Volume and size
2.1 Volume | About 996L |
2.2 Inner size | W 900 mm*H 800 mm*D 1400 mm |
2.3 Outer size | W2012mm*H1910 mm*D 2412 mm((Not including the protruding part))Tips: For external dimensions, please confirm the three views according to the final design! |
2.4 Floor area | About 4.85m2(Confirm after signing the contract) |
3. The main technical parameters
3.1 Test Conditions | Equipment cooling method: water-cooledMeasured at water temperature +25 ° C, Temperature measurement comply with related regulation of IEC60068-3 / GB/T2424.5 standard; Sensors placed in the air outlet. |
3.2 Shock Temp. range | Low temperature :-40℃~-10℃ ,high temperature:+60℃~+150℃ |
3.3 Temp deviation | ±2.0℃ |
3.4 Temp Uniformity | ±2.0℃ |
3.5 Temp fluctuation | ≤1℃(≤±0.5℃ ,according to GB/T5170-1996 |
3.6 Conversion time | ≤ 5 sec |
3.7 Recovery time | ≤ 5 min |
3.8 Temperature shock performance | High temperature exposure + 150 ℃ for 30 minutesExposure at normal temperature (ambient temperature ventilation method) 5minLow temperature exposure -40℃, 30 minutes |
3.9 Temperature impact temperature measurement point | Test area air outlet |
3.10 Max load | LED size : 1200*600*50mm,Weight:6kg*2=12kg ,heating :16W |
| Note: Measured at no-load water temperature + 25℃, temperature performance test is measured according to the relevant regulations of IEC60068-3-5 standard; the sensor is placed at the air outlet of the air processing unit |
3.11 High-temperature storage | + 60 ~ + 200℃ (upper limit of preheating is + 200℃)High-temperature storage heating time: from room temperature RT to + 200℃ for about 30 minutes) |
3.12 Low-temperature storage | 0 ~-60℃ (The lower limit of pre-cooling is -60℃)Low-temperature energy storage cooling time: from room temperature RT ~ -60℃ for about 60 minutesNote :The rise and fall times of high-temperature and low-temperature energy storage are the performance of each energy storage space, not the test area |
3.13 Noise | ≦75 (dB)(The noise detection device is measured 1m away from the door of the device) |
3.14 Meet the test standard | GB-2423.1-2008(IEC68-2-1) Test A: Low Temperature TestGB-2423.2-2008(IEC68-2-2) Test B: High Temperature Test GJB360.8-2009(MIL-STD.202F) High Temperature Life TestGJBl50.3-2009(MIL-STD-810D) High Temperature TestGJBl50.4-2009(MIL-STD-810D) Low Temperature TestGJBl50.5-2009 temperature Shock test method |
4. Chamber Structure
4.1 Structural features | Overall structure The test chamber was composed of three parts Individual samples test zone , High temperature zone , low temperature zone .Additional auxiliary refrigeration unit (rear side), electrical control cabinet (right side) |
4.2 Thermal insulation structure | Outer spray plastic anti-corrosion electrolysis plate - intermediate insulation layer is temperature resistant foam insulation material - inner chamber SUS304 stainless steel plate |
4.3 Outer chamber material | High-quality anti-corrosion electrolytic board, surface electrostatic powder baking paint, color is KOMEG standard color |
4.4 Inner chamber material | SUS304 stainless steel plate, thickness = 1.0 mm; the inner liner is fully welded. |
4.5 Insulation | Hard polyurethane foam insulation layer, thickness = 100mm, flame retardant grade B2 |
4.6 Door | Full size Single door , left open ,Labor-saving door handleThe door frame is equipped with two silicone rubber sealing strips and anti-condensation electric heating device to prevent external dew condensation; |
Customer size ,temperature range per customer requirements .