2026-01-02 15:37:03
Sanwood Technology's Bench-Top Type Temp Humidity Chamber strictly adheres to international testing standards such as IEC 60068-2-30. With its compact and precise design and superior temperature and humidity control performance, it is becoming a key tool and guardian for ensuring the environmental adaptability of consumer electronics products.
In the consumer electronics industry, the long-term reliability of products is closely linked to brand vitality. Whether it's a smartphone or a portable audio device, their sophisticated internal electronic structures constantly face the harsh temperature and humidity environments of the real world. Sanwood Technology's Bench-Top Type Temp Humidity Chamber strictly adheres to international testing standards such as IEC 60068-2-30. With its compact and precise design and superior temperature and humidity control performance, it is becoming a key tool and guardian for ensuring the environmental adaptability of consumer electronics products.
Stringent Standards
IEC 60068-2-30 aims to assess the ability of components, equipment, and other products to withstand or operate normally under combined environments of high humidity and temperature cycling. It simulates the harsh conditions of repeated condensation and drying caused by temperature fluctuations in tropical or temperate condensing environments. For consumer electronics manufacturers, meeting this standard not only means that their products have passed internationally recognized reliability verification, but also that they possess the ability to withstand complex real-world temperature environments.
Basic Equipment Parameters
Sanwood Technology's Bench-Top Type Temp Humidity Chamber can be customized according to customer requirements. The following are the basic technical parameters:
Temperature Control Range: -40℃~+150℃
Humidity Range: 20.0%RH~95.0%RH
Temperature Fluctuation: ≤±0.5℃ (no load, constant temperature)
Cooling Rate: +150℃~-40℃, average 1℃/min over the entire range, no load
Heating Rate: -40℃~+150℃, average 3℃/min over the entire range, no load
Temperature Uniformity: ≤1.5℃ (-40℃~+100℃) (no load, constant temperature)
≤2.0℃ (+100.1℃~+150℃) (no load, constant temperature)
Temperature Deviation: ≤±1.5℃ (-40℃~+100℃) (Unloaded, constant temperature and humidity)
≤±2.0℃ (+100.1℃~+150℃) (Unloaded, constant temperature and humidity)
Equipment Features
The core advantage of the Sanwood Technology Bench-Top Type Temp Humidity Chamber lies in its ultimate balance between space and performance:
Compact Design: Saves laboratory space, suitable for desktop or small workbench placement.
Precise Temperature and Humidity Control: Employs a PID intelligent temperature control algorithm to ensure a stable temperature and humidity environment.
Rapid Temperature Change Response: Offers linear or non-linear temperature change rate selection (e.g., 1.0℃/min~5.0℃/min), shortening the test cycle.
High-Efficiency Energy-Saving Technology: Uses environmentally friendly refrigerants and low-power compressors, combined with optimized air duct design, reducing energy consumption by more than 30%.
Conclusion
Today, environmental reliability testing is crucial throughout the entire lifecycle of consumer electronics products. The Sanwood Technology Bench-Top Type Temp Humidity Chamber is not only a key device for meeting standards such as IEC 60068-2-30, but also a reliable partner for you at every stage of R&D verification, production screening, and compliance certification. In addition to Bench-Top Type Temp Humidity Chamber, we also offer Thermal Shock Test Chambers, Rapid Temp Change Test Chambers, High Low Temp Test Chambers, and other testing equipment, providing customized test chamber solutions to help you accurately verify product reliability and efficiently meet market challenges.
For professional testing solutions, please contact Sanwood Technology; we will tailor professional services to your specific needs.
Sanwood is not just a company; it is a commitment to delivering high-quality products that stand the test of time.