smart total component solutions linear compressor

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Smart Total Component Solutions LG compressors are built under precise quality standards and exacting durability requirements for the global marketplace. With LG Compressors, you can be sure to reach your targets whatever they may be. LINEAR COMPRESSOR COMPRESSOR TECHNOLOGY for Refrigeration Address Phone Fax E-mail 76 Seongsan-dong, Changwon City Gyeongnam, 51554, South Korea +82-55-269-3868 +82-55-268-4896 [email protected] Changwon Plant, Korea Address Phone LG Eletronics India P Ltd Compressor-Plot No. 51, Udyog Vihar, Surajpur-Kasna Road, Greater Noida Uttar Pradesh, India +91-120-256-0900 Noida Plant, India Address Phone Taizhou LG Electronis Refrigeration Co., LTD2, Xianglin Road, Hailing Zone, Taizhou, Jiangsu, China +86-523-8018-9484 Taizhou Plant, China GLOBAL NETWORK Find more at www.lg.com/global/business © LG Electronics Inc. Printed in Korea Jan, 2020 *For Continual product development, LG reserves the right to change the specifications without notice

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Smart Total Component Solutions

LG compressors are built under precise quality standards

and exacting durability requirements for the global marketplace.

With LG Compressors, you can be sure to reach your targets

whatever they may be.

LINEAR COMPRESSORCOMPRESSOR TECHNOLOGYfor Refrigeration

Address

Phone

Fax

E-mail

76 Seongsan-dong, Changwon CityGyeongnam, 51554, South Korea

+82-55-269-3868

+82-55-268-4896

[email protected]

Changwon Plant, Korea

Address

Phone

LG Eletronics India P Ltd Compressor-Plot No. 51,Udyog Vihar, Surajpur-Kasna Road,

Greater Noida Uttar Pradesh, India

+91-120-256-0900

Noida Plant, India

Address

Phone

Taizhou LG Electronis Refrigeration Co., LTD2, Xianglin Road, Hailing Zone, Taizhou, Jiangsu, China

+86-523-8018-9484

Taizhou Plant, China

GLOBAL NETWORK

Find more at www.lg.com/global/business© LG Electronics Inc. Printed in Korea Jan, 2020*For Continual product development, LG reserves the right to change the specifications without notice

WHY LG LINEAR COMPRESSORS? BENEFITS OF LG LINEAR COMPRESSOR

LESS FRICTION POINTS

Inverter Reciprocating5 friction points

12

3

45

Linear1 friction point

1

• Energy SavingLG linear compressor hashigher efficiency andless efficiency variation

• Less NoiseLG linear compressor runsstable without causing noise.Fewer friction pointsreduce the noise level.(1 instead of 5)

• Easy ApplicationLG linear compressorhas better responsivenessof control.

* The testing was conducted according to LG's internal lab. Results based in laboratory tests considering proper use conditions.

Comparison Models are LG large inverter reciprocating compressor (BMA121NA) and LG middle reciprocating compressor (BMH089NA).

The estimated results do not constitute any kind of warranty whatsoever.

APPLICATIONS

1

234 1

Side by Side French Door

(800 Liter ↑)

120%

Efficiency Rate

Cooling Capacity Rate

115%

100%

110%

90%

95%

105%

Large Linear

(FLD)

Large Inverter Reciprocating*

40% 60% 90%50% 80%70% 100%

10 %

Middle Linear

(FMA)

Middle Inverter Reciprocating*

5%110%

Efficiency Rate

Cooling Capacity Rate

105%

90%

100%

80%

85%

95%

40% 60% 80%50% 70%40% 90%

LG linear compressor has better characteristics of performance than inverter reciprocating

LG linear compressor has more stable noise than Inverter Reciprocating

Noise

Linear

Cooling Capacity (RPM)

Inverter Reciprocating

Stable in all areas

Noise

Time

Linear

Inverter Reciprocating

Soft start & Soft stop

Application : LBP (Low Back Pressure)

SPECIFICATIONS

Refrigerant Model Magnet

RatePerformance characteristic Noise

ASHRAE AHAM REF condition

dBAVoltage Frequency Capa`[W] EER Capa`[W] EER

V HzCCR* CCR CCR CCR CCR CCR CCR CCR

100% 50~100% 100% 100% 90% 80% 70% 60%

R600a

FLC150NAMA Ferrite 220~240 50/60 330 8.7 280 7.9 8.1 8.1 8.1 8.0 38.0

FLD165NAMA Nd 220~240 50/60 350 9.4 230 8.4 8.5 8.5 8.4 8.3 37.5

FLD165NBMA Nd 220~240 50/60 350 9.4 230 8.6 8.7 8.7 8.6 8.5 37.5

FLE165NAMA Ferrite 220~240 50/60 350 9.1 240 8.2 8.2 8.2 8.1 8.0 37.5

FMA088NBMA Nd 220~240 50/60 200 9.3 120 8.4 8.5 8.5 8.6 8.6 37.5

FMA102NAMA Nd 220~240 50/60 220 9.1 150 8.3 8.4 8.4 8.5 8.4 37.5

FMA102NBMA Nd 220~240 50/60 220 9.3 150 8.4 8.5 8.5 8.6 8.5 37.5

FMC088NAMA Nd 220~240 50/60 180 8.2 180 7.6 7.7 7.7 7.6 7.5 37.5

R134a FLD090LANA Nd 100~135 50/60 370 8.6 290 8.0 8.3 8.3 8.4 8.4 39.0

* CCR (Cooling Capacity Ratio) : % Modulation comparing to maximum cooling capacity

Note1 : Figures in the table are subject to change without prior ncoeti for performance improvement.

Note2 : Test condition Evaporating temperature Condensing temperature

ASHRAE -23.3℃ 54.4℃

AHAM -23.3℃ 40.6℃

REF Condition -26℃ 38℃

FLD FMA

Inverter Reciprocating

Linear

Efficiency

Cooling Capacity (RPM)

Energy Consumption

Low Load (RT 25°C↓) High Load (RT 32°C↓)

Linear LinearInverter Recipro-cating

Inverter Recipro-cating

a%↓

a+ß%↓

1

234 1

Bottom Freezer

(400 Liter ↑)

220

106

136

186

188.1220

184

65.9

65.2

75.5

149

106

141.6

161.1

211

59 100

19696.4

18.4

SuctionSuction

ProcessProcess

DischargeDischarge