Recently, a device equipped with a "microenvironment compensation algorithm"Guanghaotian Rapid Temperature Change Test ChamberFormally settled in the laboratory of the School of Materials Science and Engineering at a certain university, this equipment provides key support for research in the fields of new energy materials, electronic devices, etc. with high-precision temperature control and efficient testing capabilities, marking a new stage of school enterprise collaboration to support scientific research and innovation.
According to the laboratory manager, universities have long been limited by issues such as insufficient temperature control accuracy and long testing cycles of traditional equipment in the research of thermal stability and environmental material tolerance of new energy batteries. The Guanghao Tian test chamber introduced this time, with a wide temperature range coverage of -70 ℃ to+180 ℃, can accurately simulate polar, high-altitude and other environments. The temperature uniformity is stable within ± 1 ℃, and the fluctuation is controlled within ± 0.1 ℃, far exceeding the national standard requirements.
The core advantage of this device comes from Guanghaotian's independently developed "Microenvironment Compensation Algorithm", which collects 15 sets of data per second through a multidimensional sensor array and cancels out environmental interference in real time. Previously, the thermal expansion coefficient of the chip was tested, and after changing the sample, the equipment needed to be recalibrated. Now, the deviation of the test data for 72 consecutive hours is still less than 0.3%. Professor Li, who participated in the equipment debugging, said that the equipment has shortened the material aging testing cycle by 50% and has supported the acceleration of two provincial and ministerial level scientific research projects.



In addition to scientific research, this equipment has also become a "practical classroom" for talent cultivation. The laboratory has incorporated it into the practical system of the "Material Performance Testing" course. Students can conduct multi scenario experiments through the intelligent touch system, and the automatic data export function provides reliable support for their graduation thesis.












