HITACHI launches the NEXTA DSC series, which improves baseline stability through a redesigned furnace body and can switch between different cooling systems when needed. Modular * * design with added protection mechanism, set at * * temperature to start the furnace body and avoid work safety accidents.
Phase change (DSC)
Phase transition point
Glass Transition Temperature (Tg)
Melting point (Tm)
Reaction heat, melting heat (DH)
Crystal Temperature
Cooling crystallization temperature
Crystallinity
reaction kinetics
Specific Heat
Real View System
The HITACHI Real View imaging observation system can be installed on four thermal analysis devices: HITACHI DSC, STA, DMA, and NEXTA STA. By combining the tested signals, temperature, and real-time images, real-time appearance changes of samples such as Tg, melting, cracking, discoloration, etc. can be observed through images or patterns.
Simultaneously updated the application scope of Real View System
NEXTA analysis software has added a new image analysis method:
- Sample observation and recording
- digital zoom
- length measurement
- Image editing
- Color analysis (RGB, YMCK analysis)
Real View System
The HITACHI Real View imaging observation system can be installed on four thermal analysis devices: HITACHI DSC, STA, DMA, and NEXTA STA. By combining the tested signals, temperature, and real-time images, real-time appearance changes of samples such as Tg, melting, cracking, discoloration, etc. can be observed through images or patterns.
Simultaneously updated the application scope of Real View System
NEXTA analysis software has added a new image analysis method:
- Sample observation and recording
- digital zoom
- length measurement
- Image editing
- Color analysis (RGB, YMCK analysis)
Paired with UV System to Test Light Sensing Properties of Materials
Using different filters to quickly switch between different frequency bands to find suitable irradiation wavelengths and intensity control for materials, combined with stable temperature control by DSC to find suitable processing and manufacturing conditions for photosensitive materials.