1.0mm 0.635mm 96% Thermal Conductive Al2O3 Alumina Ceramic Aluminium Oxide Ceramic Sheet for Mosfet

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Overview of 1.0mm 0.635mm 96% Thermal Conductive Al2O3 Alumina Ceramic Aluminium Oxide Ceramic Sheet for Mosfet

1.0mm 0.635mm 96% Thermal Conductive Al2O3 Alumina Ceramic Aluminium Oxide Ceramic Sheet for Mosfet is manufactured from 99%+ pure aluminum oxide (Al₂O₃), delivering exceptional mechanical strength and thermal stability. These advanced ceramic parts maintain dimensional stability in extreme environments up to 1800°C, making them perfect for demanding applications in semiconductor equipment, aerospace components, chemical processing, and high-temperature industrial machinery.

Features of 1.0mm 0.635mm 96% Thermal Conductive Al2O3 Alumina Ceramic Aluminium Oxide Ceramic Sheet for Mosfet

Ultra-High Temperature Resistance – Withstands continuous operation up to 1800°C

Exceptional Mechanical Strength – Superior hardness and wear resistance compared to metals

Corrosion & Chemical Proof – Resists acids, alkalis, and harsh industrial chemicals

Electrical Insulation – Excellent dielectric properties for electronic applications

Customizable Designs – Available in complex geometries with tight tolerances (±0.01mm)

1.0mm 0.635mm 96% Thermal Conductive Al2O3 Alumina Ceramic Aluminium Oxide Ceramic Sheet for Mosfet

(1.0mm 0.635mm 96% Thermal Conductive Al2O3 Alumina Ceramic Aluminium Oxide Ceramic Sheet for Mosfet)

Specification of 1.0mm 0.635mm 96% Thermal Conductive Al2O3 Alumina Ceramic Aluminium Oxide Ceramic Sheet for Mosfet

This ceramic sheet gives excellent thermal monitoring for MOSFETs and other electronics. Its primary product is alumina ceramic. We call it Al2O3. The purity level is high at 96%. This high purity is key. It makes sure excellent thermal conductivity. Warm moves away from your MOSFET promptly. This protects against overheating. Overheating problems elements. This sheet stops that.

The conventional thickness is 1.0 mm. It provides a strong equilibrium. It performs heat effectively. It provides solid electric insulation also. The sheet is extremely tough. It holds up against heats conveniently. Your MOSFET creates warm. This sheet draws that heat away. It maintains things cooler. Cooler parts function much better. They last much longer too.

Electrical seclusion is essential. This alumina sheet is an insulator. It does not conduct electricity. You position it between the MOSFET and the heatsink. It transfers the warmth. It obstructs electrical existing. This protects against brief circuits. Safety is enhanced. Your circuit stays protected.

The surface is smooth. This issues. A smooth surface develops far better call. It touches both the MOSFET and the heatsink securely. Air spaces are decreased. Air voids trap heat. This sheet minimizes them. Heat transfer becomes extra effective.

Alumina ceramic is very stable. It deals with thermal cycling well. Temperature levels fluctuate. The sheet doesn’t fracture quickly. It resists chemical rust. Several settings are rough. This sheet performs dependably. It uses lengthy life span.

You need reliable cooling for power electronic devices. This 1.0 mm alumina ceramic sheet is a solid service. It relocates heat effectively. It maintains your MOSFET electrically separated. Performance improves. Dependability increases.

1.0mm 0.635mm 96% Thermal Conductive Al2O3 Alumina Ceramic Aluminium Oxide Ceramic Sheet for Mosfet

(1.0mm 0.635mm 96% Thermal Conductive Al2O3 Alumina Ceramic Aluminium Oxide Ceramic Sheet for Mosfet)

Applications of 1.0mm 0.635mm 96% Thermal Conductive Al2O3 Alumina Ceramic Aluminium Oxide Ceramic Sheet for Mosfet

These alumina ceramic sheets take care of warmth in MOSFET circuits. They measure 1.0 mm or 0.635 mm thick. Their thermal conductivity reaches 96%. This indicates they relocate warmth away from MOSFETs extremely well. MOSFETs fume during operation. Excessive warmth damages them. It injures circuit performance. These ceramic sheets serve as warmth spreaders. They sit straight under the MOSFET plan. The heat streams from the MOSFET right into the ceramic. The ceramic spreads this warmth quickly. This quits hot spots forming. It maintains the MOSFET cooler. The sheets also offer electric insulation. Alumina is a solid electric insulator. It protects against short circuits. The MOSFET’s steel base attaches to the circuit. The sheet blocks undesirable existing circulation. It maintains the circuit secure. This insulation is trustworthy. It works also at high voltages. The sheets are literally difficult. Alumina ceramic resists splitting. It takes care of thermal cycling well. MOSFETs warm up and cool off repetitively. The ceramic sheet endures this stress and anxiety. It doesn’t break down over time. The product is secure. It doesn’t weaken conveniently. This ensures long-lasting efficiency. The sheets are easy to use. They fit common MOSFET bundles. Setting up is uncomplicated. Thermal paste or sticky bonds them. This produces an efficient warmth path. The ceramic bridges the MOSFET and the heatsink. Warm transfers successfully from gadget to sink. This air conditioning is essential for power electronic devices. It allows MOSFETs manage higher currents. It boosts system reliability. It protects against unexpected failures. The thin 0.635 mm account suits tight areas. The 1.0 mm sheet offers durable support. Both options provide necessary thermal management. They shield delicate power elements. They maintain circuit effectiveness. They are a tested service for demanding applications.


Company Profile

Alumina Technology Co., Ltd,. We focus on the research and development, production and sales of alumina products, serving the electronics, ceramics, chemical and other industries. Since its establishment in 2005, the company has been committed to providing customers with the best products and services, and has become a leader in the industry through continuous technological innovation and strict quality management.


Our products includes but not limited to Alumina Boat, Alumina Crucible, Alumina Dish, Alumina Foam Filter, Alumina Plate, Alumina Rod, Alumina Bar, Alumina Balls, Filter Alumina, Nano Alumina Powder, Spherical Alumina Powder, ect. please feel free to contact us.(nanotrun@yahoo.com)



Payment Methods

T/T, Western Union, Paypal, Credit Card etc.

Shipment Methods

By air, by sea, by express, as customers request.

5 FAQs of 1.0mm 0.635mm 96% Thermal Conductive Al2O3 Alumina Ceramic Aluminium Oxide Ceramic Sheet for Mosfet

What exactly is this ceramic sheet?
It’s a thin flat piece made from aluminium oxide ceramic. The thickness is 1.0mm. It has small holes measuring 0.635mm. This material is special because it moves heat very well. We call this thermal conductivity. This sheet achieves 96% of pure alumina’s theoretical heat transfer ability. People use it mainly to cool MOSFET transistors in electronics.

Why pick ceramic over other materials?
Ceramic beats plastic or standard metal insulators. Plastic doesn’t move heat well enough for powerful electronics. Metal conducts electricity, that’s bad near circuits. Alumina ceramic is different. It stops electricity completely. It moves heat fast. This makes it safe and effective. You get insulation plus cooling in one part.

How does it help with MOSFET heat?
MOSFET transistors create heat when working. Too much heat hurts performance. It can even destroy the component. The ceramic sheet sits tight between the MOSFET and a metal heatsink. Heat flows directly from the hot MOSFET, through the ceramic, into the heatsink. The high thermal conductivity means heat moves quickly. This keeps the MOSFET much cooler. Cooler parts work better and last longer.

Where do I put this ceramic sheet?
You install it as a thermal interface pad. Clean the MOSFET surface first. Apply a thin layer of thermal paste on the MOSFET. Place the ceramic sheet on top. Apply thermal paste to the top surface of the ceramic sheet. Finally, mount the heatsink firmly on top. The holes help with alignment or mounting screws. Good pressure ensures the best heat transfer from MOSFET to ceramic to heatsink.

Why is the 1.0mm thickness important?
Thickness affects heat flow and strength. Thinner sheets might break easily during installation. Thicker sheets add unnecessary height. They can also resist heat flow slightly more. The 1.0mm thickness is a good balance. It provides enough strength for reliable handling and mounting. It keeps thermal resistance low for efficient cooling. This thickness fits common electronic assemblies well.

1.0mm 0.635mm 96% Thermal Conductive Al2O3 Alumina Ceramic Aluminium Oxide Ceramic Sheet for Mosfet

(1.0mm 0.635mm 96% Thermal Conductive Al2O3 Alumina Ceramic Aluminium Oxide Ceramic Sheet for Mosfet)

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