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Description
Overview of 170W/M High Thermal Conducvity Aluminum Nitride Ceramic Porous Fan Shape Plate
170W/M High Thermal Conducvity Aluminum Nitride Ceramic Porous Fan Shape Plate is an advanced technical ceramic renowned for its exceptional thermal conductivity and reliable electrical insulation. It is a key material in high-power electronics, LED lighting, and semiconductor processing, effectively managing heat in demanding applications where performance and reliability are critical.
Features of 170W/M High Thermal Conducvity Aluminum Nitride Ceramic Porous Fan Shape Plate
- High Thermal Conductivity: Offers excellent heat dissipation, comparable to beryllia (BeO).
- Electrical Insulation: Maintains high electrical resistivity even at elevated temperatures.
- Low Thermal Expansion: Matches the coefficient of thermal expansion of silicon, ideal for semiconductor substrates.
- Excellent Mechanical Strength: Possesses good mechanical properties for structural integrity.
- High-Temperature Stability: Performs reliably in harsh environments and at high temperatures.
- Non-Toxic: A safe alternative to beryllium oxide (BeO) ceramics.
Specification of 170W/M High Thermal Conducvity Aluminum Nitride Ceramic Porous Fan Shape Plate
This aluminum nitride ceramic plate is special. Its fan shape helps move heat away fast. The thermal conductivity is high, rated at 170W/M. This means it moves heat very well. It has a porous structure. This porous design is important. It helps spread heat evenly across the whole plate. The material is aluminum nitride. This ceramic is known for moving heat efficiently. It is also very strong electrically. This makes it safe for electronics. The plate handles high temperatures easily. It does not break down under heat stress. It resists corrosion well. It lasts longer than some other materials. The fan shape is clever. It fits well in tight spaces. It helps direct airflow better. This improves cooling overall. Using this plate means better heat management. Your equipment stays cooler. This can prevent overheating problems. Reliability often improves. The ceramic is durable. It withstands tough conditions. It is stable over time. Performance stays consistent. These plates suit demanding applications. They are good for power electronics. They work in LED lighting systems. They help cool laser diodes. They fit in RF components. Industrial heaters use them too. Manufacturing uses quality materials. The process ensures good porosity. This controls the heat flow effectively. The plate meets strict specifications. It is designed for thermal management solutions. It offers a practical way to cool devices.
Applications of 170W/M High Thermal Conducvity Aluminum Nitride Ceramic Porous Fan Shape Plate
This aluminum nitride ceramic plate moves heat very well. Its thermal conductivity reaches 170 Watts per meter per Kelvin. This is a high level. The plate has a porous structure. It is shaped like a fan. This unique design helps manage heat effectively. It finds many important uses.
Electronics generate heat. This heat must be removed. Otherwise, components fail. This plate works well for cooling electronic devices. It is placed near hot chips. Heat transfers quickly into the plate. The porous structure and fan shape help spread the heat. Air flows through the holes. This cools the plate faster. This keeps sensitive electronics safe.
LED lighting systems need cooling too. Powerful LEDs get very hot. The plate can sit directly under LED modules. It pulls heat away efficiently. This prevents overheating. It helps LEDs last longer. Light output stays strong. High-power lasers also use this technology. Lasers produce intense heat. The plate handles this heat load. It protects the laser diodes.
Industrial machines create lots of heat. Motors and power converters need cooling. This ceramic plate offers a solution. It withstands high temperatures. It does not break down easily. The material is stable. This makes it reliable for tough factory environments. Semiconductor manufacturing requires precise temperature control. This plate helps in that process. It ensures equipment does not get too hot.
The fan shape directs airflow. This improves cooling efficiency. The porous surface increases the area touching the air. Heat transfers better this way. Engineers value this material. It solves difficult heat problems. It performs better than many older materials. This is crucial for next-generation devices. Devices keep getting smaller and more powerful. They need better ways to stay cool. This aluminum nitride plate provides that capability. It supports advanced technology development.
Company Profile
Tanki New Materials Co.Ltd. focus on the research and development, production and sales of ceramic products, serving the electronics, ceramics, chemical and other industries. Since its establishment in 2015, 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 Aerogel, Aluminum Nitride, Aluminum Oxide, Boron Carbide, Boron Nitride, Ceramic Crucible, Ceramic Fiber, Quartz Product, Refractory Material, Silicon Carbide, Silicon Nitride, ect. please feel free to contact us.

Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.
5 FAQs of 170W/M High Thermal Conducvity Aluminum Nitride Ceramic Porous Fan Shape Plate
People ask what this plate is. It is a fan-shaped plate made from aluminum nitride ceramic. It moves heat very well. Its thermal conductivity rating is 170 Watts per meter per Kelvin. The plate has many tiny holes through it. This makes it porous. People want to know why aluminum nitride is used. Aluminum nitride moves heat effectively. It also handles high temperatures well. It doesn’t break down easily. It’s stable and reliable for demanding jobs. People ask about thermal conductivity. Thermal conductivity measures how well a material moves heat. A rating of 170W/mK is considered high. It means the plate transfers heat efficiently. This is important for cooling electronics or managing heat in systems. People ask about the porous structure. The tiny holes allow air or liquids to pass through. This helps cool the plate itself. It also helps cool things touching the plate. The holes improve the plate’s overall ability to manage heat. People ask where to use this plate. Use it where heat buildup is a problem. It suits high-power electronics needing cooling. Examples are power modules, LED systems, or laser components. The fan shape helps it fit specific designs. The porous structure aids cooling directly at the heat source.
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