10Gb/s 以太网:在 10GBASE-T SFP+ 模块上使用迷你散热片
作者尝试在 MikroTik 10GBASE-T SFP+ 模块上安装 Raspberry Pi 常用的迷你散热片来降低温度。经过 24 小时测试,温度下降了约 3.5°C,效果不算显著但有一定改善。文章还提到此类 SFP+ 模块有新旧两代之分,旧款采用 Marvell 芯片、额定传输距离 30 米,新款采用 Broadcom 芯片、可达 100 米,作者计划未来考虑更换为新款模块。
作者尝试在 MikroTik 10GBASE-T SFP+ 模块上安装 Raspberry Pi 常用的迷你散热片来降低温度。经过 24 小时测试,温度下降了约 3.5°C,效果不算显著但有一定改善。文章还提到此类 SFP+ 模块有新旧两代之分,旧款采用 Marvell 芯片、额定传输距离 30 米,新款采用 Broadcom 芯片、可达 100 米,作者计划未来考虑更换为新款模块。
The article explains how to use mini-heatsinks with 10GBASE-T SFP+ modules to manage the high heat output of these copper transceivers. It provides practical guidance on selecting and attaching suitable heatsinks to prevent overheating and ensure reliable 10Gb/s Ethernet operation.
The article discusses using mini-heatsinks with 10GBASE-T SFP+ modules to manage heat in 10Gb/s Ethernet setups. It explains that these copper-based modules run hot and that adding a low-profile heatsink can improve thermal performance and prevent throttling or failure, especially in constrained environments like switches or small form-factor appliances.