Chassis motherboard PCB
Product Name: Multilayer PCB
Number of layers: 12 layers
Color: Green/White
Finished product thickness: 1.0mm
Copper thickness: 2-3OZ
Surface treatment: immersion gold
1. Multi-layer PCB design: In order to provide sufficient signal stability and electromagnetic compatibility (EMC), the motherboard PCBs usually adopt a multi-layer design.
2. Power supply system: A high-performance motherboard requires a powerful power supply system, such as a 16+2+2 phase power supply design, using 80A power supply transistors, Ensure stable power supply.
3. High-speed interface: Modern motherboard PCB design includes high-speed data transmission interface, such as PCIe 5.0 x16 slot, to support the next generation of high-performance graphics cards.
4. Storage interface: The motherboard PCB provides multiple M.2 slots, supports NVMe SSD, and provides high-speed storage solutions.
5. Heat dissipation design: In order to cope with the heat generated by high-performance CPUs and GPUs, heat dissipation armor and heat pipes are integrated into the motherboard PCB design, such as Gigabyte The X870E AORUS PRO ICE motherboard is equipped with an efficient cooling solution.
6.Material: Some motherboards use 2 ounce copper PCB to improve power efficiency and thermal conductivity.
7. Network connection: The motherboard PCB integrates high-speed network chips, such as 2.5 Gigabit high-speed network cards, to provide faster wired connections.
8. Wireless technology: With the emergence of Wi-Fi 7, motherboard PCB design needs to support new wireless standards to provide better Wireless connectivity performance.
9. Audio Quality: High-quality audio codecs and capacitors, such as the ALC1220 HD audio codec, provide an excellent audio experience.
10. Expansion capability: The motherboard PCB is designed with enough expansion slots and ports to support various add-on cards and devices. p>
11.Durability: The selection of motherboard PCB and components needs to ensure long-term durability and reliability.
12. Compatibility: Motherboard PCB design needs to consider compatibility with various hardware and software, including processors, memory, operating systems, etc. .
1. Multi-layer PCB design: In order to provide sufficient signal stability and electromagnetic compatibility (EMC), the motherboard PCBs usually adopt a multi-layer design.
2. Power supply system: A high-performance motherboard requires a powerful power supply system, such as a 16+2+2 phase power supply design, using 80A power supply transistors, Ensure stable power supply.
3. High-speed interface: Modern motherboard PCB design includes high-speed data transmission interface, such as PCIe 5.0 x16 slot, to support the next generation of high-performance graphics cards.
4. Storage interface: The motherboard PCB provides multiple M.2 slots, supports NVMe SSD, and provides high-speed storage solutions.
5. Heat dissipation design: In order to cope with the heat generated by high-performance CPUs and GPUs, heat dissipation armor and heat pipes are integrated into the motherboard PCB design, such as Gigabyte The X870E AORUS PRO ICE motherboard is equipped with an efficient cooling solution.
6.Material: Some motherboards use 2 ounce copper PCB to improve power efficiency and thermal conductivity.
7. Network connection: The motherboard PCB integrates high-speed network chips, such as 2.5 Gigabit high-speed network cards, to provide faster wired connections.
8. Wireless technology: With the emergence of Wi-Fi 7, motherboard PCB design needs to support new wireless standards to provide better Wireless connectivity performance.
9. Audio Quality: High-quality audio codecs and capacitors, such as the ALC1220 HD audio codec, provide an excellent audio experience.
10. Expansion capability: The motherboard PCB is designed with enough expansion slots and ports to support various add-on cards and devices. p>
11.Durability: The selection of motherboard PCB and components needs to ensure long-term durability and reliability.
12. Compatibility: Motherboard PCB design needs to consider compatibility with various hardware and software, including processors, memory, operating systems, etc. .
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