Dual Function Hot And Cold Stage Raman Spectroscopy Microscope Hot Stage CH600S-T

Product Details:
Place of Origin: Suzhou, China
Brand Name: GoGo
Certification: ISO 9001:2015 / ISO 14001:2015 / ISO 45001:2018
Model Number: CH600S-T/CH400SV-T
Payment & Shipping Terms:
Minimum Order Quantity: 1
Price: CNY 30000~600000/set
Packaging Details: Cardboard box + wooden box
Delivery Time: 30~60 work days
Payment Terms: T/T
Supply Ability: 1set/day
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Detail Information

Name: Hot And Cold Stage Cooling/Heating Method: Liquid Nitrogen Cooling,Resistance Heating
Temperature Range: -190℃~600℃/-190℃~400℃ Temperature Stability: ±0.1℃
Heating/Cooling Rate: Maximum Heating Rate:150℃/min,Maximum Cooling Rate:40℃/min Sample Holder: Silver ;23mm*23mm
Optical Path: Reflection / Transmission(φ2mm Optical Access Hole) Top Window Size: φ25mm*1mm
Bottom Window Size: φ10mm*0.5mm(Transmitted Light Option) Window Material: JGS2 Fused Silica Glass (Transmission Range: 220 Nm - 2500 Nm), Manually Removable And Replaceable.
Window Defrosting: Gas Purge Attachment,Air Blowing Defrosting At Low Temperatures Distance From Window Upper Surface To Sample Holder Upper Surface: 4.8mm
Chamber Height: 3.8mm Chamber: Atmosphere/Vacuum
Dimensions: 86mm*100mm*21.5mm Net Weight: 0.5kg/0.6kg
Basic Configuration: TNEX*1、Optical Heating And Cooling Stage*1、 Temperature Controller*1、Cooling Controller*1、Liquid Nitrogen Tank*1、Recirculating Chiller*1、Cables、Tubing、and Accessories Optional: Adapter Plate/Customized Liquid Nitrogen Tank/Customized Recirculating Chiller/Vacuum System/Computer Host/ Customed Temperature Control Software
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Dual Function Hot And Cold Stage

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Raman Spectroscopy Hot And Cold Stage

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Raman Spectroscopy Microscope Hot Stage

Product Description

Heating Cooling Microscope Stage with -190°C to 600°C range, ±0.1°C stability, and 150°C/min heating rate for precise thermal analysis

Product Name: GoGo CH600S-T/CH400SV-T Extreme-Temperature Heating & Cooling Microscope Stage

Product Introduction

The GoGo CH600S-T/CH400SV-T redefines in-situ analysis with an unparalleled temperature range from -190°C to 600°C/-190°C to 400°C. This versatile Heating Cooling Microscope Stage is engineered for applications demanding both extreme cold and high heat, such as phase transition studies, semiconductor testing, and polymer analysis. Its compact, orientation-flexible design allows for horizontal use with microscopes or vertical integration into Raman, FTIR, and synchrotron beamline systems. As a precision Heating Cooling Stage, it enables researchers to rapidly characterize samples with heating rates up to 150°C/min and precisely capture subtle thermal events with excellent stability of ±0.1°C.

Key Advantages & Why Choose Our System

  • Ultra-Wide Temperature Span: Conduct experiments across a remarkable 790°C span, from cryogenic to high-temperature regimes, in a single, integrated Heating Cooling Stage, eliminating the need for multiple devices.
  • Rapid & Intelligent Thermal Cycling: Achieve industry-leading heating (150°C/min) and controlled cooling (40°C/min via liquid nitrogen) rates. The intelligent control system minimizes overshoot and allows precise ramp-to-hold protocols for detailed observation.
  • Superior Optical & Environmental Flexibility: Equipped with multi-spectral JGS2 windows and a transmission optical path, the stage is ready for Raman, IR, and UV investigations. The optional vacuum/gas chamber and window defrosting accessory ensure clear observations in all conditions.
  • Complete Digital Control with TNEX: Our proprietary TNEX software provides total command, allowing you to program complex thermal profiles, synchronize data acquisition with video recording, and export all results for comprehensive analysis.
  • Certified Quality & Complete Package: Manufactured under ISO 9001, 14001, and 45001 standards. The system is supplied as a full turnkey solution including the stage, dual controllers, LN2 tank, chiller, and software.

Technical Specifications

Parameter Specification
Model CH600S-T (600°C) / CH400SV-T (400°C)
Brand / Origin GoGo / Suzhou, China
Temperature Range -190°C to 600°C / -190°C to 400°C
Stability ±0.1°C
Max Rates Heat: 150°C/min; Cool: 40°C/min
Sample Holder Silver, 23mm x 23mm
Optical Path Reflection & Transmission (φ2mm hole)
Windows Top: φ25mm; Bottom: φ10mm (optional)
Defrosting Gas Purge Attachment Included
Dimensions & Weight 86x100x21.5mm / 0.5kg-0.6kg
Core Software TNEX Platform

Target Markets & Clients

This advanced Heating Cooling Microscope Stage is essential for researchers in key global markets such as Southeast Asia, the Middle East, Russia, and Africa. It serves leading universities, national research laboratories, and high-tech companies in fields like condensed matter physics, chemistry, materials engineering, and geology.

Frequently Asked Questions (FAQ)

  1. What makes this a true dual-function Heating Cooling Microscope Stage? It integrates efficient liquid nitrogen cooling for fast, stable cryogenic temperatures with high-performance resistive heating, making it a uniquely versatile Heating Cooling Stage for full-range thermal analysis.
  2. How is window condensation/frost prevented at low temperatures? The stage includes a gas purge attachment for dry air or nitrogen flow, effectively defrosting the observation window to maintain optical clarity during sub-ambient experiments.
  3. Can I use this stage for transmission-mode spectroscopy? Absolutely. The stage offers a bottom optical window option, creating a transmission path ideal for various spectroscopic techniques alongside its primary reflection-mode microscopy function.
  4. What is included in the basic configuration for this Heating Cooling Stage? The package is comprehensive, containing the main stage, GTC & GRC controllers, a liquid nitrogen tank, a recirculating chiller, TNEX software, and all necessary cables and tubing for immediate operation.
  5. Is the system difficult to operate? No. The intuitive TNEX software centralizes all controls, providing a user-friendly interface for programming, automation, and data management, greatly simplifying complex experiment setups.

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