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Environmental High And Low Temperature Test Chamber With Touch Screen Controller
Three Zone Thermal Shock Test Chamber....
Product Introduction
Thermal Shock Chamber is used to test the material structure or composite material, in
an instant by the level very high temperatures and very low
temperature environment can tolerate continuous, in order to test
in the shortest time chemical changes or physical damage due to its
thermal expansion and contraction caused by confirm the quality of
the product. suitable objects include electrical and electronic
components, automation components, communications components, auto
parts, metals, chemicals, plastics and other industries and defense
industry, aerospace, military industry, BGA, PCB group pull,
electronic chip IC the semiconductor ceramic material and physical
sacrifice of the polymer changes.
Product Usage
Thermal Shock Chamber to test or composite material structure, in an instant by extremely
high temperature and low temperature under continuous environment
can endure degree, in order to in the shortest possible time to
test its heat bilges cold shrink caused by chemical or physical
damage.Used in electrical and electronic components, automation,
communication components, auto parts, metal parts, chemical
materials, plastic and other industries, the defense industry,
aerospace, industrial, BGA, PCB base, electronic chip IC,
semiconductor ceramics and physical shape change of polymer
material, to test the material to pull over and over again and the
product in high/low temperature heat bilges cold shrink output of
chemical or physical damage, can confirm the quality of products,
from precision IC to heavy mechanical components, there is no ideal
testing tools do not need it.
Product Feature
1,Product contour artistic, structure reasonable, the craft is
advanced, well-selected materials, has simple and convenient
operation and reliable equipment performance.
2,Equipment is divided into high temperature box, low temperature
box, test box of three parts, adopt unique thermal structures and
heat storage effect, perfectly still, the object under test in
testing the application of hot and cold switching road will be cold
wind, hot hot and cold impact test temperature import test area.
3,Adopting the most advanced measuring device, large color LCD
controller USES a human-machine touch dialog type LCD human-machine
interface controller, simple operation, learn easy, stable and
reliable, the English display the complete system operation
conditions, implement and setting process curve.
4,With 96 test specification independent setting, impact time 999
hours 59 minutes, cycle 1 ~ 999 times can be set, which can realize
automatic machine operation, the largest degree of automation,
reduce workload, operating personnel can run automatically start,
stop work at any time;
5,Box on the left side of the test hole with a diameter of 50 mm,
for plus the power load wiring test components.
6,Can independently set high temperature, low temperature, and the
function of cold and hot shock in three different conditions, and
perform in cold and hot shock condition, can choose two slot or
three slot and cold shock, thermal shock impact function, has the
function of the high and low temperature testing machine.
7,Have fully automatic, high precision system circuit, action, any
part is entirely P.L.C lock handle, all adopt the P.I.D automatic
routing control, temperature control precision is high.
8,Advanced science and air circulation loop design, make indoor
temperature uniformity, avoid any corner;Complete security
protection device, to avoid any possible security hidden danger,
ensure long-term reliability of the equipment
Operating Procedures
In general, high and low temperature impact test chamber operations
are divided into five choices: preprocessing, initial testing,
testing, recovery, and finally detected. HSBC Branch Hengtai below
to share with everyone what detailed process content:
1. Conditioning: The test sample is placed in the test under normal
atmospheric conditions until it reaches a stable temperature.
2. Initial test: the test sample and control standards, to meet the
requirements directly into the high and low temperature impact test
chamber can be.
3. Test:
1) Test samples should be placed in a standard test chamber, and
the chamber (room) temperature rise within a specified point, to
maintain a certain period of time to the test sample to a
temperature stable, long time to have prevail.
After 2) high-temperature phase, within 5min to convert the test
sample is adjusted to a low-temperature chamber (chamber of -55 ℃),
the holding 1h or until the test sample to reach temperature
stability, are subject to a long time.
After 3) low temperature phase, within 5min to convert the test
sample is adjusted to a temperature chamber (chamber of 70 ℃), the
holding 1h or until the test sample to reach temperature stability,
are subject to a long time.
4) the protocol described above was repeated to complete three
cycles. It may be slightly error according to sample size and the
size of the space and time.
4. Restore: Test samples taken from the test chamber shall be
restored under normal atmospheric conditions the test until the
test sample reaches temperature stabilization.
5. Last test: the extent of the damage control standards and other
methods of assessment of test results.
Model | HD-E703 |
Interal Dimension: | (W×H×D)50×40×40 cm |
Structure: | Two chambers design(the hot chamber or the cold chamber) |
Damper device: | Forced air drived damper |
Interior material: | SUS# Stainless steel plate |
Exterior material: | SUS# Stainless steel plate |
Basket material: | SUS# Stainless steel plate |
Refrigeration: | Cascade refrigeration system |
Cooling method: | Water |
Ambient temperature: | 0°~30° |
Preheating temperature: | 60.00°C~200.00°C |
Precooling temperature: | subzero 10.00°C~subzero 70.00°C |
H.T. Shocking: | above freezing 60.00°C~150.00°C |
L.T. Shocking: | subzero 10.00°C~subzero 65.00°C |
Temperature uniformity: | ±2.00°C |
Simulated load ic | 5.0kg |
HT IN-Zone | subzero 65.00°C~above freezing 150.00°C/5min |
LT IN-Zone | above freezing 150.00°C -subzero 65.00°C |
Preheating time: | 30MIN |
Precooling time: | 60MIN |
Senor: | T×4 |
Controller: | OYO8226 |
Setting range: | Temperature:subzero 100.00°C~above freezing 200.00°C/TIME:OHIM~999H/CYCLE:0 ~9999 |
Resolution: | Temperature:0.1°C |
Output mode: | PID+SSR(control method) |
Power(K.W) | 20 |