Abstract:
An electronic device includes: a display, an antenna structure including at least one antenna, a conductive support disposed between the display and the antenna structure, a sensor disposed between the display and the conductive support, a first printed circuit board disposed between the conductive support and the antenna structure, a second printed circuit board stacked on the first printed circuit board, a board support coupled with the conductive support and overlapping at least part of the second printed circuit board, and a first insulating member comprising an insulating material disposed between the board support and the antenna structure.
Abstract:
An electronic device is provided. The electronic device includes an input sensing module that detects at least two inputs and a processor that controls the electronic device to perform a function corresponding to an input received through the input sensing module, wherein the input sensing module includes at least one fingerprint recognition sensor, at least one touch sensor, and an input processor electrically connected to the at least one fingerprint recognition sensor and the at least one touch sensor and that processes an input received from the at least one fingerprint recognition sensor or the at least one touch sensor and that transfers the input to the processor.
Abstract:
A shield can for electromagnetic shielding is provided. The shield can includes a shield cover having a bump protruding laterally therefrom, and a shield frame having a connecting part for selectively fixing the bump at a first height or a second height such that the shield frame is fastened to the shield cover. An electronic device includes a substrate, an internal device mounted on the substrate, and the shield can. The shield cover is located over the internal device, and the shield frame is formed vertically on the substrate to surround the internal device.
Abstract:
The electronic device includes a transparent member, a display positioned under a transparent member that includes a plurality of pixels, an image sensor positioned under some areas of the display, a memory, and a processor. The processor obtains a first image at least based on light output through at least some of the plurality of pixels and reflected by an external object coming into contact with the transparent member using the image sensor, performs authentication on the external object at least based on the at least one template using the first image, generates a second image of the external object at least based on the first image when quality of the first image corresponds to a given condition based on a result of the authentication, and performs authentication on the external object at least based on the at least one template using the second image.
Abstract:
An input device may include: (a) a connector that recognizes a connection of an external device; (b) a switch located at an upper end portion of the connector and that connects an electrical signal when a physical input of a threshold pressure or more is pressed; (c) a substrate connected to a connection terminal of the switch and mounted at a surface in which the switch is not located; and/or (d) a key base that presses the switch.
Abstract:
A wearable device that is mounted with a fingerprint recognition sensor is provided. The wearable device includes a housing including a first, a second face facing, and a third face facing, a support structure disposed between the first and second faces, a display disposed on the first face to be exposed, and including a window having a first flange and a second flange disposed to be opposite the first face, and a display module coupled to the window to face the second direction, the display being disposed on one face of the support structure, a printed circuit board disposed on another face of the support structure, at least one light emitter mounted adjacent to the first flange to emit light to a first region of the window, and at least one light receptor mounted adjacent to the second flange to receive light reflected from the first region.
Abstract:
An electronic device is provided. The electronic device includes an input sensing module that detects at least two inputs and a processor that controls the electronic device to perform a function corresponding to an input received through the input sensing module, wherein the input sensing module includes at least one fingerprint recognition sensor, at least one touch sensor, and an input processor electrically connected to the at least one fingerprint recognition sensor and the at least one touch sensor and that processes an input received from the at least one fingerprint recognition sensor or the at least one touch sensor and that transfers the input to the processor.
Abstract:
A method for controlling a driving condition of a control unit based on an operating state, and a corresponding electronic device. The method comprises: identifying, at the control unit (160), which function modules (61-64) in the control unit (160) are activated; selecting, at the control unit (160), a Dynamic Voltage and Frequency Scaling, DVFS, extended table (153) among a plurality of DVFS extended tables stored in a memory unit (150), based on the identified activated function modules (61-64); determining, at the control unit (160), the driving condition required for operating the activated function modules (61-64) based on the DVFS extended table (153) corresponding to the activated function modules (161); and based on the determined driving condition, driving the activated function modules (61-64); wherein each of the plurality of DVFS extended tables (153) defines a driving condition, including at least one of a voltage or an operating frequency, depending on activated function modules (61-64) only among all the function modules in the control unit (160).
Abstract:
An electronic device is provided. The electronic device includes an input sensing module that detects at least two inputs and a processor that controls the electronic device to perform a function corresponding to an input received through the input sensing module, wherein the input sensing module includes at least one fingerprint recognition sensor, at least one touch sensor, and an input processor electrically connected to the at least one fingerprint recognition sensor and the at least one touch sensor and that processes an input received from the at least one fingerprint recognition sensor or the at least one touch sensor and that transfers the input to the processor.