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Flash Joule Heating Device LMJHD-A100

Flash Joule Heating Device LMJHD-A100 heats materials from 1000 to 3000°C within 1 to10 seconds. It supports conductive, non-conductive materials and offers infrared temperature measurement. The automated system enables adjustable thermal profiles to test material stability and performance. The vacuum system and water cooling ensure stable operation in controlled environments. Our Flash Joule Heating Device is ideal for battery research and advanced material synthesis.

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Specifications

Highest Temperature 3000℃
Long-Term Heat Preservation ≤ 2000℃
Current Ramp-Up Time 2ms
Minimum Pulse Width 1ms
Programmable Pulse Count 255
Quantity of Sample Tested 500mg
Data Acquisition Cycle 5ms
Temperature Measurement Ranges 250 to 2000℃ / 700 to 3000℃ / 550 to 3000℃
Vacuum Chamber Diameter φ16mm
Vacuum Chamber Volume 1000ml
Input Power 380V 40A
Output Power Supply 0 to 40V
Output Current 0 to 500A
Sample Table Dimension 100×15×0.2mm
Overall Dimensions 750 × 610 × 660mm
Net Weight 160 kg
Gross Weight 190 kg

Pricing

Product Price Unit Action
Flash Joule Heating Device LMJHD-A100 $ 55781.25 Each of 1

Features

Touchscreen Interface 

Programmable Heat Control 

Graphite Sample Holder 

PC Connectivity

Multi-Phase Power Supply 

Sapphire Vacuum Window

Standard Accessories

Water Cooler
Vacuum Pump

Applications

Flash Joule Heating Device LMJHD-A100 is ideal for nanomaterial synthesis, catalyst preparation, high-entropy alloy synthesis and advanced material processing.

Selection Guide

Flash Joule Heating Device LMJHD-A100 is a high-performance instrument designed for rapid and accurate thermal processing, often used in advanced material synthesis, carbon-based nanomaterial production, and other high-temperature experiments. With a peak temperature reaching 3000℃ and long-term heat preservation capability of up to 2000℃, it is well-suited for studies requiring extreme thermal conditions. The 2ms current ramp-up time and 1ms minimum pulse width allow for fast and controlled heating, making it suitable for applications that demand accurate thermal profiles and short reaction durations. Customers should consider this model for lab-scale research, material characterization, or rapid annealing studies. Additionally, verifying if the system includes programmable settings, data acquisition support, and certifications relevant to laboratory safety and electrical standards will help ensure compatibility with specific research or industrial needs.

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  • Temperature: ≤2200℃
  • Pressure: ≤10T
  • Maximum Pressure: 100 MPa
  • Vacuum Pump: VRD-30
  • Cold Max Vacuum: 6×10⁻³ Pa

$ 155156.25 / Each of 1

Discharge Plasma Joule Heating Device LMJHD-A101

  • Highest Temperature: 2200℃
  • Working Vacuum: 10 Pa
  • Accuracy: ±1%
  • Power Input: 380V
  • Power Output: 40V, 500A

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Flash Joule Heating Device LMJHD-A103

  • Maximum Temperature: 3400℃
  • Temperature Measurement Range: 700 to 3200℃ / 800 to 4000℃
  • Heating Rate: Less than or equal to 60 ms
  • Sample Testing Quantity: 150 mg
  • Capacitance: 50 mF

$ 40250 / Each of 1

Frequently Asked Questions

1 What is a Flash Joule Heating Device?

A Flash Joule Heating Device is an apparatus designed to heats materials to high temperatures using electrical current thereby enabling material transformation in microseconds.

2 How does Flash Joule Heating Device work?

It works by passing high electrical current through a material, causing it to heat up to extremely high temperatures in microseconds.

3 What materials can be processed using Flash Joule Heating Device?

It can process a wide range of materials such as carbon-based materials, metals and ceramics.

4 Can Flash Joule Heating Device be used in medical field?

It is used to create advanced materials like graphene for medical devices, drug delivery systems and tissue engineering.

5 Can Flash Joule Heating Device be used for metal processing?

It can be used in metal processing to alter properties such as hardness, conductivity or structure.

6 Can Flash Joule Heating Device be used in environmental remediation?

It can be used in environmental remediation to convert waste materials such as plastics into useful materials like carbon nanotubes.

7 How does Flash Joule Heating Device impact material quality?

It enhances material quality by refining their structure at the atomic or molecular level.

8 Can Flash Joule Heating Device be used to produce advanced ceramics?

It can be applied in the production of advanced ceramics.

9 Can Flash Joule Heating Device improve the efficiency of thermoelectric materials?

It can enhance thermoelectric materials by altering their structure.

10 Can Flash Joule Heating Device be used to improve the performance of catalysts?

It can enhance catalyst performance by precisely controlling the temperature and creating nanoscale modifications.