US 12,392,560 B2
Thermal dissipation module
Yung-Chih Wang, New Taipei (TW); Jau-Han Ke, New Taipei (TW); Wen-Neng Liao, New Taipei (TW); and Cheng-Wen Hsieh, New Taipei (TW)
Assigned to Acer Incorported, New Taipei (TW)
Filed by Acer Incorporated, New Taipei (TW)
Filed on Nov. 9, 2023, as Appl. No. 18/505,136.
Application 18/505,136 is a division of application No. 18/169,857, filed on Feb. 15, 2023, granted, now 11,852,420.
Application 18/169,857 is a division of application No. 16/792,195, filed on Feb. 15, 2020, granted, now 11,609,048, issued on Mar. 21, 2023.
Application 16/792,195 is a division of application No. 15/796,858, filed on Oct. 30, 2017, granted, now 10,634,435, issued on Apr. 28, 2020.
Application 15/796,858 is a continuation of application No. 15/189,291, filed on Jun. 22, 2016, granted, now 9,835,382, issued on Dec. 5, 2017.
Claims priority of application No. 104130535 (TW), filed on Sep. 16, 2015; application No. 105108930 (TW), filed on Mar. 23, 2016; and application No. 105110817 (TW), filed on Apr. 6, 2016.
Prior Publication US 2024/0068754 A1, Feb. 29, 2024
Int. Cl. F28D 15/02 (2006.01); F28F 1/00 (2006.01); F28F 13/08 (2006.01); G06F 1/20 (2006.01); H05K 7/20 (2006.01); F28D 21/00 (2006.01)
CPC F28D 15/025 (2013.01) [F28D 15/02 (2013.01); F28D 15/0266 (2013.01); F28F 1/006 (2013.01); F28F 13/08 (2013.01); G06F 1/203 (2013.01); H05K 7/20336 (2013.01); F28D 2021/0028 (2013.01)] 1 Claim
OG exemplary drawing
 
1. A heat dissipation module, which is suitable for an electronic device having a heat source, the heat dissipation module comprising:
an evaporator, having a recess at an exterior surface of the evaporator, the recess forming a heat conducting zone to absorb heat generated from the heat source;
a heat pipe, thermally contacted to the heat source and disposed between the heat source and the evaporator, and the heat pipe is structurally contacted to the recess to transfer heat from the heat source to the evaporator;
a plurality of heat conducting components, disposed in the evaporator, located at an interior of the evaporator corresponding to the heat conducting zone, and the plurality of heat conducting components being in pillar shape or rib shape respectively;
a pipe, disposed outside the evaporator and connected to two openings disposed at opposite sidewalls of the evaporator that face each other in the interior of the evaporator so as to form a loop; and
a working fluid filled in the loop, wherein the working fluid in liquid enters the evaporator from the pipe via one of the two openings, passes through the evaporator, absorbs heat, and is transformed into vapor to flow out of the evaporator and flow into the pipe via the other one of the two openings, wherein each of the heat conducting components in rib shape is oriented in a flow direction of the working fluid.