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Thriving solar energy market and increasing competition has raised the reliability and performance standards for photovoltaic modules. Manufacturers must ensure their photovoltaic (PV) modules are robust, reliable and able to consistently deliver the guaranteed rated power even under more severe climactic conditions. CME’s environmental chambers will tremendously help you in this process of developing a reliable PV modules /solar panels at fraction of cost.

CATH chamber can simulate pressure, temperature and humidity in its test space. It is also known as combined altitude, temperature and humidity chamber which is primarily used in R&D and testing of aerospace components. The chamber meets many international standards including MIL and RTCA.

Home Appliances especially refrigerators are constantly under scanner to be more energy efficient, reliable and environment compliant. This has led many manufacturers to bring new innovations in their product line-up. Many such manufacturers are using CME chambers to test their new products for its cooling performance, energy efficiency and construction reliability under various environmental conditions.

Walk-In Cooling Chambers are designed for precise temperature control in large-scale storage applications. They ensure uniform cooling and are ideal for industries such as pharmaceuticals, biotechnology, and food storage.

Walk-In Deep Freezers are custom-designed and manufactured to meet customer-specific requirements for ultra-low temperature storage solutions.

Walk-In Incubators are designed for precise temperature control, ideal for large-scale sample storage, microbial research, or any laboratory applications requiring spacious environmental conditions.

Stability Chamber

Water Spray Chamber

The water spray chamber is commonly used for conducting whole-body testing of assembled vehicles under various rain test procedures. The shed features interconnected arrays of pipes to create zones that ensure uniform spraying according to the JSS 55555 test standard. Water flows through the nozzles at a rate of up to 288 cubic meters per hour. The chamber's water collection system includes a central grating with sufficient slope to collect sprayed water during operation and circulate it back to the water reservoir for a closed-loop circulation.