 3-18-88) and ARI Standards 210/240.
Cooling MBH based on 80°F entering air temperature, 50% RH, and rated air flow.
EER (Energy Efficiency Ratio) is the total cooling output in BTU’s at a 95°F outdoor ambient divided by the total electric power in watt-hours at those conditions.
SEER (Seasonal Energy Efficiency Ratio) is the total cooling output in BTU’s during a normal annual usage period for cooling divided by the total electric power input
in watt-hours during the same period.

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