Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.

Product Details
Customization: Available
Certification: RoHS, ISO9001
Type: Thermal Pad
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  • Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.
  • Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.
  • Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.
  • Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.
  • Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.
  • Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.
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  • Overview
  • Product Description
  • Detailed Photos
  • Application
  • Company Profile
  • After Sales Service
  • FAQ
Overview

Basic Info.

Model NO.
Laird Tpcm905C
Thermal Conductivity
Changes Based on Material Thickness
Standard Thickness Range
0.13 mm
Phase Change Softening Temperature
50°c to 70°c
Volume Resistivity
2 X 1013 Ohm-Cm
Temperature Range
-25 to 125°c
“burn in“ Temperature
70°c for 5 Minutes
Dielectric Constant
3.1
Transport Package
Land and Air; Carton, 200 Per Pack
Specification
Private message communication
Trademark
Laird
Origin
USA
Production Capacity
50000 Pieces/Day

Product Description

Product Description
 

       
      Tpcm 905C is a high-performance, non-electrically conductive phase change material. At 50°C, Tpcm 905C begins to soften and flow, filling the microscopic irregularities of both the thermal solution and the component's surfaces, thereby significantly reducing thermal resistance. It remains a flexible solid at room temperature and stands alone without reinforcing components that could compromise thermal performance. Remarkably, it shows no performance degradation even after 1,000 hours at 130°C or after enduring 500 cycles from -25°C to 125°C. The material softens but does not fully change state, minimizing migration (pump out) at operating temperatures (see viscosity curve). It is supplied in rolls with top-tabbed liners for easy manual or large-volume automatic applications. Individually die-cut parts are also available.

      Features and benefits:

       Extremely low 0.03ºC-in2/watt thermal resistance
       • Naturally tacky at room temperature,no adhesive required
       • No heatsink preheating required
 
 
Detailed Photos

Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.

Application

Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.

Company Profile

 

 

 Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.
       Dongguan City U.ONE Electronic Technology Co., Ltd. was officially established in 2009. It is a professional enterprise in China that integrates research and development, agency, processing, production, and sales of thermal conductivity, conductivity, and insulation products. The company has a production and research base of approximately 3000 square meters, located at No. 20 Nonglin Road, Long bei Ling Village, Tangxia town, Dongguan city, Guangdong province, China. Adhering to the business philosophy of "service first, quality first, and reasonable prices", the company has established long-term cooperative relationships with multiple enterprises across the country.
       Mainly product: thermal pad, thermal grease,phase change material ,mylar ,silicone rubber sheet, foam, ,silicone products,etc. Products can provide customized services, including customized sizes, customized label,customized packaging, for customers to choose.

Environment:
Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.
Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.
Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.
 
Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.
Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.
Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.
Major partners:

Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.
 

Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.
After Sales Service

       Welcome to private message communication.We will provide timely and appropriate solutions to the problems raised by customers.

FAQ

 

Thermal Pad of Laird Tpcm905c Which Is a High Performance, Non-Electrically Conductive Phase Change Material.

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