ELECTRONIC DEVICE COMPRISING SHIELDING MEMBER COMPRISING RECESS FOR CONTAINING ADHESIVE MATERIAL

    公开(公告)号:US20210352169A1

    公开(公告)日:2021-11-11

    申请号:US17282399

    申请日:2019-10-08

    Abstract: An electronic device is disclosed. The electronic device may comprise: a housing; a substrate disposed inside the housing and comprising a first electric element and an adhesive material; and a shielding material fixed to the substrate by the adhesive material, the shielding member having a shielding space formed therein, the first electric element being disposed in the shielding space. The shielding member may comprise: a plate facing the substrate; and a side wall formed between the plate and the substrate so as to connect the plate and the substrate, the side wall extending in a peripheral direction so as to surround the shielding space. The adhesive material may be disposed on the substrate so as to surround at least a part of the side wall. The side wall may comprise: an outer surface directed toward the shielding space; an inner surface disposed opposite the outer surface; and a bottom surface facing the substrate. The adhesive material has at least a part formed to at least partially cover the outer surface and the inner surface. At least one of the outer surface and the inner surface may have a recess formed therein so as to contain the adhesive material. Various other embodiments understood from the specification are also possible.

    ELECTRONIC DEVICE AND METHOD FOR ACQUIRING DEPTH INFORMATION OF OBJECT BY USING THE SAME

    公开(公告)号:US20200184664A1

    公开(公告)日:2020-06-11

    申请号:US16577204

    申请日:2019-09-20

    Abstract: An electronic device is disclosed herein. The electronic device includes an illuminator configured to output light of a first designated wavelength band, a time of flight (ToF) sensor configured to acquire the light of the first designated wavelength band, an optical sensor configured to acquire light of a second designated wavelength band, and a processor, configured to: measure, through the optical sensor, a light quantity of an environment in which the electronic device is disposed, determine a first power amount to be supplied to the illuminator, based on the measured light quantity, control the illuminator to irradiate light of a first intensity toward an object, using a supply of power to the illuminator at the first power amount, detect, by the ToF sensor, at least a part of the irradiated light, when reflected off the object and back towards the electronic device, and generate depth information for the object using the at least the part of the detected irradiated light reflected off the object.

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