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Cold plate device for a two-phase cooling system

專利號
US10834848B2
公開日期
2020-11-10
申請人
International Business Machines Corporation(US NY Armonk)
發(fā)明人
Timothy Joseph Chainer; Pritish Ranjan Parida; Fanghao Yang
IPC分類
H05K7/20; H01L23/473; H01L21/48; F28F3/12
技術領域
stackable,cold,channel,coolant,layer,plate,device,can,channels,fluid
地域: NY NY Armonk

摘要

Techniques that facilitate two-phase liquid cooling of an electronic device are provided. In one example, an apparatus, such as a cold plate device, comprises a first stackable layer and a second stackable layer. The first stackable layer comprises a first channel formed within the first stackable layer. The first channel comprises a first channel width and the first channel receives a coolant fluid via an inlet port of the apparatus. The second stackable layer comprises a second channel that provides a path for the coolant fluid to flow between the first channel and an outlet port of the apparatus. A width of the second channel increases along a flow direction of the coolant fluid that flows between the inlet port and the outlet port.

說明書

FIGS. 18A-E illustrate example, non-limiting channels associated with raised step structures in accordance with one or more embodiments described herein. Repetitive description of like elements employed in other embodiments described herein is omitted for sake of brevity.

FIG. 18A illustrates a channel 1802 that includes a raised step structure 1804a, a raised step structure 1804b, a raised step structure 1804c and a raised step structure 1804d. As shown in FIG. 18A, an orientation of the raised step structures 1804a-d can be perpendicular to flow of coolant fluid through the channel 1802.

FIG. 18B illustrates a channel 1806 that includes a raised step structure 1808a, a raised step structure 1808b and a raised step structure 1808c. As shown in FIG. 18B, an orientation of the raised step structures 1808a-c can be rotated (e.g., rotated clockwise) relative to flow of coolant fluid through the channel 1806.

FIG. 18C illustrates a channel 1810 that includes a raised step structure 1812a, a raised step structure 1812b and a raised step structure 1812c. As shown in FIG. 18C, an orientation of the raised step structures 1812a-c can be rotated (e.g., rotated counterclockwise) relative to flow of coolant fluid through the channel 1810.

權利要求

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