Abstract:
Provided is a device for detecting stress of a user based on a bio-signal of the user, and when the stress is detected, outputting information of a peripheral device.
Abstract:
Provided are a system and a method for providing information by using a near field communication. A method for a first device to provide information to a second device includes receiving a first message broadcasted from a communication apparatus since the first device is located within a near field communication range of the communication apparatus; receiving a second message from the second device since the second device located within the near field communication range of the communication apparatus is in near field contact with the first device after the first message is received; authenticating the second device using the second message; and providing predetermined information related to the communication apparatus and the second device since the second device is authenticated.
Abstract:
An electronic apparatus is provided. The electronic apparatus includes a display, an input device configured to receive user identification information, a sensor configured to sense characteristics of food placed on the electronic apparatus, and a processor configured to control to the display to display a user dietary guide based on user information corresponding to the user identification information and the characteristics of food.
Abstract:
A method, performed by an electronic apparatus, of executing an application, based on a voice input of a user, and the electronic apparatus are provided. The method includes performing voice recognition on the voice command for executing the application, determining a target page among a plurality of pages displayable when the application is executed, based on a result of the voice recognition, generating a virtual input sequence for displaying a second screen corresponding to the target page, instead of a first screen currently displayed, and executing the application in response to the virtual input sequence.
Abstract:
The present disclosure is related to technology for a sensor network, machine to machine (M2M) communication, machine type communication (MTC), and Internet of Things (IoT). Provided is a method of providing content, performed by a device, the method including: outputting content from the device; determining a learning state of the user with respect to the content, based on biometric information of a user received from a sensing device; changing the content, based on the determined learning state of the user; and outputting changed content. The present disclosure is applicable to intelligent services based on various technology (e.g., smart home, smart building, smart city, smart car or connected car, health care, digital education, retail business, security, and safety-related service).
Abstract:
Disclosed are a blood glucose measuring device, a blood glucose measuring system, and a method for measuring blood glucose using the blood glucose measuring device. The present blood glucose measuring device comprises: a sensor for measuring blood glucose via a body fluid of a user; and a processor for obtaining error information of the sensor by comparing a first blood glucose level measured by the sensor, and a second blood glucose level measured via the blood of the user, at a first calibration interval during a preset time; calculating the time taken for the error range of the sensor to reach a preset threshold value, on the basis of the first calibration interval and the error information of the sensor; and setting the first calibration interval as a second calibration interval on the basis of the calculated time.
Abstract:
Provided are a mobile terminal for providing a function performable by the mobile terminal to a user by using information input to the mobile terminal by the user, and a method of operating the mobile terminal. The method includes receiving a touch input while a touch sensor of the mobile terminal is activated and a display; determining an operation of the mobile terminal corresponding to the received touch input; and executing the determined operation when the display is activated.
Abstract:
Disclosed is a manufacturing method for a bio-sensor. The present manufacturing method comprise the steps of: preparing an acidic solution comprising an enzyme and a molecule containing a catechol group; an immersing electrodes in the acidic solution and applying a voltage to the electrodes, thereby attaching a structure, which is generated by a reaction of the enzyme and the molecule containing a catechol group, to the electrodes.
Abstract:
An electronic device and a control method therefor are disclosed. The electronic device control method according to the present invention comprises the steps of: receiving blood glucose information and skin temperature information from a blood glucose meter; obtaining external temperature information of a region in which a user wearing the blood glucose meter is located; determining, by using the skin temperature information and the external temperature information, the predictive temperature of an inner skin part at which an enzyme sensor of the blood glucose meter is located; correcting the blood glucose information on the basis of the determined predictive temperature; and outputting the corrected blood glucose information. Therefore, even if the skin temperature rapidly rises or falls because of the external temperature, the electronic device can provide a result similar to the blood glucose value, measured by a disposable blood glucose meter, by correcting a blood glucose value in consideration of the temperature in the skin into which the sensor of a blood glucose meter for measuring blood glucose is inserted.
Abstract:
Disclosed is an apparatus for measuring bio signals. The apparatus for measuring bio signals includes: a sensor module configured to include a needle sensor to be inserted into the skin; and a main body to which the sensor module is separably coupled, and which is configured to include a controller controlling the sensor module to measure a bio signal through the needle sensor, once the sensor module is coupled.