Boyd anticipates exponential semiconductor power growth and continually develops innovative cooling solutions
Rise of Power: Increasing Power Demand for High-Performance Chips
The semiconductor industry continues to drive Moore’s Law and push the boundaries of semiconductor chip power and performance. Higher performance, more powerful and complex chips generate more heat with higher power densities. Thermal technology innovators like BOYD are developing new methods to cool exponentially rising chip power and performance.
New semiconductor technologies are driving increased cooling requirements
Chip power has nearly doubled in the last few years, with innovators going from 400 watts of cooling in 2020 to 750 watts in 2023. As power demands are projected to reach or exceed 1500 watts by 2025 for high performance applications, traditional liquid cooling may not be sufficient to effectively handle the increasing heat dissipation needs of these chips.
Rising chip power calls for innovative cooling technologies
Boyd’s Advanced Liquid Cooling: Pushing the Edge of Traditional Liquid Cooling
Overcome the anticipated thermal challenges from increasing power demands of high-performance chips with advanced liquid cooling technology that combines two-phase cooling and liquid cooling systems into pumped two-phase systems, or evaporative liquid cooling. Evaporative liquid cooling leverages the benefits of both cooling technologies to enable higher density electronics.
Boyd’s cooling technology heritage enables a strong foundation to innovate more effective and efficient cooling.
Innovate with Boyd: Efficiently Cool Next Generation Semiconductors
Boyd’s strong heritage of two-phase cooling like 3D vapor chambers and thermosiphons and liquid cooling system technologies such as coolant distribution units, liquid cold plates, and chillers enables us to explore new possibilities and develop advanced cooling solutions to effectively and efficiently cool chips further than 1600 watts. These chips are crucial for growing applications like Artificial Intelligence and Autonomous Computing in the cloud and eMobility industries.
Boyd’s development team is looking beyond the next few years of semiconductor development, so if your chip requirements exceed what you think is currently possible, please contact us. We may already be working on a solution.
Boyd anticipates exponential semiconductor power growth and continually develops innovative cooling solutions.
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本文由洛希转载自BOYD,原文标题为:Rise of Power: Increasing Power Demand for High-Performance Chips,本站所有转载文章系出于传递更多信息之目的,且明确注明来源,不希望被转载的媒体或个人可与我们联系,我们将立即进行删除处理。
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可定制均温板VC最薄0.4mm,有效导热系数超5,000 W / m·K(纯铜(401 W/m·K ,石墨烯1,200 W/m·K)。工作温度范围同时满足低于-250℃和高于2000℃的应用,定制最低要求,项目年采购额大于10万人民币,或采购台套数大于2000套。
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可定制商用热管尺寸最高15.88mm,环路热管的热量传递范围为50mm到1000mm以上,同时满足低于-250℃和高于2000℃的应用。定制最低要求,项目年采购额大于10万人民币,或采购台套数大于2000套。
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