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Overview
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.
Features :
Touchscreen Interface
Programmable Heat Control
Graphite Sample Holder
PC Connectivity
Multi-Phase Power Supply
Sapphire Vacuum Window
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 |
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.