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Product Details:
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| Place of Origin: | Suzhou, China |
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| Brand Name: | GoGo |
| Certification: | ISO 9001:2015 / ISO 14001:2015 / ISO 45001:2018 |
| Model Number: | CH600-C |
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Payment & Shipping Terms:
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| 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 |
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| Name: | Heating Cooling Stage | Cooling/Heating Method: | Liquid Nitrogen Cooling,Resistance Heating |
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| Temperature Range: | -120℃~600℃ | Temperature Stability: | ±0.1℃ |
| Heating/Cooling Rate: | Maximum Heating Rate:150℃/min,Maximum Cooling Rate:40℃/min | Sample Holder: | Silver ;23mm*23mm |
| Optical Path: | Transmission(φ2mm Optical Access Hole) | Top Window Size: | φ25mm*1mm |
| Bottom Window Size: | φ10mm*0.5mm | 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: | 6.7mm |
| Chamber Height: | 5.7mm | Capillary Tube: | Customization |
| Chamber: | Atmosphere | Dimensions/Net Weight: | 90mm*95mm*25mm/0.5kg |
| 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 |
| Highlight: | High Precision Heating Cooling Stage,Versatile Temperature Controlled Stage,Temperature Controlled Stage Customized |
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Product Description
High-Precision Heating Cooling Stage with -120°C to 600°C Range, ±0.1°C Stability, and 150°C/min Heating Rate for Thermal Analysis
Product Title: GoGo CH600-C High-Precision Heating Cooling Microscope Stage with Capillary Flow Option (-120°C to 600°C)
Product Introduction
The GoGo CH600-C is a highly versatile and precise Heating Cooling Microscope Stage engineered for advanced thermal analysis across a broad temperature range of -120°C to 600°C. Renowned for its application in global synchrotron facilities, this stage is specifically designed for X-ray diffraction and spectroscopic studies, while also serving as an exceptional platform for general microscope observation. Its defining feature is the capability to integrate a customizable capillary tube that passes directly through the heating block, enabling real-time analysis of liquid samples, solutions, and flowing materials under controlled thermal conditions.
Key Advantages & Why Choose Our System
Unmatched Thermal Performance: Achieve rapid heating up to 150°C/min and controlled liquid nitrogen cooling with exceptional stability of ±0.1°C, ensuring precise and reproducible data for the most demanding experiments.
Specialized Capillary Sample Design: The unique configuration for capillary tubes allows for the analysis of liquid-phase reactions, protein crystallography, and dynamic processes in flow, setting this Heating Cooling Stage apart for chemical and biological research.
Proven in Major Research Facilities: Built on proven temperature control technology trusted in synchrotron X-ray applications worldwide, this stage offers reliability and performance validated by leading scientists.
Flexible Integration & Clear Observation: Designed for low-space horizontal or vertical mounting in spectrometers. Equipped with high-transmission JGS2 windows and a gas purge defrosting system to ensure optical clarity throughout the entire temperature range.
Complete Intelligent Control Suite: The system is fully operated via the powerful TNEX software, providing comprehensive computer control for automated temperature profiling, data logging, and synchronized experiment management.
Technical Specifications
| Parameter | Specification |
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| Model | CH600-C |
| Brand / Origin | GoGo / Suzhou, China |
| Temperature Range | -120°C to 600°C |
| Temperature Stability | ±0.1°C |
| Max Rates | Heat: 150°C/min; Cool: 40°C/min |
| Sample Holder | Silver, 23mm x 23mm |
| Special Feature | Customizable Capillary Tube Integration |
| Optical Path | Transmission (φ2mm access hole) |
| Defrosting System | Gas Purge Attachment |
| Core Software | TNEX Platform |
Target Markets & Clients
This professional Heating Cooling Microscope Stage is a critical tool for researchers in expanding markets such as Southeast Asia, the Middle East, Russia, and Africa. It is ideally suited for university departments, national research institutes, and industrial R&D centers focused on materials science, chemistry, pharmaceuticals, and structural biology.
Frequently Asked Questions (FAQ)
What is the main application of the capillary tube feature in this Heating Cooling Stage?
It enables the study of liquids, solutions, and flowing gases within a capillary under precise temperature control. This is essential for in-situ analysis of chemical reactions, protein dynamics, and crystallization processes using X-ray or optical methods.
How does the stage prevent window fogging during low-temperature operation?
The stage includes a dedicated gas purge (air or dry nitrogen) accessory. This airflow effectively prevents condensation and frost buildup on the observation windows, ensuring clear data acquisition at all times.
Is this stage suitable for synchrotron or X-ray applications?
Absolutely. The CH600-C is based on technology widely adopted in synchrotron facilities globally. Its compact design, high stability, and transmission optical path make it an ideal Heating Cooling Stage for X-ray diffraction and scattering experiments.
What is included in the standard package?
The system is supplied as a complete solution, including the main stage, temperature and refrigeration controllers, a liquid nitrogen tank, a recirculating chiller, TNEX software, and all necessary cables and tubing.
Can the capillary tube be customized?
Yes, the capillary tube specification (material, diameter) can be customized to meet specific experimental requirements for sample volume, flow rate, and compatibility.
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