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Three Comprehensive Environmental Testing Chamber Vibration Temperature Humidity Three-Combination Vibration Tester

Three Comprehensive Environmental Testing Chamber Vibration Temperature Humidity Three-Combination Vibration Tester

This vibration-temperature-humidity test chamber combines multi-axis vibration (5–3000 Hz, up to 100g), extreme temperatures (-70°C to +150°C), and humidity (10%–98% RH) to simulate harsh conditions. Ideal for aerospace, automotive, and electronics, it ensures product reliability with programmable cycles and compliance with ISTA, MIL-STD-810, and IEC 60068 standards.

Three Comprehensive Environmental Testing Chamber Vibration Temperature Humidity Three-Combination Vibration Tester
Three Comprehensive Environmental Testing Chamber Vibration Temperature Humidity Three-Combination Vibration Tester
Three Comprehensive Environmental Testing Chamber Vibration Temperature Humidity Three-Combination Vibration Tester
Three Comprehensive Environmental Testing Chamber Vibration Temperature Humidity Three-Combination Vibration Tester
Three Comprehensive Environmental Testing Chamber Vibration Temperature Humidity Three-Combination Vibration Tester
Three Comprehensive Environmental Testing Chamber Vibration Temperature Humidity Three-Combination Vibration Tester
Three Comprehensive Environmental Testing Chamber Vibration Temperature Humidity Three-Combination Vibration Tester
Three Comprehensive Environmental Testing Chamber Vibration Temperature Humidity Three-Combination Vibration Tester
Three Comprehensive Environmental Testing Chamber Vibration Temperature Humidity Three-Combination Vibration Tester
Three Comprehensive Environmental Testing Chamber Vibration Temperature Humidity Three-Combination Vibration Tester
Three Comprehensive Environmental Testing Chamber Vibration Temperature Humidity Three-Combination Vibration Tester
Three Comprehensive Environmental Testing Chamber Vibration Temperature Humidity Three-Combination Vibration Tester
Description
Product Description

Product Features
1. Equipped with a lifting platform and an electric sliding rail, the equipment can be moved up, down, left and right to cooperate with the vibration table test.
2. Equipped with three movable bottom plates, which are easy to replace to meet the requirements of different test conditions. The heating and cooling rate can be customized as required.





Main Parameters

Model MVTH-500 MVTH-1000 MVTH-500 MVTH-1000 MVTH-500 MVTH-1000
Volumn (L) 500 1000 500 1000 500 1000
Temperature range -40+150/-70+150ºC
Humidity range 20%+98%RH
Temperature fluctuation ±0.5ºC
Temperature deviation ±2.0ºC
Humidity deviation ±3.0%RH(>75%RH)±5%RH(≥75%RH)
Temperature range -55ºC+85ºC
Speed speed 5ºC/min 10ºC/min 15ºC/min
  load 500 model: 15kg aluminum ingot 100 model: 30kg aluminum ingot
Inner size (cm) width 80 100 80 100 80 100
height 80 100 80 100 80 100
depth 78 100 78 100 78 100
Outer size (cm) width 180 200 180 200 180 200
height 190 210 190 210 190 210
depth 135 155 135 155 135 155
Temperature and humidity regulation method BTHC
Environmental temperature for use +5ºC+35ºC
Material 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
Modifier Heater Nickel chromium alloy electric wire heater
Humidifier Stainless steel armored heater
Fan centrifugal fan
Compressor Fully enclosed compressors imported from France or semi enclosed compressors imported from Germany
Refrigerant R404A/R23
Cooling method Mechanical compression cascade refrigeration (air-cooled/water-cooled)
Controller Original Japanese imported TFT touch screen
Operation mode Fixed value method, program method
  Program capacity 120 sets of programs*1000 segments (can be divided and looped 1000 times), the required number of segments for each set of programs can be arbitrarily divided, and each set of programs can be freely connected to each other (up to 200 connections)
  Setting range Temperature: Adjust according to the working range of the device's temperature (upper limit+5ºC, offline -5ºC) Humidity: 25% -100%RH (the device is designed for humidity)
  Input Thermocouple
  Communication (Optional) RS-485 interface, with local and remote communication functions (requires centralized monitoring software, RS-485/RS-232 converter, and occupies one COM port and one USB port of the PC); Up to 16 devices can be connected simultaneously, with a maximum cumulative cable length of 800mOC. Software usage environment: IBM PC compatible machine, CPU with P∥or above, 128MB or above memory, Simplified Chinese WINDOWSXP operating system
  Contro method Anti integral saturation PID
 
Data acquisition
1. Screen interface curve output - directly save the curve interface on the touch screen or any interface requested by the customer as a*BMP image and save it to a USB flash drive, or directly print the curve interface on the touch screen or any interface requested by the customer (requiring interface software modification) with a printer;
2. USB function - equipped with 1 IGU drive. Insert the USB flash drive into the USB interface of the controller during the experiment. The experimental data will be automatically recorded on a USB drive and saved as*CSV data files (not curve graphs), and the sampling period can be set on the screen. Open and process using software such as EXCEL;
3. Printer connection (optional): - Configure the printer to print the test date, set temperature, set humidity, and measured temperature by setting the printing frequency according to time.
4. Connected to PC (optional): - Through centralized monitoring software, test data can be recorded and automatically displayed as curves on the PC, which can be directly printed and recorded for unlimited time. The file size depends on the hard drive capacity. PC can also serve as a terminal for remote monitoring.
  Auxiliary functions Fault alarm and cause, processing prompt function: power-off protection function: upper and lower limit protection function: timed function (automatic start and automatic stop operation)
  Water supply method Pump lifting
  Water storage tank 25L
  water quality Resistivity>500Ω
  Power AC380(1±10%)V(50±500%)Hz Three-phase four-wire
  Maximum current 16 19 31 40 58 44 67 108
  Power(kW) 10 20 20 26 38 29 44 71
  Weight(kg) 485 795 585 720 895 640 770 950
  Standard configuration 1 electric heating film glass observation window, 2 cable holes (50), 2 sets of sample racks, 1 lighting lamp (fluorescent lamp), 4 casters, and 1 sample power control terminal
  Security configuration Leakage circuit breaker, fan overheating protection, compressor overpressure, overheating, phase sequence protection, overtemperature protection, temperature fuse, dry burn protection, etc

Note: Support customization


Structural Process
1. Company's Hardware Equipment:
1 imported German laser machine; 1 Amada AIRS - 255NT punching machine from Japan; more than 10 German carbon dioxide welding machines and argon arc welding machines. We use Autodesk Inventor 3D drawing software for 3D sheet metal disassembly drawing and virtual assembly design.

2. The outer shell is made of high - quality galvanized steel plates and finished with electrostatic powder spraying and baking paint.

3. The inner chamber is made of imported SUS#304 stainless steel and adopts the argon arc full - penetration welding process to prevent the leakage and penetration of high - temperature and high - humidity air inside the chamber. The rounded - corner design of the inner chamber liner can better drain the condensate water on the side walls. 
Advanced M Series 3c Vibration Testing System for Electronics Test Device
Advanced M Series 3c Vibration Testing System for Electronics Test Device
Refrigeration System Technology
1. 3D Refrigeration System Management Drawing.

2. Frequency Conversion Control Technology of the Refrigeration System: In the frequency conversion refrigeration system, even if the power supply frequency of 50Hz is fixed, the frequency can be changed through the frequency converter, thereby adjusting the rotational speed of the compressor, and making the cooling capacity change continuously. This ensures that the operating load of the compressor matches the actual load inside the test chamber (that is, when the temperature inside the test body rises, the frequency of the compressor increases to enhance the cooling capacity; conversely, when the temperature drops, the frequency of the compressor decreases to reduce the cooling capacity). This greatly saves unnecessary losses during operation and achieves the goal of energy conservation. At the beginning of the operation of the test chamber, the frequency of the compressor can also be increased to enhance the capacity of the refrigeration system and achieve the purpose of rapid cooling. The test chamber adopts a frequency conversion refrigeration system, which can accurately control the temperature inside the chamber, keep the temperature inside the chamber constant with small temperature fluctuations. At the same time, it can also ensure the stable suction and discharge pressures of the refrigeration system, making the operation of the compressor more stable and reliable. Electronic Expansion Flow Servo.
Refrigeration system technology and other energy-saving technologies
1. VRF technology based on the principle of PID + PWM (the electronic expansion valve controls the refrigerant flow according to the thermal energy working conditions) is adopted. The VRF technology based on the principle of PID + PWM (refrigerant flow control) enables energy-saving operation at low temperatures (the electronic expansion valve controls the refrigerant flow servo according to the thermal energy working conditions). In the low-temperature working state, the heater does not participate in the operation. By adjusting the refrigerant flow and direction through PID + PWM, and regulating the three-way flow of the refrigeration pipeline, the cold bypass pipeline, and the hot bypass pipeline, the temperature of the working chamber can be automatically kept constant. In this way, under low-temperature working conditions, the temperature of the working chamber can be automatically stabilized, and the energy consumption can be reduced by 30%. This technology is based on the ETS system electronic expansion valve of the Danish company Dan-foss and can be applied to adjust the refrigeration capacity according to different requirements for refrigeration capacity. That is, it can realize the adjustment of the refrigeration capacity of the compressor when different cooling rate requirements are met.

2. The technology of grouped design of two sets of compressors (large and small) can automatically start and stop according to the load working conditions (large series design). The refrigeration unit is configured with a binary cascade refrigeration system composed of a set of semi-hermetic compressors and a set of fully hermetic single-stage refrigeration systems. The purpose of the configuration is to intelligently start different compressor units according to the load working conditions inside the chamber and the requirements for the cooling rate, so as to achieve the best matching between the refrigeration capacity working conditions inside the chamber and the output power of the compressor. In this way, the compressor can operate in the best working condition range, which can extend the service life of the compressor. More importantly, compared with the traditional design of a single large set, the energy-saving effect is very obvious, and it can reach more than 30% (cooperating with the VRF technology during short-time constant temperature control).
Advanced M Series 3c Vibration Testing System for Electronics Test Device
Advanced M Series 3c Vibration Testing System for Electronics Test Device
Refrigeration circuit technology

The electrical components shall be installed according to the power distribution assembly drawings issued by the Technology Department during the power distribution layout operation.

Internationally renowned brands shall be selected: Omron, Sch-neider, and German Phoenix terminal blocks.

The wire codes shall be clearly marked. A time-honored domestic brand (Pearl River Cable) shall be selected to ensure the quality of the wires. For the control circuit, the minimum size of the selected wire is 0.75 square millimeter RV soft copper wire. For all main loads such as the motor compressor, the wire diameter shall be selected in accordance with the safety current standard for wiring in the EC wire trough.
The cable openings of the compressor terminal box shall be treated with sealant to prevent the terminals in the terminal box from short-circuiting due to frosting.

All the fixing screws of the terminals shall be tightened with the standard fixing torque to ensure reliable fastening and prevent potential hazards such as loosening and arcing.
Refrigeration series process
1. Standardization

1.1 Standardization of the piping process and welding of high-quality steel pipes; The piping layout shall be carried out in accordance with the standards to ensure the stable and reliable operation of the machine model system.

1.2 The steel pipes are bent in one piece by an imported Italian pipe bender, which greatly reduces the number of welding points and the internal pipe oxides generated during welding, and improves the reliability of the system!
Advanced M Series 3c Vibration Testing System for Electronics Test Device
Advanced M Series 3c Vibration Testing System for Electronics Test Device
2. Pipe Shock Absorption and Support

2.1 MENTEK has strict requirements for the shock absorption and support of the refrigeration copper pipes. Taking full account of the shock absorption situation of the pipes, circular arc bends are added to the refrigeration pipes, and special nylon fixing clamps are used for installation. This avoids the pipe deformation and leakage caused by circular vibration and temperature changes, and improves the reliability of the entire refrigeration system.

2.2 Oxidation-free Welding Process As is well known, the cleanliness inside the pipes of the refrigeration system is directly related to the efficiency and service life of the refrigeration system. MENTEK adopts standardized gas-filled welding operation to avoid a large amount of oxide contamination generated inside the pipes during welding.


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Advanced M Series 3c Vibration Testing System for Electronics Test Device
Advanced M Series 3c Vibration Testing System for Electronics Test Device
Advanced M Series 3c Vibration Testing System for Electronics Test Device
Advanced M Series 3c Vibration Testing System for Electronics Test Device
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