Abstract:
An electronic device and method are disclosed within. The electronic device includes a location sensor, a memory, a communication module, and a processor. The processor implements the method, including receiving, from the communication module, identification information of one or more external electronic devices included in a primary geo-fence, and relative distances between each of the one or more external electronic devices and the electronic device, determining respective locations of the one or more external electronic devices, based on a location of the electronic device as detected via the location sensor, and the relative distances, and defining a portion of the primary geo-fence as a secondary geo-fence inclusive of the one or more external electronic devices, based at least on the identification information and the respective locations of the one or more external electronic devices.
Abstract:
An electronic apparatus, includes: one or more processors; and at least one memory storing instructions that, when executed by the one or more processors, cause the electronic apparatus to: obtain image frames in a user-captured image stored in the at least one memory; identify an object which includes motion information based on the image frames; obtain first feature information of the object from a first image frame from among the image frames; obtain a first avatar image corresponding to the object based on the first feature information; obtain second feature information of the object from a second image frame from among the image frames; obtain a second avatar image corresponding to the object based on the second feature information; and obtain a virtual space image based on the first avatar image and the second avatar image.
Abstract:
An electronic device and a method of the electronic device are provided. The electronic device includes a location measurement module configured to measure a location; a memory configured to store an application program; and a processor electrically connected to the location measurement module and the memory, wherein the memory stores instructions that, when executed, cause the processor to store location information obtained by the location measurement module in the memory, process a request from the application program to obtain location information, and, in response to the request to obtain location information, provide the stored location information to the application program based on at least part of the location information stored in the memory.
Abstract:
An electronic device is provided. The electronic device includes a housing and a sensor module disposed in at least a portion of the housing. The sensor module includes a fingerprint recognition sensor, a protective layer covering the fingerprint recognition sensor, an adhesive member placed on the protective layer, and a ceramic layer placed on the adhesive member, wherein the edge of the ceramic layer, the edge of the adhesive member, and the edge of a part of the protective layer include machined surfaces. Other embodiments are also possible.
Abstract:
An electronic device is provided. The electronic device includes a fingerprint sensor including a sensor having a surface including epoxy molding compound (EMC) resin, a first layer disposed on the surface of the sensor or above the surface of the sensor, and a second layer disposed on the first layer or above the first layer. The first layer includes a first ultraviolet (UV) hardening material having first hardness. The second layer includes a second UV hardening material having second hardness greater than the first hardness and a surface of the second layer has surface roughness less than a specified value.
Abstract:
An electronic device includes a housing forming the exterior of the electronic device, the housing comprising: a base material forming the shape of the housing; a first layer positioned on one surface of the base material and containing a color paint; and a second layer positioned on one surface of the first layer and containing a visible light-transmitting material, wherein the second layer contains an infrared absorbing material, and the second layer may include a marking region on a surface exposed to the outside of the housing.
Abstract:
An electronic device according to an embodiment includes an application processor, and a wireless communication chipset, the wireless communication chipset is configured to, while the application processor is in a low power state, identify a first location of a first external device, acquire information on a second location of the electronic device via a location tracking circuit, and determine, based on the information on the second location, whether the electronic device is located within a first range with respect to the first location, the wireless communication chipset is configured to process a first signal received from the first external device based on a determination that the electronic device is located within the first range, and the application processor is configured to process the first signal received from the first external device based on a determination that the electronic device is located outside the first range.
Abstract:
Disclosed are a method of managing geo-fences by an electronic device and an electronic device therefor. An operation of the electronic device may include: identifying a deletion of at least some geo-fences among a plurality of geo-fences stored in the electronic device or an addition of other geo-fences; identifying a number of remaining geo-fences among the plurality of geo-fences according to the deletion or the addition; and when the number of remaining geo-fences is larger than a number of geo-fences which can be allowed by hardware resources, grouping the remaining geo-fences as one or more geo-fence groups.
Abstract:
An electronic device is provided. The electronic device includes one or more application processor, memory electrically coupled with the one or more application processor, and a wireless communication chipset which supports a short-range communication and is electrically coupled to the one or more application processor, wherein the wireless communication chipset is configured to receive an advertising packet broadcast by a first external device with a specified interval, and wherein the memory stores instructions that, when executed by the one or more application processor, cause the electronic device to obtain first locations of the electronic device, measured in response to receiving a plurality of first advertising packets by the wireless communication chipset while the first external device is located in a first point, and determine a first geofence corresponding to the first external device located in the first point, based on at least some of the obtained first locations.
Abstract:
An electronic device may include a communication circuit and a processor electrically connected to the communication circuit, where the processor may be configured to receive location information of the electronic device, identify whether an amount of the location information is greater than or equal to a reference amount, and change a geofence configuration based on a location accuracy radius of the location information, in case that the location information amount is equal to or greater than the reference amount, and the location accuracy radius may be determined based on a probability that the electronic device is actually located in a specific area.