Silicon Nitride Ceramic Heating Element – High-Pressure, Rapid Heating for Industrial Applications

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Designed for High-Temperature Environments in Manufacturing and Processing Industries

Description

This Silicon Nitride Ceramic Heating Element provides unparalleled high-temperature performance, durability, and rapid heating capabilities, ensuring efficient and reliable operation in demanding industrial environments.

Industries – Achieve Rapid High-Temp Heating

Silicon Nitride (Si3N4) Material

Exceptional thermal stability and mechanical strength, withstanding up to 1000°C.

Rapid Heating Capability

Reaches up to 1000°C in just 10 seconds, enhancing production efficiency.

Customizable Flange Options

Available in ceramic, stainless steel, copper, or customized to fit specific applications.

Strict Quality Control

Complies with SGS, ISO9001, and Intertek standards, ensuring top-notch quality.

Features

The Silicon Nitride Ceramic Heating Element features a high-pressure design, capable of operating at 400V and 400W. Its silicon nitride (Si3N4) construction ensures exceptional thermal stability and mechanical strength. The element comes with customizable flange options, including ceramic, stainless steel, and copper, or can be tailored to specific requirements. It has a maximum working temperature of 1000°C and a maximum permissible temperature of contact terminals at 500°C (vacuum 600°C), with a resistance of 93Ω ±25% at 20°C.

Benefits

This heating element offers rapid heating capabilities, reaching up to 1000°C in just 10 seconds, significantly enhancing production efficiency. Its high thermal stability and mechanical strength ensure long-lasting performance in harsh industrial environments. The customizable flange options provide flexibility in installation and integration, catering to diverse application needs. Strict quality control under SGS, ISO9001, and Intertek standards guarantees reliable and consistent performance.

Use Cases

The Silicon Nitride Ceramic Heating Element is ideal for a wide range of industrial applications, including manufacturing, processing, and high-temperature environments. It is particularly suited for industries requiring rapid and efficient heating, such as automotive, aerospace, and electronics manufacturing. Its ability to withstand extreme temperatures and provide consistent performance makes it a valuable addition to any industrial setup.

Name Silicon Nitride Type High Pressure Ceramic Heating Element
Model HF0003221
Material Silicon Nitride (Si3N4)
Voltage 400V
Power4 400W
Flange Ceramic/Stainless Steel/Copper/Customized
Temp Range 1000 °C/1832℉
Ignition Time up to 1000°c in 10 seconds
Samples fee Please contact us for confirmation.
Packing Carton
Lead time 5 working days for samples; 12 working days for mass production
QC Strict quality control under SGS, ISO9001 and Intertek.
Certification BSCI, ISO9000/1400,BV TUV SGS FSC etc.
Applications
Silicon nitride ceramic heating elements
Maximum working temperature: 1000°C
Maximum permissible temperature of contact terminals: 500°C (vacuum 600°C)
Resistance at 20 ℃: 93 Ω ±25%

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Why Choose Our Silicon Nitride Ceramic Heating Element?

Our heating element stands out with its exceptional thermal stability, rapid heating capability, and customizable flange options. Designed for high-temperature environments, it ensures efficient and reliable operation in demanding industrial settings.

What Sets Our Product Apart?

Unlike traditional heating elements, our Silicon Nitride Ceramic Heating Element offers superior thermal stability and mechanical strength, withstanding up to 1000°C. Its rapid heating capability and strict quality control make it a top choice for industries requiring high-performance heating solutions.

How Does It Benefit Your Industry?

By choosing our Silicon Nitride Ceramic Heating Element, you can achieve faster production cycles, reduce downtime, and enhance overall efficiency. Its customizable flange options ensure seamless integration into your existing setup, providing a cost-effective and reliable heating solution.