Abstract:
A workout management method performed by a wearable device is provided. The workout management method includes receiving a first information about an amount of exercise to be performed by a user, obtaining a second information about a current fitness state of the user, comparing the first information and the second information, and outputting the result of the comparison to the user.
Abstract:
Provided are a biosignal processing apparatus and a biosignal processing method. The biosignal processing apparatus includes: a first measurement module configured to detect a biosignal of a subject in a non-invasive manner in response to the biosignal processing apparatus being in contact with the subject; a second measurement module configured to measure a contact state with respect to the subject; and a controller configured to determine whether the contact state is equal to or greater than a reference value.
Abstract:
According to an embodiment of the disclosure, an electronic device may include a first housing, a second housing rotatably connected to the first housing, and a display module including a folding area at least partially deformed by rotation of the second housing relative to the first housing, wherein the display module includes a display panel, a support plate disposed under the display panel to support the display panel, a reinforced plate disposed under the support plate, a protective layer disposed under the reinforced plate and including multiple openings, and a waterproof member disposed under the protective layer to have a waterproof space including at least one of the multiple openings. Various other embodiments are possible.
Abstract:
An electronic device is provided. The electronic device includes a first housing, a second housing rotatably coupled to the first housing, a display panel a portion of which is transformed by rotation of the second housing relative to the first housing, a support plate disposed below the display panel to support the display panel and including a region where the display panel is transformed, wherein the support plate includes a first portion including multiple openings which are arranged at predetermined intervals, and a second portion excluding the first portion, a first reinforcement plate disposed below the support plate and disposed in the first housing such that at least a portion thereof is located in the first portion, and a second reinforcement plate disposed below the support plate and disposed in the second housing such that at least a portion thereof is located in the first portion, wherein the first portion of the support plate includes a first region in which a width between the openings in a first direction is a first width, and a second region in which a width between the openings in a first direction is a second width greater than the first width, wherein at least a portion of the second region is located between the first reinforcement plate and the second reinforcement plate.
Abstract:
A package substrate includes a plurality of sequentially stacked insulating layers, a first signal line configured to transmit a first signal therethrough, and a ground line. The first signal line including a first signal via at least partially penetrating the plurality of insulating layers, a first signal pad provided at one end of the first signal via in any selected one of the insulating layers, and a first signal wiring extending from the first signal pad in the selected insulating layer. The ground line including a ground via at least partially penetrating the plurality of insulating layers, a ground pad provided at one end of the ground via in the selected insulating layer, a ground wiring extending from the ground pad in the selected insulating layer, and a ground stub extending from the ground pad toward the first signal via or the first signal pad.
Abstract:
A grating pattern element includes peaks which are periodically arranged and valleys provided between the peaks, and at least one of the peaks and at least one of the valleys includes an adsorbing material on a surface thereof which adsorbs a target material.
Abstract:
Provided is an apparatus and method of measuring stress. The apparatus includes: a light source configured to emit light to the subject; a sensor configured to measure light reflected from the subject; a data extractor configured to obtain, from the reflected light, data that indicates at least one object material included in the subject; and a data processor configured to generate information about the stress of the subject based on a correlation between the obtained data and a reference value of stress.
Abstract:
An electronic device includes a display panel, a display driving circuit disposed under the display panel, a display in a housing including a protective film surrounding the display driving circuit, a supporting member in the housing for supporting the display, and a first elastic member in the housing disposed on the supporting member. The sealing member and the first elastic member on the supporting member are in contact with the protective film, and the first elastic member is disposed in a space formed by a third portion of the protective film extending to a second portion of the protective film different from the first portion of the protective film contacting the sealing member, and the supporting member. Various other embodiments are possible.
Abstract:
An electronic device includes: first and housings; a display disposed on the first housing and the second housing; a hinge structure connecting the first housing and the second housing, and including first, second, and third hinges; a battery in the first housing; a substrate portion including a first circuit board in the first housing and a second circuit board in the second housing, the first circuit board including a main region at least partially positioned above the battery, and an extension region extending from the main region; a connecting structure connecting the first and second circuit boards, the connecting structure including a first connecting member at least partially positioned between the first and third hinges, and a second connecting member at least partially positioned between the second and third hinges; and at least one electronic component positioned between the third hinge and the battery and disposed in the extension region.
Abstract:
A foldable electronic device includes: a housing including a first housing and a second housing part, a flexible display including a first display region, a second display region, and a third display region, a first layer including an electromagnetic induction panel disposed below the first display region, a second layer contacting the second display region, a first magnet, and a second magnet. The second layer includes a shielding member comprising a shielding sheet disposed between the second magnet and a portion of the electromagnetic induction panel, and a waterproof member comprising a waterproof material at least partially surrounding the shielding member.