Tube Furnace( 1200°C)
1200°C Tube Furnace (Programmable) is Mainly Provides High Temperature Heat Treatment Environment for Industrial, Research Institutes, Factories And Other Industrial Laboratories, And Is Applied To New Materials Such As Metal Materials, Ceramic Materials, Nano Materials, And Semiconductor Materials. Read More
1200 Degree Two Zone Tube Furnaces
1200°C Two Zone Tube Furnaces (Programmable) is Mainly Provides High Temperature Heat Treatment Environment for Industrial, Research Institutes, Factories and Other Industrial Laboratories, And Is Applied to New Materials Such As Metal Materials, Ceramic Materials, Nano Materials, And Semiconductor Materials. Read More
1400 Degree Single-Zone Tube Furnace
Application:- 1400°C Single-Zone Tube Furnace mainly provides high temperature heat treatment environment for industrial, research institutes, factories and other industrial laboratories, and is applied to new materials such as metal materials, ceramic materials, Nano materials, and semiconductor materials. Read More
1400 Degree Two-Zone Tube Furnace
Application:- 1400°C Two-Zone Tube Furnace mainly provides high temperature heat treatment environment for industrial, research institutes, factories and other industrial laboratories, and is applied to new materials such as metal materials, ceramic materials, Nano materials, and semiconductor materials. Read More
1400°C Three-Zone Tube
1400°C Three-Zone Tube Furnace mainly provides high temperature heat treatment environment for industrial, research institutes, factories and other industrial laboratories, and is applied to new materials such as metal materials, ceramic materials, Nano materials, and semiconductor materials Read More
Tube Furnace
Application:- 1200°C Tube Furnace (Programmable) is Mainly Provides High Temperature Heat Treatment Environment for Industrial, Research Institutes, Factories And Other Industrial Laboratories, And Is Applied To New Materials Such As Metal Materials, Ceramic Materials, Nano Materials, And Semiconductor Materials. Read More