High-Throughput Joule Heating Device XN-HTG

SKU: XN-HTG

High-Throughput Joule Heating Device XN-HTG automates multi-sample Joule heating with a 150–3200 °C measurement range, flash temperatures up to 3000 °C, heating rates of ≥1000 °C/s, and programmable vacuum or controlled-atmosphere processing.

Need a bulk order or custom specification? Request a competitive quote today!

Name: High-Throughput Joule Heating Device
Equipment Type: High-Throughput Joule Heating Device
Product Code: XN-HTG
Brand: Xnergy

Product Introduction:

The XN-HTG is designed for automated, high-throughput Joule heating of multiple research samples. It integrates programmable heating, vacuum and atmosphere control, automatic loading and unloading, water cooling, PLC control, and experiment-data traceability to shorten screening cycles and reduce per-sample resource consumption.

The system is suited to nanoparticle synthesis, carbon nanomaterials, ceramics, glass, polymers, battery and fuel-cell materials, catalysts, thermoelectric materials, and other advanced-material development.

Key Features:

150–3200 °C temperature-measurement range
Flash temperature up to 3000 °C
Heating rate of ≥1000 °C/s
Automated multi-sample processing
At least two sintering trays with 64 graphite-sheet positions per tray
Infrared non-contact temperature measurement
PID temperature stabilization with multiple parameter channels
Vacuum or protective-atmosphere operation
PLC and touchscreen control
Process-template storage and experiment-data traceability

Technical Specifications:

Parameter Specification
Model XN-HTG
Temperature Measurement Range 150–3200 °C
Maximum Temperature 3000 °C in flash-heating mode
Holding Duration ≤1500 °C: continuous; 1500–2000 °C: ≤60 min; 2000–2400 °C: ≤10 min
Maximum Heating Rate ≥1000 °C/s
Temperature Measurement Infrared non-contact
Measurement Accuracy ±5‰
Processing Cycle 30 s per graphite sheet, excluding heating time
Atmosphere and Vacuum Supports high-vacuum pre-evacuation and chamber-atmosphere replacement through an external compatible gas source
Regulated DC Power Supply 24 V / 1000 A
Maximum Current Output 0–1000 A
Temperature Stabilization Continuously adjustable power with PID control and real-time auto-tuning
Multi-Channel Processing Multiple sintering modes with at least four preset parameter sets; automated process execution
Sintering Trays At least two tray sets; 64 graphite-sheet positions per tray; two positioning sensors
Cooling Method Water cooling
Software Control Time, current, temperature, segmented, and manual control
Control System PLC-integrated heating, vacuum, and automatic loading/unloading control with real-time status feedback
Data Management Template storage, batch recording, automatic experiment-data collection, storage, and upload
Power Supply Configured according to applicable local electrical standards; facility current capacity of 63 A is required
Safety Overcurrent protection and emergency-stop button

Applications:

Metal-alloy, oxide, and sulfide nanoparticle synthesis
RGO, CNF, CNT, and biomass-derived carbon materials
Ceramics, glass, polymers, and temperature-sensitive materials
Battery, fuel-cell, CO₂-reduction, and water-electrolysis research
Thermoelectric conversion and flexible-electronics materials
High-throughput materials screening

Note: Tray, fixture, atmosphere, heating profile, and automation configuration can be adapted to project requirements. Related equipment includes the Flash Joule Heating Device XN-FJH-400V, Joule Quenching Heating Device XN-HTL-1532E, Joule Ultrafast Heating System XN-HTS Series, High-Temperature Joule Heating System XN-1532E, and Precipitation Reactor XN-SPR.