Mbsm.pro, Copeland Compressor RS80C1E-CAZ-252, 1 HP, R134a Refrigerant, 220-240V Single Phase 50Hz, RSIR Motor, LBP Low Temperature Freezing Application, Hermetic Reciprocating Technology

The Copeland RS80C1E-CAZ-252 represents a specialized hermetic reciprocating compressor engineered for low-temperature refrigeration applications where reliability meets efficiency. This single-phase unit operates on R134a refrigerant and delivers consistent performance in demanding freezing environments ranging from -30°C to -10°C evaporating temperatures.

Technical Overview and Application Domain

The RS80C1E-CAZ-252 belongs to Copeland’s proven RS series of hermetic reciprocating compressors, designed specifically for commercial refrigeration applications requiring low back pressure operation. This compressor serves as the heart of various freezing systems including walk-in freezers, ice cream display cabinets, blast freezers, and frozen food storage units where maintaining sub-zero temperatures is critical for product preservation.

Operating at 220-240V single-phase 50Hz power supply, this unit draws approximately 5 amperes during normal operation, making it suitable for standard commercial electrical systems. The RSIR (Resistance Start Induction Run) motor type provides reliable starting characteristics without requiring expensive start capacitors, utilizing instead a simple current relay or PTC (Positive Temperature Coefficient) starting device.

Core Performance Characteristics

This 1 horsepower compressor generates approximately 8,000 BTU/hr cooling capacity when operating at standard LBP (Low Back Pressure) conditions. The displacement volume typically measures around 10.5 cubic centimeters per revolution, allowing the compressor to circulate sufficient refrigerant volume to maintain target evaporator temperatures even under heavy thermal loads.

The hermetic construction means the motor and compression mechanism are sealed within a welded steel shell, protecting internal components from environmental contamination while eliminating the risk of refrigerant leakage through shaft seals. This design philosophy extends operational lifespan and reduces maintenance requirements compared to open or semi-hermetic alternatives.

R134a refrigerant compatibility makes this compressor environmentally friendlier than older R22 units while delivering comparable performance in low-temperature applications. The hydrofluorocarbon (HFC) refrigerant operates with polyolester (POE) lubricating oil, which maintains proper lubrication characteristics across the wide temperature range encountered in LBP freezing applications.

Motor Design and Electrical Configuration

The RSIR motor configuration employs both main (run) and auxiliary (start) windings within the stator assembly. During startup, both windings receive power, creating phase displacement that generates starting torque. Once the motor reaches approximately 75 percent of operating speed, the centrifugal switch or current relay disconnects the start winding, allowing the compressor to continue running on the main winding alone.

This motor type requires lower starting torque compared to CSR (Capacitor Start Run) or CSIR (Capacitor Start Induction Run) designs, making it ideal for applications with lower mechanical resistance during startup. The thermal protection system monitors both motor temperature and current draw, automatically interrupting power if unsafe conditions develop.

The copper winding material provides excellent electrical conductivity and thermal performance. Proper winding insulation ensures reliable operation across the compressor’s operational temperature range, from ambient starting conditions down to the cold temperatures encountered when pumping low-temperature refrigerant vapors.

Refrigeration System Integration

When integrated into complete refrigeration systems, the RS80C1E-CAZ-252 typically connects to evaporator coils operating between -30°C and -10°C saturated suction temperature. The compressor maintains these low evaporator pressures while discharging high-pressure, high-temperature vapor to the condenser at pressures typically ranging from 10 to 15 bar depending on ambient conditions and condenser efficiency.

Proper superheat control becomes critical in low-temperature applications. Maintaining minimum 10°C superheat at the compressor suction prevents liquid refrigerant from entering the compression chamber, which could cause catastrophic damage to valve plates and piston assemblies. Most installations utilize thermostatic expansion valves (TXV) or electronic expansion valves (EEV) to precisely meter refrigerant flow and maintain proper superheat.

The suction line typically measures 1/2 inch ODF (Outside Diameter Flare), while the discharge line uses 3/8 inch ODF connections. Proper suction line sizing prevents excessive pressure drop that would reduce system capacity, while adequate insulation prevents heat gain that increases compression work and reduces efficiency.

Oil Management and Lubrication

The RS80C1E-CAZ-252 ships from the factory charged with approximately 400-450 milliliters of polyolester lubricating oil. POE oil provides superior miscibility with R134a refrigerant, ensuring adequate oil circulation throughout the refrigeration system even at low evaporator temperatures where conventional mineral oils would separate and accumulate.

In low-temperature applications, proper oil return becomes paramount. The suction line must maintain sufficient refrigerant velocity to entrain oil droplets and carry them back to the compressor. Vertical suction risers require minimum 1000 feet per minute velocity at minimum load conditions, often necessitating dual-riser configurations with traps to ensure oil return during light-load operation.

System installations should include oil separators on the discharge line for applications operating below -20°C evaporating temperature. The oil separator removes 95-99 percent of entrained oil from discharge gas before it reaches the condenser, preventing oil accumulation in low-temperature evaporators where viscosity increases and oil return becomes problematic.

Installation Best Practices

Mounting the compressor requires rigid support capable of handling vibration loads during operation. The unit features a quad mounting pattern with bolt holes spaced approximately 8.0 inches by 4.8 inches, standard for this compressor frame size. Rubber isolation grommets between the mounting feet and support structure minimize vibration transmission to surrounding structures.

Electrical connections must match nameplate specifications exactly. The terminal configuration includes common (C), run (R), and start (S) terminals clearly marked on the compressor terminal cover. Wiring should use copper conductors sized according to local electrical codes, typically 14 AWG minimum for this amperage rating with appropriate overcurrent protection.

The starting relay or PTC device mounts directly to the compressor terminal pins or connects via a short wire harness. Current relays work well with RSIR motors, sensing motor current to switch the start winding in and out of the circuit. PTC devices offer simpler installation with fewer components but may require replacement after multiple starting cycles.

Refrigerant Charging Procedures

Initial system evacuation must reach 500 microns or lower before refrigerant charging begins. This deep vacuum removes moisture and non-condensables that could compromise system performance or cause compressor failure through acid formation or reduced heat transfer efficiency.

R134a charging typically follows the superheat method for fixed-orifice systems or subcooling method for TXV-equipped systems. For low-temperature applications with TXV metering, target subcooling ranges from 8-12°C at the condenser outlet, ensuring liquid refrigerant reaches the expansion device without flash gas formation in the liquid line.

Operating pressures vary with ambient conditions and box temperature, but typical LBP systems operate with suction pressures between 0.5-2.0 bar absolute and discharge pressures from 10-14 bar at standard rating conditions. Monitoring both suction and discharge pressures during commissioning ensures proper charge quantity and system operation.

Performance Optimization

Maximizing compressor efficiency requires attention to several system parameters. Maintaining clean condenser coils ensures adequate heat rejection, preventing excessive discharge pressures that increase compression ratio and reduce capacity. Regular coil cleaning schedules keep condensers operating at peak performance.

Evaporator defrost cycles significantly impact low-temperature system operation. Electric defrost, hot gas defrost, or water defrost systems each present different challenges for compressor operation. Proper defrost termination prevents excessive refrigerant migration to the compressor during off-cycles, which could cause liquid slugging during restart.

Suction line accumulators provide additional protection against liquid floodback, particularly during defrost recovery periods when large quantities of liquid refrigerant evaporate rapidly. The accumulator captures liquid refrigerant and meters it back to the compressor at controlled rates, preventing damage while maintaining proper oil return.

Diagnostic Procedures

Monitoring amperage draw provides valuable diagnostic information. Normal running current should match nameplate specifications within 10 percent. Higher amperage indicates excessive discharge pressure from dirty condensers, refrigerant overcharge, or non-condensables in the system. Lower amperage suggests refrigerant undercharge, excessive suction superheat, or internal compressor wear.

Discharge line temperature measurement offers another diagnostic indicator. Excessive discharge temperatures above 110°C indicate low suction superheat, excessive compression ratio, or inadequate motor cooling from low suction gas flow. Installing discharge line temperature sensors enables continuous monitoring and early problem detection.

Suction and discharge pressure measurements combined with refrigerant pressure-temperature charts reveal system operating conditions. Comparing actual temperatures against saturation temperatures calculated from measured pressures identifies problems with superheat, subcooling, refrigerant charge, or airflow across heat exchangers.

Maintenance Requirements

Hermetic compressors require minimal routine maintenance compared to semi-hermetic or open designs. No scheduled oil changes or mechanical seal replacements are necessary. However, monitoring system operation through regular performance checks ensures early problem detection before catastrophic failure occurs.

Filter drier replacement follows manufacturer recommendations, typically annually or whenever system contamination occurs. Low-temperature applications benefit from oversized filter driers that minimize pressure drop while providing adequate moisture and acid removal capacity.

Electrical connections require periodic inspection and tightening to prevent high-resistance connections that generate heat and eventually fail. Terminal cover gaskets should remain intact to prevent moisture ingress that could cause motor winding insulation breakdown.

Troubleshooting Common Issues

Compressor short cycling often results from low refrigerant charge, dirty evaporator coils restricting airflow, or improperly sized thermal overload protection. Systematic diagnosis eliminates potential causes until the root problem is identified and corrected.

Failure to start can indicate electrical problems with the starting relay, PTC device, or motor windings. Checking voltage at the compressor terminals confirms power availability. Testing start and run winding resistance with an ohmmeter identifies open or shorted windings that require compressor replacement.

Excessive noise or vibration suggests mechanical problems within the compressor or inadequate mounting. Internal valve failures, worn piston assemblies, or bearing problems generate abnormal operating sounds. Loose mounting bolts or deteriorated isolation grommets transmit vibration to supporting structures.

Replacement and Cross-Reference Options

When replacement becomes necessary, several equivalent compressor models offer similar performance characteristics. Within the Copeland product line, the RS80C1E-CAV series provides updated refrigerant compatibility for newer low-GWP refrigerants while maintaining similar physical dimensions and capacity.

Environmental Considerations

R134a refrigerant, while significantly better than older CFC and HCFC refrigerants, still carries a global warming potential of 1430. Newer HFO and HFO-blend refrigerants offer substantially lower GWP ratings while delivering comparable performance. Future regulations may require transition to these low-GWP alternatives.

Proper refrigerant recovery during service and end-of-life disposal prevents atmospheric releases. Certified recovery equipment captures refrigerant for recycling or reclamation, complying with environmental regulations while reducing operating expenses through refrigerant reuse.

Energy efficiency impacts environmental footprint throughout compressor operational life. Maintaining peak system efficiency through regular maintenance reduces electricity consumption and associated carbon emissions from power generation.

Safety Considerations

High-pressure refrigeration systems present several safety hazards. Discharge pressures can exceed 15 bar during extreme conditions, capable of rupturing weak components or causing injury if system piping fails. Proper pressure relief devices protect against excessive pressures from abnormal operating conditions.

Electrical safety requires proper grounding of all system components including the compressor. Ground fault protection devices interrupt power if insulation breakdown creates electrical leakage paths that could cause shock or fire hazards.

Refrigerant safety depends on proper handling procedures. While R134a is classified as non-flammable, displacement of oxygen in confined spaces creates asphyxiation risks. Adequate ventilation and refrigerant detection systems protect technicians working with refrigeration equipment.

Advanced System Integration

Modern refrigeration controls enable sophisticated compressor operation strategies. Adaptive defrost systems optimize defrost frequency based on actual frost accumulation rather than fixed time schedules, reducing energy waste and temperature fluctuations.

Variable-speed condenser fans modulate heat rejection capacity to maintain optimal condensing temperatures across varying ambient conditions. This approach prevents excessive subcooling during cool weather while ensuring adequate capacity during peak summer conditions.

Remote monitoring systems track compressor performance parameters continuously, alerting managers to developing problems before failures occur. Cloud-based analytics compare current operation against historical baselines, identifying performance degradation that indicates maintenance needs.

Economic Analysis

The initial investment in quality compressor components pays dividends through extended operational life and reduced maintenance expenses. While premium compressors command higher purchase prices, lower failure rates and longer service intervals deliver superior total cost of ownership.

Energy efficiency directly impacts operating expenses throughout compressor life. A 10 percent efficiency improvement reduces electricity costs proportionally, generating cumulative savings that often exceed initial equipment costs over typical 10-15 year service lives.

Proper system design and installation maximizes return on investment. Oversized or undersized compressors sacrifice efficiency, while poor installation practices create problems that reduce reliability and increase maintenance expenses.


Complete Technical Specifications Table

Parameter Specification
Model RS80C1E-CAZ-252
Utilization LBP (Low Back Pressure)
Domain Freezing Applications
Oil Type and Quantity Polyolester (POE), 400-450 ml
Horsepower (HP) 1 HP
Refrigerant Type R134a (HFC)
Power Supply 220-240V, 1 Phase, 50Hz
Cooling Capacity BTU ~8,000 BTU/hr
Motor Type RSIR (Resistance Start Induction Run)
Displacement ~10.5 cc/rev
Winding Material Copper
Pressure Charge Factory sealed hermetic
Capillary Not included (system component)
Refrigerator Models Compatible Commercial freezers, ice cream cabinets, blast freezers, frozen food storage, walk-in freezers
Temperature Function -30°C to -10°C evaporating temperature
With Fan or No Requires external condenser fan
Commercial or No Commercial grade
Amperage in Function ~5.0 A running current
LRA 25-30 A (Locked Rotor Amps)
Type of Relay Current relay or PTC starter
Capacitor or No and Value No run capacitor (RSIR type)

Compressor Replacement Options – Same Refrigerant (R134a)

Model Brand HP BTU/hr Voltage Application
RST80C1E-PFV-959 Copeland 1 HP 8,000 208-230V/1/60Hz LBP/Extended Medium
RS80C1E-CAV-252 Copeland 1 HP 8,250 208-230V/1/60Hz LBP
AE4460Z-FZ1A Tecumseh 1 HP 7,900 220-240V/1/50Hz LBP
NTY65CLX Embraco 1/4-1/3 HP 7,800 220-240V/1/50Hz LBP
FR8.5G Danfoss 1 HP 8,100 220-240V/1/50Hz LBP

Compressor Replacement Options – Alternative Refrigerants

Model Brand Refrigerant HP BTU/hr Voltage Application
RS80C1E-CAV-224 Copeland R404A/R407C 1 HP 8,250 208-230V/1/60Hz LBP
AE4460Y-FZ1A Tecumseh R404A 1 HP 8,000 220-240V/1/50Hz LBP
NJ6226Z Embraco R404A 1 HP 8,100 220-240V/1/50Hz LBP
MTZ64-4VI Danfoss R404A/R448A/R449A 1 HP 8,200 220-240V/1/50Hz LBP
FR8.5CL Danfoss R407C 1 HP 7,950 220-240V/1/50Hz LBP

Comparative Performance Analysis

Understanding how the RS80C1E-CAZ-252 performs relative to competitive offerings helps technicians and engineers make informed equipment selections. The comparison table below highlights key performance differences:

Feature Copeland RS80 Tecumseh AE4460Z Embraco NTY65 Danfoss FR8.5G
Cooling Capacity 8,000 BTU/hr 7,900 BTU/hr 7,800 BTU/hr 8,100 BTU/hr
Energy Efficiency (EER) 7.8 7.6 7.5 8.0
Noise Level 52 dB(A) 54 dB(A) 53 dB(A) 51 dB(A)
Weight 18 kg 17.5 kg 16 kg 18.5 kg
Mounting Pattern 8.0″ x 4.8″ 8.0″ x 5.0″ 7.5″ x 4.5″ 8.0″ x 4.8″
Starting Device Current relay/PTC Current relay PTC Current relay
Warranty Period 3 years 2 years 3 years 3 years

The Copeland RS80C1E-CAZ-252 demonstrates competitive performance across all metrics, with particular strengths in reliability and global service support availability.


System Design Considerations

Proper compressor selection requires matching capacity to application load requirements. Undersized compressors run continuously without achieving target temperatures, while oversized units short-cycle with poor humidity control and reduced efficiency.

Calculating accurate cooling loads accounts for product heat load, infiltration through door openings, transmission through insulated walls, internal lighting and equipment heat, and defrost energy input. Professional load calculation software ensures accurate sizing for reliable system operation.

Condensing unit location affects performance significantly. Outdoor installations experience widely varying ambient temperatures that impact capacity and efficiency. Indoor installations benefit from controlled environments but require adequate ventilation to prevent recirculation of condenser discharge air.


Energy Efficiency Optimization

Energy consumption represents the largest operational expense for most refrigeration systems. Strategic efficiency improvements deliver ongoing savings that accumulate throughout equipment service life.

Variable-speed compressor technology offers substantial efficiency gains compared to fixed-speed units, though reciprocating compressors like the RS80 series utilize on-off cycling rather than speed modulation. Future system upgrades might consider variable-speed scroll or inverter-driven compressors for applications with widely varying loads.

Floating head pressure control adjusts condensing temperature downward during cool ambient conditions, reducing compression ratio and improving efficiency. This strategy requires careful implementation to maintain adequate expansion device pressure differential and oil return velocity.

Heat reclaim systems capture condenser heat for domestic water heating, space heating, or process applications. Recovering waste heat that would otherwise dissipate to ambient improves overall system efficiency while providing useful thermal energy for building operations.


Technological Advancement Trends

Refrigeration compressor technology continues evolving toward higher efficiency, lower environmental impact, and improved reliability. Understanding emerging trends helps plan for future equipment replacements and system upgrades.

Natural refrigerants including CO2, propane, and ammonia gain market acceptance as regulations restrict high-GWP synthetic refrigerants. While the RS80C1E-CAZ-252 operates with R134a, future replacements may utilize low-GWP alternatives like R290 (propane) or R744 (CO2) depending on regulatory requirements.

Internet of Things (IoT) connectivity enables remote monitoring and predictive maintenance strategies. Sensors track compressor performance continuously, comparing current operation against baseline parameters to identify developing problems before failures occur.

Machine learning algorithms analyze operational data patterns to optimize system controls automatically. Adaptive algorithms adjust setpoints, defrost timing, and capacity modulation to minimize energy consumption while maintaining temperature requirements.


Professional Installation Guidelines

Quality installation practices dramatically impact long-term reliability and performance. Following manufacturer specifications and industry best practices ensures optimal results.

Brazing copper refrigerant lines requires flowing dry nitrogen through piping during heating to prevent internal oxide scale formation. Scale particles contaminate the system, causing expansion valve blockages and compressor wear that shorten service life.

Evacuation procedures must achieve deep vacuum levels to remove moisture that causes acid formation and copper plating. Triple evacuation with vacuum breaks accelerates moisture removal compared to single-stage evacuation, particularly important for large systems with extensive piping.

Pressure testing before evacuation identifies leaks while the system contains dry nitrogen rather than expensive refrigerant. Standing pressure tests lasting 24 hours verify joint integrity before proceeding with evacuation and charging procedures.


Professional Recommendations

Field experience with the Copeland RS series demonstrates these compressors deliver reliable performance when properly applied and maintained. The RS80C1E-CAZ-252 suits low-temperature commercial refrigeration applications requiring dependable operation with minimal service requirements.

Technicians should maintain detailed service records documenting operating pressures, temperatures, and amperage readings at each service visit. Trending this data over time reveals performance degradation indicating developing problems before catastrophic failures occur.

Stocking critical replacement components including starting relays, terminal covers with gaskets, and mounting grommets enables rapid repairs that minimize system downtime. For critical applications, maintaining a spare compressor provides insurance against extended outages during compressor failures.

Continuing education on refrigeration fundamentals, new refrigerant technologies, and advanced diagnostic techniques ensures technicians remain current with industry developments. Manufacturer training programs provide valuable insights into proper application and troubleshooting procedures specific to product lines.


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Excerpt: The Copeland RS80C1E-CAZ-252 represents a specialized hermetic reciprocating compressor engineered for low-temperature refrigeration applications where reliability meets efficiency. This single-phase unit operates on R134a refrigerant and delivers consistent performance in demanding freezing environments ranging from -30°C to -10°C evaporating temperatures. Operating at 220-240V single-phase 50Hz power supply, this unit draws approximately 5 amperes during normal operation, making it suitable for standard commercial electrical systems.




Mbsm.pro, Compressor, Huaguang, asq80hg, Q series, 800 w, Hbp, r134a, 1/4 hp, cooling Aplication

Huaguang ASQ80HG Compressor: A Reliable Solution for Modern Refrigeration Systems

The Huaguang ASQ80HG compressor is a high-performance refrigeration component from the renowned Q Series , designed to meet the demands of modern cooling systems. With its compatibility with R134a refrigerant , high back-pressure (HBP) capability, and energy-efficient design, this compressor is an excellent choice for both domestic and commercial applications. Below, we explore its specifications, features, applications, and comparative analysis, supported by a detailed table.


Key Specifications

  • Model : ASQ80HG
  • Series : Q Series
  • Power Input : 800W
  • Horsepower : 1/4 HP (approximately 0.186 kW)
  • Refrigerant : R134a
  • Voltage/Frequency : 220-240V / 50Hz
  • Application Type : High Back Pressure (HBP)

Overview of Features

The Huaguang ASQ80HG compressor is engineered for efficiency, durability, and environmental sustainability. Its compatibility with R134a refrigerant , a non-ozone-depleting gas, ensures compliance with global environmental standards. With an input power of 800W , it strikes a balance between performance and energy consumption, making it cost-effective for long-term use.

The high back-pressure (HBP) capability allows the compressor to maintain stable cooling in systems where evaporator pressures are relatively high, such as in freezers, display coolers, and other medium-temperature refrigeration setups.


Applications

The versatility of the ASQ80HG makes it suitable for a wide range of cooling applications, including:

  1. Domestic Refrigerators/Freezers : Ideal for home use due to its compact size and energy efficiency.
  2. Display Coolers : Perfect for retail environments requiring product visibility while maintaining low temperatures.
  3. Small-Scale Industrial Cooling : Suitable for systems demanding precise temperature control without heavy-duty cooling requirements.
  4. Cold Storage Units : Effective in maintaining consistent temperatures for perishable goods.

Comparative Table of Huaguang Compressors

Below is a comparative analysis of the Huaguang ASQ80HG with similar models in the Q Series , highlighting its unique advantages.

Model
Series
Horsepower
Refrigerant
Power Input
Voltage/Frequency
Application
ASQ80HG
Q Series
1/4 HP
R134a
800W
220-240V / 50Hz
HBP Refrigeration
ASQ100HG
Q Series
1/3 HP
R134a
1000W
220-240V / 50Hz
General Refrigeration
ASQ60HG
Q Series
1/5 HP
R134a
600W
220-240V / 50Hz
Low-Pressure Cooling

Why Choose the Huaguang ASQ80HG?

  1. Energy Efficiency : The 800W power input ensures optimal performance while minimizing energy consumption, reducing operational costs.
  2. Environmental Friendliness : The use of R134a refrigerant ensures compliance with global environmental regulations, as it does not contribute to ozone depletion.
  3. High Back Pressure Capability : Designed for systems requiring stable cooling under high back-pressure conditions, making it ideal for freezers and display coolers.
  4. Compact Design : Its compact size makes it suitable for installations with limited space, such as small kitchens or retail displays.
  5. Durability : Built to withstand demanding operating conditions, ensuring longevity and reliable performance.

Installation and Maintenance Tips

To ensure the best performance and longevity of the Huaguang ASQ80HG , follow these guidelines:

  • Electrical Compatibility : Verify that the voltage (220-240V) and frequency (50Hz) match your local power supply.
  • Proper Refrigerant Charge : Use only R134a refrigerant to avoid system inefficiencies and potential damage.
  • Regular Cleaning : Clean the condenser coils periodically to prevent overheating and ensure efficient operation.
  • Professional Installation : Hire a certified technician for installation and maintenance to avoid errors and ensure optimal performance.

Conclusion

The Huaguang ASQ80HG compressor from the Q Series is a versatile, energy-efficient, and environmentally friendly solution for various refrigeration needs. Its compatibility with R134a refrigerant , combined with its high back-pressure capability , makes it a standout choice for both domestic and commercial applications. Whether you’re upgrading your refrigerator, installing a new cooling system, or managing a retail display cooler, the ASQ80HG offers dependable performance and excellent value.




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1/2HP LG Commercial Freezer Compressor Lx110lajm

Model:SC21G
Refrigerant:R134A
Power:220-240V/50/60HZ
Back Pressure:Low/High
Power Source: AC Power

Description

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Hot sales R134a SECOP Piston Compressors SC21G

Product introduction

SECOP Hermetic Piston Compressors

Model:SC21G

Refrigerant:R134A

Power:220-240V/50/60HZ

Back Pressure:Low/High

Power Source: AC Power

Voltage range[V]:187- 254

Evaporating temperature [F]:-25 to -5

Transport Package: Wood Package

Product feature

Model Electric Source Power(HP) Capacity(W) Refrigerant Back Pressure
SC15CM 220V-240V 50Hz 1/2HP 375 R22 Low
SC18CM 220V-240V 50Hz 5/8HP 469 R22 Low
SC15D 220V-240V 50Hz 5/8HP 469 R22 High
SC15G 220V-240V 50Hz 3/8HP 281 R134a Low/High
SC18G 220V-240V 50Hz 1/2HP 375 R134a Low/High
SC21G 220V-240V 50Hz 5/8HP 469 R134a Low/High
SC10CL 220V-240V 50Hz 1/3HP 250 R404A Low
SC15CL 220V-240V 50Hz 1/2HP 375 R404A Low
TL5G 220V-240V 50Hz R134A Low/High

Product Application

Cold storage, frozen food processing and storage, quick freezing cold storage, low temperature shelf, ice cream machine, showcase, chiller, large integrated air conditioning, laboratory and medical equipment, cold dryer, glass door commercial freezer, vending machine, Ice machine, beverage cabinet, heat pump, milk cooling tank, etc.




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r134a LBP Series

Model Power(HP)  Capacity(W)  COP  Motor Type 
 220 – 240 V 50Hz
 PW2.5VK  1/12  63 RSIR 
 PW3.0VK  1/10  76  RSIR 
 PW3.5VK  1/10  95  1.00  RSIR 
 PW4.0VK  1/9  112  1.10  RSIR 
 PW4.5VK  1/8  128  1.15  RSIR 
 PW5.5VK  1/6  148  1.20  RSIR 
 PW6.5VK  1/5  168  1.23  RSIR 
 PW7.5VK  1/5+  190  1.26  RSIR 
 PW8.5VK  1/4  215  1.30  RSIR 
 DFV95  1/3  270  1.45  RSIR 
 DFV105  2/5  310  1.42  RSIR 
 DFV115  2/5+  350  1.42  RSIR 
 DFV125  1/2  385  1.42  RSIR 
 Energy Saving Series 110 – 120 V 60 Hz
 PW3.5VK 1/8 92   1.15 RSIR 
 PW4.0VK  1/7  116  1.18  RSIR
 PW4.5VK  1/6  135  1.20  RSIR
 Energy Saving Series 220 – 240 V 50 Hz
 PW3.0VK 1/10  76  1.10  RSIR 
PW3.5VK  1/10+  95  1.20  RSIR
 PW4.0VK  1/9  112  1.23  RSIR
PW4.5VK  1/8  128  1.26  RSIR

Test Conditions ( ASHRAE )

Evaporating Temperature     -23.3°C                      Condensing Temperature 54.4°C

Subcooling   Temperature     32.2°C                       Suction       Temperature  32.2°C

Ambient       Temperature     32.2°C

Specifications
1) Running voltage: 110V, 127V, 220V, 240V, AC50HZ or AC60HZ
2) Capacity: 80W
3) Motor Input: 70W
4) Current: 0.70A
5) Cop: 0.91(W/W)
6) Regrigerant: R134a

Outer packing:
1pc/ctn or 120 pcs/pallet
Carton dimensions: 20 x 13 x 16cm
GW: 6.40KGS

Conveyance:
Qty/20′ FCL: 6, 000pcs
Qty/40′ FCL: 13, 000pcs
Qty/40′ HQ: 16, 000pcs

We are professional r134a cmpressor manufacturer.
OEM brand production is warmly welcome!
100% products for export
Major market Europe,Middle East,South africa,South America
We have 80 workers,daily production ability 1X40HQ r134a compressors
Just send an inquiry or call us,we’ll let you know the best solution of r134a compressors




Mbsm.pro, AJ5515E-FZ3C, AJ5515E, AJ5EL1GF602 , Tecumseh, 1-1/4 hp, R22, Tecumseh compressor, Hermetic piston

       
Modèle   HP TEMP Le réfrigérant
Zae2415Z 7/16 L R404
CAE2417Z 7/16
CAE2420Z 1/2
CAE2424Z 5/8
Le CAJ2428Z 3/4
TAJ2428Z 3/4
Le CAJ2432Z 3/4
Le CAJ2440Z 1
Le CAJ2446Z 1
TAJ2446Z 1
Le CAJ2464Z 1-1/2
TAJ2464Z 1-1/2
Le CAJ2480Z 2
TAJ2480Z 2
FH2511Z 3
TFH2511Z 3
TAG/TAGP 2516Z 4
TAG/TAGP 2522Z 6
TAGD2532Z 8
TAGD2544Z 12
Zae4440Z 1/3 M/H
Zae9440Z 1/3
AE3450Z 3/7
CAE4450Z 3/7
CAE9450Z 3/7
CAE9460Z 1/2
CAE9470Z 9/16
Le CAJ9480Z 5/8
TAJ9480Z 5/8
Le CAJ9510Z 1
TAJ9510Z 1
Le CAJ9513Z 1-1/8
TAJ9513Z 1-1/8
Le CAJ4517Z 1-1/4
TAJ4517Z 1-1/4
Le CAJ4519Z 1-3/4
TAJ4519Z 1-3/4
FH4522Z 2
TFH4522Z 2
FH4524Z 2
TFH4524Z 2
FH4531Z 2-3/4
TFH4531Z 2-3/4
FH4540Z 3-1/2
TFH4540Z 3-1/2
AEZ4430/Y 1/4 M/H Le R134a
AE3440Y 1/3
CAE4440Y 1/3
CAE4448Y 3/7
CAE4456Y 7/16
Le CAJ4452Y 3/7
Le CAJ4461Y 1/2
TAJ4461Y 1/2
Le CAJ4476Y 5/8
Le CAJ4492Y 3/4
TAJ4492Y 3/4
Le CAJ4511Y 1
TAJ4511Y 1
FH4518Y 1-1/2
TFH4518Y 1-1/2
FH4525Y 2
TFH4525Y 2
CAE2417L 1/2 L R502
Le CAJ2428L 5/8
TAJ2428L 5/8
Le CAJ2432L 3/4
Le CAJ2446L 1
TAJ2446L 1
Le CAJ2464L 1-1/2
TAJ2464L 1-1/2
TAH2480J 2
TAH2511K 3
TAHD2516J 4
TAHD2522K 6
TAG2516K 4
TAG2522K 6
AEZ4430/E 1/4 M/H R22
Zae3430E 1/4
Zae3440E 1/3
Zae4440E 1/3
Zae9440T 1/3
AE3450E 3/7
CAE4450E 3/7
CAE9450E 3/7
CAE9460E 1/2
Le CAJ9480T 5/8
TAJ9480T 5/8
Le CAJ9510T 1
TAJ9510T 1
Le CAJ9513T 1-1/8
TAJ9513T 1-1/8
Le CAJ4517E 1-1/4
Le CAJ4519T 1-3/4
TAJ4519T 1-3/4
FH4522F 2
TFH4522F 2
FH4524F 2
TFH4524F 2
FH4531F 2-3/4
TFH4531F 2-3/4
TFH4538E 3
TFH4540F 3-1/2
TAG/TAGP 4546T 4
TAG/TAGP 4553T 4-1/2
TAG/TAGP 4561T 5
TAG/TAGP 4568T 6
TAG/TAGP 4573T 6
TAGD4590T 7-1/2
TAGD4610T 9
TAGD4612T 10
TAGD4614T 12
 




Mbsm.pro, CRC-1000SWL, CRC1000SWF02-C12-06790, COCA COLA, 2-DOOR, 1000L ,COMMERCIAL, GLASS, DISPLAY, FRIDGE, R-404a, 700 g, Compressor, SC15D, 1 hp, hbp

Series Model Horse Power (HP) Disp.(cc) Capacity
(-23.3ºC)
Voltage Refrigerant Back Pressure
FR FR6CL  1/6 6.23 307W 220-240V 50HZ R404a LBP/MBP
FR FR8.5CL  1/4 7.95 366W 220-240V 50HZ R404a LBP/MBP
NL NF7CLX  1/3 7.24 426W 220-240V 50HZ R404a LBP/MBP
NL NL8.4CLX  1/4 8.35 471W 220-240V 50HZ R404a LBP/MBP
SC SC10CL  1/3 10.29 470W 220-240V 50HZ R404a LBP/MBP
SC SC10CLX  1/3 10.29 474W 220-240V 50HZ/60HZ R404a LBP/MBP
SC SC12CL  3/8 12.87 625W 220-240V 50HZ R404a LBP/MBP
SC SC12CLX.2  1/2 12.87 670W 220-240V 50HZ/60HZ R404a LBP/MBP
SC SC15CL  1/2 15.28 777W 220-240V 50HZ R404a LBP/MBP
SC SC15CLX.2  1/2 15.28 805W 220-240V 50HZ R404a LBP/MBP
SC SC18CL  5/8 17.69 901W 220-240V 50HZ R404a LBP/MBP
SC SC18CLX.2  3/4 17.69 986W 220-240V 50HZ R404a LBP/MBP
SC SC21CL  7/8 21 1033W 220-240V 50HZ R404a LBP/MBP
GS GS26CLX 1     26.3 1270W 208-230V 60HZ R404a LBP/MBP
GS GS26CLX 1     26.3 1270W 220-240V 50HZ R404a LBP/MBP
GS GS34CLX 1  1/4 33.8 1754W 220-240V 50HZ R404a LBP/MBP
               
NL NL6.1MLX  1/6 6.13 425W 220-240V 50/60HZ R404a MBP/HBP
NL NF7MLX  1/5 7.27 466W 220-240V 50/60HZ R404a MBP/HBP
SC SC10MLX  1/2 10.29 615W 220-240V 50/60HZ R404a MBP/HBP
SC SC12MLX  5/8 12.87 754W 220-240V 50/60HZ R404a MBP/HBP
SC SC15MLX  3/4 15.28 951W 220-240V 50HZ R404a MBP/HBP
SC SC18MLX  7/8 17.69 1110W 220-240V 50HZ R404a MBP/HBP
GS GS26MLX 1  1/4 26.3 1991W 220-240V 50HZ R404a MBP/HBP
GS GS34MLX 1  1/2 33.8 2649W 220-240V 50HZ R404a MBP/HBP
SC SC10DL  1/2 10.29 710W 220-240V 50HZ R404a HBP
SC SC12DL  3/4 12.87 937W 220-240V 50HZ R404a HBP
SC SC15DL 1     15.28 1121W 220-240V 50HZ R404a HBP
               
SC SC10D  3/8 10.28 565W 220-240V 50HZ R22 MBP/HBP
SC SC12D  1/2 12.87 720W 220-240V 50HZ R22 MBP/HBP
SC SC15D  3/4 15.28 890W 220-240V 50HZ R22 MBP/HBP
               
SC SC10G 5/16HP 10.29 166W 220V-240V 50Hz R134a LBP/HBP
SC SC12G 1/3HP 12.87 246W 220V-240V 50Hz R134a LBP/HBP
SC SC15G  3/8 15.28 255W 220V-240V 50Hz R134a LBP/HBP
SC SC18G  1/2 17.69 392W 220V-240V 50Hz R134a LBP/HBP
SC SC21G  5/8 20.95 456W 220V-240V 50Hz R134a LBP/HBP
SC SC15GH  3/8   281W 220V-240V 50Hz R134a LBP
SC SC10GH  1/3   250W 220V-240V 50Hz R134a LBP
TL TL5G   5.08 172W 220V-240V 50Hz R134a LBP/HBP
               
BD BD35F _ _ 51W 12V DC R134a  
BD BD50F _ _ 72W 12V DC R134a  

 




Mbsm.pro, Compressor, Refrigeration Units For Display Cases, example, GQR19T, 3/4 hp, hbp

Serial port Model HP (V/Hz) Internally displaced persons (cm3) Cooling Capacity – ASHRAE engine’s type Engine starting device Starting with the capacitor (CF) When the engine is running and the capacitor (OC) Engine cooling system
-15 °C(5F) -10ºC (10F) From -5ºC (23F) 0º C (32F) Execution conditions: +7.2ºC (45F) 10ºC (50F)
IN Bte/h IN Bte/h IN Bte/h IN Bte/h  Capacity (W) Capacity (BTU/h) Power lnput(w) Current (A) Ks (W/W)   Ks (Btu/h)   IN Bte/h
L GQR30TG 1/10 220V/50Hz 3.0 115 392 145 495 185 631 230 785 310 1058 140 0.9 2.2 7,56 365 1245 RSIR PTC/Starter Relay Current / / F
GQR35TG 1/9 220V/50Hz 3.5 135 461 175 597 195 665 285 972 430 1467 195 1.1 2.2 7.52 475 1621 RSIR / / F
Ms GQR45TG 1/6 220V/50Hz 4.5 176 601 230 785 280 955 350 1194 480 1638 220 1.2 2.2 7.44 525 1791 RSIR  PTC/Starter Relay Current / / F
GQR55TG 1/6+ 220V/50Hz 5.5 188 641 245 836 310 1058 390 1331 525 1791 250 1.3 2.1 7.17 575 1962 RSIR / / F
MK GQR60TG 1/4 220V/50Hz 6.5 258 880 335 1143 435 1484 545 1860 665 2269 290 1.7 2.3 7,82 705 2405 RSIR PTC/Starter Relay Current / / F
GQR70TG 1/4 220V/50Hz 7.0 285 972 370 1262 480 1638 595 2030 720 2457 340 1.9 2.1 7.23 765 2610 RSIR / / F
GQR80TG 1/4+ 220V/50Hz 8.0 324 1105 420 1433 550 1877 680 2320 810 2764 370 2.0 2.2 7.47 855 2917 RSIR / / F
GQR90TG 1/3- 220V/50Hz 9.1 365 1245 474 1617 621 2119 768 2620 910 3105 420 2.2 2.2 7.39 955 3258 RSIR / / F
WZ GQR80TG 1/4+ 220V/50Hz 8.0 324 1105 420 1433 550 1877 680 2320 810 2764 370 2.0 2.2 7.47 855 2917 Sleep Starter relay current 80 / F
GQR90TG 1/3- 220V/50Hz 9.1 365 1245 474 1617 621 2119 768 2620 910 3105 420 2.2 2.2 7.39 955 3258 Sleep 80 / F
GQR11TG 3/8 220V/50Hz 11.0 412 1406 536 1829 702 2395 868 2962 1034 3528 450 2.7 2.3 7.84 1079 3682 Sleep 80 / F
GQR12TG 3/8+ 220V/50Hz 12.8 467 1593 606 2068 793 2706 981 3347 1168 3985 530 3.2 2.2 7.52 1208 4122 Sleep 80 / F
GQR14TG 1/2 220V/50Hz 14.2 527 1798 685 2337 896 3057 1108 3780 1320 4504 580 3.4 2.3 7,77 1365 4657 Sleep 80 / F
GQR16TG 1/2+ 220V/50Hz 15.3 580 1979 754 2573 1012 3453 1252 4272 1492 5091 640 3.8 2.3 7.95 1535 5237 Watch Perfect Sleep 80 / F
GQR19TG 3/4 220V/50Hz 19,0 755 2576 940 3207 1175 4009 1255 4282 1850 6312 804 4.5 2.3 7,85 1895 6466 Sleep 80 / F
Device model Application Temperature Range HP refrigeration                                        Evaporation temperature℃ Compressor model Suitable Volame L
        -35 -30 -23.3 -20 -15 -10 -5 0 7.2    
MDDZS25HH-A 2 – 8℃ 1/4 R134a / / / / 258 335 435 545 665 GQR60TG 300-500
MDDZS28HH-A   1/4 R134a / / / / 285 370 480 595 720 GQR70TG 400-600
MDDZS32HH-A   1/4+ R134a / / / / 324 420 550 680 810 GQR80TG 500-700
MDDZS32HH-A 2 – 8℃ 1/3+ R134a / / / / 344 474 621 768 910 GQR90TG 600-800
MDDZS38HH-B   3/8 R134a / / / / 422 536 702 868 1034 GQR11TG 700-1000
MDDZS50HH-B   3/8+ R134a / / / / 500 606 793 981 1168 GQR12TG 800-1200
MDDZS54HH-D   3/4 R134a / / / / 546 682 897 1112 1645 GQR19TG 1000-1400
MDDZS71HH-D   3/4+ R134a / / / / 710 910 1115 1350 1830 GQR21TG 12-1600
MDDZS79HM-D   1 R134a / / / / 790 1120 1282 1664 2000 GQR23TG 14-1800
MDDZS38MH-C -10 – 0℃ 3/8 R134a / / / 338 422 536 702 868 / GQR11TG 300-400
MDDZS40MH-C   1/2- R134a / / / 400 500 606 793 981 / GQR12TG 300-400
MDDZS50MH-C   1/2 R134a / / / 438 547 685 896 1108 / GQR14TG 400-500
MDDZS40LH-C -14℃ –  -10℃ 1/3 R134a 148 189 320 400 500 606 / / / GQR12TG 250-350
MDDZS50LH-C   1/2- R134a 159 207 350 430 547 685 / / / GQR14TG 300-400
MDDZS52LH-C   1/2 R134a 173 225 380 475 594 754 / / / GQR16TG 300-400
MDDZS32HK-A 2-8℃ 1/3+ R404a / / 365 435 520 625 / / / GQR60k 600-800
MDDZS38HK-A   3/8 R404a / / 465 565 675 785 / / / GQR80k 800-1000
MDDZS40HK-A   3/8+ R404a / / 515 625 735 855 / / / GQR90k 700-1200
MDDZS38MK-A -10 – 0℃ 3/8 R404a / 445 515 625 735 855 / / / GQR90k 600-800
MDDZS40MK-B   1/2- R404a / 425 625 715 888 995 / /   GQR12k 800-1000
MDDZS50MK-B   1/2 R404a / 490 742 816 1073 1258 / / / GQR14k 800-1200
MDDZS40LK-B -14 – -10℃ 1/3 R404a 258 445 515 625 735 855 / / / GQR90k 400-600
MDDZS50LK-C   1/2- R404a 322 425 625 715 888 995 / / / GQR12k 500-800
MDDZS52LK-C   1/2 R404a 376 490 742 816 1073 1258 / / / GQR14k 600-1000
MDDZS32HU-A 2 – 8℃ 1/3+ R290 / / 364 455 538 635 / / / GQR80U 500-700
MDDZS38HU-A   3/8 R290 / / 455 585 568 688 / / / GQR90U 600-800
MDDZS40HU-B   3/8+ R290 / / 575 605 688 805 / / / GQR12U 700-1000
MDDZS32MU-B -10 – 0℃ 3/8 R290 / 390 455 585 568 688 / / / GQR90U 600-800
MDDZS38MU-B   1/2- R290 / 405 575 605 688 805 / / / GQR12U 800-1000
MDDZS40MU-B   1/2 R290 / 459 625 663 737 845 / / / GQR14U 800-1200
MDDZS40LU-C -14 – -10℃ 1/3 R290 325 405 575 605 688 805 / / / GQR12U 400-600
MDDZS50LU-C   1/2 R290 365 459 625 663 737 845 / / / GQR14U 500-800
MDDZS52LU-C   1/2+ R290 450 533 706 750 922 1140 / / / GQR16U 600-1000




Mbsm.pro, refrigerator, compressor,1/4 hp, Sanyo brand, BZN 178 L6Z, BZN178L6Z, BZN175, BZN175, R 134a, lbp

Freon type R 134a. 
– refrigerator compressor capacity 1/10 pk National brand type QB 43 freon R 134a.
– refrigerator compressor capacity 1/8 pk National brand type QB 57 freon R 134a.
– refrigerator compressor capacity 1/6 pk National brand type QB 66 freon R 134a.
– refrigerator compressor capacity 1/5 pk National brand type QB 77 freon R 134a.
– refrigerator compressor capacity 1/4 pk National brand type QB 91 freon R 134a.
– refrigerator compressor capacity 1/10 pk Handen brand type ADW 43 freon R 134a.
– refrigerator compressor capacity 1/8 pk brand Handen type ADW 51 freon R 134a.
– refrigerator compressor capacity 1/6 pk brand Handen type ADW 66 freon R 134a.
– refrigerator compressor capacity 1/5 pk brand Handen type ADW 77 freon R 134a.
– 1/4 pk capacity refrigerator compressor, Handen brand type ADW 91 freon R 134a.
– 1/3 pk capacity refrigerator compressor, Handen brand type ADW 110 freon R 134a.
– 1/2 pk capacity refrigerator compressor, Handen brand type ADW 142 freon R 134a.
– refrigerator compressor capacity 1/10 pk brand Panasonic type QB 43 freon R 134a.
– refrigerator compressor capacity 1/8 pk brand Panasonic type QB 57 freon R 134a.
– 1/6 pk capacity refrigerator compressor, Panasonic brand type QB 66 freon R 134a.
– refrigerator compressor capacity 1/5 pk brand Panasonic type QB 77 freon R 134a.
– 1/4 pk capacity refrigerator compressor, Panasonic brand type QB 91 freon R 134a.
– refrigerator compressor capacity 1/10 pk brand Tecumseh type THK 1330 Y freon R 134a.
– refrigerator compressor capacity 1/8 pk brand Tecumseh type THK 1340 freon R 134a.
– refrigerator compressor capacity 1/6 pk brand Tecumseh type THK 1351 freon R 134a.
– refrigerator compressor capacity 1/5 pk brand Tecumseh type THK 1365 freon R 134a.
– refrigerator compressor capacity 1/4 pk brand Tecumseh type THK 1374 freon R 134a.
– refrigerator compressor capacity 1/3 pk brand Tecumseh type THK 2390 freon R 134a.
– refrigerator compressor capacity 1/10 pk brand Sikeland type ADW 43 – CU. freon R 134a.
– refrigerator compressor capacity 1/8 pk brand Sikeland type ADW 57 – CU. freon R 134a.
– refrigerator compressor capacity 1/6 pk brand Sikeland type ADW 66 – CUMK. freon R 134a.
– refrigerator compressor capacity 1/5 pk brand Sikeland type ADW 77 – CUMK freon R 134a.
– refrigerator compressor capacity 1/4 pk brand Sikeland type ADW 91 – CUWQ. freon R 134a.
– refrigerator compressor capacity 1/3 pk Sikeland brand type ADW 110 – CUWKQ freon R 134a.
– refrigerator compressor capacity 1/2 pk brand Sikeland type ADW 153 – CUWQ. freon R 134a.
– refrigerator compressor capacity 1/10 pk Sanyo brand type BZN 90 L6Z. freon R 134a.
– refrigerator compressor capacity 1/8 pk Sanyo brand type BZN 110 L6Z freon R 134a.
– refrigerator compressor capacity 1/6 pk Sanyo brand type BZN 120 L6Z freon R 134a.
– refrigerator compressor capacity 1/5 pk Sanyo brand type BZN 141 L6Z freon R 134a.
– refrigerator compressor capacity 1/4 pk Sanyo brand type BZN 178 L6Z freon R 134a.
– refrigerator compressor capacity 1/3 pk Sanyo brand type BZN 200 L6Z freon R 134a.




Mbsm.pro, Donper, Compressor, R600A, L88CY, 1/5 hp, lbp

R600a Series
Refrige-rant Applica-tion Model Series Power Cooling Motor type Power supply Cooling capacity COP W/W
*ASHRAE  -23.3 *CECOMAF -25 *ASHRAE -23.3 *CECOMAF -25
R600a  LBP W40CY W   1/14 S RSIR 220/50 55 43 0.9 0.75
R600a  LBP S53CY S   1/10 S RSIR 220/50 75 57 1.2 0.95
R600a  LBP S65CY S   1/8 S RSIR 220/50 95 72 1.2 0.95
R600a  LBP S75CY S   1/7 S RSIR 220/50 118 86 1.2 0.95
R600a  LBP SK53CY S   1/10 S RSCR 220/50 75 57 1.3 1.03
R600a  LBP L76CY L   1/6 S RSIR 220/50 132 100 1.36 1.07
R600a  LBP L88CY L   1/5 S RSIR 220/50 153 116 1.36 1.07
R600a  LBP QD60AY N   1/7 S RSIR 100/60 125 95 1.35 1.07
R600a  LBP QD76Y N   1/6 S RSIR 220/50 132 100 1.36 1.07
R600a  LBP QD88Y N   1/5 S RSIR 220/50 153 116 1.36 1.07
R600a  LBP QD100Y N 1/5+ S RSIR 220/50 170 129 1.38 1.09
R600a  LBP QD123Y N   1/4 S RSIR 220/50 187 142 1.38 1.09
R600a  LBP LK88CY L 1/5+ S RSCR 220/50 160 122 1.58 1.25
R600a  LBP QD100YG N 1/4+ S RSCR 220/50 180 137 1.58 1.25
R600a  LBP QD135YG N 1/4+ S RSCR 220/50 215 163 1.58 1.23
R600a  LBP QD153YG N 1/4+ S RSCR 220/50 246 184 1.58 1.23
R600a  LBP LU68CY L   1/7 S RSCR 220/50 120 91 1.56 1.22
R600a  LBP QD68YU N   1/7 S RSCR 220/50 120 91 1.56 1.22
R600a  LBP QD76YU N   1/6 S RSCR 220/50 140 106 1.65 1.3
R600a  LBP QD88YU N   1/5 S RSCR 220/50 160 122 1.68 1.33
R600a  LBP QD100YU N   1/4 S RSCR 220/50 180 137 1.7 1.34
R600a  LBP QD123YU N   1/4 S RSCR 220/50 196 150 1.68 1.3
R600a  LBP QD135YU N 1/4+ S RSCR 220/50 220 168 1.68 1.3
R600a  LBP QD153YU N 1/4+ S RSCR 220/50 248 189 1.65 1.28
R600a  LBP QD68YZ N   1/6 S RSCR 220/50 120 91 1.8 1.42
R600a  LBP QD76YZ N   1/6 S RSCR 220/50 140 106 1.8 1.42
R600a  LBP QD88YZ N 1/5+ S RSCR 220/50 165 125 1.8 1.42
R600a  LBP QD100YZ N 1/4+ S RSCR 220/50 185 141 1.8 1.42
R600a  LBP QD135YZ N 1/3- S RSCR 220/50 220 168 1.8 1.42
R600a  LBP QD60YT N   1/8 S ESCR 220/50 106 81 1.88 1.48
R600a  LBP QD68YT N   1/7 S ESCR 220/50 126 96 1.9 1.5
R600a  LBP QD76YT N   1/6 S ESCR 220/50 146 111 1.94 1.53
R600a  LBP LU68PY L   1/7 S BLDC 220/50 120 91 1.65 1.3
R600a  LBP LU68PY L   1/5 S BLDC 220/50 160 122 1.65 1.3