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LG LS360HV3 - WLAN Connectivity (Optional); App Usage and Verification Troubleshooting Reference

LG LS360HV3
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21
Product Data
Due to our policy of continuous product innovation, some specifications may change without notification.
©LG Electronics U.S.A., Inc., Englewood Cliffs, NJ. All rights reserved. “LG” is a registered trademark of LG Corp.
GENERAL DATA
Model Number Nom. Tons
Compressor
Qty
Compressor
(A) Cool/Heat
Fan Qty ODU Fan (A) IDU Fan (A) MCA (A) MOP (A)
LSU091HSV3
3/4 1 8.7/8.7 1 0.40 0.4 10 15
LSU121HSV3
1 1 8.7/8.7 1 0.40 0.4 10 15
LSU181HSV3
1-1/2 1 15.4/15.4 1 0.25 0.4 19 25
LSU240HSV3
1-3/4 1 15.4/15.4 1 0.25 0.5 19 25
Table 6: Single Zone High Efciency Indoor Unit Electrical Data
Model Number Nom. Tons
Compressor
Qty
Compressor
(A) Cool/Heat
Fan Qty ODU Fan (A) IDU Fan (A) MCA (A) MOP (A)
LSU307HV3
2-1/2 1 15.4/15.4 1 0.25 0.5 19 25
LSU360HV3
2-3/4 1 15.4/15.4 1 0.25 0.5 19 25
Table 7: Single Zone Standard Indoor Unit Electrical Data
Model Number Nom. Tons
Compressor
Qty
Compressor
(A) Cool/Heat
Fan Qty ODU Fan (A) IDU Fan (A) MCA (A) MOP (A)
LSU240HLV
1-3/4 1 17.3/17.3 1 0.25 0.5 23 35
LSU300HLV
2-1/2 1 17.3/17.3 1 0.25 0.5 23 35
LSU360HLV
2-3/4 1 17.3/17.3 1 0.25 0.5 23 35
Table 8: Single Zone Extended Pipe Indoor Unit Electrical Data
Electrical
Unit Model Nos. Nom. Tons
Compressor
Qty
Compressor
(A) Cool/Heat
Fan Qty ODU Fan (A) IDU Fan (A) MCA (A) MOP (A)
LSU090HEV
3/4 1 6.8/6.8 1 0.5 0.5 9 15
LSU120HEV
1 1 6.8/6.8 1 0.5 0.5 9 15
LSU180HEV
1 1/2 1 8.68/9.28 1 0.4 0.4 12 20
LSU240HEV
2 1 10.8/9.6 1 0.48 0.48 14 20
Table 9: 208-230V, 60Hz, 1-Phase Single Zone Mega Indoor Unit Electrical Data
Table 10: 115V, 60Hz, 1-Phase Single Zone Mega 115V Indoor Unit Electrical Data
Unit Model Nos. Nom. Tons
Compressor
Qty
Compressor
(A) Cool/Heat
Fan Qty ODU Fan (A) IDU Fan (A) MCA (A) MOP (A)
LSU090HXV
3/4 1 10/10 1 0.4 0.5 13.5 20
LSU120HXV
1 1 10/10 1 0.4 0.5 13.5 20
Voltage tolerance is ±10%.
Maximum allowable voltage unbalance is 2%.
MSC = Maximum Starting Current.
MCA = Minimum Circuit Ampacity.
Maximum Overcurrent Protection (MOP) is calculated
as follows: (Largest motor FLA x 2.25) + (Sum of
other motor FLA) rounded down to the nearest
standard fuse size.

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