Phase Change Materials
PTM5000
PTM5000 is a Phase Change Pad with a Thermal Impedance of 0.06 – 0.08 (OC cm²/w), Thermal Conductivity of 4.4 (w/mk) and Specific Gravity of 2.3 (g/cm³).
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Overview
PTM5000 is Honeywell's thermally conductive phase change material in pad form. It is designed to minimize thermal resistance at interfaces and maintain extremely stable performance through reliability testing for long product life applications.PTM5000 has a Thermal conductivity of 3.5 - 4.5 (W/m·K) depending on the bondline thickness. It is based on a robust polymer PCM structure that exhibits excellent wetting properties during typical operating temperature ranges, resulting in very low surface contact resistance. The proprietary material provides superior reliability and maintains low thermal impedance (0.06-0.08), making it desirable for high-performance integrated circuit devices. Clamping pressure and temperature are suggested to achieve a minimum bondline thickness for the best performance. All information for thermal impedance is collected after the product is fully phase-changed without a shim.
Specifications
Physical Properties
- Color
- Pink
- Shelf Life
- 12 months Year
- Specific Gravity
- 2.3, Test Method ASTM D374
- Thickness (mm)
- 0.2 / 0.25 / 0.3 / 0.4 / 0.5
- Format
- Pad
Thermal Properties
- Thermal Conductivity
- 4.4 W/m-K, Test Method ASTM D5470
- Thermal Impedance
- 0.06-0.08 at no shim °C·cm²/W, Test Method ASTM D5470 Modified
Electrical Properties
- Volume Resistivity
- 2.1x1014 ohm-cm, Test Method ASTM D259
General Information
- Application
- High Reliability
- Key Features
- High Reliability
- Typical Uses
- IGBT
- Lighting
- Power control unit, inverter, onboard electronics
- Servers, supercomputing, video graphic array (VGA) cards, AI, GPU/CPU/Desktop, solid state drives (SSD)
- Switches, routers, base stations
- Tablets, gaming, notebooks, smartphones, action cameras
Physical Properties
- Color
- Pink
- Shelf Life
- 12 months Year
- Specific Gravity
- 2.3, Test Method ASTM D374
- Thickness (mm)
- 0.2 / 0.25 / 0.3 / 0.4 / 0.5
- Format
- Pad
Thermal Properties
- Thermal Conductivity
- 4.4 W/m-K, Test Method ASTM D5470
- Thermal Impedance
- 0.06-0.08 at no shim °C·cm²/W, Test Method ASTM D5470 Modified
Electrical Properties
- Volume Resistivity
- 2.1x1014 ohm-cm, Test Method ASTM D259
General Information
- Application
- High Reliability
- Key Features
- High Reliability
- Typical Uses
- IGBT
- Lighting
- Power control unit, inverter, onboard electronics
- Servers, supercomputing, video graphic array (VGA) cards, AI, GPU/CPU/Desktop, solid state drives (SSD)
- Switches, routers, base stations
- Tablets, gaming, notebooks, smartphones, action cameras
- Color : Pink
- Specific Gravity : 2.3, Test Method ASTM D374
- Thickness (mm) : 0.2 / 0.25 / 0.3 / 0.4 / 0.5
- Thermal Impedance : 0.06-0.08 at no shim °C·cm²/W, Test Method ASTM D5470 Modified
- Shelf Life : 12 months Year
- Thermal Conductivity : 4.4 W/m-K, Test Method ASTM D5470
- Volume Resistivity : 2.1x1014 ohm-cm, Test Method ASTM D259
- Format : Pad
- Key Features : High Reliability
- Application : High Reliability
- Typical Uses : IGBT|Lighting|Power control unit, inverter, onboard electronics|Servers, supercomputing, video graphic array (VGA) cards, AI, GPU/CPU/Desktop, solid state drives (SSD)|Switches, routers, base stations|Tablets, gaming, notebooks, smartphones, action cameras
Others
Name
Description
File Size
Date
Size
Phase Change Materials: LTM6300 - PCM45F -PTM5000
application/pdf 64.53 KB
10/31/2023
64.53 KB
Brochure
Name
Description
File Size
Date
Size
Thermal Interface Materials Electronics Brochure
application/pdf 820.98 KB
10/31/2023
820.98 KB
Name
Description
File Size
Date
Size
Phase Change Materials: LTM6300 - PCM45F -PTM5000
application/pdf 64.53 KB
10/31/2023
64.53 KB
Thermal Interface Materials Electronics Brochure
application/pdf 820.98 KB
10/31/2023
820.98 KB
Name
Description
File Size
Date
Size
Phase Change Materials: LTM6300 - PCM45F -PTM5000
64.53 KB
10/31/2023
Thermal Interface Materials Electronics Brochure
820.98 KB
10/31/2023