Abstract:
Various embodiments of the present invention relate to an electronic device comprising a biometric sensor disposed in a display, and the electronic device comprises: a transparent cover; a display module located under the transparent cover, wherein the display module comprises a display layer in which pixels are formed and one or more additional layers formed under the display layer, and an opening is formed in at least a partial region of at least one layer among the one or more layers; a first printed circuit board having a biometric sensor module, which is disposed under the display module and makes contact with the opening; and a second printed circuit board electrically connected to the first printed circuit board and the display module, wherein a pressure sensor module can be disposed in the surrounding region of the biometric sensor module under the display module in the second printed circuit board. In addition, other embodiments are possible.
Abstract:
An electronic device and a method for charging a battery of the electronic device are provided. The electronic device includes a housing; a battery disposed within the housing; a first interface electrically or electromagnetically connected to a first external power source; a second interface electrically or electromagnetically connected to a second external power source; and a circuit electrically connected to the battery, the first interface, and the second interface, wherein the circuit changes a first voltage output from the first interface based on a second voltage output from the second interface, changes a first current output from the first interface based on a second current output from the second interface, and charges the battery based on the changed first current and second current.
Abstract:
An electronic device includes a housing that includes a first end portion and a second end portion, a pen tip that is disposed at the first end portion, a first coil that is disposed in the housing adjacent to the first end portion, is wound around an axis of the housing, and includes a first conductive line of a first length, and a second coil that surrounds the first coil, is wound around the axis of the housing, and includes a second conductive line of a second length shorter than the first length.
Abstract:
An electronic device and a method for charging a battery of the electronic device are provided. The electronic device includes a housing; a battery disposed within the housing; a first interface electrically or electromagnetically connected to a first external power source; a second interface electrically or electromagnetically connected to a second external power source; and a circuit electrically connected to the battery, the first interface, and the second interface, wherein the circuit changes a first voltage output from the first interface based on a second voltage output from the second interface, changes a first current output from the first interface based on a second current output from the second interface, and charges the battery based on the changed first current and second current.
Abstract:
An integrated circuit device includes a first semiconductor substrate having a frontside surface and a backside surface, a front-end-of-line (FEOL) structure on the frontside surface of the first semiconductor substrate, the FEOL structure including a plurality of fin-type active regions, a back-end-of-line (BEOL) structure on the FEOL structure, a second BEOL structure on the backside surface of the first semiconductor substrate, and a second semiconductor substrate spaced apart from the first semiconductor substrate in the vertical direction with the FEOL structure and the first BEOL structure therebetween, wherein a Young's modulus of a first crystal orientation extending parallel to the frontside surface of the first semiconductor substrate is different from a Young's modulus of a second crystal orientation that overlaps the first crystal orientation in the vertical direction and extends parallel to the first crystal orientation in the second semiconductor substrate.
Abstract:
An electronic device including a housing including a first inner space and a hole leading to the first inner space, a first wireless communication circuit positioned inside the housing, a stylus pen insertable into the first inner space through the hole, the stylus pen including an elongated pen housing including a second inner space elongated between a first end and a second end, a pen tip disposed at the first end, a pushable first button disposed at the second end, and a second wireless communication circuit positioned inside the pen housing and configured to wirelessly transmit and/or receive a signal to/from the first wireless communication circuit, a processor positioned inside the housing and operatively connected with the first wireless communication circuit, and a memory positioned inside the housing and operatively connected with the processor, wherein the memory is configured to store instructions that, when executed, enable the processor to disregard a first signal transmitted by the second wireless communication circuit as the pushable first button is pushed while the stylus pen is in the housing, receive a second signal transmitted by the second wireless communication circuit as the pushable first button is pushed while the stylus pen is outside the housing, and perform a selected function in response to the received second signal.
Abstract:
An electronic device includes: a housing including a plate and a back plate facing a second surface of the plate and including a planar area facing a first direction, a display module including a display disposed on a first surface of the plate, a battery and a circuit board disposed on the second surface of the plate, a first flexible substrate extending from the display module, and a second flexible substrate extending from the circuit board to the first flexible substrate across the battery. The first flexible substrate includes a first connector, and the second flexible substrate includes a second connector. The first flexible substrate and the second flexible substrate are configured such that the first connector and the second connector are coupled in a second direction different from the first direction.
Abstract:
An electronic device includes a display including a first surface facing a first direction to output display information and a second surface facing a second direction opposite the first direction, a biometric sensor including a sensing surface disposed to face a partial area of the second surface of the display and a side surface formed in a lateral direction, a first fixing member interposed between the partial area of the second surface and the biometric sensor such that the sensing surface is attached to the partial area of the second surface, and hardened at a specified temperature, and a second fixing member attached to at least a portion of the side surface and at least a portion of a peripheral area adjacent to the partial area of the second surface and hardened by light of a specified wavelength.
Abstract:
An electronic device according to one embodiment of the present disclosure comprises: a transparent member; a display panel arranged below the transparent member; an ultrasonic sensor, arranged below the display panel, for acquiring biometric information by using ultrasonic waves having passed through the display panel and the transparent member for an external object close to the transparent member; and a light absorbing member for absorbing, through the transparent member and the display panel, at least a part of external light incident on the ultrasonic sensor, wherein the light absorbing member can be arranged between the display panel and the ultrasonic sensor. Other various examples are possible.
Abstract:
An electronic device including a flexible display and a method capable of determining a bending direction of the flexible display by using at least one bending confirmation touch recognition pattern are provided. The electronic device includes a flexible display unit including a display panel and a support structure configured to support the display panel; a sensor unit configured to sensing bending of the flexible display unit; and a control unit configured to determine a bending extent and a bending direction of the flexible display unit based on a sensing result of the sensor unit, wherein a plurality of touch recognition patterns are arranged on the display panel and the support structure, and the arranged touch recognition patterns include a bending confirmation pattern.