Pharmacy Stability Test Chamber for Pharmaceutical Area

**Pharmacy Stability Test Chamber for Pharmaceutical Area** This **Pharmacy Stability Test Chamber** is a specialized environmental testing equipment designed for pharmaceutical applications. It is also known as a **stability chamber** or **climate test chamber**, used to evaluate the performance and durability of products under various temperature and humidity conditions. It plays a crucial role in quality control, especially in the pharmaceutical industry, where maintaining product stability is essential. **Key Features:** - **Model No.:** TH Series - **Brand:** ASLi - **Certifications:** CE, OEM, SGS - **Temperature Range:** -70°C to 150°C (adjustable based on model) - **Humidity Range:** 20% to 98% RH (with optional dehumidifier) - **Material:** Inner chamber made of 304# stainless steel; outer shell made of stainless steel or cold-rolled steel with paint coating - **Cooling System:** Water-cooled or air-cooled (depending on the model) - **Compressor Options:** French Tecumseh or German Bizer - **Power Supply:** 220V / 380V, 50/60Hz - **Transport Packaging:** Standard export plywood or customized packaging - **Origin:** China - **HS Code:** 84798999 **Applications:** The **Pharmacy Stability Test Chamber** is widely used across multiple industries, including pharmaceuticals, electronics, automotive, medical devices, chemicals, and more. It simulates real-world environmental conditions to ensure that products meet required standards before being released to the market. **Technical Specifications:** | Model | TH-80(A~F) | TH-150(A~F) | TH-225(A~F) | TH-408(A~F) | TH-800(A~F) | TH-1000(A~F) | |---------------|----------------|------------------|------------------|------------------|------------------|------------------| | Internal Dimensions (W x H x D mm) | 400x500x400 | 500x600x500 | 600x750x500 | 600x850x800 | 1000x1000x800 | 1000x1000x1000 | | External Dimensions (W x H x D mm) | 950x1650x950 | 1050x1750x1050 | 1200x1900x1150 | 1200x1950x1350 | 1600x2000x1450 | 1600x2100x1450 | | Temperature Range | -70°C to 150°C | -70°C to 150°C | -70°C to 150°C | -70°C to 150°C | -70°C to 150°C | -70°C to 150°C | | Humidity Range | 20%–98% RH | 20%–98% RH | 20%–98% RH | 20%–98% RH | 20%–98% RH | 20%–98% RH | | Control Accuracy | ±0.5°C / ±2.5% RH | ±0.5°C / ±2.5% RH | ±0.5°C / ±2.5% RH | ±0.5°C / ±2.5% RH | ±0.5°C / ±2.5% RH | ±0.5°C / ±2.5% RH | | Cooling System | Air or Water Cooling | Air or Water Cooling | Air or Water Cooling | Air or Water Cooling | Air or Water Cooling | Air or Water Cooling | | Compressor | Tecumseh or Bizer | Tecumseh or Bizer | Tecumseh or Bizer | Tecumseh or Bizer | Tecumseh or Bizer | Tecumseh or Bizer | | Power Supply | 220V / 380V | 220V / 380V | 220V / 380V | 220V / 380V | 220V / 380V | 220V / 380V | | Weight (kg) | 150 | 180 | 250 | 320 | 400 | 450 | **Additional Features:** - High accuracy in temperature and humidity control - Optional accessories: inner door with operation hole, recorder, water purifier, and dehumidifier - Multiple protection systems: over-temperature, over-humidity, low-voltage, and high-voltage protection - Customizable according to customer requirements This **Pharmacy Stability Test Chamber** is an essential tool for laboratories and production facilities that require precise environmental simulation for product testing and quality assurance. Its versatility and reliability make it a top choice in the pharmaceutical and industrial sectors.

Piston For ISUZU

A piston is a component of an internal combustion engine that moves back and forth in the cylinder. It is usually made of aluminum or cast iron and is responsible for transferring the force of the expanding gas produced during combustion to the Crankshaft.

In Isuzu's five-cylinder engine, each piston plays a crucial role in the operation of the engine. The following are the effects of Isuzu engine pistons on the overall function of the engine:

1. Compression: The piston compresses the air-fuel mixture in the cylinder before ignition. This compression increases the pressure and temperature of the mixture, making it more flammable.

2. Combustion: The compressed air-fuel mixture is ignited by the Spark Plug, causing an explosion that pushes the piston downward with great force. This force is transmitted to the crankshaft, which translates it into rotational motion.

3. Exhaust: After the combustion process is completed, the piston moves the cylinder upward to discharge the exhaust gas through the Exhaust Valve.

4. Lubrication: The piston is designed to move smoothly up and down in the cylinder. To ensure this, it is coated with a layer of oil that helps reduce friction and wear.

5. Cooling: The piston is exposed to high temperatures during combustion, which can cause it to expand and jam. To prevent this, the piston is designed with cooling channels that allow the oil or coolant to flow through and dissipate heat.

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