Precision Humidity Temperature Chamber Test Equipment Rapid Testing Quick Environmental Change Tester
Product Description
Introducing the unparalleled Guangdong Humid Testing Chamber, a marvel in environmental simulation crafted with versatility and precision in mind. This state-of-the-art chamber is meticulously engineered to perform both high and low-temperature tests on a broad spectrum of electrical components, diverse products, parts, and materials. Whether your testing needs involve constant conditions, gradient assessments, rapid temperature fluctuations, or wet heat climates, MENTEK's advanced chambers are designed to meet and exceed the stringent Chinese national standards T10586-2006 and T10592-2008. Experience unmatched reliability and performance with a product crafted to deliver remarkable results every time.
Model |
|
MESS-280 |
MESS-500 |
MESS-1000 |
MESS-1500 |
Parameter |
Temperature range |
-40~+150ºC(-20+80ºC):- 70+150ºC(-55+80ºC) |
|
Temperature fluctuation |
±0.3ºC±0.5ºC |
|
Temperature deviation |
± |
|
Humidity deviation |
±3%RH(<75%RH)±5%RH (<=75%RH) |
|
Heating and cooling rate |
5/10/15/20ºC/min |
|
Standard load(aluminum ingot) |
5kg |
12kg |
25kg |
30kg |
Structure |
Casing |
High strength cold-rolled steel plate double-sided fine powder baking paint |
|
Inner wall |
SUS # 304 Stainless Steel 2B Panel |
|
Thermal insulation material |
Glass fiber+polyurethane foam |
Cooling system |
Cooling method |
Single stage mechanical refrigeration/cascade two-stage compressor refrigeration method |
|
refrigeration machine |
Imported compressor |
Heater |
Strip heater |
Observation window( mm) |
300*400/400*600 |
Test hole( mm) |
50 at left side |
100 at right side |
Temperature sensor |
Platinum resistance pt100 |
Controller |
Original Japanese imported 7-inch TFT touch screen |
Recording device |
Built in paperless recorder function (can be externally printed) |
Interface |
UCB interface connection operation |
Inner size(cm) |
Width |
70 |
80 |
100 |
130 |
|
Height |
80 |
90 |
100 |
115 |
|
Depth |
50 |
70 |
100 |
100 |
Height of motor cover |
19 |
21 |
22 |
21 |
Power |
AC380V50Hz Three-phase four-wire |
Standard configuration |
1 product user manual. 1 experimental report, 1 certificate of conformity and quality assurance certificate, 2 partitions, and 1 set of silicone rubber soft plugs |
Meet the configuration requirements |
GB11158\GBT2423\GC/T2423.1/T2423.2/GBT24423.2GJB1500.3\GJB15.0 |
Note:
1. The external dimensions are determined according to the heating and cooling rate.
2. Water cooling type: Requires water temperature of 10~28 ºC and water pressure of 0.1~0.3Mpa to ensure optimal cooling performance.
3. Can enhance the testing capabilities with the addition of dampness and heat functions.
4. Optional dry air blowing system available for specialized testing needs.
5. Optional liquid nitrogen function capable of achieving an impressive rate of 30 ºC/min.
6. The above loads are standard and can be customized according to specific customer requirements.
The equipment meets the following testing standards
Our cutting-edge testing equipment strictly adheres to a comprehensive array of rigorous standards: National Standard/T2423.1-2008 Test A for Low Temperature; National Standard/T4243.2-2008 Test B for Partial High Temperature; National Standard/T2433.3-2006 Test Cab for Constant Humidity and Heat; and Chinese National Standard/T2423.4-2008 for Change, Damp Heat. Notably, it also complies with the China National Standard/T2423.34-2012 Test Z/AnnoDominique, thereby ensuring robust support for a vast array of temperature and humidity scenarios within its extensive performance capabilities.
Structure of the testing chamber
The formidable structure of the testing chamber features an outer shell fashioned from premium galvanized color steel plate, ensuring durability and superior protection against environmental factors.
Internally, the chambers boast SUS304 stainless steel plates with adaptable hanging hole strips for dynamic configurations. Each chamber is outfitted with a test track frame, insulated by a robust 10 cm layer of rigid polyurethane foam and glass wool. The inner and outer box doors are securely linked using high-quality electric wood chicken glass fiber board frames, providing exceptional low-temperature insulation. The silicone foam door sealing strip, designed with dual channels, showcases remarkable temperature resistance, ensuring optimal performance under varied conditions.
Experimental space air circulation:
Harnessing a sophisticated air supply system, the chamber is equipped with high and low-temperature resistant multi-blade aluminum wind turbines, driven by powerful motors. These turbines deftly circulate air through upper louvers and return it from the bottom, preserving a temperature uniformity of less than 2 ºC over an impressive range of -70~100 ºC, evaluated at an international standard of 10 points, ensuring precision in every test.
Controller operating system
The system is integrated with a leading-edge, low-power (8W) temperature and humidity control device, achieving remarkable precision with a temperature control accuracy of ±3 ºC, ensuring your tests are as reliable as they are accurate.
1. High resolution screen:
Immerse yourself in vivid detail with a 7-inch TET true-color LCD resistive touch screen, offering an impressive resolution of up to 800 * 480 for crystal-clear visibility, making interaction seamless and intuitive.
2. High program capacity:
Boasting a vast memory, it can store an impressive 1000 programs with 1000 segments, supports 999 total loops and 999 partial loops, offers 10 program linking capabilities, and provides real-time temperature curve displays for effortless queries and analysis, ensuring you have all the data you need at your fingertips.
3. High data storage capacity:
Seamlessly transfer historical data spanning up to 300 days by uploading directly via hard disk or network cable to your computer, or effortlessly load it into the controller for continuous access, keeping essential information readily available.
4. Seamless Connectivity:
Effortlessly maintain control with our advanced controller, equipped with state-of-the-art LAN standard Ethernet communication. Seamlessly manage up to 16 devices through a singular, intuitive software platform. The outflow interface ensures smooth integration into local networks, enabling remote program management, real-time monitoring, and easy access to historical data, all with extreme convenience and efficiency.
Heating and Moisture Control System
Experience a transformative leap in heating efficiency with our groundbreaking bare wire nickel-chromium alloy electric heating tubes. These tubes are meticulously engineered for low thermal inertia and minimal heating overshoot, ensuring remarkable precision in temperature fluctuations. Supported by cutting-edge power controls, this system delivers optimal heating performance tailored to your testing needs.
1. Advanced Humidification System:
Revolutionize your testing experience with our state-of-the-art humidification technology. Our innovative humidification cylinder, utilizing the trusted boiler method, guarantees superior moisture uniformity. For rapid and precise control, our advanced water plate surface humidification offers unparalleled speed and accuracy, effortlessly removing impurities like scale. Tailored for dyeing applications, it excels in low humidity conditions and ensures easy maintenance. Fashioned from seamless stainless steel, our humidification tube boasts outstanding insulation resistance exceeding 50M Ω, paired with a robust anti-dry burning controller for enhanced safety.
2. Water Efficiency and Energy Conservation Maximized:
Discover the unparalleled convenience of our front-mounted 25L capacity water tank, ingeniously designed with an innovative quick-connect system for efficient water and power management. Experience effortless disassembly and cleaning to maintain precision. Achieve unmatched dehumidification control across three distinct humidity zones, meeting rigorous national standards for high temperature and humidity scenarios at 85 º C and 85% RH. Our advanced sealed design, which disables point cooling and dehumidification systems, significantly reduces water consumption, promoting sustainable operation with superior efficiency.
Invest in equipment masterfully engineered for the toughest testing environments, promising unmatched reliability and superior performance.
1. Choose the Circulating Air Mode: Select Courtyard Air Supply or Variable Speed Motor
For products demanding specific wind conditions, this customizable solution offers precision and adaptability, guaranteeing unparalleled performance tailored to your needs.
2. Optimal Water Supply System: RO Reverse Osmosis
When precision humidification is essential, our equipment ensures a continuous supply of pure water via an automated production process, offering maximum convenience and time efficiency for all your testing needs.
3. Advanced Polymer Film/Rotor Dehumidification System
For rigorous long-term testing in low-temperature and low-humidity environments, our sophisticated cellular chemical dehumidification system is your definitive solution. It accommodates a wide humidity range down to 10 º C/10% RH or lower, meeting the most stringent requirements with unparalleled excellence.
4. LN.Two/ .LCO.2
We offer premier professional products with a comprehensive range of specifications, sourced directly from esteemed manufacturers in Europe and the United States, ensuring the highest quality and performance. LN.Two/ .LCO.2
Leverage our solenoid valves and cutting-edge control systems to meet your urgent testing demands with rapid thermal acceleration and precise temperature reduction, ensuring optimal performance under any conditions.
5. State-of-the-Art Ultrasonic Cooling and Humidification System
For dynamic testing of substantial heat loads in high temperature and humidity conditions, our revolutionary ultrasonic cooling and humidification system is meticulously engineered to conquer these challenges. Utilize it as an auxiliary component to achieve peak performance, ensuring excellence in every test.
6. Integrate a Glass Inner Door for Manual Operation Access
To significantly reduce environmental impact during frequent testing or object movement, integrate manual operations through a glass inner door (∧ 125Mm * Ea.). This innovative design dramatically reduces disruptions from frequent door openings, enhancing the integrity of your testing environment.
7. Real-Time Test Data Collection and Recording
In environments where precision and reliability are of utmost importance, our tape recorder remains the undisputed leader. Designed for the simultaneous capture of multiple temperature readings, it is meticulously engineered to meet and surpass the most rigorous specification standards. This ensures that your operations are always conducted by professionals who demand the best in excellence.
8. State-of-the-Art Computer Connectivity and Operation Recording Software
Tailored specifically for Mattel's suite of environmental measuring machines, our revolutionary connection software provides users with enhanced features. Enjoy seamless multi-machine monitoring, swift data extraction from operational units, and advanced electronic attributes that simplify user interaction to unprecedented levels.
Innovative Cutting-Edge Structural Technology
1. Premier Hardware Equipment of Our Company:
Explore our elite range of machinery imported from Germany and Taiwan, showcasing the AMADA AIRS.-255NT Punching system. From carbon oxide to argon welding machines, each model exemplifies superior precision and groundbreaking innovation. Master a variety of Autodesk Inventor 3D drawing software applications designed for sheet metal design, virtual assembly, and disassembly-truly redefining the benchmark of modern manufacturing excellence.
2. Constructed from premium galvanized steel, the shell offers exceptional durability, further accentuated by a sophisticated electrostatic powder spray baking paint finish. This enhances both its protective qualities and its elegant visual appeal.
Three.. Expertly crafted with imported SUS #304 stainless steel, the inner box employs a complete argon arc welding process to avert high-temperature and high-humidity air leakage. Its rounded corners facilitate efficient condensate drainage, thereby enhancing overall performance.
Revolutionary System of Refrigeration Technology
Our 3D-optimized refrigeration system management, utilizing cutting-edge frequency conversion control technology, provides precise and flexible thermal regulation. This ensures exceptional adaptability and unparalleled performance.
Within our advanced variable frequency refrigeration system, even with a steady power supply frequency of 50HZ, the frequency converter dynamically calibrates the compression speed. It adapts cooling output to the real-time load of the test chamber, adjusting the compressor frequency as chamber temperatures fluctuate, thereby enhancing energy efficiency and ensuring rapid cooling for superior results.
Experience unparalleled stability with our test chamber's variable frequency refrigeration system, which maintains a consistent temperature environment with minimal deviations. This sophisticated system ensures balanced suction and exhaust pressures, optimizing operational consistency for top-tier performance.
Reap the benefits of our energy-efficient refrigeration system technology, paired with state-of-the-art energy-saving innovations. Designed to maximize performance while minimizing resource consumption, this technology sets new standards in efficiency.
1. Leverage the power of PID and PWM-driven VRF technology, making use of electronic expansion valves for optimal thermal flow control. Achieve energy efficiency even in low-temperature conditions with PID + PWM systems that enhance refrigerant flow regulation, ensuring effective operation without the need for auxiliary heating.
With precise three-way flow adjustments of refrigeration, the cold side, and heating side pipelines, automatic temperature maintenance is achieved. This method excels in optimizing performance under low-temperature conditions, reducing energy consumption by 30% and significantly improving overall efficiency.
Our technology, harnessing the Danish Dan-foss Company's ETS System electronic expansion valve, allows for dynamic adjustments in refrigeration capacity. It adapts to varying cooling rates, optimizing compressor efficiency for superior cooling performance.
2. Utilizing a dual compressor group design technology, automatic start-stop functionality is matched to load conditions to optimize efficiency. This is made possible through our innovative and advanced series design.
The refrigeration unit incorporates a binary compound of semi-closed compressors and a fully dense single-stage system. It adapts intelligently to load requirements, ensuring optimal cooling capacity and prolonging compressor lifespan.
Innovative Advanced Cold Circuit Technology
The power distribution layout is meticulously executed according to blueprints provided by our technical department, incorporating globally recognized electrical component brands to ensure unmatched reliability.
At Guangdong MENTEK Testing Equipment Co., Ltd, we proudly integrate distinguished brands like Omron, Sch-neider, and Germany Phoenix Terminal block into our designs. Each line code is clearly marked for ease of use and reliability. We exclusively choose the most reputable Chinese brands to guarantee superior performance and durability.
Experience the excellence of Pearl River Cable, our esteemed and trusted brand that guarantees unparalleled wire quality and exceptional performance. Our meticulously crafted control lines utilize a superior selection of 0.75 Square RV soft copper wire, renowned for its robust conductivity and efficient performance. Key load components, such as motor compressors, are engineered to meet the rigorous EC standards. The carefully considered trap diameters ensure adherence to the cable groove wiring safety current standards. Moreover, the machine's cable port is expertly sealed to prevent frost-induced short circuits, safeguarding the terminal within the junction box from potential harm.
Every terminal fixing screw is meticulously connected using a standard fixed torque, providing secure and rapid connections while significantly reducing risks, such as loose fires. This detailed precision and dedication to quality markedly enhance safety and reliability.
Refrigeration Series Process: A Holistic and Thorough Approach
1. Standardization: Paving the Path to Superior Excellence
1.1 Our outstanding steel pipe piping process, complemented by rigorous welding standards, demonstrates our unwavering dedication to delivering excellence and unbeatable reliability.
By meticulously adhering to standard pipe layouts, we guarantee the unwavering stability and dependable reliability of our model systems.
1.2 Utilizing state-of-the-art Italian imported pipe bending machinery, we achieve flawless steel pipe bends. This advanced process significantly reduces the need for weld points and minimizes the generation of oxides within the tubes during welding, thereby enhancing overall system reliability.
Prioritizing System Reliability Above All Else
Innovative Shockproof Design and Durable Pipeline Support
2.1 At Meitec, we implement stringent standards for the support and shock prevention of refrigeration copper pipes. By thoroughly assessing potential seismic scenarios, we incorporate arc bends and specialized nylon fixed clamping to prevent deformation and leakage caused by cyclic vibration and temperature variations, thus enhancing overall system reliability.
Boosting Reliability Across the Entire Refrigeration System
2.2 Cutting-Edge Oxidation-Free Welding Process
The cleanliness of a refrigeration system's pipeline is crucial to its optimal efficiency and longevity. Metco employs a standardized charging welding procedure to prevent excessive oxide contamination during the welding process, ensuring the system operates at its peak performance.
Through our meticulous practices, Metco significantly boosts the refrigeration system's efficiency and extends its operational lifespan by minimizing oxide contamination during welding, thereby maximizing reliability and performance.
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