China Oxygen Booster Compressor for Hospital Installation

Product Description

 

Oxygen Booster Compressor for Hospital Installation           
  

 

Introduction

Cape-Golden Oxygen Booster Compressor is no liquid lubricant in the body and no liquid lubricant in the crankcase supporting the crankshaft. Piston ring and CZPT ring is made of high quality modified PTFE with self-lubricating performance. The main parts of stainless steel and copper, aluminum and other material is not easy to produce sparks, all bearings with seals prevent loss of grease, the high pressure Oxygen Booster Compressor lubrication system, the movement of the friction pair of grease are the antioxidant of Oxygen Booster Compressor special grease.

 

 

Product Specification

Model

Capacity/

Flow Rate

Inlet Pressure Discharge Pressure Power Weight Dimension(L*W*H)
WWZ-3/4-150 3m³/h 3-4bar 150bar 4kw 140kg 1080X820X850mm
WWZ-5/4-150 5m³/h 3-4bar 150bar 5.5kw 210kg 1080X820X850mm
WWZ-10/4-150 10m³/h 3-4bar 150bar 7.5kw 350kg 1080X900X850mm
WWZ-15/4-150 15m³/h 3-4bar 150bar 11kw 350kg 1250X1571X850mm
WWZ-20/4-150 20m³/h 3-4bar 150bar 15kw 470kg 1250X1571X850mm
WWZ-30/4-150 30m³/h 3-4bar 150bar 15kw 500kg 1350X1571X900mm
WWZ-40/4-150 40m³/h 3-4bar 150bar 15kw 500kg 1600X1100X1100mm
WWZ-50/4-150 50m³/h 3-4bar 150bar 15kw 500kg 1600X1100X1100mm

 

Oxygen Compressor Control Mode

Oxygen Booster Compressor adopts inlet, exhaust pressure switch + inlet and exhaust solenoid valve automatic control.

The Oxygen Booster Compressor‘s electrical control loop is connected with the inlet and exhaust pressure switch, in which the inlet pressure switch is normally open, used for the protection of shutdown when the inlet pressure is too low.

The exhaust pressure switch is normally closed, which is used for stopping protection when the exhaust pressure is too high. The specific control principle is: when the air source pressure reaches the upper limit of the intake pressure switch set value, the pressure switch is closed, press the start button at this time, the motor runs, the intake electromagnetic power is opened, the exhaust solenoid valve is disconnected, and the fan starts running and the compressor works normally.

When the exhaust pressure rises to the upper limit of the exhaust pressure switch set value, the exhaust pressure switch acts and the machine stops running. At the same time, the inlet solenoid valve is disconnected and closed.

When the exhaust pressure drops to the lower limit set by the exhaust pressure switch, the exhaust pressure switch is closed, and the machine continues to operate. The oxygen bottling machine needs to be manually reset and run. When the air source pressure falls to the lower limit of the intake pressure switch set value, the intake pressure switch is disconnected, and the machine stops running in standby state.

When the air source pressure is restored to the upper limit of the inlet pressure switch set value, the inlet pressure switch is closed and the machine continues to run.

Temperature protection, each stage of the compressor is equipped with temperature sensor, when the exhaust temperature of a stage is too high, the alarm will stop.

Operation & Maintenance

Keep the Oxygen Booster Compressor clean, observe diligently, deal with abnormal situation in time, do not let the compressor work with failure. Compressor disassembly maintenance or replacement parts must be carried out by experienced maintenance personnel or the production plant to avoid unnecessary losses.

It is necessary to check whether the voltage and current deviation is too large to prevent over-voltage or under-voltage operation and damage to the motor. 

During the normal operation of the compressor, it is easy not to disconnect the power supply. In case of power failure or power failure for other reasons, the power supply must be cut off to stop the work. 

If any abnormal sound is found during the operation of the compressor, it should be stopped immediately for inspection.

 

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How to Choose the Right Air Compressor

An air compressor uses pressurized air to power a variety of tools. They are most commonly used to power nailers and impact wrenches. Other popular uses for air compressors include paint sprayers and impact wrenches. While all air compressors have the same basic construction, their specialty differs. Ultimately, their differences come down to the amount of air they can push. Read on for information on each type of air compressor. These tools are great for many different purposes, and choosing the right air compressor depends on your specific needs.
air-compressor

Electric motor

While purchasing an electric motor for air compressor, compatibility is a key factor. Not all motors work with the same type of air compressor, so it’s important to check the manufacturer’s instructions before purchasing. By doing this, you can avoid wasting money on an incompatible motor. Another important consideration is speed. A motor’s speed is its rate of rotation, measured in revolutions per minute. It is critical that you purchase a motor with sufficient speed to meet the needs of your air compressor.
Typically, an electric motor for air compressor is 1.5 hp. It is ideal for use with medical equipment and metal-cutting machines. It also performs well under continuous operation and offers a high efficiency and energy-saving performance. Moreover, it features an attractive price, making it a good choice for a wide range of applications. If you are looking for a motor for an air compressor, look no further than a ZYS series.
A motor’s protection class indicates how the motor will operate. Protection classes are specified by the IEC 60034-5. These are stated with 2 digits and represent the protection against solid objects and water. For example, an IP23 rating means that the motor will be protected from solid objects, while IP54 means that it will protect from dust and water sprayed from all directions. It is vital to choose a motor with the correct protection class for your air compressor.
When choosing an electric motor, you should consider whether it’s compatible with the brand of air compressor. Some may be compatible, while others may require advanced electronics skills to repair. However, most air compressors are covered by warranty, so it’s important to check with the manufacturer if the warranty is still in effect before you spend a dime on a replacement. The motor should be replaced if it has failed to perform as designed.
air-compressor

Oil bath

Air compressors require proper lubrication to function efficiently. The piston must draw air with minimal friction. Depending on their design, air compressors can either be oil-lubricated or oil-free. The former uses oil to reduce piston friction, while the latter splashes it on the cylinder bearings and walls. Such air compressors are commonly known as oil-flooded air compressors. In order to keep their oil baths clean, they are recommended for use in locations with high dust levels.

Start/stop control

An air compressor can be controlled by a start/stop control. This type of control sends a signal to the main motor that activates the compressor when the demand for air falls below a preset limit. This control strategy is effective for smaller air compressors and can be useful for reducing energy costs. Start/stop control is most effective in applications where air pressure does not change frequently and where the compressor is not required to run continuously.
To troubleshoot this problem, you need to check the power supply of your compressor. To check the supply side, use a voltage monitor to determine if power is flowing to the compressor. Ensure that the power supply to the compressor is steady and stable at all times. If it fluctuates, the compressor may not start or stop as expected. If you cannot find the problem with the air compressor power supply, it may be time to replace it.
In addition to the start/stop control, you may want to purchase additional air receivers for your air compressor. These can increase the capacity of air stored and reduce the number of times it starts and stops. Another way to decrease the number of starts per hour is to add more air receivers. Then, you can adjust the control to match your requirements. You can also install a pressure gauge that monitors the compressor’s performance.
Start/stop control for air compressors can be complex, but the basic components are relatively easy to understand. One way to test them is to turn the compressor on or off. It is usually located on the exterior of the motor. If you’re unsure of the location of these components, check the capacitors and make sure that the air compressor is not running while you’re not using it. If it does, try to remove the capacitor.
Variable displacement control is another way to adjust the amount of air flowing into the compressor. By controlling the amount of air, the control can delay the use of additional compressors until more required air is available. In addition to this, the device can also monitor the energy used in the compressor. This control method can result in substantial energy savings. You can even save on the amount of electricity by using variable displacement control. It is essential for efficient compressed air systems.
air-compressor

Variable speed drive

A VFD, or variable frequency drive, is a type of electric motor that adjusts its speed to match the demand for air. It is an efficient way to reduce energy costs and improve system reliability. In fact, studies have shown that a 20% reduction in motor speed can save up to 50% of energy. In addition, a VFD can monitor additional variables such as compressor oil pressure and motor temperature. By eliminating manual checks, a VFD will improve the performance of the application and reduce operating costs.
In addition to reducing energy costs, variable-speed drives also increase productivity. A variable-speed air compressor reduces the risk of system leaks by 30 percent. It also reduces the risk of system leaks by reducing pressure in the system. Because of these advantages, many governments are promoting this technology in their industries. Many even offer incentives to help companies upgrade to variable-speed drives. Therefore, the variable-speed drive can benefit many air compressor installations.
One major benefit of a variable-speed drive is its ability to optimize energy use. Variable frequency drives are able to ramp up and down to match the demand for air. The goal is to optimize the pressure and flow in the system so that the best “dead band” occurs between 40 percent and 80 percent of full load. A variable-speed compressor will also increase energy efficiency because of its programmability.
A variable-speed air compressor can also be used to control the amount of air that is compressed by the system. This feature adjusts the frequency of power supplied to the motor based on the demand. If the demand for air is low, the frequency of the motor will reduce to save energy. On the other hand, if there is an excess demand for air, the variable-speed compressor will increase its speed. In addition, this type of air compressor is more efficient than its fixed-speed counterpart.
A VFD has many benefits for compressed air systems. First, it helps stabilize the pressure in the pipe network, thereby reducing the power losses due to upstream pressure. It also helps reduce the power consumption caused by fluctuations in upward pressure. Its benefits are also far-reaching. And as long as the air pressure and air supply is properly sized, a VFD will help optimize the efficiency of compressed air systems.

China Oxygen Booster Compressor for Hospital Installation  China Oxygen Booster Compressor for Hospital Installation

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