It provides a precise temperature environment for optical microscope observation or material heat treatment, adapts to different sample forms and experimental needs, and covers three scenarios: "polarized light observation", "ultra-thin sample compatibility", and "industrial heat treatment simulation".

Multi-window optical design and wide-temperature-range precision temperature control

Universal temperature control technology + unified optical adaptability + consistent sample positioning system

The core temperature control methods are unified, the basic optical adaptations are consistent, and the temperature control accuracy is stable.

Good optical adaptability + flexible chamber design + diverse temperature control methods

Precise temperature control technology + wide temperature range coverage + optical path and window design

Equipment that uses infrared radiation for heating

High temperature resistance stability + High-precision testing + Flexible compatibility

Wide temperature range adjustment, precise temperature control, probe integrated measurement

External / internal displacement mechanism, with high-precision adjustability + high stability + wide temperature range coverage

Quick response feature + strong optical compatibility + easy operability

Study on Material Properties under Temperature-Mechanical Coupling Environment

Precision testing equipment dedicated to research on the synergistic evolution of material mechanics - microstructure

An important equipment for the study of the micromechanical properties of materials

Ultra-high temperature resistance + long-term stable operation

Equipment used with X-ray diffractometers (XRD)

A variable temperature sample stage installed in the sample chamber of a scanning electron microscope (SEM)

Battery temperature change experimental equipment

Equipment designed specifically for high-temperature processing of semiconductors