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Dongguan Haoen Testing Instrument Co., Ltd

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    2942709300@qq.com

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    13631787342,15899943952

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    Antai Building, No.4 Hongbao Road, Dongcheng Street, Dongguan City

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New Energy High and Low Temperature Damp Heat Test Chamber

NegotiableUpdate on 01/18
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Overview

The explosion-proof high and low temperature damp heat test chamber is suitable for adaptability testing of electrical, electronic, instrumentation, and other products, components, and materials during storage, transportation, and use in high and low temperature environments.

Product Details

1Explosion proof high and low temperature damp heat test chamberfeature

The inner box material is made of SU304 stainless steel plate, which has the characteristics of acid resistance, corrosion resistance, and easy cleaning;

The position of the sample rack can be adjusted up and down as needed;

The box door is equipped with a large viewing angle insulated vacuum tempered glass, making it easy for users to inspect the sample testing process;

Using high-quality door magnetic seals and insulation materials to enhance the overall performance of the machine;

Having a reasonable air duct circulation system to achieve high uniformity of temperature and humidity inside the box;

The left side of the box is equipped with a test lead hole;

Water supply system: equipped with automatic water replenishment function and standard water tank

IIExplosion proof high and low temperature damp heat test chamberPerformance:

Refers to the air-cooled type at room temperature of 20 ℃, when unloaded

Specification and model: HE-WS-80/100/150/225/408/800/1000 (A, B, C, D, E)

Capacity:

80 liter inner box size (width * height * depth): 400X500X400mm

150 liter inner box size (width * height * depth): 500X600X500mm

225 liter inner box size (width * height * depth): 600X750X500mm

408 liter inner box size (width * height * depth): 600X850X800mm

800 liter inner box size (width * height * depth): 1000X1000X800mm

1000 liter inner box size (width * height * depth): 1000X1000X1000mm

Temperature range:

A represents 0 ℃ to+150 ℃, B represents -20 ℃ to+150 ℃, C represents -40 ℃ to+150 ℃,

D represents -60 ℃ to+150 ℃, E represents -70 ℃ to+150 ℃

Temperature accuracy: ± 0.01 ℃

Temperature fluctuation: ± 0.5 ℃

Temperature uniformity: ± 2.0 ℃

Humidity range: 20% RH to 98% RH

Humidity accuracy: ± 0.1% R.H

Humidity fluctuation: ± 2.0% R.H

Humidity uniformity: ± 3% R.H

Heating rate: average 3 ℃/min (non-linear, unloaded); Rising from room temperature+25 ℃ to+85 ℃ for about 20 minutes); Non standard specifications can be customized according to requirements

Cooling rate: average 1 ℃/min (non-linear, unloaded); Reduce from room temperature+25 ℃ to -40 ℃ for about 65 minutes; Non standard specifications can be customized according to requirements

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3、 Three major systems:

1. Refrigerant circulation system:

The liquid refrigerant in the evaporator absorbs heat from the air (the air is cooled and dehumidified) and begins to evaporate. A certain temperature difference is formed between the refrigerant and the air, and the liquid refrigerant also evaporates into a gaseous state, which is then sucked in and compressed by the compressor (pressure and temperature increase). The gaseous refrigerant absorbs heat through the condenser (air-cooled/water-cooled) and condenses into a liquid. After being throttled by an expansion valve (or capillary tube), it becomes a low-temperature and low-pressure refrigerant that enters the evaporator, completing the refrigerant circulation process.

2. Air environment system:

The fan is responsible for inhaling air from the return air outlet. The air passes through the evaporator (for cooling and dehumidification), humidifier, and electric heater (for heating) before being sent to the user's desired space through the air supply outlet. The air sent out mixes with the air in the space and returns to the return air outlet.

3. Electrical self-control system:

Including power supply and automatic control parts.

The power supply is automatically controlled by contactors to supply power to compressors, fans, electric heaters, humidifiers, etc. It is further divided into temperature and humidity control and fault protection parts: temperature and humidity control is achieved by comparing the temperature and humidity of the return air with the user set temperature and humidity through a temperature and humidity controller, automatically running the compressor (cooling, dehumidification), humidifier, electric heating (heating) and other components to achieve automatic control of constant temperature and humidity.