DISPLAY DEVICE AND WALL-MOUNTED HEAT DISSIPATION MECHANISM THEREOF

    公开(公告)号:US20190204500A1

    公开(公告)日:2019-07-04

    申请号:US15909555

    申请日:2018-03-01

    发明人: Mingjun ZHOU

    摘要: The present disclosure discloses a display device and a mechanism thereof, the wall-mounted heat dissipation mechanism includes: a heat dissipation plate including a longitudinal plate and a transverse plate bended to each other, a LED light bar attached to an inner surface of the longitudinal plate, the transverse plate is arranged opposite to a back surface of the light guide plate; a hanger including a first hanger fixed on a hanging wall and two second hangers respectively fixed on two ends of the first hanger at intervals, the second hanger is configured to detachably connect with the heat dissipation plate; and a heat dissipation mechanism fixed on the first hanger and disposed between the two second hangers, the heat dissipation mechanism being in surface contact with a back surface of the heat dissipation plate. The bulky part of the mechanism is integrated into the hanger structure of the display device.

    COOLING ARRANGEMENT FOR COOLING AN APPARATUS

    公开(公告)号:US20190055943A1

    公开(公告)日:2019-02-21

    申请号:US16080831

    申请日:2017-03-13

    发明人: Simon Eme KADIJK

    IPC分类号: F04C18/02 F21V29/58 F21V29/78

    摘要: A cooling arrangement (1) for cooling of an apparatus (10) which in use may generate heat is disclosed. The cooling arrangement (1) comprises a first member (2), which comprises a first base (4) and a first spiral wrap (5) extending from the first base (4), and a second member (3), which comprises a second base (6) and a second spiral wrap (7) extending from the second base (6). The first spiral wrap (5) and the second spiral wrap (7) are interleaved. The first member (2) is configured to at least thermally couple the apparatus (10) thereto. At least one of the first member (2) and the second member (3) can be moved so as to result in an orbiting motion of one of the first spiral wrap (5) and the second spiral wrap (7) relatively to the other one of the first spiral wrap (5) and the second spiral wrap (7) such that a volume of fluid in at least one space between the first spiral wrap (5) and the second spiral wrap (7) progressively moves during the orbiting motion. Thereby, a flow of fluid between the first spiral wrap (5) and the second spiral wrap (7) is generated which cools the first member (2) by means of dissipation of heat generated by the apparatus (10) by way of transfer of heat from the first member (2) to the flow of fluid between the first spiral wrap (5) and the second spiral wrap (7).