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下一代人工智能服务器的机架架构.pdf

上传人: 明**** 编号:1011417 2025-12-21 11页 1.72MB

1、Rack Architecture for Next Generation AI ServerFoxconn/IngrasysRack Architecture for Next Generation AI ServerChris PaiEngineering VP/IngrasysRACK&POWERData Center Power and Cooling Solution TrendCRPS+Air Cooled2000 2000-201020101990 1990-200020002010 2010-201520151-3kW5-10kW8-20kW2026 2026 300+kWPo

2、wer Rack+Fully Liquid CooledPower Shelf+Liquid/Air Hybrid Cooled2016 2016-202020202021 2021-202320232024 2024-2025202550+kW120+kW30kW Computing power rises rapidly during AI generation that hit air-cooling limitation.Increase the computing performance and lower the investment costs for space.Conside

3、ration for Next Generation AI ServerAir cooling limitation Better thermal efficiency to get lower power usage effectiveness of datacenter.Increase the heat load/power density upper limit per rack.Why Liquid Cooling?CDU(L2L)CDU(L2A)Piping Arrangement and TemperatureTypical Datacenter Hall Layout Liqu

4、id Cooled45-55deg C25-35deg C35-45deg CHeat Rejection(Cooling Tower/Dry Cooler)20-30deg CInfrastructure Requirement for AI Rack/ClusterLiquid to AirNo need facility waterLow cooling capabilitySidecar(Liquid to Air)IT RackSidecar(Liquid to Air)IT RackSidecar(Liquid to Air)IT RackLiquid to LiquidFacil

5、ity water requiredHigh cooling capabilityIn-row CDU(Liquid to Liquid)IT RackRack Architecture for Next Generation AI ServerCooling BankAI Rack with Power SidecarDiabloDiabloDiabloKey Considerations of The Three Building BlocksRack Architecture for Next Generation AI ServerHigh Density AI RackPower S

6、idecarCooling Bank High Power Consumption Full Liquid-cooled(Single Phase DLC and Two Phase DLC)High Density Good Serviceability High Power(Higher Power Capacity,High DC Voltage Management)Liquid-cooled Busbar Effective Power Distribution S

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根据报告的内容,全文主要内容概括如下: - **AI服务器架构发展趋势**: - 计算能力快速提升,突破空气冷却限制。 - 提高计算性能,降低空间投资成本。 - 提升数据中心能效,增加每机架的热负荷/功率密度上限。 - **液冷技术优势**: - 提高热效率,降低数据中心能耗。 - 液冷系统类型:液-液冷却和液-空气冷却。 - **下一代AI服务器机架架构**: - 高密度设计,全液冷解决方案。 - 高功率消耗,高效能电源和冷却系统。 - 高流量率,优化热管理和电力分配。 - **关键考虑因素**: - 高功率消耗,全液冷(单相和双相DLC)。 - 高密度,良好的服务性,高功率容量和直流电压管理。 - 液冷母线,有效电力分配。 - **更多信息**: - Diablo 400项目,最新机架和电源规范:[链接](https://www.opencompute.org/documents/ocp-specification-diablo-400-v0p5p2-2025-05-30-pdf)。
AI服务器新架构" 散热挑战与解决方案" 液冷技术在数据中心的应用"
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