Tag Archives: compressor refrigeration

China OEM 6RS124AAA21 CHINAMFG Compressor for Air Condition and Refrigeration 12v air compressor

Product Description

 

 

R22  
Series Model Capacity Input power Power Capacitor Certification
W BTU/H W
R 2R11B225ASE 1745 5955 585 220V/50HZ 20μF/440V CCC/TUV
P 2P14S225ANJ 2220 7575 705 220V/50HZ 25μF/440V CCCfTUV
2P17S225ANQ 2770 9450 885 220V/50HZ 25μF/440V CCC/TUV
2P20S225BNG 3245 11072 1080 220V/50HZ 35μF/440V CCC/TUV
K 2K22S225BUA 3835 13085 1230 220V/50HZ 35μF/440V CCC/TUV
2K23S225BUA 3975 13563 1295 220V/50HZ 35μF/440V CCC/TUV
2K25S225BUA 4245 14485 1380 220V/50HZ 40μF/440V CCC/TUV
2K28C225DUA 4660 15900 1550 220V/50HZ 40μF/440V CCC
2K32S225AUD 5200 17740 1730 220V/50HZ 40μF/440V CCC
V 2V32S225AUA 5380 18630 1700 220V/50HZ 40μF/450V CCC
2V34S225AUA 5820 19860 1880 220V/50HZ 45μF/450V CCCfTUV
2V36S225BUA 6140 20950 1980 220V/50HZ 50μF/440V CCC/TUV
2V42S225AUA 7200 24565 2340 220V/50HZ 50μF/440V CCC
2V44W225AUD 7780 26545 2515 220V/50HZ 60μF/450V CCC/TUV
2V44W385AUA 7670 26170 2405 380V/50HZ CCC
2V47W225AUA 8245 28132 2590 220V/50HZ 60μF/450V CCC
2V47W385AUA 8235 28098 2555 380V/50HZ   CCC

R22— B8 (50Hz 380-415V/60Hz 440-460V)
Phase Out Put Displacement Compressor Model Compressor Code Staring Method 50Hz 60Hz Outline Graph Code
Capacity COP Capacity COP
HP cm3/rev KW KBTU/h W/W BTU/Wh KW KBTU/h W/W BTU/Wh
3 PHASE 3.5 51.8 C-SB263H8B 80983188   9.15 31.2 3.1 10.6 11.2 38.2 3.2 10.9 B
C-SB263H8C 80983288   9.15 31.2 3.10 10.6 11.2 38.2 3.20 10.9 A
55.7 C-SB263H8A 80983088   9.60 32.8 3.10 10.6 11.8 40.3 3.19 10.9 B
4 66.8 C-SB303H8A 80984088   11.8 40.3 3.23 11.0 14.4 49.2 3.27 11.2 A
C-SB303H8G 80984688   11.8 10.3 3.23 11.0 14.4 49.2 3.27 11.2 At
4.5 77.4 C-SB353H8A 80984288   13.5 46.1 3.18 10.9 16.7 57.0 3.28 11.2 A
C-SB353H8G 80984788   13.5 46.1 3.18 10.9 16.7 57.0 3.28 11.2 At
5 83.2 C-SB373H8A 80985088   14.5 49.5 3.19 10.9 17.9 61.1 3.23 11.0 A
C-SB373H8G 80985688   14.5 49.5 3.19 10.9 17.9 61.1 3.23 11.0 At
85.5 C-SB373H8F 80983588   15.0 51.2 3.19 10.9 18.4 62.8 3.20 10.9 A
5.5 90.6 C-SBR195H38A   16.0 54.6 3.20 10.9 19.4 66.2 3.23 11.0 A
6 100.0 C-SB453H8A 80986088   17.7 60.4 3.26 11.1 21.5 73.4 3.24 11.1 A
C-SB453H8F 80986588   17.7 60.4 3.26 11.1 21.5 73.4 3.24 11.1 Jt
C-SB453H8G 80986688   17.7 60.4 3.26 11.1 21.5 73.4 3.24 11.1 At
  110.2 C-SBR235H38A   19.2 65.6 3.20 10.9 23.2 79.2 3.27 11.2 A
C-SBR235H38B   19.2 65.6 3.20 10.9 23.2 79.2 3.27 11.2 At
8 131.9 C-SC583H8H 80986688   23.6 80.6 3.30 11.3 28.5 97.3 3.26 11.1 D
C-SC583H8K 80928688   23.6 80.6 3.30 11.3 28.5 97.3 3.26 11.1 Dt
137.0 C-SC603H8H 80928188   24.5 83.6 3.31 11.3 29.6 101.1 3.29 11.2 D
C-SC603H8K 80928388   24.5 83.6 3.31 11.3 29.6 101.1 3.29 11.2 Dt
9 148.8 C-SC673H8H 80929188   26.5 90.5 3.29 11.2 32.0 109.3 3.27 11.2 D
C-SC673H8K 80929388   26.5 90.5 3.29 11.2 32.0 109.3 3.27 11.2 Dt
10 171.2 C-SC753H8H 80920188   30.6 104.5 3.38 11.5 36.9 126.0 3.32 11.3 E
C-SC753H8K 80920388   30.6 104.5 3.38 11.5 36.9 126.0 3.32 11.3 Et
12 199.1 C-SC863H8H 80922488   35.2 120.2 3.32 11.3 E
205.4 C-SC903H8H 80922188   36.1 123.3 3.31 11.3 E
C-SC903H8K 80922388   36.1 123.3 3.31 11.3   Et

 

R22 B8 (50Hz 380-415V / 60Hz 440-460V)
Phase Out Put Displacement Compressor Model Compressor Code Staring Method 50Hz 60Hz Outline Graph Code
Capacity COP Capacity COP
HP cm7rev KW KBTU/h W/W BTU/Wh KW KBTU/h W/W BTU/Wh
3 PHASE 3.5 55.7 C-SBX120H38A     10.0 34.1 3.4 11.4 12.0 41.0 3.4 11.5 A
4 66.8 C-SBX145H38A     12.0 41.0 3.40 11.6 14.6 49.8 3.42 11.7 A
4.3 70.9 C-SBX150H38A     12.8 43.7 3.40 11.6 15.5 52.9 3.42 11.7 A
70.5 C-SBX150H38C     12.8 43.7 3.50 11.9 15.6 53.3 3.50 11.9 A
4.4 73.2 C-SBX160H38A     13.1 44.7 3.40 11.6 15.8 53.9 3.42 11.7 A
4.5 76.0 C-SBX165H38A 8 0571 588   13.5 46.1 3.33 11.4 16.3 55.7 3.33 11.4 A
C-SBX165H38B 8 0571 688   13.5 46.1 3.33 11.4 16.3 55.7 3.33 11.4 At
C-SBX165H38C   13.6 46.4 3.32 11.3 16.5 56.3 3.33 11.4 A
5 81.0 C-SBX180H38A 8 0571 088   14.3 48.8 3.33 11.4 17.3 59.1 3.33 11.4 A
C-SBX180H38B 8 0571 188   14.3 48.8 3.33 11.4 17.3 59.1 3.33 11.4 At
83.7 C-SBX180H38C 8 0571 388   14.7 50.2 3.30 11.3 17.8 60.8 3.30 11.3 A
C-SBX180H38D 8 0571 488   14.7 50.2 3.30 11.3 17.8 60.8 3.30 11.3 At
5.5 90.6 C-SBX195H38A     16.3 55.7 3.33 11.4 19.8 67.6 3.38 11.5 A
6 100.0 C-SBX215H38P     17.7 60.4 3.33 11.4 21.5 73.4 3.33 11.4 A
8 127.8 C-SCX295H38B     23.1 78.9 3.47 11.8 27.7 94.6 3.48 11.9 A
9 148.8 C-SCX320H38B     26.8 91.5 3.45 11.8 32.2 109.8 3.43 11.7
10 171.2 C-SCX370H38B     30.9 105.5 3.45 11.8 37.1 126.6 3.43 11.7
12 194.9 C-SCX435H38B     35.1 119.8 3.48 11.9 42.1 143.8 3.45 11.8
12.5 214.2 C-SCX455H38B     36.8 125.6 3.42 11.7 44.2 150.8 3.40 11.6

Archean refrigeration has been focusing on the refrigeration industry for more than 10 years. The compressors are sold all over the world and have been well received. The company has accumulated strong experience in the compressor market, rich technical support, and a satisfactory one-stop procurement solution. You can rest assured You don’t need to worry about this series, from placing an order to receiving the goods. We provide a complete solution to serve customers well, which is our purpose of hospitality.

 

/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Installation Type: Movable Type
Lubrication Style: Lubricated
Cylinder Position: Vertical
Model: 6RS124AAA21
Transport Package: Wooden/Cartoon Box
Specification: 26*26*58CM
Samples:
US$ 100/Piece
1 Piece(Min.Order)

|
Request Sample

Customization:
Available

|

air compressor

What are the advantages of using rotary vane compressors?

Rotary vane compressors offer several advantages that make them a popular choice for various applications. These compressors are widely used in industries where a reliable and efficient source of compressed air is required. Here are the advantages of using rotary vane compressors:

1. Compact and Lightweight:

Rotary vane compressors are typically compact and lightweight compared to other types of compressors. Their compact design makes them suitable for installations where space is limited, such as in small workshops or mobile applications. The lightweight nature of these compressors allows for easy transportation and maneuverability.

2. High Efficiency:

Rotary vane compressors are known for their high efficiency. The design of the vanes and the compression chamber allows for smooth and continuous compression, resulting in minimal energy losses. This efficiency translates into lower energy consumption and reduced operating costs over time.

3. Quiet Operation:

Rotary vane compressors operate with relatively low noise levels. The design of the compressor, including the use of vibration damping materials and sound insulation, helps to minimize noise and vibrations during operation. This makes rotary vane compressors suitable for applications where noise reduction is important, such as in indoor environments or noise-sensitive areas.

4. Oil Lubrication:

Many rotary vane compressors utilize oil lubrication, which provides several benefits. The oil lubrication helps to reduce wear and friction between the moving parts, resulting in extended compressor life and improved reliability. It also contributes to better sealing and improved efficiency by minimizing internal leakage.

5. Versatile Applications:

Rotary vane compressors are versatile and can be used in a wide range of applications. They are suitable for both industrial and commercial applications, including automotive workshops, small manufacturing facilities, dental offices, laboratories, and more. They can handle various compressed air requirements, from light-duty tasks to more demanding applications.

6. Easy Maintenance:

Maintenance of rotary vane compressors is relatively straightforward. Routine maintenance tasks typically include oil changes, filter replacements, and periodic inspection of vanes and seals. The simplicity of the design and the availability of replacement parts make maintenance and repairs easier and more cost-effective.

These advantages make rotary vane compressors an attractive choice for many applications, providing reliable and efficient compressed air solutions.

air compressor

How do you troubleshoot common air compressor problems?

Troubleshooting common air compressor problems can help identify and resolve issues that may affect the performance and functionality of the compressor. Here are some steps to troubleshoot common air compressor problems:

1. No Power:

  • Check the power source and ensure the compressor is properly plugged in.
  • Inspect the circuit breaker or fuse box to ensure it hasn’t tripped or blown.
  • Verify that the compressor’s power switch or control panel is turned on.

2. Low Air Pressure:

  • Check the air pressure gauge on the compressor. If the pressure is below the desired level, the compressor might not be building up enough pressure.
  • Inspect for air leaks in the system. Leaks can cause a drop in pressure. Listen for hissing sounds or use a soapy water solution to identify the location of leaks.
  • Ensure the compressor’s intake filter is clean and not clogged, as this can restrict airflow and reduce pressure.

3. Excessive Noise or Vibration:

  • Inspect the compressor’s mounting and foundation to ensure it is secure and stable. Loose mounts can cause excessive noise and vibration.
  • Check for loose or damaged components, such as belts, pulleys, or motor mounts. Tighten or replace as necessary.
  • Verify that the compressor’s cooling system, such as the fan or fins, is clean and free from obstructions. Overheating can lead to increased noise and vibration.

4. Air Leaks:

  • Inspect all connections, valves, fittings, and hoses for leaks. Tighten or replace any loose or damaged components.
  • Apply a soapy water solution to suspected areas and look for bubbles. Bubbles indicate air leaks.
  • Consider using thread sealant or Teflon tape on threaded connections to ensure a proper seal.

5. Excessive Moisture in Compressed Air:

  • Check the compressor’s drain valve and ensure it is functioning properly. Open the valve to release any accumulated moisture.
  • Inspect and clean the compressor’s moisture separator or air dryer, if equipped.
  • Consider installing additional filtration or drying equipment to remove moisture from the compressed air system.

6. Motor Overheating:

  • Ensure the compressor’s cooling system is clean and unobstructed.
  • Check the motor’s air intake vents and clean any dust or debris that may be blocking airflow.
  • Verify that the compressor is not being operated in an excessively hot environment.
  • Check the motor’s lubrication levels and ensure they are within the manufacturer’s recommended range.
  • Consider using a thermal overload protector to prevent the motor from overheating.

If troubleshooting these common problems does not resolve the issue, it may be necessary to consult the manufacturer’s manual or seek assistance from a qualified technician. Regular maintenance, such as cleaning, lubrication, and inspection, can also help prevent common problems and ensure the optimal performance of the air compressor.

air compressor

How is air pressure measured in air compressors?

Air pressure in air compressors is typically measured using one of two common units: pounds per square inch (PSI) or bar. Here’s a brief explanation of how air pressure is measured in air compressors:

1. Pounds per Square Inch (PSI): PSI is the most widely used unit of pressure measurement in air compressors, especially in North America. It represents the force exerted by one pound of force over an area of one square inch. Air pressure gauges on air compressors often display pressure readings in PSI, allowing users to monitor and adjust the pressure accordingly.

2. Bar: Bar is another unit of pressure commonly used in air compressors, particularly in Europe and many other parts of the world. It is a metric unit of pressure equal to 100,000 pascals (Pa). Air compressors may have pressure gauges that display readings in bar, providing an alternative measurement option for users in those regions.

To measure air pressure in an air compressor, a pressure gauge is typically installed on the compressor’s outlet or receiver tank. The gauge is designed to measure the force exerted by the compressed air and display the reading in the specified unit, such as PSI or bar.

It’s important to note that the air pressure indicated on the gauge represents the pressure at a specific point in the air compressor system, typically at the outlet or tank. The actual pressure experienced at the point of use may vary due to factors such as pressure drop in the air lines or restrictions caused by fittings and tools.

When using an air compressor, it is essential to set the pressure to the appropriate level required for the specific application. Different tools and equipment have different pressure requirements, and exceeding the recommended pressure can lead to damage or unsafe operation. Most air compressors allow users to adjust the pressure output using a pressure regulator or similar control mechanism.

Regular monitoring of the air pressure in an air compressor is crucial to ensure optimal performance, efficiency, and safe operation. By understanding the units of measurement and using pressure gauges appropriately, users can maintain the desired air pressure levels in their air compressor systems.

China OEM 6RS124AAA21 CHINAMFG Compressor for Air Condition and Refrigeration   12v air compressorChina OEM 6RS124AAA21 CHINAMFG Compressor for Air Condition and Refrigeration   12v air compressor
editor by CX 2024-05-15

China wholesaler Hot Sales Air Refrigeration Compressor Jt160gbby1l L with Best Compressor Price air compressor repair near me

Product Description

 

 

 

Model Refrigerant g/max Capacity (W) Input Power (W) Capacitor   μF/V Displacement cc/rev Voltage V
JT90BHBV1L 1500 8550 2670 60/420 48 220
JT90BHBY1L 1500 8550 2670 1 48.2 380-3Phase
JT95BHBV1L 1500 9200 2830 60/420 51.8 220
JT95BHBY1L 1500 9200 2800 1 51.2 380-3Phase
JT125BCBY1L 2500 11900 2800 1 67 380-3Phase
JT160BCBY1L 2500 15000 4660 1 83.1 380-3Phase
JT212D-Y1L 3000 21500 6490 1 117.3 380-3Phase
JT236D-Y1L 3000 24000 7200 1 131 380-3Phase
JT265D-Y1L 3000 26700 7950 1 144.7 380-3Phase
JT300D-Y1L 3000 29900 8850 1 163 380-3Phase
JT335D-Y1L 3000 34000 9980 1 184.2 380-3Phase
Scroll compressor: power 3HP–12HP

   

Archean refrigeration has been focusing on the refrigeration industry for more than 10 years. The compressors are sold all over the world and have been well received. The company has accumulated strong experience in the compressor market, rich technical support, and a satisfactory one-stop procurement solution. You can rest assured You don’t need to worry about this series, from placing an order to receiving the goods. We provide a complete solution to serve customers well, which is our purpose of hospitality.

 

/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Installation Type: Movable Type
Lubrication Style: Lubricated
Cylinder Position: Vertical
Model: Jt160gbby1l
Transport Package: Wooden/Cartoon Box
Specification: 26*26*58CM
Samples:
US$ 100/Piece
1 Piece(Min.Order)

|
Request Sample

Customization:
Available

|

air compressor

What are the advantages of using rotary vane compressors?

Rotary vane compressors offer several advantages that make them a popular choice for various applications. These compressors are widely used in industries where a reliable and efficient source of compressed air is required. Here are the advantages of using rotary vane compressors:

1. Compact and Lightweight:

Rotary vane compressors are typically compact and lightweight compared to other types of compressors. Their compact design makes them suitable for installations where space is limited, such as in small workshops or mobile applications. The lightweight nature of these compressors allows for easy transportation and maneuverability.

2. High Efficiency:

Rotary vane compressors are known for their high efficiency. The design of the vanes and the compression chamber allows for smooth and continuous compression, resulting in minimal energy losses. This efficiency translates into lower energy consumption and reduced operating costs over time.

3. Quiet Operation:

Rotary vane compressors operate with relatively low noise levels. The design of the compressor, including the use of vibration damping materials and sound insulation, helps to minimize noise and vibrations during operation. This makes rotary vane compressors suitable for applications where noise reduction is important, such as in indoor environments or noise-sensitive areas.

4. Oil Lubrication:

Many rotary vane compressors utilize oil lubrication, which provides several benefits. The oil lubrication helps to reduce wear and friction between the moving parts, resulting in extended compressor life and improved reliability. It also contributes to better sealing and improved efficiency by minimizing internal leakage.

5. Versatile Applications:

Rotary vane compressors are versatile and can be used in a wide range of applications. They are suitable for both industrial and commercial applications, including automotive workshops, small manufacturing facilities, dental offices, laboratories, and more. They can handle various compressed air requirements, from light-duty tasks to more demanding applications.

6. Easy Maintenance:

Maintenance of rotary vane compressors is relatively straightforward. Routine maintenance tasks typically include oil changes, filter replacements, and periodic inspection of vanes and seals. The simplicity of the design and the availability of replacement parts make maintenance and repairs easier and more cost-effective.

These advantages make rotary vane compressors an attractive choice for many applications, providing reliable and efficient compressed air solutions.

air compressor

How do you choose the right air compressor for woodworking?

Choosing the right air compressor for woodworking is essential to ensure efficient and effective operation of pneumatic tools and equipment. Here are some factors to consider when selecting an air compressor for woodworking:

1. Required Air Volume (CFM):

Determine the required air volume or cubic feet per minute (CFM) for your woodworking tools and equipment. Different tools have varying CFM requirements, so it is crucial to choose an air compressor that can deliver the required CFM to power your tools effectively. Make sure to consider the highest CFM requirement among the tools you’ll be using simultaneously.

2. Tank Size:

Consider the tank size of the air compressor. A larger tank allows for more stored air, which can be beneficial when using tools that require short bursts of high air volume. It helps maintain a consistent air supply and reduces the frequency of the compressor cycling on and off. However, if you have tools with continuous high CFM demands, a larger tank may not be as critical.

3. Maximum Pressure (PSI):

Check the maximum pressure (PSI) rating of the air compressor. Woodworking tools typically operate within a specific PSI range, so ensure that the compressor can provide the required pressure. It is advisable to choose an air compressor with a higher maximum PSI rating to accommodate any future tool upgrades or changes in your woodworking needs.

4. Noise Level:

Consider the noise level of the air compressor, especially if you’ll be using it in a residential or shared workspace. Some air compressors have noise-reducing features or are designed to operate quietly, making them more suitable for woodworking environments where noise control is important.

5. Portability:

Assess the portability requirements of your woodworking projects. If you need to move the air compressor frequently or work in different locations, a portable and lightweight compressor may be preferable. However, if the compressor will remain stationary in a workshop, a larger, stationary model might be more suitable.

6. Power Source:

Determine the power source available in your woodworking workspace. Air compressors can be powered by electricity or gasoline engines. If electricity is readily available, an electric compressor may be more convenient and cost-effective. Gasoline-powered compressors offer greater flexibility for remote or outdoor woodworking projects where electricity may not be accessible.

7. Quality and Reliability:

Choose an air compressor from a reputable manufacturer known for producing reliable and high-quality equipment. Read customer reviews and consider the warranty and after-sales support offered by the manufacturer to ensure long-term satisfaction and reliability.

8. Budget:

Consider your budget and balance it with the features and specifications required for your woodworking needs. While it’s important to invest in a reliable and suitable air compressor, there are options available at various price points to accommodate different budgets.

By considering these factors and evaluating your specific woodworking requirements, you can choose an air compressor that meets the demands of your tools, provides efficient performance, and enhances your woodworking experience.

air compressor

Are there portable air compressors available for home use?

Yes, there are portable air compressors specifically designed for home use. These portable models offer convenience, versatility, and ease of use for various tasks around the house. Here are some key points about portable air compressors for home use:

1. Compact and Lightweight: Portable air compressors are typically compact and lightweight, making them easy to transport and store. They are designed with portability in mind, allowing homeowners to move them around the house or take them to different locations as needed.

2. Electric-Powered: Most portable air compressors for home use are electric-powered. They can be plugged into a standard household electrical outlet, eliminating the need for gasoline or other fuel sources. This makes them suitable for indoor use without concerns about emissions or ventilation.

3. Versatile Applications: Portable air compressors can be used for a wide range of home applications. They are commonly used for inflating tires, sports equipment, and inflatable toys. They are also handy for operating pneumatic tools such as nail guns, staplers, and paint sprayers. Additionally, portable air compressors can be used for cleaning tasks, powering airbrushes, and other light-duty tasks around the house.

4. Pressure and Capacity: Portable air compressors for home use typically have lower pressure and capacity ratings compared to larger industrial or commercial models. They are designed to meet the needs of common household tasks rather than heavy-duty applications. The pressure and capacity of these compressors are usually sufficient for most home users.

5. Oil-Free Operation: Many portable air compressors for home use feature oil-free operation. This means they do not require regular oil changes or maintenance, making them more user-friendly and hassle-free for homeowners.

6. Noise Level: Portable air compressors designed for home use often prioritize low noise levels. They are engineered to operate quietly, reducing noise disturbances in residential environments.

7. Cost: Portable air compressors for home use are generally more affordable compared to larger, industrial-grade compressors. They offer a cost-effective solution for homeowners who require occasional or light-duty compressed air applications.

When considering a portable air compressor for home use, it’s important to assess your specific needs and tasks. Determine the required pressure, capacity, and features that align with your intended applications. Additionally, consider factors such as portability, noise level, and budget to choose a suitable model that meets your requirements.

Overall, portable air compressors provide a practical and accessible compressed air solution for homeowners, allowing them to tackle a variety of tasks efficiently and conveniently within a home setting.

China wholesaler Hot Sales Air Refrigeration Compressor Jt160gbby1l L with Best Compressor Price   air compressor repair near meChina wholesaler Hot Sales Air Refrigeration Compressor Jt160gbby1l L with Best Compressor Price   air compressor repair near me
editor by CX 2024-04-30

China Standard 3HP CHINAMFG Refrigeration Scroll Compressors Vpw038de-3X9-571 Home Use Air Condition Compressor manufacturer

Product Description

Copeland Reciprocating Compressor Description

CHINAMFG scoll compressors are dependable, cost-effective and versatile. A wide spectrum of operating ranges and hundreds of available models make these compressors an optimal selection for every refrigeration need.
CHINAMFG Hermetic compressors have a compact design that is perfect for space constrained systems. These models are optimized for very low temperature and high duty cycles, as well as approved for use with R-22, R-404A/507, and R-134A refrigerants for virtually any application.

Key Features

Copeland scoll reciprocating compressors provide solutions to systems requiring a wide range of evaporating capability.

Optimized for freezers, vending machines, display cases, reach-ins, ice machines, and more.

Designed for low temperature refrigeration applications and addresses future challenges of refrigeration.

Provides unmatched benefits for extended medium temperature refrigeration applications.
designed for medium and high temperature refrigeration applications for a variety of industries.

Xihu (West Lake) Dis.r Technologies is a global supplier and marketer of CHINAMFG maintenance and compressor solutions for commercial and residential air conditioning,heating,ventilation and refrigeration field, manufacturing and other industrial applications.
Incorporated in 2571,our innovative products have been used by facilities and plant maintenance personnel CHINAMFG for the maintenance of CHINAMFG systems,and producion of AC and refrigerating equipment.Our products include CHINAMFG maintenance machines,refigeration equipment and compressors.

Core Markets Served:
Commercial/Residential/Maritime/Utility HVAC
Air Conditioning,Refrigerator,Coldroom,Heat Pump Manufacturing
Refrigeration Parts Wholesale and Retail

Certification:

Packing and Delivery

FAQ

1. How long have you been in this field and where is your company?
We have been in this field for years and we are located in HangZhou, the Canton Fair host city, and the capital city of ZheJiang Province, near to HangZhou, Hong Kong, very convenient for trading and shipping.

2. What are your main catagories?
– Hermetic Compressor (scroll, rotary, reciprocating)
– Semi hermetic compressor (screw)
– CHINAMFG maintenance supplies
– Refrigeration equipment and parts

3.Can you offer us quality product at the best price?
Of course, Quality is our culture; we always take good care of our clients interest if both are sincere to establish good relationship. 

4.What is the term of payment?
T/T, L/C,Western Union; Trade Assurance online.

5.How about the MOQ?
1 unit acceptable. 

6. Cooperative Partners?
Gree, Landa, Media, GMCC, LG, Panasonic,Copeland, Maneurop, Performer, Hitachi,Highly, Mitsubishi, Secop, Embraco,Chigo, Haier, Sanyo, Wanbao, Sanhua,etc…

Contact Us

HangZhou Xihu (West Lake) Dis.r Technologies Co.,Ltd.
 
 
 

/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

After-sales Service: Video Technical Support, Online Support
Warranty: 1 Year
Lubrication Style: Lubricated
Cooling System: Air Cooling
Cylinder Arrangement: Balanced Opposed Arrangement
Cylinder Position: Vertical

air compressor

Are there special considerations for air compressor installations in remote areas?

Yes, there are several special considerations to take into account when installing air compressors in remote areas. These areas often lack access to infrastructure and services readily available in urban or well-developed regions. Here are some key considerations:

1. Power Source:

Remote areas may have limited or unreliable access to electricity. It is crucial to assess the availability and reliability of the power source for operating the air compressor. In some cases, alternative power sources such as diesel generators or solar panels may need to be considered to ensure a consistent and uninterrupted power supply.

2. Environmental Conditions:

Remote areas can present harsh environmental conditions that can impact the performance and durability of air compressors. Extreme temperatures, high humidity, dust, and corrosive environments may require the selection of air compressors specifically designed to withstand these conditions. Adequate protection, insulation, and ventilation must be considered to prevent damage and ensure optimal operation.

3. Accessibility and Transport:

Transporting air compressors to remote areas may pose logistical challenges. The size, weight, and portability of the equipment should be evaluated to ensure it can be transported efficiently to the installation site. Additionally, the availability of suitable transportation infrastructure, such as roads or air transportation, needs to be considered to facilitate the delivery and installation process.

4. Maintenance and Service:

In remote areas, access to maintenance and service providers may be limited. It is important to consider the availability of trained technicians and spare parts for the specific air compressor model. Adequate planning for routine maintenance, repairs, and troubleshooting should be in place to minimize downtime and ensure the longevity of the equipment.

5. Fuel and Lubricants:

For air compressors that require fuel or lubricants, ensuring a consistent and reliable supply can be challenging in remote areas. It is necessary to assess the availability and accessibility of fuel or lubricant sources and plan for their storage and replenishment. In some cases, alternative or renewable fuel options may need to be considered.

6. Noise and Environmental Impact:

Remote areas are often characterized by their natural beauty and tranquility. Minimizing noise levels and environmental impact should be a consideration when installing air compressors. Selecting models with low noise emissions and implementing appropriate noise reduction measures can help mitigate disturbances to the surrounding environment and wildlife.

7. Communication and Remote Monitoring:

Given the remote location, establishing reliable communication channels and remote monitoring capabilities can be essential for effective operation and maintenance. Remote monitoring systems can provide real-time data on the performance and status of the air compressor, enabling proactive maintenance and troubleshooting.

By addressing these special considerations, air compressor installations in remote areas can be optimized for reliable operation, efficiency, and longevity.

air compressor

Can air compressors be used for medical and dental applications?

Yes, air compressors can be used for various medical and dental applications. Compressed air is a reliable and versatile utility in healthcare settings, providing power for numerous devices and procedures. Here are some common applications of air compressors in medical and dental fields:

1. Dental Tools:

Air compressors power a wide range of dental tools and equipment, such as dental handpieces, air syringes, air scalers, and air abrasion devices. These tools rely on compressed air to generate the necessary force and airflow for effective dental procedures.

2. Medical Devices:

Compressed air is used in various medical devices and equipment. For example, ventilators and anesthesia machines utilize compressed air to deliver oxygen and other gases to patients. Nebulizers, used for respiratory treatments, also rely on compressed air to convert liquid medications into a fine mist for inhalation.

3. Laboratory Applications:

Air compressors are used in medical and dental laboratories for various purposes. They power laboratory instruments, such as air-driven centrifuges and sample preparation equipment. Compressed air is also used for pneumatic controls and automation systems in lab equipment.

4. Surgical Tools:

In surgical settings, compressed air is employed to power specialized surgical tools. High-speed air-driven surgical drills, saws, and bone-cutting instruments are commonly used in orthopedic and maxillofacial procedures. Compressed air ensures precise control and efficiency during surgical interventions.

5. Sterilization and Autoclaves:

Compressed air is essential for operating sterilization equipment and autoclaves. Autoclaves use steam generated by compressed air to sterilize medical instruments, equipment, and supplies. The pressurized steam provides effective disinfection and ensures compliance with rigorous hygiene standards.

6. Dental Air Compressors:

Specialized dental air compressors are designed specifically for dental applications. These compressors have features such as moisture separators, filters, and noise reduction mechanisms to meet the specific requirements of dental practices.

7. Air Quality Standards:

In medical and dental applications, maintaining air quality is crucial. Compressed air used in healthcare settings must meet specific purity standards. This often requires the use of air treatment systems, such as filters, dryers, and condensate management, to ensure the removal of contaminants and moisture.

8. Compliance and Regulations:

Medical and dental facilities must comply with applicable regulations and guidelines regarding the use of compressed air. These regulations may include requirements for air quality, maintenance and testing procedures, and documentation of system performance.

It is important to note that medical and dental applications have specific requirements and standards. Therefore, it is essential to choose air compressors and associated equipment that meet the necessary specifications and comply with industry regulations.

air compressor

What is the difference between a piston and rotary screw compressor?

Piston compressors and rotary screw compressors are two common types of air compressors with distinct differences in their design and operation. Here’s a detailed explanation of the differences between these two compressor types:

1. Operating Principle:

  • Piston Compressors: Piston compressors, also known as reciprocating compressors, use one or more pistons driven by a crankshaft to compress air. The piston moves up and down within a cylinder, creating a vacuum during the intake stroke and compressing the air during the compression stroke.
  • Rotary Screw Compressors: Rotary screw compressors utilize two intermeshing screws (rotors) to compress air. As the male and female screws rotate, the air is trapped between them and gradually compressed as it moves along the screw threads.

2. Compression Method:

  • Piston Compressors: Piston compressors achieve compression through a positive displacement process. The air is drawn into the cylinder and compressed as the piston moves back and forth. The compression is intermittent, occurring in discrete cycles.
  • Rotary Screw Compressors: Rotary screw compressors also employ a positive displacement method. The compression is continuous as the rotating screws create a continuous flow of air and compress it gradually as it moves along the screw threads.

3. Efficiency:

  • Piston Compressors: Piston compressors are known for their high efficiency at lower flow rates and higher pressures. They are well-suited for applications that require intermittent or variable air demand.
  • Rotary Screw Compressors: Rotary screw compressors are highly efficient for continuous operation and are designed to handle higher flow rates. They are often used in applications with a constant or steady air demand.

4. Noise Level:

  • Piston Compressors: Piston compressors tend to generate more noise during operation due to the reciprocating motion of the pistons and valves.
  • Rotary Screw Compressors: Rotary screw compressors are generally quieter in operation compared to piston compressors. The smooth rotation of the screws contributes to reduced noise levels.

5. Maintenance:

  • Piston Compressors: Piston compressors typically require more frequent maintenance due to the higher number of moving parts, such as pistons, valves, and rings.
  • Rotary Screw Compressors: Rotary screw compressors have fewer moving parts, resulting in lower maintenance requirements. They often have longer service intervals and can operate continuously for extended periods without significant maintenance.

6. Size and Portability:

  • Piston Compressors: Piston compressors are available in both smaller portable models and larger stationary units. Portable piston compressors are commonly used in construction, automotive, and DIY applications.
  • Rotary Screw Compressors: Rotary screw compressors are typically larger and more suitable for stationary installations in industrial and commercial settings. They are less commonly used in portable applications.

These are some of the key differences between piston compressors and rotary screw compressors. The choice between the two depends on factors such as required flow rate, pressure, duty cycle, efficiency, noise level, maintenance needs, and specific application requirements.

China Standard 3HP CHINAMFG Refrigeration Scroll Compressors Vpw038de-3X9-571 Home Use Air Condition Compressor   manufacturer China Standard 3HP CHINAMFG Refrigeration Scroll Compressors Vpw038de-3X9-571 Home Use Air Condition Compressor   manufacturer
editor by CX 2024-04-12

China Standard Misubishi Fixed-Speed Rotary Compressor Refrigerant R410A, R32, R134A for Refrigeration for Air Condition air compressor for sale

Product Description

 

Series Model Displ. Capacity Power  COP Capacitor Dimension(A) Dimension(B)
cm3/rev w Btu/h w w/w μF/V mm mm
K KN083VAMMC 8.3 2,571 6,858 695 2.89 25/380 268.2 234.8
KN092VEHMC 9.2 2,260 7,711 795 2.84 25/400 263.2 234.8
KN104VGMMC 10.4 2,520 8,598 880 2.86 25/400 264.7 239.3
R RN125VHFMC 12.5 3,100 10,577 1,030 3.01 30/400 264.9 240.8
RN135VHEMC 13.5 3,340 11,396 1,120 2.98 30/400 287.5 260.5
RN145VHEMC 14.5 3,610 12,317 1,210 2.98 30/400 287.5 260.5
RN196VHEMC 19.6 4,800 16,378 1,680 2.86 40/400 287.5 260.5
RN199VHRMC 19.9 4,770 16,275 1,620 2.94 45/400 294.8 278.0
RN211VHFMC 21.1 5,230 17,845 1,730 3.02 50/400 294.8 260.5
RN222VHFMC 22.2 5,470 18,664 1,810 3.02 50/400 294.8 260.5
T TN220VQEMC 22.0 5,380 18,357 1,840 2.92 50/400 336.1 279.8
L LN28VBRMC 28.4 7,050 24,055 2,310 3.05 60/390 381.8 340.9
LN30VBRMC 30.2 7,680 26,204 2,470 3.11 60/420 381.8 340.9
LN32VBRMC 32.8 8,320 28,388 2,680 3.10 60/420 381.8 340.9
LN38VBRMC 38.0 9,700 32,980 3,160 3.07 60/420 381.8 340.9
LN42VBRMC 42.8 10,530 35,907 3,510 3.00 60/420 381.8 340.9

Misubishi Rotary Inverter Compressor            
Series Model Displ. Capacity Power COP fRange Dimension(A) Dimension(B)
cm3/rev w Btu/h w w/w rps mm mm
K KNB073FCKMC 7.3 2,250 7,677 690 3.26 15-115 213.0 234.5
KNB092FADMC 9.2 2,925 9,980 850 3.44 15-115 235.9 248.5
KNB120FACMC 12.0 3,545 12,096 1,120 3.17 15-115 242.2 252.3
S SNB140FCAMC 14.0 4,380 14,945 1,300 3.37 10-120 254.2 271.5
SNB150FGAMC 15.0 4,620 15,763 1,420 3.25 10-130 259.2 283.0
SNB172FNQMC 17.2 5,430 18,425 1,770 3.07 10-130 255.7 279.5
SNB200FGMMC 20.0 6,220 21,223 1,840 3.38 10-120 259.2 283.0
SNB220FBGMC 22.0 6,840 23,338 2,060 3.32 10-120 287.5 283.0
SYB280FARMC 28.0 8,900 30,367 2,650 3.36 15-120 332.4 306.6
T TNB220FFEMC 22.0 6,940 23,679 2,150 3.23 10-110 267.1 317.5
TNB306FPNMC 30.6 9,880 33,711 3,571 3.28 10-120 294.8 273.0
M MNB33FEBMC 33.8 10,830 36,952 3,260 3.32 10-120 374.0 344.0
MNB40FEQMC 40.0 12,900 44,015 3,960 3.26 10-120 374.0 356.0
MNK42FDMMC-L 42.1 13,000 44,356 4,280 3.04 10-120 390.0 344.0
MNB42FCKMC 42.1 13,780 47,017 4,040 3.41 10-120 390.0 344.0
L LNB42FSCMC 42.9 13,980 47,700 4,240 3.30 10-120 376.8 353.4
LNB53FDKMC 53.7 16,835 57,441 5,480 3.07 10-120 421.3 407.4
LNB65FAGMC 65.2 19,760 67,421 6,460 3.06 10-120 421.3 423.8
LNB80FAMMC 80.6 23,155 79,005 8,185 2.83 10-130 421.3 423.8

  /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

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air compressor

How does variable speed drive technology improve air compressor efficiency?

Variable Speed Drive (VSD) technology improves air compressor efficiency by allowing the compressor to adjust its motor speed to match the compressed air demand. This technology offers several benefits that contribute to energy savings and enhanced overall system efficiency. Here’s how VSD technology improves air compressor efficiency:

1. Matching Air Demand:

Air compressors equipped with VSD technology can vary the motor speed to precisely match the required compressed air output. Traditional fixed-speed compressors operate at a constant speed regardless of the actual demand, leading to energy wastage during periods of lower air demand. VSD compressors, on the other hand, ramp up or down the motor speed to deliver the necessary amount of compressed air, ensuring optimal energy utilization.

2. Reduced Unloaded Running Time:

Fixed-speed compressors often run unloaded during periods of low demand, where they continue to consume energy without producing compressed air. VSD technology eliminates or significantly reduces this unloaded running time by adjusting the motor speed to closely follow the air demand. As a result, VSD compressors minimize energy wastage during idle periods, leading to improved efficiency.

3. Soft Starting:

Traditional fixed-speed compressors experience high inrush currents during startup, which can strain the electrical system and cause voltage dips. VSD compressors utilize soft starting capabilities, gradually ramping up the motor speed instead of instantly reaching full speed. This soft starting feature reduces mechanical and electrical stress, ensuring a smooth and controlled startup, and minimizing energy spikes.

4. Energy Savings at Partial Load:

In many applications, compressed air demand varies throughout the day or during different production cycles. VSD compressors excel in such scenarios by operating at lower speeds during periods of lower demand. Since power consumption is proportional to motor speed, running the compressor at reduced speeds significantly reduces energy consumption compared to fixed-speed compressors that operate at a constant speed regardless of the demand.

5. Elimination of On/Off Cycling:

Fixed-speed compressors often use on/off cycling to adjust the compressed air output. This cycling can result in frequent starts and stops, which consume more energy and cause mechanical wear. VSD compressors eliminate the need for on/off cycling by continuously adjusting the motor speed to meet the demand. By operating at a consistent speed within the required range, VSD compressors minimize energy losses associated with frequent cycling.

6. Enhanced System Control:

VSD compressors offer advanced control capabilities, allowing for precise monitoring and adjustment of the compressed air system. These systems can integrate with sensors and control algorithms to maintain optimal system pressure, minimize pressure fluctuations, and prevent excessive energy consumption. The ability to fine-tune the compressor’s output based on real-time demand contributes to improved overall system efficiency.

By utilizing variable speed drive technology, air compressors can achieve significant energy savings, reduce operational costs, and enhance their environmental sustainability by minimizing energy wastage and optimizing efficiency.

air compressor

How are air compressors utilized in pneumatic tools?

Air compressors play a crucial role in powering and operating pneumatic tools. Here’s a detailed explanation of how air compressors are utilized in pneumatic tools:

Power Source:

Pneumatic tools rely on compressed air as their power source. The air compressor generates and stores compressed air, which is then delivered to the pneumatic tool through a hose or piping system. The compressed air provides the force necessary for the tool to perform various tasks.

Air Pressure Regulation:

Air compressors are equipped with pressure regulation systems to control the output pressure of the compressed air. Different pneumatic tools require different air pressure levels to operate optimally. The air compressor’s pressure regulator allows users to adjust the output pressure according to the specific requirements of the pneumatic tool being used.

Air Volume and Flow:

Air compressors provide a continuous supply of compressed air, ensuring a consistent air volume and flow rate for pneumatic tools. The air volume is typically measured in cubic feet per minute (CFM) and determines the tool’s performance capabilities. Higher CFM ratings indicate that the pneumatic tool can deliver more power and operate at a faster rate.

Tool Actuation:

Pneumatic tools utilize compressed air to actuate their mechanical components. For example, an air-powered impact wrench uses compressed air to drive the tool’s internal hammer mechanism, generating high torque for fastening or loosening bolts and nuts. Similarly, air-powered drills, sanders, nail guns, and spray guns rely on compressed air to power their respective operations.

Versatility:

One of the significant advantages of pneumatic tools is their versatility, and air compressors enable this flexibility. A single air compressor can power a wide range of pneumatic tools, eliminating the need for separate power sources for each tool. This makes pneumatic tools a popular choice in various industries, such as automotive, construction, manufacturing, and woodworking.

Portability:

Air compressors come in different sizes and configurations, offering varying degrees of portability. Smaller portable air compressors are commonly used in applications where mobility is essential, such as construction sites or remote locations. The portability of air compressors allows pneumatic tools to be used in various work environments without the constraints of being tethered to a fixed power source.

Overall, air compressors are integral to the functionality and operation of pneumatic tools. They provide the necessary power, air pressure regulation, and continuous airflow required for pneumatic tools to perform a wide range of tasks efficiently and effectively.

air compressor

How does an air compressor work?

An air compressor works by using mechanical energy to compress and pressurize air, which is then stored and used for various applications. Here’s a detailed explanation of how an air compressor operates:

1. Air Intake: The air compressor draws in ambient air through an intake valve or filter. The air may pass through a series of filters to remove contaminants such as dust, dirt, and moisture, ensuring the compressed air is clean and suitable for its intended use.

2. Compression: The intake air enters a compression chamber, typically consisting of one or more pistons or a rotating screw mechanism. As the piston moves or the screw rotates, the volume of the compression chamber decreases, causing the air to be compressed. This compression process increases the pressure and reduces the volume of the air.

3. Pressure Build-Up: The compressed air is discharged into a storage tank or receiver where it is held at a high pressure. The tank allows the compressed air to be stored for later use and helps to maintain a consistent supply of compressed air, even during periods of high demand.

4. Pressure Regulation: Air compressors often have a pressure regulator that controls the output pressure of the compressed air. This allows the user to adjust the pressure according to the requirements of the specific application. The pressure regulator ensures that the compressed air is delivered at the desired pressure level.

5. Release and Use: When compressed air is needed, it is released from the storage tank or receiver through an outlet valve or connection. The compressed air can then be directed to the desired application, such as pneumatic tools, air-operated machinery, or other pneumatic systems.

6. Continued Operation: The air compressor continues to operate as long as there is a demand for compressed air. When the pressure in the storage tank drops below a certain level, the compressor automatically starts again to replenish the compressed air supply.

Additionally, air compressors may include various components such as pressure gauges, safety valves, lubrication systems, and cooling mechanisms to ensure efficient and reliable operation.

In summary, an air compressor works by drawing in air, compressing it to increase its pressure, storing the compressed air, regulating the output pressure, and releasing it for use in various applications. This process allows for the generation of a continuous supply of compressed air for a wide range of industrial, commercial, and personal uses.

China Standard Misubishi Fixed-Speed Rotary Compressor Refrigerant R410A, R32, R134A for Refrigeration for Air Condition   air compressor for saleChina Standard Misubishi Fixed-Speed Rotary Compressor Refrigerant R410A, R32, R134A for Refrigeration for Air Condition   air compressor for sale
editor by CX 2024-03-29

China best Factory High Quality T Briliant 4 Cylinder Semi-Hermetic Piston Refrigeration Air Compressor for AC for Cold Room Condensing Unit Refrigeration Equipment air compressor portable

Product Description

Product Description

 

ABOUT US

HangZhou Ouyu  is an importing and exporting branch of ZHangZhoug Briliant Refrigeration Equipment Co., Ltd., a professional Refrigeration Equipment Co., Ltd.,It integrates compressor design, development, production and sales Located in ZHangZhoug province,founded in 2013.Now we have more than 100 employees, covers a total area of 17,000 square meters.

Small volume ,light weight,small vibration,low noise,high effciency and energy saving,environmental protection,security and stability.

Compressor Model Nominal Motor Power (HP/KW) Displacement (50Hz)m³/h Number of Cylinder x Diameter x Stroke mm Oil injection volume (L) Powersupply V/Φ/Hz Electricalparameter Crankcase Heater (220V) W Oilsupply method Weight (including freezingoil) Kg
Max.operating current A Starting current/rotor locked current. Operating current A
YBF2FC-2.2Z 2/1.5 9.54 2×φ46×33 1 △/Y   
  Directly start the motor
220~240△
380~420Y
/3~/50
265~290△
400~480Y
/3~/60
8.5/4.9 39/22.5 60 Centrifgal lubrcation 45
YBF2FC-3.2G 3/2.2 9.54 2×φ46×33 1 10.0/5.8 44.2/25.5 60 47
YBF2DC-2.2Z 2/1.5 13.42 2×φ50×39.3 1.5 11.9/6.9 53.7/30.7 100 68
YBF2DC-3.2G 3/2.2 13.42 2×φ50×39.3 1.5 13.5/7.8 64/37 100 71
YBF2CC-3.2Z 3/2.2 16.24 2×φ55×39.3 1.5 14.8/8.5 64/37 100 70
YBF2CC-4.2G 4/3.0 16.24 2×φ55×39.3 1.5 16.4/9.4 76.6/44.2 100 70
YBF4FC-3.2Z 3/2.2 18.05 4×φ41×39.3 2 15.9/9.2 76.6/44.2 100 81
YBF4FC-5.2G 5/3.7 18.05 4×φ41×39.3 2 18.7/10.8 107.7/62.2 100 85
YBF4EC-4.2Z 4/3.0 22.72 4×φ46×39.3 2 18.5/10.7 92.7/53.3 100 82
YBF4EC-6.2G 6/4.4 22.72 4×φ46×39.3 2 22.9/13.2 107.7/62.2 100 85
YBF4DC-5.2Z 5/3.7 26.84 4×φ50×39.3 2 23.4/13.5 107.7/62.2 100 85
YBF4DC-7.2G 7/5.1 26.84 4×φ50×39.3 2 27.5/15.9 142.8/82.4 100 88
YBF4CC-6.2Z 6/4.4 32.48 4×φ55×39.3 2 27.5/15.9 142.8/82.4 100 89
YBF4CC-9.2G 9/6.6 32.48 4×φ55×39.3 2 34.5/20.0 142.8/82.4 100 89
YBF4VCS-6.2Z 6/4.4 34.73 4×φ55×39.3 2.6 PW
Split winding starting motor
380~420YY
/3/50
400~480YY
/3/60
14 39/68 120 117
YBF4VCS-10.2G 10/7.5 34.73 4×φ55×42 2.6 21 59/99 120 127
YBF4TCS-8.2Z 8/5.5 41.33 4×φ60×42 2.6 17 49/81 120 122
YBF4TCS-12.2G 12/8.8 41.33 4×φ60×42 2.6 24 69/113 120 129
YBF4PCS-10.2Z 10/7.5 48.05 4×φ65×42 2.6 21 59/99 120 127
YBF4PCS-15.2G 15/10.5 48.05 4×φ65×42 2.6 31 81/132 120 135
YBF4NCS-12.2Z 12/8.8 56.25 4×φ70×42 2.6 24 69/113 120 129
YBF4NCS-20.2G 20/15 56.25 4×φ70×42 2.6 37 97/158 120 138
YBF4H-15.2Z 15/10.5 73.6 4×φ70×55 4.5 31 81/132 120 Forced-lubrication 183
YBF4H-25.2G 25/18.5 73.6 4×φ70×55 4.5 45 116/193 120 194
YBF4G-20.2Z 20/15 84.5 4×φ75×55 4.5 37 97/158 120 192
YBF4G-30.2G 30/22 84.5 4×φ75×55 4.5 53 135/220 120 206
YBF6H-25.2Z 25/18.5 110.5 6×φ70×55 4.75 45 116/193 120 224
YBF6H-35.2G 35/25.5 110.5 6×φ70×55 4.75 61 147/262 120 235
YBF6G-30.2Z 30/22 126.8 6×φ75×55 4.75 53 135/220 120 228
YBF6G-40.2G 40/30 126.8 6×φ75×55 4.75 78 180/323 120 238
YBF6F-40.2Z 40/30 151.6 6×φ82×55 4.75 78 180/323 120 238
YBF6F-50.2G 50/37 151.6 6×φ82×55 4.75 92 226/404 120 241

Company Profile

 

/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

After-sales Service: 1 Years
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Cooling System: Air Cooling
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air compressor

How are air compressors utilized in pharmaceutical manufacturing?

Air compressors play a crucial role in pharmaceutical manufacturing, where they are utilized for various critical applications. The pharmaceutical industry requires a reliable source of clean and compressed air to ensure the safety, efficiency, and quality of its processes. Here’s an overview of how air compressors are utilized in pharmaceutical manufacturing:

1. Manufacturing Processes:

Air compressors are used in numerous manufacturing processes within the pharmaceutical industry. Compressed air is employed for tasks such as mixing and blending of ingredients, granulation, tablet compression, coating, and encapsulation of pharmaceutical products. The controlled delivery of compressed air facilitates precise and consistent manufacturing processes, ensuring the production of high-quality pharmaceuticals.

2. Instrumentation and Control Systems:

Pharmaceutical manufacturing facilities rely on compressed air for powering instrumentation and control systems. Compressed air is used to operate pneumatic valves, actuators, and control devices that regulate the flow of fluids, control temperature and pressure, and automate various processes. The clean and dry nature of compressed air makes it ideal for maintaining the integrity and accuracy of these critical control mechanisms.

3. Packaging and Filling:

Air compressors are employed in pharmaceutical packaging and filling processes. Compressed air is used to power machinery and equipment for bottle cleaning, labeling, capping, and sealing of pharmaceutical products. Compressed air provides the necessary force and precision for efficient and reliable packaging, ensuring product safety and compliance.

4. Cleanroom Environments:

Pharmaceutical manufacturing often takes place in controlled cleanroom environments to prevent contamination and maintain product quality. Air compressors are used to supply clean and filtered compressed air to these cleanrooms, ensuring a controlled and sterile environment for the production of pharmaceuticals. Compressed air is also utilized in cleanroom air showers and air curtains for personnel and material decontamination.

5. Laboratory Applications:

In pharmaceutical laboratories, air compressors are utilized for various applications. Compressed air is used in laboratory instruments, such as gas chromatographs, mass spectrometers, and other analytical equipment. It is also employed in clean air cabinets, fume hoods, and laminar flow benches, providing a controlled and clean environment for testing, analysis, and research.

6. HVAC Systems:

Air compressors are involved in heating, ventilation, and air conditioning (HVAC) systems in pharmaceutical manufacturing facilities. Compressed air powers the operation of HVAC controls, dampers, actuators, and air handling units, ensuring proper air circulation, temperature control, and environmental conditions in various manufacturing areas.

By utilizing air compressors in pharmaceutical manufacturing, the industry can maintain strict quality standards, enhance operational efficiency, and ensure the safety and efficacy of pharmaceutical products.

air compressor

Can air compressors be integrated into automated systems?

Yes, air compressors can be integrated into automated systems, providing a reliable and versatile source of compressed air for various applications. Here’s a detailed explanation of how air compressors can be integrated into automated systems:

Pneumatic Automation:

Air compressors are commonly used in pneumatic automation systems, where compressed air is utilized to power and control automated machinery and equipment. Pneumatic systems rely on the controlled release of compressed air to generate linear or rotational motion, actuating valves, cylinders, and other pneumatic components. By integrating an air compressor into the system, a continuous supply of compressed air is available to power the automation process.

Control and Regulation:

In automated systems, air compressors are often connected to a control and regulation system to manage the compressed air supply. This system includes components such as pressure regulators, valves, and sensors to monitor and adjust the air pressure, flow, and distribution. The control system ensures that the air compressor operates within the desired parameters and provides the appropriate amount of compressed air to different parts of the automated system as needed.

Sequential Operations:

Integration of air compressors into automated systems enables sequential operations to be carried out efficiently. Compressed air can be used to control the timing and sequencing of different pneumatic components, ensuring that the automated system performs tasks in the desired order and with precise timing. This is particularly useful in manufacturing and assembly processes where precise coordination of pneumatic actuators is required.

Energy Efficiency:

Air compressors can contribute to energy-efficient automation systems. By incorporating energy-saving features such as Variable Speed Drive (VSD) technology, air compressors can adjust their power output according to the demand, reducing energy consumption during periods of low activity. Additionally, efficient control and regulation systems help optimize the use of compressed air, minimizing waste and improving overall energy efficiency.

Monitoring and Diagnostics:

Integration of air compressors into automated systems often includes monitoring and diagnostic capabilities. Sensors and monitoring devices can be installed to collect data on parameters such as air pressure, temperature, and system performance. This information can be used for real-time monitoring, preventive maintenance, and troubleshooting, ensuring the reliable operation of the automated system.

When integrating air compressors into automated systems, it is crucial to consider factors such as the specific requirements of the automation process, the desired air pressure and volume, and the compatibility of the compressor with the control and regulation system. Consulting with experts in automation and compressed air systems can help in designing an efficient and reliable integration.

In summary, air compressors can be seamlessly integrated into automated systems, providing the necessary compressed air to power and control pneumatic components, enabling sequential operations, and contributing to energy-efficient automation processes.

air compressor

How do oil-lubricated and oil-free air compressors differ?

Oil-lubricated and oil-free air compressors differ in terms of their lubrication systems and the presence of oil in their operation. Here are the key differences:

Oil-Lubricated Air Compressors:

1. Lubrication: Oil-lubricated air compressors use oil for lubricating the moving parts, such as pistons, cylinders, and bearings. The oil forms a protective film that reduces friction and wear, enhancing the compressor’s efficiency and lifespan.

2. Performance: Oil-lubricated compressors are known for their smooth and quiet operation. The oil lubrication helps reduce noise levels and vibration, resulting in a more comfortable working environment.

3. Maintenance: These compressors require regular oil changes and maintenance to ensure the proper functioning of the lubrication system. The oil filter may need replacement, and the oil level should be regularly checked and topped up.

4. Applications: Oil-lubricated compressors are commonly used in applications that demand high air quality and continuous operation, such as industrial settings, workshops, and manufacturing facilities.

Oil-Free Air Compressors:

1. Lubrication: Oil-free air compressors do not use oil for lubrication. Instead, they utilize alternative materials, such as specialized coatings, self-lubricating materials, or water-based lubricants, to reduce friction and wear.

2. Performance: Oil-free compressors generally have a higher airflow capacity, making them suitable for applications where a large volume of compressed air is required. However, they may produce slightly more noise and vibration compared to oil-lubricated compressors.

3. Maintenance: Oil-free compressors typically require less maintenance compared to oil-lubricated ones. They do not need regular oil changes or oil filter replacements. However, it is still important to perform routine maintenance tasks such as air filter cleaning or replacement.

4. Applications: Oil-free compressors are commonly used in applications where air quality is crucial, such as medical and dental facilities, laboratories, electronics manufacturing, and painting applications. They are also favored for portable and consumer-grade compressors.

When selecting between oil-lubricated and oil-free air compressors, consider the specific requirements of your application, including air quality, noise levels, maintenance needs, and expected usage. It’s important to follow the manufacturer’s recommendations for maintenance and lubrication to ensure the optimal performance and longevity of the air compressor.

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editor by CX 2024-03-28