Products Details
| Type | Broaching, Drilling, Etching / Chemical Machining, Laser Machining, Milling, Other Machining Services |
| Material Capabilities | Brass, Aluminum, Copper, Stainless Steel, Steel Alloys |
| CNC Machining or Not | CNC Machining |
| Micro Machining or Not | Not Micro Machining |
| Material Purity | High-purity copper ≥99.9%, optional copper alloys (Cu-Ni, Cu-Sn) |
| CNC Machining Tolerance | ±0.005mm precision, multi - axis milling for complex channel designs |
| Surface Finish Options | Polishing, nickel plating, anodizing; Ra 0.8-1.6μm for heat transfer |
| Application Compatibility | High-end GPU, server CPU, 5G base stations, industrial power module |
| Customization Flexibility | CAD - driven design, micro - channels/grooves added via precision CNC |
| Pressure Resistance | Withstand up to 10 bar, suitable for liquid - cooled cooling systems |
| Thickness Customization | 1mm - 20mm thickness range, ultra - thin (≥1mm) for compact devices |
| Certification Compliance | ISO-9001,ISO-14001,ISO-45001, ISO-IATF 16949 |
| Lead Time for Samples | Sample: 5 - 7 days; Mass order: 2 - 3 weeks, rush service available |
| Selling Units | Single item |
| Package size per batch | 8X6X3 cm |
| Gross weight per batch | 0.500 kg |
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FAQ
1. What is a VC heat spreader plate?
A VC heat spreader plate is a component used to distribute heat evenly across electronic devices, enhancing thermal management.
2. Why choose copper for heat spreader plates?
Copper is chosen for heat spreader plates due to its high thermal conductivity and durability, making it ideal for efficient heat dissipation.
3. Can the heat spreader plate be customized?
Yes, the custom copper VC heat spreader plate can be tailored to specific design and size requirements for optimal performance.
4. How does a heat spreader plate improve device reliability?
By efficiently dissipating heat, a heat spreader plate reduces the risk of overheating, thereby improving device reliability and longevity.
5. Is the copper heat spreader plate lightweight?
Yes, despite being made of copper, the heat spreader plate is designed to be lightweight, minimizing its impact on the overall device weight.
6. What types of devices can use this heat spreader plate?
The custom copper VC heat spreader plate is compatible with a wide range of electronic devices, enhancing their thermal management systems.
7. How is the heat spreader plate integrated into devices?
The heat spreader plate is designed for easy integration into existing thermal management systems, ensuring seamless installation.
8. Does using a heat spreader plate improve performance?
Yes, using a heat spreader plate enhances performance by preventing overheating, ensuring optimal operation of electronic components.








