Skip to product information
ECS-Y Plasma Coupled Joule Heating (JH) Machine (Max. 3000°C), EYPCJHM

ECS-Y Plasma Coupled Joule Heating (JH) Machine (Max. 3000°C), EYPCJHM

In Stock SKU: EYPCJHM
Use your own shipping account?

We support FedEx, UPS, and DHL third-party billing for institutional customers.

Place your order first, then email shipping@echemsupplies.com with your account details and order number. We'll generate the label using your account and refund your shipping charges, less a handling fee.

Review third-party shipping terms →


Joule Heating (JH) machines, often referred to as Flash Joule Heating (FJH) or Ultrafast High-Temperature Sintering (UHS) systems, have become essential tools for materials science. They allow researchers to reach extreme temperatures (up to 3,000°C+) in milliseconds, enabling the synthesis of materials that are impossible to create via traditional slow-heating furnaces.

Modern benchtop units typically consist of: (1) High-Voltage Capacitor Bank: Stores the energy required for the "Flash." (2) Pressure-Controlled Electrodes: Usually high-purity graphite or tungsten. They maintain physical contact with the powder or film while conducting the current. (3) Quartz/Ceramic Reaction Tube: Holds the sample under vacuum or inert gas (Argon/Nitrogen) to prevent oxidation. (4) High-Speed Pyrometer: A non-contact infrared thermometer that can read temperatures every 1–5 ms, which is critical since the entire reaction is over in the blink of an eye. (5) HMI Control System: A touch-screen interface where you program the voltage, pulse width (duration), and number of pulses.

Part Number
  • EYPUJHM (Professional & High-Power Version)
Power
  • AC380V±10%, three-phases, 50/60Hz, ~25 kW 
Key Features for Plasma-Assisted JH Machine
  • Output DC Voltage: 0-40 V, Current: 0-500 A
  • Output Plasma Power Source: 0-30 kV, 0-500 W
  • Plasma Frequency: 5 kHz-20 kHz
  • Plasma Discharge Distance: 8 mm
  • Max. Heating Temperature: 3000℃ (can last for 10 s)
  • Temperature Measuring Range: 250-2000℃/700-3200℃, infrared temperature measurement
  • Long-Term Heat Preservation: 2000℃
  • Current Ramp Time: ≤2ms
  • Cooling Method: Circulated water cooling (5 kW) (inlet/outlet)
  • Sample Stage Material: Flexible graphite paper, graphite plate, graphite tube, graphite boat, etc.
  • Sample Stage Size: ≤100mm*15mm*0.2mm
  • Testing Sample Amount: 500 mg
  • Gas Flows; one pathway for gas inlet, one pathway for vacuum, and one pathway for ventilation.
  • Vacuum Chamber: 304 stainless steel, square, Φ16mm observation window, 2" sapphire window, volume about 400-800ml, cavity with water cooling
  • Vacuum Pump: Standard VRD-8
  • Control System: PLC+HMI touch screen
  • Data Recording: Time, Max. T, peak current, and peak voltage, speed: 100 ms (can update to 1 ms)
Certification
  • CE certified
  • UL and CSA certification is available upon request at extra cost
Dimension
  • L710 * W610 * H650 mm

 

References:

H. Wu, et al., Rapid Joule-Heating Synthesis for Manufacturing High-Entropy Oxides as Efficient Electrocatalysts, Nano Lett. 2022, 22, 16, 6492–6500

A. Griffin, et al., Design and Application of Joule Heating Processes for Decarbonized Chemical and Advanced Material Synthesis, Ind. Eng. Chem. Res. 2024, 63, 45, 19398–19417

J. Sheng, et al., Catalytic Joule heating synthesis of one-dimensional nanomaterials in seconds, Nature Synthesis, 2026, 5, 367–376.

You may also like