Electronic device and method for providing user interface

The electronic device with a foldable housing and a method for providing a user interface addresses the challenge of wearable devices without a display by enabling them to determine charging status and connection status, enhancing usability through interactive user interfaces.

WO2025116612A1PCT designated stage expired Publication Date: 2025-06-05SAMSUNG ELECTRONICS CO LTD
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Patent Information

Application Number
PCT/KR2024/019296
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-01-16
Filing Date
2024-11-29
Publication Date
2025-06-05

AI Technical Summary

Technical Problem

Wearable devices without a display, such as rings or bands, face difficulties in determining their charging status and connection status to electronic devices.

Method used

An electronic device with a foldable housing and a method for providing a user interface that includes determining if a wearable device is in a charging area, confirming the user or device name, and displaying a user interface related to the wearable device on a cover display when it is facing a specific direction.

Benefits of technology

This solution improves the usability of wearable devices by providing a user interface for interaction with an electronic device, enabling them to monitor charging status and connection without a separate display.

✦ Generated by Eureka AI based on patent content.

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Abstract

The electronic device of the present disclosure comprises: a foldable housing which can be folded or unfolded; a main display disposed on the first surface of the foldable housing; a cover display disposed on the second surface of the foldable housing; a coil disposed toward the second surface and configured to wirelessly receive power from the outside or transmit power to the outside; a communication circuit; at least one processor; and a memory for storing instructions. The instructions, when executed individually or collectively by the at least one processor, cause the electronic device to: determine whether a wearable device is placed in a charging area corresponding to the coil or not; identify at least one of the user of the wearable device and the device name thereof through the communication circuit; control the cover display so as to display a user interface related to the wearable device on the cover display if it is determined that the wearable device is placed in the charging area, and if it is determined that the cover display faces a specific direction; transmit power to the wearable device on the basis of charging settings; and display a user interface regarding the charging of the wearable device.
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Description

Methods for providing electronic devices and user interfaces

[0001] Various embodiments of the present disclosure relate to an electronic device and a method for providing a user interface.

[0002] Electronic devices are being developed that include sensors that can be worn on the user's body to measure biometric information and / or fitness data.

[0003] These electronic devices are typically carried in a pocket or hand for on-the-go use, but they can also be worn on other parts of the body or various structures. Electronic devices can be defined as wearable devices because they can be worn on the user's body.

[0004] A wearable device may include, for example, a watch or band that can be worn on a user's wrist, or a ring that is worn on a user's finger.

[0005] The above information may be provided as background art to aid in understanding the present disclosure. No claim or determination is made as to whether any of the above is applicable as prior art related to the present disclosure.

[0006] An electronic device according to one embodiment of the present disclosure may include a foldable housing that can be folded or unfolded.

[0007] An electronic device according to one embodiment of the present disclosure may include a main display disposed on a first surface of the foldable housing.

[0008] An electronic device according to one embodiment of the present disclosure may include a cover display disposed on a second side of the foldable housing.

[0009] An electronic device according to one embodiment of the present disclosure may include a coil disposed toward the second surface and configured to wirelessly receive power from an external source or transmit power to an external source.

[0010] An electronic device according to one embodiment of the present disclosure may include a communication circuit.

[0011] An electronic device according to one embodiment of the present disclosure may include at least one processor.

[0012] An electronic device according to one embodiment of the present disclosure may include a memory that stores instructions.

[0013] The instructions according to one embodiment of the present disclosure, when individually or collectively executed by the at least one processor, may cause the electronic device to determine whether a wearable device is placed in a charging area corresponding to the coil.

[0014] The instructions according to one embodiment of the present disclosure, when individually or collectively executed by the at least one processor, may cause the electronic device to identify one or more of a user or device name of the wearable device through the communication circuit.

[0015] The instructions according to one embodiment of the present disclosure, when individually or collectively executed by the at least one processor, may cause the electronic device to determine that the wearable device is placed in the charging area.

[0016] The instructions according to one embodiment of the present disclosure, when individually or collectively executed by the at least one processor, may cause the electronic device to control the cover display to display a user interface related to the wearable device on the cover display when the cover display is determined to be facing a specific direction.

[0017] The instructions according to one embodiment of the present disclosure, when individually or collectively executed by the at least one processor, may cause the electronic device to transfer power to the wearable device based on a charging setting and to display a user interface related to charging of the wearable device.

[0018] A method for providing a user interface according to one embodiment of the present disclosure may include an operation of determining whether a wearable device is placed in a charging area corresponding to a coil.

[0019] A method for providing a user interface according to one embodiment of the present disclosure may include an operation of confirming one or more of a user or device name of the wearable device through a communication circuit.

[0020] A method for providing a user interface according to one embodiment of the present disclosure may include an operation of controlling a user interface related to the wearable device to be displayed on the cover display using the cover display when it is determined that the wearable device is placed in the charging area and the cover display is determined to be facing a specific direction.

[0021] A method for providing a user interface according to one embodiment of the present disclosure may include an operation of transmitting power to the wearable device based on a charging setting and displaying a user interface related to charging of the wearable device.

[0022] In connection with the description of the drawings, the same or similar reference numerals may be used for the same or similar components.

[0023] FIG. 1 is a block diagram of an electronic device within a network environment according to various embodiments of the present disclosure.

[0024] FIG. 2A is a diagram illustrating a folded state of an electronic device according to one embodiment of the present disclosure.

[0025] FIG. 2b is a diagram illustrating an extended state of an electronic device viewed from the cover display direction according to one embodiment of the present disclosure.

[0026] FIG. 2c is a drawing illustrating an unfolded state of an electronic device viewed from the main display direction according to one embodiment of the present disclosure.

[0027] FIG. 3A is a diagram illustrating a folded state of an electronic device according to one embodiment of the present disclosure.

[0028] FIG. 3b is a drawing illustrating an unfolded state of an electronic device viewed from the cover display direction according to one embodiment of the present disclosure.

[0029] FIG. 3c is a diagram illustrating an extended state of an electronic device viewed from the main display direction according to one embodiment of the present disclosure.

[0030] FIG. 4 is a diagram illustrating electronic devices and a wearable device according to one embodiment of the present disclosure.

[0031] FIG. 5 is a flowchart illustrating a method for providing a user interface of an electronic device according to one embodiment of the present disclosure.

[0032] FIG. 6A is a diagram illustrating an operation of displaying a user interface related to a wearable device when a user input is received on a cover display according to one embodiment of the present disclosure.

[0033] FIG. 6b is a diagram illustrating an operation of displaying a user interface related to a wearable device when a user input is received on a main display according to one embodiment of the present disclosure.

[0034] FIG. 7A is a diagram illustrating an operation of displaying a user interface related to a wearable device in an electronic device according to one embodiment of the present disclosure.

[0035] FIG. 7b is a diagram illustrating an operation of displaying a user interface related to a wearable device in an electronic device according to one embodiment of the present disclosure.

[0036] FIG. 7c is a diagram illustrating an operation of displaying a user interface related to a wearable device in an electronic device according to one embodiment of the present disclosure.

[0037] FIG. 7d is a diagram illustrating an operation of displaying a user interface related to a wearable device in an electronic device according to one embodiment of the present disclosure.

[0038] FIG. 8 is a diagram illustrating an operation of displaying a user interface related to a wearable device in an electronic device according to one embodiment of the present disclosure.

[0039] FIG. 9 is a diagram illustrating an operation of displaying a user interface related to a wearable device in an electronic device according to one embodiment of the present disclosure.

[0040] FIG. 10A is a drawing showing a cover of the electronic device of FIG. 2B according to one embodiment of the present disclosure.

[0041] FIG. 10b is a drawing showing a cover of the electronic device of FIG. 3b according to one embodiment of the present disclosure.

[0042] FIG. 10C is a diagram illustrating a user interface displayed on a cover display when a wearable device is mounted on a protruding area of ​​the cover in FIG. 10A according to one embodiment of the present disclosure.

[0043] FIG. 11 is a diagram illustrating an operation of displaying an indicator related to screen rotation or screen switching on a cover display of an electronic device according to one embodiment of the present disclosure.

[0044] FIG. 12A is a diagram illustrating a first connection between a wearable device and an electronic device according to one embodiment of the present disclosure.

[0045] FIG. 12b is a diagram illustrating a first connection between a wearable device and an electronic device according to one embodiment of the present disclosure.

[0046] FIG. 12c is a diagram illustrating a first connection between a wearable device and an electronic device according to one embodiment of the present disclosure.

[0047] FIG. 12d is a diagram illustrating a first connection between a wearable device and an electronic device according to one embodiment of the present disclosure.

[0048] FIG. 12e is a diagram illustrating a first connection between a wearable device and an electronic device according to one embodiment of the present disclosure.

[0049] FIG. 13A is a diagram illustrating an operation of an electronic device according to one embodiment of the present disclosure to display a user interface for a wearable device on a cover display.

[0050] FIG. 13b is a diagram illustrating an operation of an electronic device according to one embodiment of the present disclosure to display a user interface for a wearable device on a cover display.

[0051] FIG. 14 is a diagram illustrating an operation of the electronic device of FIG. 2b displaying a user interface for a wearable device on a cover display according to one embodiment of the present disclosure.

[0052] FIG. 15A is a diagram illustrating an operation of the electronic device of FIG. 3B displaying a user interface for a wearable device on a cover display according to one embodiment of the present disclosure.

[0053] FIG. 15B is a diagram illustrating an operation of the electronic device of FIG. 3B displaying a user interface for a wearable device on a cover display according to one embodiment of the present disclosure.

[0054] FIG. 16 is a diagram illustrating an operation of the electronic device of FIG. 2b displaying a user interface for a wearable device on a cover display according to one embodiment of the present disclosure.

[0055] FIG. 17a and FIG. 17b are flowcharts illustrating connection between an electronic device and a wearable device according to one embodiment of the present disclosure.

[0056] FIG. 18 is a diagram illustrating an operation of performing charging settings of a smart ring in an electronic device according to one embodiment of the present disclosure.

[0057] FIG. 19a is a diagram illustrating a case where a smart ring is detached while receiving power in an electronic device according to an embodiment of the present disclosure.

[0058] FIG. 19b is a diagram illustrating a case in which a smart ring is detached while receiving power in an electronic device according to an embodiment of the present disclosure.

[0059] Wearable devices that do not include a display (e.g., rings or bands) have difficulty checking their charging status and connection status with electronic devices.

[0060] An electronic device and a method for providing a user interface according to one embodiment of the present disclosure are intended to provide a user interface related to interaction between a wearable device and an electronic device.

[0061] An electronic device and a method for providing a user interface according to one embodiment of the present disclosure can improve the usability of wearable devices by providing a user interface related to interaction with the electronic device to wearable devices that do not include a separate display.

[0062] FIG. 1 is a block diagram of an electronic device (101) within a network environment (100) according to various embodiments.

[0063] Referring to FIG. 1, in a network environment (100), an electronic device (101) may communicate with an electronic device (102) via a first network (198) (e.g., a short-range wireless communication network), or may communicate with at least one of an electronic device (104) or a server (108) via a second network (199) (e.g., a long-range wireless communication network). In one embodiment, the electronic device (101) may communicate with the electronic device (104) via the server (108). According to one embodiment, the electronic device (101) may include a processor (120), a memory (130), an input module (150), an audio output module (155), a display (160), an audio module (170), a sensor module (176), an interface (177), a connection terminal (178), a haptic module (179), a camera module (180), a power management module (188), a battery (189), a communication module (190), a subscriber identification module (196), or an antenna module (197). In some embodiments, the electronic device (101) may omit at least one of these components (e.g., the connection terminal (178)), or may have one or more other components added. In some embodiments, some of these components (e.g., the sensor module (176), the camera module (180), or the antenna module (197)) may be integrated into one component (e.g., the display (160)).

[0064] The processor (120) may, for example, execute software (e.g., a program (140)) to control at least one other component (e.g., a hardware or software component) of the electronic device (101) connected to the processor (120) and perform various data processing or calculations. According to one embodiment, as at least a part of the data processing or calculations, the processor (120) may store commands or data received from other components (e.g., a sensor module (176) or a communication module (190)) in a volatile memory (132), process the commands or data stored in the volatile memory (132), and store result data in a non-volatile memory (134). According to one embodiment, the processor (120) may include a main processor (121) (e.g., a central processing unit or processor) or a secondary processor (123) (e.g., a graphics processing unit, a neural processing unit (NPU), an image signal processor, a sensor hub processor, or a communication processor) that can operate independently or together therewith. For example, if the electronic device (101) includes a main processor (121) and a secondary processor (123), the secondary processor (123) may be configured to use less power than the main processor (121) or to be specialized for a specified function. The secondary processor (123) may be implemented separately from the main processor (121) or as a part thereof.

[0065] The auxiliary processor (123) may control at least a portion of functions or states associated with at least one component (e.g., the display (160), the sensor module (176), or the communication module (190)) of the electronic device (101), for example, on behalf of the main processor (121) while the main processor (121) is in an inactive (e.g., sleep) state, or together with the main processor (121) while the main processor (121) is in an active (e.g., application execution) state. In one embodiment, the auxiliary processor (123) (e.g., an image signal processor or a communication processor) may be implemented as a part of another functionally related component (e.g., a camera module (180) or a communication module (190)). In one embodiment, the auxiliary processor (123) (e.g., a neural network processing unit) may include a hardware structure specialized for processing artificial intelligence models. The artificial intelligence models may be generated through machine learning. This learning can be performed, for example, on the electronic device (101) itself where the artificial intelligence model is executed, or can be performed through a separate server (e.g., server (108)). The learning algorithm can include, for example, supervised learning, unsupervised learning, semi-supervised learning, or reinforcement learning, but is not limited to the examples described above. The artificial intelligence model can include multiple artificial neural network layers.The artificial neural network may be one of a deep neural network (DNN), a convolutional neural network (CNN), a recurrent neural network (RNN), a restricted Boltzmann machine (RBM), a deep belief network (DBN), a bidirectional recurrent deep neural network (BRDNN), a deep Q-network, or a combination of two or more of the above, but is not limited to the examples described above. In addition to, or alternatively to, a hardware structure, an artificial intelligence model may include a software structure.

[0066] The memory (130) can store various data used by at least one component (e.g., processor (120) or sensor module (176)) of the electronic device (101). The data can include, for example, software (e.g., program (140)) and input data or output data for commands related thereto. The memory (130) can include volatile memory (132) or non-volatile memory (134).

[0067] The program (140) may be stored as software in the memory (130) and may include, for example, an operating system (142), middleware (144), or an application (146).

[0068] The input module (150) can receive commands or data to be used in a component of the electronic device (101) (e.g., a processor (120)) from an external source (e.g., a user) of the electronic device (101). The input module (150) can include, for example, a microphone, a mouse, a keyboard, a key (e.g., a button), or a digital pen (e.g., a stylus pen).

[0069] The audio output module (155) can output audio signals to the outside of the electronic device (101). The audio output module (155) can include, for example, a speaker or a receiver. The speaker can be used for general purposes, such as multimedia playback or recording playback. The receiver can be used to receive incoming calls. In one embodiment, the receiver can be implemented separately from the speaker or as part of the speaker.

[0070] The display (160) can visually provide information to an external party (e.g., a user) of the electronic device (101). The display (160) may include, for example, a display, a holographic device, or a projector, and a control circuit for controlling the device. In one embodiment, the display (160) may include a touch sensor configured to detect a touch, or a pressure sensor configured to measure the strength of a force generated by the touch.

[0071] The audio module (170) can convert sound into an electrical signal, or vice versa, convert an electrical signal into sound. According to one embodiment, the audio module (170) can acquire sound through the input module (150), output sound through the sound output module (155), or an external electronic device (e.g., electronic device (102)) (e.g., speaker or headphone) directly or wirelessly connected to the electronic device (101).

[0072] The sensor module (176) can detect the operating status (e.g., power or temperature) of the electronic device (101) or the external environmental status (e.g., user status) and generate an electrical signal or data value corresponding to the detected status. According to one embodiment, the sensor module (176) can include, for example, a gesture sensor, a gyro sensor, a barometric pressure sensor, a magnetic sensor, an acceleration sensor, a grip sensor, a proximity sensor, a color sensor, an IR (infrared) sensor, a biometric sensor, a temperature sensor, a humidity sensor, or an illuminance sensor.

[0073] The interface (177) may support one or more designated protocols that may be used to directly or wirelessly connect the electronic device (101) with an external electronic device (e.g., the electronic device (102)). In one embodiment, the interface (177) may include, for example, a high definition multimedia interface (HDMI), a universal serial bus (USB) interface, an SD card interface, or an audio interface.

[0074] The connection terminal (178) may include a connector through which the electronic device (101) may be physically connected to an external electronic device (e.g., electronic device (102)). According to one embodiment, the connection terminal (178) may include, for example, an HDMI connector, a USB connector, an SD card connector, or an audio connector (e.g., a headphone connector).

[0075] The haptic module (179) can convert electrical signals into mechanical stimuli (e.g., vibration or movement) or electrical stimuli that a user can perceive through tactile or kinesthetic sensations. According to one embodiment, the haptic module (179) can include, for example, a motor, a piezoelectric element, or an electrical stimulation device.

[0076] The camera module (180) can capture still images and videos. According to one embodiment, the camera module (180) may include one or more lenses, image sensors, image signal processors, or flashes.

[0077] The power management module (188) can manage power supplied to the electronic device (101). According to one embodiment, the power management module (188) can be implemented as, for example, at least a part of a power management integrated circuit (PMIC).

[0078] A battery (189) may power at least one component of the electronic device (101). In one embodiment, the battery (189) may include, for example, a non-rechargeable primary battery, a rechargeable secondary battery, or a fuel cell.

[0079] The communication module (190) may support the establishment of a direct (e.g., wired) communication channel or a wireless communication channel between the electronic device (101) and an external electronic device (e.g., electronic device (102), electronic device (104), or server (108)), and the performance of communication through the established communication channel. The communication module (190) may operate independently from the processor (120) (e.g., application processor) and may include one or more communication processors that support direct (e.g., wired) communication or wireless communication. According to one embodiment, the communication module (190) may include a wireless communication module (192) (e.g., a cellular communication module, a short-range wireless communication module, or a global navigation satellite system (GNSS) communication module) or a wired communication module (194) (e.g., a local area network (LAN) communication module, or a power line communication module). Among these communication modules, the corresponding communication module can communicate with an external electronic device (104) via a first network (198) (e.g., a short-range communication network such as Bluetooth, wireless fidelity (WiFi) direct, or infrared data association (IrDA)) or a second network (199) (e.g., a long-range communication network such as a legacy cellular network, a 5G network, a next-generation communication network, the Internet, or a computer network (e.g., a LAN or WAN)). These various types of communication modules can be integrated into a single component (e.g., a single chip) or implemented as multiple separate components (e.g., multiple chips). The wireless communication module (192) can verify or authenticate the electronic device (101) within a communication network such as the first network (198) or the second network (199) by using subscriber information (e.g., an international mobile subscriber identity (IMSI)) stored in the subscriber identification module (196).

[0080] The wireless communication module (192) can support 5G networks and next-generation communication technologies following the 4G network, such as NR access technology (new radio access technology). The NR access technology can support high-speed transmission of high-capacity data (eMBB (enhanced mobile broadband)), minimization of terminal power and connection of multiple terminals (mMTC (massive machine type communications)), or high reliability and low latency (URLLC (ultra-reliable and low-latency communications)). The wireless communication module (192) can support, for example, a high-frequency band (e.g., mmWave band) to achieve a high data transmission rate. The wireless communication module (192) can support various technologies for securing performance in a high-frequency band, such as beamforming, massive multiple-input and multiple-output (MIMO), full dimensional MIMO (FD-MIMO), array antenna, analog beam-forming, or large scale antenna. The wireless communication module (192) can support various requirements specified in the electronic device (101), an external electronic device (e.g., the electronic device (104)), or a network system (e.g., the second network (199)). According to one embodiment, the wireless communication module (192) can support a peak data rate (e.g., 20 Gbps or more) for eMBB realization, a loss coverage (e.g., 164 dB or less) for mMTC realization, or a U-plane latency (e.g., 0.5 ms or less for downlink (DL) and uplink (UL), or 1 ms or less for round trip) for URLLC realization.

[0081] The antenna module (197) can transmit or receive signals or power to or from an external device (e.g., an external electronic device). In one embodiment, the antenna module (197) may include an antenna including a radiator formed of a conductor or a conductive pattern formed on a substrate (e.g., a PCB). In one embodiment, the antenna module (197) may include a plurality of antennas (e.g., an array antenna). In this case, at least one antenna suitable for a communication method used in a communication network, such as the first network (198) or the second network (199), may be selected from the plurality of antennas, for example, by the communication module (190). A signal or power may be transmitted or received between the communication module (190) and an external electronic device via the at least one selected antenna. In some embodiments, in addition to the radiator, another component (e.g., a radio frequency integrated circuit (RFIC)) may be additionally formed as a part of the antenna module (197).

[0082] According to various embodiments, the antenna module (197) may form a mmWave antenna module. According to one embodiment, the mmWave antenna module may include a printed circuit board, an RFIC disposed on or adjacent a first side (e.g., a bottom side) of the printed circuit board and capable of supporting a designated high frequency band (e.g., a mmWave band), and a plurality of antennas (e.g., an array antenna) disposed on or adjacent a second side (e.g., a top side or a side side) of the printed circuit board and capable of transmitting or receiving signals in the designated high frequency band.

[0083] At least some of the above components can be interconnected and exchange signals (e.g., commands or data) with each other via a communication method between peripheral devices (e.g., a bus, GPIO (general purpose input and output), SPI (serial peripheral interface), or MIPI (mobile industry processor interface)).

[0084] According to one embodiment, commands or data may be transmitted or received between the electronic device (101) and an external electronic device (104) via a server (108) connected to a second network (199). Each of the external electronic devices (102 or 104) may be the same or a different type of device as the electronic device (101). According to one embodiment, all or part of the operations executed in the electronic device (101) may be executed in one or more of the external electronic devices (102, 104, or 108). For example, when the electronic device (101) is to perform a certain function or service automatically or in response to a request from a user or another device, the electronic device (101) may, instead of or in addition to executing the function or service itself, request one or more external electronic devices to perform the function or at least a part of the service. One or more external electronic devices that receive the request may execute at least a portion of the requested function or service, or an additional function or service related to the request, and transmit the result of the execution to the electronic device (101). The electronic device (101) may process the result as is or additionally and provide it as at least a portion of a response to the request. For this purpose, cloud computing, distributed computing, mobile edge computing (MEC), or client-server computing technology may be used, for example. The electronic device (101) may provide an ultra-low latency service by using distributed computing or mobile edge computing, for example. In another embodiment, the external electronic device (104) may include an Internet of Things (IoT) device. The server (108) may be an intelligent server utilizing machine learning and / or a neural network. According to one embodiment, the external electronic device (104) or the server (108) may be included in the second network (199).The electronic device (101) can be applied to intelligent services (e.g., smart home, smart city, smart car, or healthcare) based on 5G communication technology and IoT-related technology.

[0085] FIG. 2A is a diagram illustrating a folded state of an electronic device (201) according to one embodiment of the present disclosure.

[0086] FIG. 2b is a diagram illustrating an extended state of an electronic device (201) viewed from the cover display direction according to one embodiment of the present disclosure.

[0087] FIG. 2c is a drawing showing an unfolded state of an electronic device (201) viewed from the main display direction according to one embodiment of the present disclosure.

[0088] The electronic device (201) of FIGS. 2A, 2B, and 2C may be identical to the electronic device (101) of FIG. 1. However, the present invention is not limited thereto, and the electronic device (201) of FIGS. 2A, 2B, and 2C may have some components omitted or added compared to the electronic device (101) of FIG. 1.

[0089] Referring to FIGS. 2A, 2B, and 2C, the electronic device (201) may include a hinge (210), a first housing (211), and a second housing (212). The foldable housing of the electronic device (201) may include the hinge (210), the first housing (211), and the second housing (212).

[0090] In one embodiment, the hinge (210) may include one or more hinge assemblies. The hinge (210) may include a free stop hinge. The free stop hinge may secure the foldable housing (e.g., the first housing (211) and the second housing (212)) to a user-desired position.

[0091] In one embodiment, the electronic device (201) may further include one or more sensors capable of detecting the inclination of the hinge (210).

[0092] In one embodiment, the hinge (210) can be positioned in an area where the main display (230) can be bent, and can support the main display (230) so that it can maintain a certain angle while being bent when the main display (230) is bent.

[0093] In one embodiment, the hinge (210) may be configured to allow the first housing (211) and the second housing (212) to fold relative to each other. The pair of housing structures (211, 212) and the hinge (210) of the electronic device (201) are not limited to the shapes and combinations illustrated in FIGS. 2A, 2B, and 2C, and may be implemented by other shapes or combinations and / or combinations of parts.

[0094] In one embodiment, the main display (230) may include a flexible display that can bend according to the bending angle of the foldable housing. However, this is not limited to the main display (230), and the main display (230) may include a rigid display.

[0095] In one embodiment, the foldable housing may include side members or frames (2111, 2211) surrounding a space between a first side (241) and a second side (242). For example, the foldable housing may include a first frame (2111) surrounding a space between a first side (241) and a second side (242) of the first housing (211). The foldable housing may include a second frame (2211) surrounding a space between a first side (241) and a second side (242) of the second housing (212). The second side (242) may include a third side (2421) and a fourth side (2422). The first housing (211) may include a third side (2421). The second housing (212) may include a fourth surface (2422). The front surface of the foldable housing may include a first surface (241). The rear surface of the foldable housing may include a second surface (242).

[0096] In one embodiment, the foldable housing may include a main display (230) on the first side (241).

[0097] In one embodiment, the first housing (211) may include a cover display (250) on the third side (2421).

[0098] In one embodiment, the second housing (211) may include a cover (260) on the fourth surface (2422). The second housing (211) may further include a charging circuit capable of receiving wireless power from an external source or transmitting wireless power to an external source. The charging circuit may include a coil. The charging circuit may transmit and receive power using at least one of a magnetic induction method, a magnetic resonance method, or an electromagnetic wave method.

[0099] In one embodiment, a wearable device (wearable device (401) of FIG. 4) may be placed on a cover (260). When the electronic device (201) detects the wearable device (wearable device (401) of FIG. 4) on the cover (260), the electronic device (201) may transmit power to the wearable device (wearable device (401) of FIG. 4) through a charging circuit.

[0100] In one embodiment, the cover (260) may further include a ring-shaped protruding region to allow a wearable device (wearable device (401) of FIG. 4) to be mounted thereon. The electronic device (201) may include a charging circuit inside the second housing (211) corresponding to the ring-shaped protruding region. However, the present invention is not limited thereto, and in one embodiment, the cover (260) may include a flat shape. The cover (260) may be coupled to the second housing (211). However, the present invention is not limited thereto, and the cover (260) may be detachably attached to the second housing (211).

[0101] In one embodiment, to align the position between the wearable device (wearable device (401) of FIG. 4) and the charging circuit, the electronic device (201) may further include a magnet around the charging circuit.

[0102] In one embodiment, the wearable device (wearable device (401) of FIG. 4) may include a magnetic material that responds to a magnet of the electronic device (201).

[0103] In one embodiment, the first frame (2111) may surround a side of the first housing (211), and the second frame (2211) may surround a side of the second housing (212). The first frame (2111) may be formed of at least a portion of the first housing (211), and the second frame (2211) may be formed of at least a portion of the second housing (212).

[0104] In one embodiment, at least one frame (2111, 2211) can operate at least in part as an antenna of the electronic device (201). At least one frame (2111, 2211) can be at least in part made of a conductive material (e.g., metal). At least one frame (2111, 2211) can operate as an antenna under the control of a processor (e.g., processor (120) of FIG. 1).

[0105] In one embodiment, the first housing (211) and the second housing (212) are arranged on both sides with respect to the folding axis (F1 axis) and can be folded or unfolded with respect to the folding axis (F1 axis).

[0106] In one embodiment, the first housing (211) can support the first area (231) of the main display (230). The second housing (212) can support the second area (232) of the main display (230). The first housing (211) supports the first area (231) of the main display (230) on the first side (241), and the first housing (211) can include a cover display (250) on the second side (242) or the third side (2421).

[0107] In one embodiment, based on the angle or distance between the first housing (211) and the second housing (212), the electronic device (201) can determine whether it is in a folded state, a flex state, and / or an extended state under the control of a processor (e.g., processor (120) of FIG. 1).

[0108] In one embodiment, the angle or distance between the first housing (211) and the second housing (212) may be detected based on one or more sensors included in the electronic device (201). The sensor that detects the angle or distance between the first housing (211) and the second housing (212) may be an inclination sensor, for example, an inertial sensor and / or an acceleration sensor.

[0109] In one embodiment, when the angle between the first housing (211) and the second housing (212) is a first angle (e.g., 0 degrees), the electronic device (201) may determine, under the control of the processor (120), that it is in a folded state.

[0110] In one embodiment, when the angle between the first housing (211) and the second housing (212) is a second angle (e.g., 180 degrees), the electronic device (201) may determine, under the control of the processor (120), that it is in an extended state.

[0111] In one embodiment, when the angle between the first housing (211) and the second housing (212) is within a specific angular range (e.g., a specific angle greater than 0 degrees and less than 180 degrees), the electronic device (201) may be determined to be in a flex state under the control of the processor (120). The flex state may be a state in which the electronic device (201) is partially folded.

[0112] Referring to FIG. 2A, when the electronic device (201) is in a folded state, the flexible display (230) may not be exposed to the outside of the electronic device (201). When the electronic device (201) is in a folded state, the electronic device (201) may, under the control of the processor (120), control the power supplied to the main display (230) to make the main display (230) low-power, standby, and / or off.

[0113] Referring to FIGS. 2B and 2C, the electronic device (201) may have a first length (A) in a first axial direction (e.g., vertical axis direction, Y-axis direction) of the first housing (211) and the second housing (212) centered on the folding axis (F1 axis), and may have a second length (B) in a second axial direction (e.g., horizontal axis direction, X-axis direction).

[0114] In one embodiment, when the electronic device (201) is in an unfolded state, the length of the frame in the first axial direction (e.g., vertical axis direction, Y axis direction) of the first housing (211) and the second housing (212) may be longer than the length of the frame in the second axial direction (e.g., horizontal axis direction, X axis direction).

[0115] In one embodiment, when the electronic device (201) is in an unfolded state, the main display (230) may be exposed to the outside.

[0116] In one embodiment, when the electronic device (201) is in a flex state, the main display (230) is exposed to the outside, and at least a portion of the main display (230) can be bent.

[0117] FIG. 3A is a drawing illustrating a folded state of an electronic device (301) according to one embodiment of the present disclosure.

[0118] FIG. 3b is a diagram illustrating an extended state of an electronic device (301) viewed from the cover display direction according to one embodiment of the present disclosure.

[0119] FIG. 3c is a drawing illustrating an unfolded state of an electronic device (301) viewed from the main display direction according to one embodiment of the present disclosure.

[0120] The electronic device (201) of FIGS. 3A, 3B, and 3C may be identical to the electronic device (101) of FIG. 1. However, it is not limited thereto, and the electronic device (201) of FIGS. 3A, 3B, and 3C may have some components omitted or added compared to the electronic device (101) of FIG. 1.

[0121] Referring to FIGS. 3A and 3B, the electronic device (301) may include a hinge (310), a third housing (311), and a fourth housing (312). The foldable housing of the electronic device (301) may include a hinge (210), a third housing (311), and a fourth housing (312).

[0122] In one embodiment, the hinge (310) may include one or more hinge assemblies. The hinge (310) may include a free stop hinge. The free stop hinge may secure the foldable housing (e.g., the third housing (311) and the fourth housing (312)) to a user-desired position.

[0123] In one embodiment, the electronic device (301) may further include one or more sensors capable of detecting the inclination of the hinge (310). The pair of housing structures (311, 312) and the hinge (310) of the electronic device (201) are not limited to the shapes and combinations illustrated in FIGS. 3A, 3B, and 3C, and may be implemented by combinations and / or combinations of other shapes or components.

[0124] In one embodiment, the hinge (310) can be positioned in an area where the main display (230) can be bent, and can support the main display (230) so that it can maintain a certain angle while being bent when the main display (230) is bent.

[0125] In one embodiment, the main display (230) may include a flexible display that can bend according to the bending angle of the foldable housing. However, this is not limited to the main display (230), and the main display (230) may include a rigid display.

[0126] In one embodiment, the foldable housing may include side members or frames (3111, 3211) surrounding a space between a fifth side (341) and a sixth side (342). For example, the foldable housing may include a third frame (3111) surrounding a space between a fifth side (341) and a sixth side (342) of a third housing (311). The foldable housing may include a fourth frame (3211) surrounding a space between a fifth side (341) and a sixth side (342) of a fourth housing (312). The sixth side (342) may include a seventh side (3421) and an eighth side (3422). The third housing (311) may include a seventh side (3421). The fourth housing (312) may include an eighth surface (3422). The front surface of the foldable housing may include a fifth surface (341). The rear surface of the foldable housing may include a sixth surface (342).

[0127] In one embodiment, the foldable housing may include a main display (230) on the fifth side (341).

[0128] In one embodiment, the third housing (311) may include a cover display (250) on the seventh side (3421).

[0129] In one embodiment, the fourth housing (312) may include a cover (260) on the eighth surface (3422). The fourth housing (312) may further include a charging circuit capable of receiving wireless power from an external source or transmitting wireless power to an external source. The charging circuit may include a coil. The charging circuit may transmit and receive power using at least one of a magnetic induction method, a magnetic resonance method, or an electromagnetic wave method.

[0130] In one embodiment, a wearable device (wearable device (401) of FIG. 4) may be placed on a cover (260). When the electronic device (301) detects the wearable device (wearable device (401) of FIG. 4) on the cover (260), the electronic device (301) may transmit power to the wearable device (wearable device (401) of FIG. 4) through a charging circuit.

[0131] In one embodiment, the cover (260) may further include a ring-shaped protruding region to allow a wearable device (wearable device (401) of FIG. 4) to be mounted thereon. The electronic device (301) may include a charging circuit inside the fourth housing (312) corresponding to the ring-shaped protruding region. However, the present invention is not limited thereto, and in one embodiment, the cover (260) may include a flat shape. The cover (260) may be coupled to the fourth housing (312). However, the present invention is not limited thereto, and the cover (260) may be detachably attached to the fourth housing (312).

[0132] In one embodiment, to align the position between the wearable device (wearable device (401) of FIG. 4) and the charging circuit, the electronic device (301) may further include a magnet around the charging circuit.

[0133] In one embodiment, the wearable device (wearable device (401) of FIG. 4) may include a magnetic material that responds to a magnet of the electronic device (301).

[0134] In one embodiment, the third frame (3111) may surround a side of the third housing (311), and the fourth frame (3211) may surround a side of the fourth housing (312). The third frame (3111) may be formed of at least a portion of the third housing (311), and the fourth frame (3211) may be formed of at least a portion of the fourth housing (312).

[0135] In one embodiment, at least a portion of at least one frame (3111, 3211) can function as an antenna of the electronic device (201). At least a portion of at least one frame (3111, 3211) can be made of a conductive material (e.g., metal). At least one frame (3111, 3211) can function as an antenna under the control of a processor (e.g., processor (120) of FIG. 1 ).

[0136] In one embodiment, the third housing (311) and the fourth housing (312) are arranged on both sides with respect to the folding axis (F2 axis) and can be folded or unfolded with respect to the folding axis (F2 axis).

[0137] In one embodiment, the third housing (311) can support the third area (233) of the main display (230). The fourth housing (312) can support the fourth area (234) of the main display (230). The third housing (311) can support the third area (233) of the main display (230) on the fifth side (341), and the third housing (311) can include a cover display (250) on the sixth side (342) or the seventh side (3421).

[0138] In one embodiment, depending on the angle or distance between the third housing (311) and the fourth housing (312), the electronic device (301) can determine whether it is in a folded state, a flex state, and / or an extended state under the control of a processor (e.g., processor (120) of FIG. 1).

[0139] In one embodiment, the angle or distance between the third housing (311) and the fourth housing (312) may be detected based on one or more sensors included in the electronic device (301). The sensor that detects the angle or distance between the third housing (311) and the fourth housing (312) may be an inclination sensor, for example, an inertial sensor and / or an acceleration sensor.

[0140] In one embodiment, when the angle between the third housing (311) and the fourth housing (312) is a first angle (e.g., 0 degrees), the electronic device (301) may determine, under the control of the processor (120), that it is in a folded state.

[0141] In one embodiment, when the angle between the third housing (311) and the fourth housing (312) is the second angle (e.g., 180 degrees), the electronic device (301) may determine, under the control of the processor (120), that it is in an extended state.

[0142] In one embodiment, when the angle between the third housing (311) and the fourth housing (312) is within a specific angular range (e.g., a specific angle greater than 0 degrees and less than 180 degrees), the electronic device (301) may be determined to be in a flex state under the control of the processor (120). The flex state may be a state in which the electronic device (301) is partially folded.

[0143] Referring to FIG. 3A, when the electronic device (301) is in a folded state, the flexible display (230) may not be exposed to the outside of the electronic device (301). When the electronic device (301) is in a folded state, the electronic device (301) may, under the control of the processor (120), control the power supplied to the flexible display (230) to make the flexible display (230) low-power, standby, and / or off.

[0144] Referring to FIG. 3b or FIG. 3c, the electronic device (301) may have a third length (C) in the first axial direction (e.g., vertical axis direction, Y-axis direction) of the third housing (311) and the fourth housing (312) centered on the folding axis (F2 axis), and may have a fourth length (D) in the second axial direction (e.g., horizontal axis direction, X-axis direction).

[0145] In one embodiment, when the electronic device (301) is in an unfolded state, the length of the frame in the second axial direction (e.g., horizontal axis direction, X-axis direction) of the third housing (311) and the fourth housing (212) may be longer than the length of the frame in the first axial direction (e.g., vertical axis direction, Y-axis direction). However, this is not limited thereto, and when the electronic device (301) is in an unfolded state, the length of the frame in the second axial direction (e.g., horizontal axis direction, X-axis direction) of the third housing (311) and the fourth housing (212) may be the same as the length of the frame in the first axial direction (e.g., vertical axis direction, Y-axis direction).

[0146] In one embodiment, when the electronic device (301) is in an unfolded state, the main display (230) may be exposed to the outside.

[0147] In one embodiment, when the electronic device (301) is in a flex state, the flexible display (230) is exposed to the outside, and at least a portion of the flexible display (230) can be bent.

[0148] The electronic device (201) of FIGS. 2a, 2b, and 2c may be a foldable electronic device in the form of a clam shell in which the folding axis is the horizontal axis (or X-axis), and the electronic device (301) of FIGS. 3a, 3b, and 3c may be a foldable electronic device in which the folding axis is the vertical axis (or Y-axis).

[0149] The electronic device (201) of FIGS. 2A, 2B, and 2C and the electronic device (301) of FIGS. 3A, 3B, and 3C may be an in-folding type foldable electronic device in which the flexible display (230) is folded inward and protected by a pair of housings (e.g., a first housing (211) and a second housing (212) or a third housing (311) and a fourth housing (312)).

[0150] FIG. 4 is a diagram showing electronic devices (201, 301) and a wearable device (401) according to one embodiment of the present disclosure.

[0151] In one embodiment, the wearable device (401) may include at least one of a smart ring, a smart band, or a smart watch. The wearable device (401) may include a sensor.

[0152] In one embodiment, the wearable device (401) can obtain the wearer's biometric information or fitness information through a sensor. For example, the wearable device (401) can obtain the wearer's biometric information (e.g., pulse, heart rate) using a photoplethysmography (PPG) sensor or an electrocardiogram (ECG) sensor.

[0153] In one embodiment, the wearable device (401) may include a memory (memory (130) of FIG. 1) and a processor (processor (120) of FIG. 1).

[0154] In one embodiment, the wearable device (401) can store the wearer's biometric information (e.g., pulse, heart rate) acquired through a sensor in a memory (memory (130) of FIG. 1) under the control of a processor (processor (120) of FIG. 1).

[0155] In one embodiment, the wearable device (401) may store device information about the wearable device (401) and information about a user of the wearable device (401) in a memory (memory (130) of FIG. 1). The device information about the wearable device (401) may include, for example, an identification (ID) of the device.

[0156] In one embodiment, the wearable device (401) can transmit the wearer's biometric information (e.g., pulse, heart rate) acquired through a sensor to an electronic device (201, 301) through a communication circuit or coil under the control of a processor (processor (120) of FIG. 1).

[0157] In one embodiment, the wearable device (401) can communicate with the electronic devices (201, 301) using a short-range communication network. The wearable device (401) can include a communication circuit that uses the short-range communication network. The communication circuit can include, for example, Bluetooth low energy (BLE), Bluetooth, or near field communication (NFC). However, the present invention is not limited thereto, and the wearable device (401) can include a charging circuit and communicate with the electronic devices (201, 301) using in-band communication through a coil included in the charging circuit.

[0158] In one embodiment, the electronic device (201) of FIGS. 2A, 2B, and 2C may include communication circuitry utilizing a short-range communication network. The communication circuitry may include, for example, Bluetooth low energy (BLE), Bluetooth, or near field communication (NFC). However, the present invention is not limited thereto, and the electronic device (201) may include a charging circuit and communicate with a wearable device (401) using in-band communication via a coil included in the charging circuit.

[0159] In one embodiment, the electronic device (301) of FIGS. 3A, 3B, and 3C may include communication circuitry utilizing a short-range communication network. The communication circuitry may include, for example, Bluetooth low energy (BLE), Bluetooth, or near field communication (NFC). However, the present invention is not limited thereto, and the electronic device (201) may include a charging circuit and communicate with a wearable device (401) using in-band communication via a coil included in the charging circuit.

[0160] FIG. 5 is a flowchart illustrating a method for providing a user interface of an electronic device (electronic device (201) of FIG. 2A, electronic device (301) of FIG. 3A) according to one embodiment of the present disclosure.

[0161] In one embodiment, the electronic device (101) of FIG. 1 may include the electronic device (201) of FIG. 2a or the electronic device (301) of FIG. 3a.

[0162] In one embodiment, in operation 501, the electronic device (101) may execute a function that is being executed under the control of the processor (120).

[0163] In one embodiment, in operation 501, the memory (130) stores instructions that, when executed by the processor (120), cause the electronic device (101) to execute a function being executed.

[0164] In one embodiment, in operation 503, the electronic device (101), under the control of the processor (120), may determine whether the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) is facing a specific direction.

[0165] In one embodiment, at operation 503, the memory (130) stores instructions that, when executed by the processor (120), may cause the electronic device (101) to determine whether the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) is facing a specific direction.

[0166] In one embodiment, the specific direction may include a direction detected based on an acceleration sensor and / or an inertial sensor included in the electronic device (101). The specific direction may include a direction in which the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) is facing away from the ground. The specific direction may include a direction in which the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) is facing the air within a specific range of angles.

[0167] In one embodiment, when the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) is directed into the air at a certain angle range, the electronic device (101) may branch from operation 503 to operation 505.

[0168] In one embodiment, when the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) is facing the ground, the electronic device (101) may branch from operation 503 to operation 501.

[0169] In one embodiment, in operation 505, the electronic device (101) may, under the control of the processor (120), determine whether a wearable device (wearable device (401) of FIG. 4) is located in a charging area of ​​the electronic device (101).

[0170] In one embodiment, at operation 505, the memory (130) stores instructions that, when executed by the processor (120), may cause the electronic device (101) to determine whether a wearable device (wearable device (401) of FIG. 4) is located in a charging area of ​​the electronic device (101).

[0171] In one embodiment, the charging area may include an area where the electronic device (101) wirelessly transmits power to an external source or wirelessly receives power from an external source. The charging area may include an area corresponding to a charging circuit disposed within the second housing (212) of FIG. 2B or within the fourth housing (312) of FIG. 3B. The charging area may include an area corresponding to the cover (260).

[0172] In one embodiment, when a wearable device (wearable device (401) of FIG. 4) is positioned in a charging area of ​​the electronic device (101), the electronic device (101) may branch from operation 505 to operation 507.

[0173] In one embodiment, in operation 507, the electronic device (101) may, under the control of the processor (120), verify one or more of the user or device names of the wearable device.

[0174] In one embodiment, in operation 507, the electronic device (101) may, under the control of the processor (120), communicate with the wearable device.

[0175] In one embodiment, in operation 507, the electronic device (101) may, under the control of the processor (120), establish a communication connection with the wearable device and identify one or more of the user or device names of the wearable device. The device name may include, for example, the device ID as well as the type and model of the device.

[0176] In one embodiment, in operation 507, the electronic device (101) may, under the control of the processor (120), communicate with the wearable device by performing operation 505 without performing operation 503.

[0177] In one embodiment, at operation 507, the memory (130) stores instructions that, when executed by the processor (120), may cause the electronic device (101) to identify one or more of a user or device name of the wearable device (401).

[0178] In one embodiment, when the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) is facing a specific direction and the wearable device (wearable device (401) of FIG. 4) is positioned in the charging area of ​​the electronic device (101), the electronic device (101) can, under the control of the processor (120), identify one or more of the user or device names of the wearable device.

[0179] In one embodiment, when a wearable device (wearable device (401) of FIG. 4) is positioned in a charging area of ​​an electronic device (101), the electronic device (101) may, under the control of the processor (120), identify one or more of the user or device names of the wearable device.

[0180] In one embodiment, without preceding operations 503 and 505, the electronic device (101), under the control of the processor (120), may identify one or more of a user or device name of the wearable device (401) when an input of tapping a specific area of ​​the electronic device (101) a specified number of times using the wearable device (401) is detected. The memory (130) stores instructions, which, when executed by the processor (120), may cause the electronic device (101) to identify one or more of a user or device name of the wearable device (401) when an input of tapping a specific area of ​​the electronic device (101) a specified number of times using the wearable device (401) is detected.

[0181] In one embodiment, in operation 509, the electronic device (101) may turn on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) under the control of the processor (120).

[0182] In one embodiment, in operation 509, the electronic device (101) may utilize a cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) under the control of the processor (120).

[0183] In one embodiment, in operation 509, the electronic device (101) may, under the control of the processor (120), activate the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A).

[0184] In one embodiment, when turning on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A), the electronic device (101) can turn on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) as an always on display (AOD) or an always-on display.

[0185] In one embodiment, if the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) is turned on, operation 509 may be omitted.

[0186] In one embodiment, if the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) is previously activated, operation 509 may be omitted.

[0187] In one embodiment, in operation 511, the electronic device (101) may, under the control of the processor (120), display a user interface related to the wearable device (401) on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A).

[0188] In one embodiment, in operation 511, the memory (130) stores instructions that, when executed by the processor (120), cause the electronic device (101) to display a user interface related to the wearable device (401) on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A).

[0189] In one embodiment, in operation 511, the electronic device (101) may, under the control of the processor (120), display an animation in which an image indicating the wearable device moves from an area of ​​the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) corresponding to the coordinates of the wearable device (401) on the charging area to a center area of ​​the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A).

[0190] In one embodiment, in operation 511, the memory (130) stores instructions that, when executed by the processor (120), cause the electronic device (101) to display an animation in which an image indicating the wearable device moves from an area of ​​the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) corresponding to coordinates of the wearable device (401) on the charging area to a center area of ​​the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A).

[0191] In one embodiment, the electronic device (101) can map and store the coordinates of the charging area and the coordinates of the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) in the memory (130) under the control of the processor (120).

[0192] In one embodiment, in operation 511, the electronic device (101) may, under the control of the processor (120), display an indicator related to screen rotation or screen switching on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A).

[0193] In one embodiment, in operation 511, the memory (130) stores instructions that, when executed by the processor (120), may cause the electronic device (101) to display an indicator related to screen rotation or screen switching on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A).

[0194] In one embodiment, upon receiving a user input for an indicator related to screen rotation, the electronic device (101) may, under the control of the processor (120), change the display direction of the cover display (the cover display (250) of FIG. 2A, the cover display (250) of FIG. 3A). Upon receiving a user input for an indicator related to screen rotation, the electronic device (101) may, under the control of the processor (120), change the up-down direction of the currently displayed screen of the cover display (the cover display (250) of FIG. 2A, the cover display (250) of FIG. 3A).

[0195] In one embodiment, if the connection between the wearable device (401) and the electronic device (101) is a first connection, in operation 511, the electronic device (101) may, under the control of the processor (120), display a user interface regarding registration and / or data backup of the wearable device (401).

[0196] In one embodiment, when the connection between the wearable device (401) and the electronic device (101) is a first connection, in operation 511, the memory (130) stores instructions that, when executed by the processor (120), may cause the electronic device (101) to display a user interface regarding registration and / or data backup of the wearable device (401).

[0197] In one embodiment, in operation 511, the electronic device (101) may, under the control of the processor (120), identify the user of the wearable device (401) on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) and display the identified user's avatar as a user interface.

[0198] In one embodiment, in operation 511, the memory (130) stores instructions that, when executed by the processor (120), cause the electronic device (101) to identify a user of the wearable device (401) on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) and display an avatar of the identified user as a user interface.

[0199] For example, the electronic device (101) may transmit information about the user of the wearable device (401) to a server and receive information about the avatar of the user of the wearable device (401) from the server. However, the present invention is not limited thereto, and the electronic device (101) may store information about the avatar of the user of the wearable device (401) in advance in the memory (130).

[0200] In one embodiment, when there is a task running on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A), in operation 511, the electronic device (101) may, under the control of the processor (120), display a user interface related to the wearable device (401) without obscuring the running task area.

[0201] In one embodiment, when there is a task running on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A), in operation 511, the memory (130) stores instructions that, when executed by the processor (120), cause the electronic device (101) to display a user interface related to the wearable device (401) without obscuring the running task area.

[0202] In one embodiment, regardless of operations 501 to 509, in operation 511, the electronic device (101), under the control of the processor (120), may cause a user interface related to the wearable device (401) to be displayed upon receiving a user input on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A).

[0203] In one embodiment, regardless of operations 501 to 509, in operation 511, the electronic device (101) may, under the control of the processor (120), display an image representing the wearable device (401) upon receiving a user input on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A).

[0204] In one embodiment, regardless of operations 501 to 509, in operation 511, the electronic device (101), under the control of the processor (120), may display an application related to the wearable device (401) on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) when receiving a user input on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A).

[0205] In one embodiment, the memory (130) stores instructions that, when executed by the processor (120), cause the electronic device (101) to display a user interface associated with the wearable device (401) upon receiving a user input on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A).

[0206] In one embodiment, the user input may include a gesture input on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A). The gesture input may include an input that follows the shape of the wearable device (401) on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A). While the gesture input is received on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A), the electronic device (101) may, under control of the processor (120), display an animation that tracks the gesture input.

[0207] In one embodiment, in operation 511, the electronic device (101) may, under the control of the processor (120), determine the location of the wearable device (401) on the charging area. In operation 511, the electronic device (101) may, under the control of the processor (120), display a guide on a user interface on the cover display (the cover display (250) of FIG. 2A, the cover display (250) of FIG. 3A) to induce movement of the wearable device (401) to an area in the charging area where the efficiency of power reception is higher than a designated efficiency.

[0208] In one embodiment, in operation 511, the memory (130) stores instructions, which when executed by the processor (120), may cause the electronic device (101) to display a guide as a user interface to induce movement of the wearable device (401) to an area in which the efficiency of power reception among the charging areas is higher than a designated efficiency on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A).

[0209] In one embodiment, in operation 513, the electronic device (101) may, under the control of the processor (120), transmit power to the wearable device (401) based on the charging settings and display a user interface regarding charging of the wearable device (401) on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A).

[0210] In one embodiment, in operation 511, the electronic device (101) may, under the control of the processor (120), display a user interface (1420) regarding a positioning guide on the cover display (250). The user interface (1420) regarding the positioning guide may include, for example, a warning message indicating that charging may be stopped if the wearable device (401) moves out of the charging area.

[0211] In one embodiment, in operation 513, the memory (130) stores instructions that, when executed by the processor (120), cause the electronic device (101) to transfer power to the wearable device (401) based on the charging settings and display a user interface regarding charging of the wearable device (401) on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A).

[0212] In one embodiment, when a gesture of turning the side of the wearable device (401) is received, the electronic device (101) may, under the control of the processor (120), set the power amount of the battery (e.g., battery (189) of FIG. 1) included in the wearable device (401) according to the movement amount of the gesture. Based on the set power amount of the wearable device (401), the electronic device (101) may, under the control of the processor (120), wirelessly transmit power to the wearable device (401) through the charging circuit. The charging setting may include an operation of setting the power amount of the battery (e.g., battery (189) of FIG. 1) included in the wearable device (401).

[0213] In one embodiment, when a gesture of turning the side of the wearable device (401) is received, the memory (130) stores instructions, which when executed by the processor (120) may cause the electronic device (101) to set the power amount of a battery (e.g., battery (189) of FIG. 1) included in the wearable device (401) according to the amount of movement of the gesture.

[0214] In one embodiment, when a user interface related to a jog dial is displayed on the cover display (250) and a gesture of turning the jog dial is received, the electronic device (101) can, under the control of the processor (120), set the power amount of a battery (e.g., battery (189) of FIG. 1) included in the wearable device (401) according to the amount of movement of the gesture.

[0215] In one embodiment, in operation 513, when the wearable device (401) leaves the charging area while not receiving power equivalent to the power amount of the battery (e.g., battery (189) of FIG. 1) of the set wearable device (401), the electronic device (101) may display a user interface notifying the departure on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) under the control of the processor (120).

[0216] In one embodiment, the memory (130) stores instructions, which, when executed by the processor (120), cause the electronic device (101) to display a user interface notifying the departure on the cover display (the cover display (250) of FIG. 2A, the cover display (250) of FIG. 3A) when the wearable device (401) leaves the charging area while not receiving power equivalent to the power amount of the battery (e.g., the battery (189) of FIG. 1) of the set wearable device (401).

[0217] In one embodiment, in operation 513, when the wearable device (401) leaves the charging area while not receiving power equivalent to the power amount of the battery (e.g., battery (189) of FIG. 1) of the set wearable device (401), the electronic device (101) may display a guide on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) to position the wearable device (401) in the charging area under the control of the processor (120).

[0218] In one embodiment, the memory (130) stores instructions, which, when executed by the processor (120), cause the electronic device (101) to display a guide on the cover display (the cover display (250) of FIG. 2A, the cover display (250) of FIG. 3A) to position the wearable device (401) in the charging area when the wearable device (401) leaves the charging area while the electronic device (101) does not receive power equivalent to the power amount of the battery (e.g., the battery (189) of FIG. 1) of the set wearable device (401).

[0219] In one embodiment, in operation 513, when the electronic device (101) receives power equivalent to the power amount of the battery (e.g., battery (189) of FIG. 1) of the set wearable device (401) under the control of the processor (120), the electronic device (101) may display a user interface notifying of charging completion on the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A).

[0220] In one embodiment, the memory (130) stores instructions, which, when executed by the processor (120), cause the electronic device (101) to display a user interface notifying of charging completion on the cover display (the cover display (250) of FIG. 2A, the cover display (250) of FIG. 3A) when the electronic device (101) receives power equivalent to the power amount of the battery (e.g., the battery (189) of FIG. 1) of the set wearable device (401).

[0221] FIG. 6A is a diagram illustrating an operation of displaying a user interface related to a wearable device (401) when a user input is received on a cover display (250) according to one embodiment of the present disclosure.

[0222] The electronic device (201) of FIG. 6A has a foldable housing in an unfolded state.

[0223] On the 601 screen, the electronic device (201) can receive a gesture input on the cover display (250).

[0224] In one embodiment, the gesture input may include an input that follows the shape of the wearable device (401) on the cover display (250). For example, the wearable device (401) may include a smart ring. The gesture input may include an input that draws a circle corresponding to the shape of the smart ring on the cover display (250).

[0225] In one embodiment, while a gesture input is received on the cover display (250), the electronic device (101) may, under the control of the processor (120), display an animation (610) that tracks the gesture input as a user interface.

[0226] On the 603 screen, when the electronic device (201) receives a gesture input on the cover display (250), the electronic device (201) can display an image (620) representing the wearable device (401) on the cover display (250). The image (620) representing the wearable device (401) can include an actual image of the wearable device (401). The image (620) representing the wearable device (401) can be displayed as a pop-up.

[0227] In one embodiment, when the electronic device (201) receives a gesture input on the cover display (250), the electronic device (201) may display an image (620) representing the wearable device (401) in an area on the cover display (250) corresponding to the location where the gesture input was received.

[0228] On the 605 screen, when the electronic device (201) receives a gesture input on the cover display (250), it can display an application (630) related to the wearable device (401) on the cover display (250). The application (630) related to the wearable device (401) can include an application that can check data stored in the wearable device (401).

[0229] For example, an application (630) related to a wearable device (401) may include information about heart rate (650) and / or information about device control (640). The information about device control (640) may include, for example, information about controlling a function for activating or deactivating a battery sharing function for charging the wearable device (401).

[0230] FIG. 6b is a diagram illustrating an operation of displaying a user interface related to a wearable device (401) when a user input is received on a main display (230) according to one embodiment of the present disclosure.

[0231] The electronic device (201) of FIG. 6b has a foldable housing in an unfolded state.

[0232] On the 607 screen, the electronic device (201) can receive gesture input on the main display (230).

[0233] In one embodiment, the gesture input may include an input that follows the shape of the wearable device (401) on the main display (230). For example, the wearable device (401) may include a smart ring. The gesture input may include an input that draws a circle corresponding to the shape of the smart ring on the main display (230).

[0234] In one embodiment, while a gesture input is received on the main display (230), the electronic device (201) may, under the control of the processor (120), display an animation (610) that tracks the gesture input as a user interface.

[0235] On the 609 screen, when the electronic device (201) receives a gesture input on the main display (230), the electronic device (201) can display an image (620) representing the wearable device (401) on the main display (230). The image (620) representing the wearable device (401) can include an actual image of the wearable device (401). The image (620) representing the wearable device (401) can be displayed as a pop-up.

[0236] In one embodiment, when the electronic device (201) receives a gesture input on the main display (230), the electronic device (201) may display an image (620) representing the wearable device (401) in an area on the main display (230) corresponding to the location where the gesture input was received.

[0237] On the 609 screen, when the electronic device (201) receives a gesture input on the main display (230), it can display an application (630) related to the wearable device (401) on the main display (230). The application (630) related to the wearable device (401) can include an application that can check data stored in the wearable device (401).

[0238] For example, an application (630) related to a wearable device (401) may include information regarding device control (640), information regarding heart rate (650), and / or information regarding touch control (660). The information regarding device control (640) may include, for example, information regarding control of a function for activating or deactivating a battery sharing function for charging the wearable device (401).

[0239] FIG. 7A is a diagram illustrating an operation of displaying a user interface related to a wearable device (401) in an electronic device (201) according to one embodiment of the present disclosure.

[0240] FIG. 7b is a diagram illustrating an operation of displaying a user interface related to a wearable device (401) in an electronic device (201) according to one embodiment of the present disclosure.

[0241] FIG. 7c is a diagram illustrating an operation of displaying a user interface related to a wearable device (401) in an electronic device (201) according to one embodiment of the present disclosure.

[0242] FIG. 7d is a diagram illustrating an operation of displaying a user interface related to a wearable device (401) in an electronic device (201) according to one embodiment of the present disclosure.

[0243] The cover (260) of the electronic device (201) of FIGS. 7A, 7B, 7C, and 7D may include a protruding area on which the wearable device (401) may be mounted. However, the present invention is not limited thereto, and the cover (260) of the electronic device (201) of FIGS. 7A, 7B, 7C, and 7D may further include a strap or hook on which the wearable device (401) may be hung.

[0244] The electronic device (201) of FIGS. 7a, 7b, 7c and 7d can keep the wearable device (401) in the charging area even when placed in various postures.

[0245] The electronic device (201) of FIGS. 7A, 7B, and 7C can be mounted with the main display (230) facing the floor in a flex state of the foldable housing. When the main display (230) is facing the floor in a flex state of the foldable housing, the electronic device (201) can be determined to be in tent mode under the control of the processor (120).

[0246] The electronic device (201) of FIG. 7d may have a foldable housing in an unfolded state.

[0247] Referring to FIG. 7A, the electronic device (201) may display a user interface (701) (e.g., galaxy smartring case) indicating that the electronic device (201) is connected using a cover (260) that can hold the wearable device (401) on the cover display (250).

[0248] Referring to FIG. 7A, the electronic device (201) can display an image (702) indicating a dockable state (e.g., tent mode) of the electronic device (201) on the cover display (250).

[0249] Referring to FIG. 7A, when the connection between the wearable device (401) and the electronic device (201) is the first connection, the electronic device (201) may display a user interface (704, 705) asking whether to connect on the cover display (250). Close (704) may include a user interface indicating whether to terminate the connection between the wearable device (401) and the electronic device (201). When receiving a user input for Close (704), the electronic device (201) may terminate the connection between the wearable device (401) and the electronic device (201). Connect (705) may include a user interface indicating whether to connect between the wearable device (401) and the electronic device (101). When receiving a user input for Connect (705), the electronic device (201) may connect the wearable device (401) and the electronic device (201). The connection between the wearable device (401) and the electronic device (101) may include a communication connection through short-range communication or in-band communication.

[0250] Referring to FIGS. 7A and 7B , when receiving a user input for connection (705), the electronic device (201) can display a user interface (705, 706) indicating a user guide for the wearable device (401) on the cover display (250) (e.g., control the smart ring even when the case is attached) (e.g., learn more).

[0251] Referring to FIG. 7b, the electronic device (201) can display an image (702) indicating a dockable state (e.g., tent mode) of the electronic device (201) on the cover display (250).

[0252] Referring to FIG. 7c, when the wearable device (401) corresponds to the charging area and the cover display (250) faces the air at a specific angle, the electronic device (201) may, under the control of the processor (120), transmit power to the wearable device (401) using the charging circuit and include a user interface (707) related to charging of the wearable device (401).

[0253] Referring to FIG. 7c, when the wearable device (401) corresponds to a charging area and the electronic device (201) is in tent mode, the electronic device (201) may, under the control of the processor (120), transmit power to the wearable device (401) using a charging circuit and include a user interface (707) related to charging of the wearable device (401).

[0254] Referring to FIG. 7c, when the wearable device (401) corresponds to a charging area and an input of tapping a specific area of ​​the wearable device (401) a specified number of times is detected, the electronic device (201) may, under the control of the processor (120), transmit power to the wearable device (401) using a charging circuit and include a user interface (707) related to charging of the wearable device (401).

[0255] In one embodiment, a user interface (707) regarding charging of a wearable device (401) may include information about the time it takes to charge the battery of the wearable device (401) (e.g., 50% charged in 30 minutes), an animation of the battery charging of the wearable device (401), and / or information about the battery status of the electronic device (201) (e.g., z-flip battery is 10% drained).

[0256] Referring to FIG. 7d, when charging of the wearable device (401) is terminated, the electronic device (201) may display a user interface (708) regarding the termination of charging of the wearable device (401) (e.g., smart ring charging is turned off).

[0257] In one embodiment, if the cover display (250) is not facing the air within a certain range of angles, the electronic device (201) may stop transmitting power to the wearable device (401) and terminate charging.

[0258] In one embodiment, when tent mode is terminated, the electronic device (201) may stop transmitting power to the wearable device (401) and terminate charging.

[0259] In one embodiment, when an input is detected that taps a specific area of ​​the wearable device (401) a specified number of times, the electronic device (201) may stop transmitting power to the wearable device (401) and terminate charging.

[0260] FIG. 8 is a diagram illustrating an operation of displaying a user interface related to a wearable device (401) in an electronic device (201) according to one embodiment of the present disclosure.

[0261] The electronic device (201) of FIG. 8 has a foldable housing in an unfolded state.

[0262] On the screen 801, when the cover display (250) is facing a specific direction (e.g., in the air) and the wearable device (401) is positioned in the charging area of ​​the electronic device (101), the electronic device (201) may display a user interface related to the wearable device (401) on the cover display (250). The user interface related to the wearable device (401) may include an image (810) representing the wearable device (401) with a fade-in animation.

[0263] On the 801 screen, the position at which the image (810) representing the wearable device (401) is displayed on the cover display (250) may correspond to the coordinates of the wearable device (401) in the cover (260) or charging area.

[0264] In one embodiment, the electronic device (101) can map and store the coordinates of the charging area and the coordinates of the cover display (cover display (250) of FIG. 2A, cover display (250) of FIG. 3A) in the memory (130) under the control of the processor (120).

[0265] On the 801 screen, the image (810) representing the wearable device (401) may include a portion of the image of the wearable device (401).

[0266] In screen 803, in succession to screen 801, the electronic device (201) can display an animation in which an image (811) representing the wearable device moves to the center area of ​​the cover display (250).

[0267] On the 803 screen, the image (811) representing the wearable device (401) may include the entire image of the wearable device (401).

[0268] On the 805 screen, the electronic device (401) can display a user interface (812) regarding the connection between the wearable device (401) and the electronic device (401) on the cover display (250) under the control of the processor (120).

[0269] On the 807 screen, when the wearable device (401) and the electronic device (401) are connected, the electronic device (401) can display a user interface (813) for the wearable device (401) on the cover display (250) under the control of the processor (120). The user interface (813) for the wearable device (401) can include information indicating a user of the wearable device (401) (e.g., Kim Samsung's smart ring), information indicating a shape of the wearable device (401), and / or information (813) indicating a battery status of the wearable device (401).

[0270] FIG. 9 is a diagram illustrating an operation of displaying a user interface related to a wearable device (401) in an electronic device (201) according to one embodiment of the present disclosure.

[0271] The electronic device (201) of FIG. 9 has a foldable housing in an unfolded state.

[0272] In the 901 screen, when the cover display (250) is facing a specific direction (e.g., in the air) and the wearable device (401) is positioned in the charging area of ​​the electronic device (101), the electronic device (201) may display a user interface related to the wearable device (401) on the cover display (250). The user interface related to the wearable device (401) may include an image (910) representing the wearable device (401) with a fade-in animation.

[0273] In screen 901 and screen 903, when the position of the wearable device (401) on the charging area changes, the display position of the image (911) representing the wearable device (401) on the cover display (250) may change.

[0274] On the 905 screen, the electronic device (401) can display a user interface (912) regarding the connection between the wearable device (401) and the electronic device (401) on the cover display (250) under the control of the processor (120).

[0275] FIG. 10A is a drawing showing a cover (260) of the electronic device (201) of FIG. 2B according to one embodiment of the present disclosure.

[0276] In one embodiment, the cover (260) of the electronic device (201) may include a protruding area (1011) on which the wearable device (401) may be mounted. The protruding area (1011) may include a coil of a charging circuit. However, the present invention is not limited thereto, and the electronic device (201) may be provided with a detachable cover (260) including the protruding area (1011). The electronic device (201) may mount the wearable device (401) on the rear surface of the electronic device (201) (e.g., the fourth surface (2422) of the second housing (211)) regardless of the cover (260).

[0277] FIG. 10b is a drawing showing a cover (260) of the electronic device (301) of FIG. 3b according to one embodiment of the present disclosure.

[0278] In one embodiment, the cover (260) of the electronic device (301) may include a protruding area (1021) on which the wearable device (401) may be mounted. The protruding area (1021) may include a coil of a charging circuit.

[0279] FIG. 10C is a drawing showing a user interface displayed on a cover display (250) when a wearable device (401) is mounted on a protruding area (1011) of a cover (260) in FIG. 10A according to one embodiment of the present disclosure.

[0280] The electronic device (201) of FIG. 10c has a foldable housing in a folded state.

[0281] In screens 1001, 1003, and 1005, when the wearable device (401) is placed on the protruding area (1011) of the cover (260), images (1031, 1032, 1033) representing the wearable device (401) may be displayed with a fade-in animation.

[0282] In screens 1001, 1003, and 1005, when a wearable device (401) is placed on the protruding area (1011) of the cover (260), images (1031, 1032, 1033) representing the wearable device (401) can be sequentially and clearly displayed.

[0283] On the screen 1004, the electronic device (401) can display a user interface (1034) for the wearable device (401) on the cover display (250) under the control of the processor (120). The user interface (1034) for the wearable device (401) can include information indicating a user of the wearable device (401) (e.g., Kim Samsung's smart ring), information indicating a shape of the wearable device (401), and / or information indicating a battery status of the wearable device (401).

[0284] FIG. 11 is a drawing showing an operation of displaying an indicator related to screen rotation or screen switching on a cover display (250) of an electronic device (201) according to one embodiment of the present disclosure.

[0285] The electronic device (201) of FIG. 11 may have a foldable housing in an unfolded state.

[0286] In one embodiment, the electronic device (101) may, under the control of the processor (120), display an indicator (1120) related to screen rotation or screen switching on the cover display (250).

[0287] On the 1101 screen, the electronic device (401) can display a user interface (1110) for the wearable device (401) and an indicator (1120) related to screen rotation or screen switching on the cover display (250) under the control of the processor (120). The user interface (1110) for the wearable device (401) can include information indicating a user of the wearable device (401) (e.g., Kim Samsung's smart ring), information indicating a shape of the wearable device (401), and / or information indicating a battery status of the wearable device (401).

[0288] On the 1102 screen, when receiving a user input for an indicator (1120) related to screen rotation or screen switching, the electronic device (101) can, under the control of the processor (120), change the display direction of the screen being displayed on the cover display (250). For example, the electronic device (101) can change the vertical direction of the screen currently being displayed and display it.

[0289] FIG. 12A is a diagram showing a first connection between a wearable device (401) and an electronic device (101) according to one embodiment of the present disclosure.

[0290] In one embodiment, when the connection between the wearable device (401) and the electronic device (101) is a first connection, the electronic device (101) may, under the control of the processor (120), display a user interface (1204) regarding registration of the wearable device (401) on the cover display (250).

[0291] In one embodiment, a user interface (1204) for registering a wearable device (401) may include user interfaces (1203, 1202) that ask whether to connect with the wearable device (401). Close (1203) may include a user interface that indicates whether to terminate the connection between the wearable device (401) and the electronic device (201). When a user input for Close (1203) is received, the electronic device (201) may terminate the connection between the wearable device (401) and the electronic device (201). Connect (1202) may include a user interface that indicates whether to connect between the wearable device (401) and the electronic device (101). When a user input for Connect (1202) is received, the electronic device (201) may connect the wearable device (401) and the electronic device (201). The connection between the wearable device (401) and the electronic device (101) may include a communication connection through short-range communication or in-band communication.

[0292] FIG. 12b is a diagram showing a first connection between a wearable device (401) and an electronic device (101) according to one embodiment of the present disclosure.

[0293] In one embodiment, after a communication connection is established between the wearable device (401) and the electronic device (101), the electronic device (101) can, under the control of the processor (120), check whether data regarding the wearable device previously used is stored in the memory (130).

[0294] In one embodiment, if data regarding a previously used wearable device is stored in the memory (130), a user interface (1210) asking whether to transmit the data to the first connected wearable device and a user interface (1213) confirming whether to accept the transmission may be displayed.

[0295] In one embodiment, a user interface (1210) may be provided that asks whether to transfer, for example, a phrase such as "Copy existing data to the smart ring?"

[0296] In one embodiment, the user interface (1213) for confirming whether to accept a copy may include a user interface requesting user input such as cancel (1211) and copy (1212). Upon receiving a user input for cancel (1211), the electronic device (201) may cancel the operation of transmitting the stored data to the wearable device (401). Upon receiving a user input for copy (1212), the electronic device (201) may transmit the stored data to the wearable device (401).

[0297] FIG. 12c is a diagram showing a first connection between a wearable device (401) and an electronic device (101) according to one embodiment of the present disclosure.

[0298] Referring to FIG. 12C, when receiving a user input for copy (1212), the electronic device (201) may display a user interface (1220) for selecting the type of data to be transmitted to the wearable device (401). The user interface (1220) for selecting the type of data to be transmitted may include items related to overall, health and measurement data, and user settings. Overall includes all previously stored data, and health and measurement data may include previously stored data related to the user's biometric information.

[0299] FIG. 12d is a diagram showing a first connection between a wearable device (401) and an electronic device (101) according to one embodiment of the present disclosure.

[0300] Referring to FIG. 12d, while transmitting stored data to a wearable device (401), the electronic device (201) may display a user interface (1230) that informs the user of the data transmission status. The user interface (1230) that informs the user of the data transmission status may include, for example, information such as the amount of data being transmitted, transmission time, and connection maintenance (e.g., content copying, please keep the smart ring connected).

[0301] FIG. 12e is a diagram showing a first connection between a wearable device (401) and an electronic device (101) according to one embodiment of the present disclosure.

[0302] Referring to FIG. 12e, when the transmission of stored data to the wearable device (401) is completed, the electronic device (201) may display a user interface (1240) indicating that the data transmission is complete. The user interface (1240) indicating that the data transmission is complete may include, for example, a phrase such as "All completed. For detailed settings, check Smart Ring Studio."

[0303] FIG. 13A is a diagram illustrating an operation of an electronic device (201) according to one embodiment of the present disclosure to display a user interface for a wearable device (401) on a cover display (250).

[0304] In one embodiment, the electronic device (201) can identify a user of a wearable device (401) on the cover display (250) and display an avatar (1310) of the identified user as a user interface. The electronic device (201) can display information (1311) representing the user (e.g., Kim Samsung's smart ring) together with the user's avatar (1310) on the cover display (250). For example, the user's avatar (1310) can include an image of the user wearing the wearable device (401) (e.g., smart ring). The image of the wearable device (401) (e.g., smart ring) worn by the user's avatar (1310) can include at least one of an image representing a general smart ring, an image of the same shape as the identified smart ring, or an image related to a smart ring preset by the user.

[0305] For example, the electronic device (101) may transmit information about the user of the wearable device (401) to a server and receive information about the avatar of the user of the wearable device (401) from the server. However, the present invention is not limited thereto, and the electronic device (101) may store information about the avatar of the user of the wearable device (401) in advance in the memory (130).

[0306] FIG. 13b is a diagram illustrating an operation of an electronic device (201) according to one embodiment of the present disclosure to display a user interface for a wearable device (401) on a cover display (250).

[0307] In one embodiment, the electronic device (201) can identify a user of the wearable device (401) on the cover display (250) and display the identified user's avatar (1321) as a user interface. The electronic device (201) can display information (1321) representing the user (e.g., Kim Samsung's smart ring) and information (1322) regarding the wearable device together with the user's avatar (1320) on the cover display (250).

[0308] FIG. 14 is a diagram illustrating an operation of an electronic device (201) of FIG. 2b according to one embodiment of the present disclosure to display a user interface regarding a wearable device (401) on a cover display (250).

[0309] On the 1401 screen, the electronic device (401) can display a user interface (1410) for the wearable device (401) on the cover display (250) under the control of the processor (120). The user interface (1410) for the wearable device (401) can include information indicating a user of the wearable device (401) (e.g., Kim Samsung's smart ring), information indicating a shape of the wearable device (401), and / or information indicating a battery status of the wearable device (401).

[0310] On the screen 1403, the electronic device (201) can, under the control of the processor (120), check the location of the wearable device (401) on the charging area. If, under the control of the processor (120), the electronic device (201) determines that the wearable device (401) is in an area in the charging area where the efficiency of power reception is lower than a specified efficiency, the electronic device (201) can display a guide (1411) for guiding movement of the wearable device (401) as a user interface. The guide (1411) for guiding movement of the wearable device (401) can be, for example, an image indicating coordinates along with a phrase such as "Please move the smart ring around the charging coil" displayed on the cover display (250).

[0311] On screen 1405, the electronic device (201) can determine, under the control of the processor (120), whether the wearable device (401) has moved to an area in the charging area where the efficiency of power reception is higher than a specified efficiency. If it is determined that the wearable device (401) has moved to an area in the charging area where the efficiency of power reception is higher than the specified efficiency, the electronic device (201) can, under the control of the processor (120), display a user interface (1412) notifying the start of charging of the wearable device (401) on the cover display (250). The user interface (1412) notifying the start of charging of the wearable device (401) can include, for example, a phrase such as "charging begins."

[0312] FIG. 15A is a diagram illustrating an operation of an electronic device (301) of FIG. 3B according to one embodiment of the present disclosure to display a user interface for a wearable device (401) on a cover display (250).

[0313] In FIG. 15A, the electronic device (301) can determine the location of the wearable device (401) on the charging area under the control of the processor (120). The electronic device (301) can transmit power to the wearable device (401) under the control of the processor (120). The electronic device (301) can display a user interface (1510) regarding a positioning guide on the cover display (250) under the control of the processor (120). The user interface (1510) regarding the positioning guide can include, for example, a warning message notifying that charging may be stopped if the wearable device (401) moves out of the charging area.

[0314] FIG. 15B is a diagram illustrating an operation of the electronic device (301) of FIG. 3B according to one embodiment of the present disclosure to display a user interface for a wearable device (401) on a cover display (250).

[0315] In FIG. 15B, the electronic device (301) can, under the control of the processor (120), determine the location of the wearable device (401) on the charging area. The electronic device (301) can, under the control of the processor (120), transmit power to the wearable device (401). The electronic device (301) can, under the control of the processor (120), display a user interface (1520) regarding a recommended usage guide during charging on the cover display (250). The user interface (1520) regarding the recommended usage guide during charging can include, for example, a phrase recommending the use of the cover display (250) during charging of the wearable device (401) or a phrase recommending the use of a cover on which the wearable device (401) can be placed.

[0316] FIG. 16 is a diagram illustrating an operation of an electronic device (201) of FIG. 2b according to one embodiment of the present disclosure to display a user interface regarding a wearable device (401) on a cover display (250).

[0317] The electronic device (201) of FIG. 16 has a foldable housing in an unfolded state.

[0318] On the 1601 screen, when there is no connection with the wearable device (401), the electronic device (201) can display or perform a running task (1610) through the cover display (250).

[0319] On the 1603 screen, when the electronic device (201) and the wearable device (401) are connected, the electronic device (101) can display a user interface (1620) related to the wearable device (401) without obscuring the running work area (1611) under the control of the processor (120).

[0320] On the 1605 screen, the electronic device (201) can display the connection status of the electronic device (201) and the wearable device (401) as an indicator (1630) on a specific corner of the cover display (250).

[0321] On the 1605 screen, the electronic device (201) can display the connection status of the electronic device (201) and the wearable device (401) as an indicator (1630) on the top of the cover display (250).

[0322] On the 1605 screen, the electronic device (201) can display the connection status of the electronic device (201) and the wearable device (401) as an indicator (1630) on the status bar of the cover display (250).

[0323] On the 1605 screen, the electronic device (201) can display information (e.g., number of steps, biometric information, exercise information) received from the wearable device (401) on the cover display (250) at the bottom of the indicator (1630).

[0324] The indicator (1630) may include numeric information (1631) about the battery of the electronic device (201), image information (1632) about the battery of the electronic device (201), connection information (1633) between the electronic device (201) and the wearable device (401), and / or battery information (1634) about the wearable device (401). The indicator (1630) may include numeric information (1631) about the battery of the electronic device (201), image information (1632) about the battery of the electronic device (201), connection information (1633) between the electronic device (201) and the wearable device (401), and / or battery information (1634) about the wearable device (401) as icons.

[0325] FIG. 17a and FIG. 17b are flowcharts illustrating a connection between an electronic device (101) and a wearable device (401) according to one embodiment of the present disclosure.

[0326] In one embodiment, the electronic device (101) may include the electronic device (201) of FIG. 2A or the electronic device (301) of FIG. 3A.

[0327] In one embodiment, in operation 1701, the electronic device (101) may recognize a smart ring (e.g., a wearable device (401)) under the control of the processor (120). The electronic device (101) may perform a communication connection with the smart ring (e.g., a wearable device (401)) through a coil of a communication circuit or a charging circuit, and recognize the smart ring (e.g., a wearable device (401)).

[0328] In one embodiment, in operation 1701, the memory (130) stores instructions that, when executed by the processor (120), may cause the electronic device (101) to recognize a smart ring (e.g., a wearable device (401)).

[0329] In one embodiment, at operation 1703, the electronic device (101) may, under the control of the processor (120), determine whether a smart ring (e.g., a wearable device (401)) is connected to the electronic device (101) for the first time.

[0330] If it is determined that a smart ring (e.g., a wearable device (401)) is connected to the electronic device (101) for the first time, the electronic device (101) may branch from operation 1703 to operation 1721.

[0331] If it is determined that the smart ring (e.g., wearable device (401)) has previously been connected to the electronic device (101), the electronic device (101) may branch from operation 1703 to operation 1705.

[0332] In one embodiment, at operation 1721, the electronic device (101) may perform guidance and connection recognition regarding an out of box experience (OOBE) under the control of the processor (120).

[0333] In one embodiment, at operation 1721, the memory (130) stores instructions that, when executed by the processor (120), may cause the electronic device (101) to perform out of box experience (OOBE) guidance and connection recognition.

[0334] In one embodiment, at operation 1705, the electronic device (101) may determine, under the control of the processor (120), whether the foldable housing of the electronic device (101) is in an unfolded state.

[0335] In one embodiment, at operation 1705, the memory (130) stores instructions that, when executed by the processor (120), cause the electronic device (101) to determine whether the foldable housing of the electronic device (101) is in an unfolded state.

[0336] When the foldable housing of the electronic device (101) is in the unfolded state, the electronic device (201) can branch from operation 1705 to operation 1707.

[0337] If the foldable housing of the electronic device (101) is not in the unfolded state, the electronic device (201) can branch from operation 1705 to operation 1723.

[0338] In one embodiment, in operation 1723, the electronic device (101) may provide a haptic notification under the control of the processor (120). The electronic device (101) may inform the user that the smart ring (e.g., the wearable device (401)) is chargeable through the haptic notification.

[0339] In one embodiment, at operation 1723, the memory (130) stores instructions that, when executed by the processor (120), may cause the electronic device (101) to provide a haptic notification.

[0340] In one embodiment, at operation 1707, the electronic device (101), under the control of the processor (120), may determine whether the cover display (250) is in use.

[0341] In one embodiment, at operation 1707, the electronic device (101), under the control of the processor (120), may determine whether the cover display (250) is activated.

[0342] In one embodiment, at operation 1707, the memory (130) stores instructions that, when executed by the processor (120), cause the electronic device (101) to determine whether the cover display (250) is in use.

[0343] In one embodiment, at operation 1707, the memory (130) stores instructions that, when executed by the processor (120), cause the electronic device (101) to determine whether the cover display (250) is activated.

[0344] When the cover display (250) is in use, the electronic device (201) can branch from operation 1707 to operation 1709.

[0345] If the cover display (250) is not in use, the electronic device (201) may branch from operation 1707 to operation 1725.

[0346] In one embodiment, at operation 1725, the electronic device (101) may display a first notification on the main display (230) under the control of the processor (120).

[0347] In one embodiment, at operation 1725, the memory (130) stores instructions that, when executed by the processor (120), cause the electronic device (101) to display a first notification on the main display (230).

[0348] In one embodiment, the first notification may include information that the smart ring (e.g., wearable device (401)) has been recognized and that control via the cover display (250) is possible.

[0349] In one embodiment, in operation 1709, the electronic device (101), under the control of the processor (120), may determine whether a battery widget of a smart ring (e.g., a wearable device (401)) or a battery application of a smart ring (e.g., a wearable device (401)) is pre-installed.

[0350] In one embodiment, at operation 1709, the memory (130) stores instructions that, when executed by the processor (120), may cause the electronic device (101) to determine whether a battery widget of a smart ring (e.g., a wearable device (401)) or a battery application of a smart ring (e.g., a wearable device (401)) is pre-installed.

[0351] If the battery widget of the smart ring (e.g., wearable device (401)) or the battery application of the smart ring (e.g., wearable device (401)) is pre-installed, the electronic device (201) may branch from operation 1709 to operation 1711.

[0352] If the battery widget of the smart ring (e.g., wearable device (401)) or the battery application of the smart ring (e.g., wearable device (401)) is not installed, the electronic device (201) may branch from operation 1709 to operation 1727.

[0353] In one embodiment, at operation 1727, the electronic device (101) may display a second notification on the cover display (250) under the control of the processor (120).

[0354] In one embodiment, at operation 1727, the memory (130) stores instructions that, when executed by the processor (120), cause the electronic device (101) to display a second notification on the cover display (250).

[0355] In one embodiment, the second notification may include information about the smart ring (e.g., wearable device (401)) recognizing the device.

[0356] In one embodiment, in operation 1711, the electronic device (101) may display a third notification on the cover display (250) under the control of the processor (120).

[0357] In one embodiment, at operation 1711, the memory (130) stores instructions that, when executed by the processor (120), cause the electronic device (101) to display a third notification on the cover display (250).

[0358] In one embodiment, the third notification may include information about recognizing a smart ring (e.g., wearable device (401)) and / or information about the time required to charge the smart ring (e.g., wearable device (401)) and information about the amount of power consumed.

[0359] In one embodiment, at operation 1713, the electronic device (101), under the control of the processor (120), may determine whether there is a dialing input for a specific area of ​​a smart ring (e.g., a wearable device (401)).

[0360] In one embodiment, at operation 1714, the memory (130) stores instructions that, when executed by the processor (120), may cause the electronic device (101) to determine whether there is a dialing input for a specific area of ​​a smart ring (e.g., a wearable device (401)).

[0361] If there is a dialing input for a specific area of ​​the smart ring (e.g., wearable device (401)), the electronic device (101) may branch from operation 1713 to operation 1715.

[0362] If there is no dialing input for a specific area of ​​the smart ring (e.g., wearable device (401)), the electronic device (101) may branch from operation 1713 to operation 1729.

[0363] In one embodiment, at operation 1729, the electronic device (101) may, under the control of the processor (120), return to the running screen and perform a charging operation for the smart ring (e.g., wearable device (401)).

[0364] In one embodiment, at operation 1729, the memory (130) stores instructions that, when executed by the processor (120), may cause the electronic device (101) to return to the running screen and perform a charging operation for the smart ring (e.g., wearable device (401)).

[0365] In one embodiment, at operation 1715, the electronic device (101) may, under the control of the processor (120), perform charging settings of a smart ring (e.g., wearable device (401)) based on a dialing input and transmit power to the smart ring (e.g., wearable device (401)).

[0366] In one embodiment, at operation 1715, the memory (130) stores instructions that, when executed by the processor (120), cause the electronic device (101) to perform charging settings of a smart ring (e.g., wearable device (401)) based on a dialing input and to transfer power to the smart ring (e.g., wearable device (401)).

[0367] In one embodiment, when the electronic device (101) receives a dialing input for turning the side of the wearable device (401) under the control of the processor (120), the electronic device (101) may, under the control of the processor (120), set the power amount of a battery (e.g., battery 189 of FIG. 1) included in a smart ring (e.g., wearable device (401)) according to the movement amount of the gesture. Based on the set power amount of the smart ring (e.g., wearable device (401)), the electronic device (101) may, under the control of the processor (120), wirelessly transmit power to the smart ring (e.g., wearable device (401)) through a charging circuit. The charging setting may include an operation of setting the power amount of a battery (e.g., battery 189 of FIG. 1) included in the smart ring (e.g., wearable device (401)).

[0368] In one embodiment, when a user interface related to a jog dial is displayed on the cover display (250) and a gesture of turning the jog dial is received, the electronic device (101) can, under the control of the processor (120), set the power amount of a battery (e.g., battery (189) of FIG. 1) included in a smart ring (e.g., wearable device (401)) according to the amount of movement of the gesture.

[0369] In one embodiment, in operation 1717, the electronic device (101) may, under the control of the processor (120), determine whether charging of the smart ring (e.g., wearable device (401)) is complete based on the charging settings.

[0370] In one embodiment, at operation 1717, the memory (130) stores instructions that, when executed by the processor (120), may cause the electronic device (101) to determine whether charging of the smart ring (e.g., the wearable device (401)) is complete based on the charging settings.

[0371] When charging of the smart ring (e.g., wearable device (401)) is completed based on the charging settings, the electronic device (201) may branch from operation 1717 to operation 1719.

[0372] If the charging of the smart ring (e.g., wearable device (401)) is not completed based on the charging settings, the electronic device (201) may branch from operation 1717 to operation 1731.

[0373] In one embodiment, at operation 1719, the electronic device (101), under the control of the processor (120), may display a notification for completion of charging of the smart ring (e.g., the wearable device (401)) and / or repositioning of the smart ring (e.g., the wearable device (401)) for additional charging.

[0374] In one embodiment, at operation 1719, the memory (130) stores instructions that, when executed by the processor (120), may cause the electronic device (101) to display a notification regarding the completion of charging of the smart ring (e.g., the wearable device (401)) and / or repositioning of the smart ring (e.g., the wearable device (401)) for additional charging.

[0375] In one embodiment, at operation 1731, the electronic device (101) may, under the control of the processor (120), display a charge release notification and / or a notification regarding a power shortage contained in the battery of the electronic device (101).

[0376] FIG. 18 is a diagram illustrating an operation of performing charging settings of a smart ring (e.g., a wearable device (401)) in an electronic device (201) according to one embodiment of the present disclosure.

[0377] On the 1801 screen, if there is no dialing input, the electronic device (201) can, under the control of the processor (120), perform a full charge of the smart ring (e.g., wearable device (401)) with the charging setting. For example, the electronic device (201) can display the time required until the smart ring (e.g., wearable device (401)) is fully charged on the cover display (250) as a user interface (1810) (e.g., charging is complete in 1 hour and 15 minutes).

[0378] In screens 1803 and 1805, the electronic device (101) can, under the control of the processor (120), perform charging settings of the smart ring (e.g., wearable device (401)) based on the dialing input and transmit power to the smart ring (e.g., wearable device (401)).

[0379] In screens 1803 and 1805, when the electronic device (101) receives a dialing input for turning the side of the smart ring (e.g., the wearable device (401)) under the control of the processor (120), the electronic device (101) can set the power amount of the battery (e.g., the battery (189) of FIG. 1) included in the smart ring (e.g., the wearable device (401)) according to the movement amount of the gesture under the control of the processor (120). Based on the set power amount of the smart ring (e.g., the wearable device (401)), the electronic device (101) can wirelessly transmit power to the smart ring (e.g., the wearable device (401)) through the charging circuit under the control of the processor (120). The charging settings may include an action of setting the power level of a battery (e.g., battery (189) of FIG. 1) included in a smart ring (e.g., wearable device (401)).

[0380] For example, when an input is received that rotates the side of a smart ring (e.g., wearable device (401)) approximately halfway, the electronic device (101) may display a phrase such as “50% charged in 30 minutes” on the first user interface (1820).

[0381] For example, when an input is received that rotates the side of a smart ring (e.g., wearable device (401)) approximately 2 / 3 of the way, the electronic device (101) may display a phrase such as “72% charged in 30 minutes” on the second user interface (1830).

[0382] On the 1807 screen, the electronic device (101) may, under the control of the processor (120), display a user interface (1840) notifying of completion of charging when the smart ring (e.g., wearable device (401)) is completed charging based on the charging settings.

[0383] FIG. 19a is a diagram illustrating a case in which a smart ring (e.g., a wearable device (401)) is detached from an electronic device (301) while receiving power according to one embodiment of the present disclosure.

[0384] In one embodiment, if a smart ring (e.g., wearable device (401)) is removed from the electronic device (301) while receiving power, the electronic device (301) may include a user interface (1910) that notifies the user to reposition the smart ring (e.g., wearable device (401)) in the charging area of ​​the cover (260). The user interface (1910) that notifies the user to reposition the smart ring in the charging area may include a phrase such as "The smart ring has moved out of the charging position. Please move the smart ring back around the charging coil. Lost your smart ring? OK."

[0385] FIG. 19b is a diagram illustrating a case where a smart ring (e.g., a wearable device (401)) is detached from an electronic device (301) while receiving power according to one embodiment of the present disclosure.

[0386] In one embodiment, if a smart ring (e.g., a wearable device (401)) is removed from the electronic device (301) while receiving power, a user interface for tracking the location of the smart ring (e.g., a wearable device (401)) may be displayed. For example, if a user input is received for “Confirm” in the phrase “Have you lost your smart ring? Confirm” in the user interface (1910) that notifies the user to relocate to a charging area, a user interface for tracking the location of the smart ring (e.g., a wearable device (401)) may be displayed. The electronic device (301) may determine the location of the smart ring (e.g., a wearable device (401)) based on a communication circuit. A user interface for tracking a location of a smart ring (e.g., a wearable device (401)) may include a user interface (1921) for the location of the smart ring (e.g., a wearable device (401)) and a user interface (1922) for the direction of the smart ring (e.g., a wearable device (401)). A user interface for tracking a location of a smart ring (e.g., a wearable device (401)) may include a user interface (1923) for notifying a distance between the smart ring (e.g., a wearable device (401)) and an electronic device (301) by vibration (or haptics). Upon receiving a user input for the user interface (1923) for notifying by vibration (or haptics), the electronic device (301) may adjust and output an intensity of vibration (or haptics) in proportion to the distance between the smart ring (e.g., a wearable device (401)) and the electronic device (301).

[0387] In one embodiment, an electronic device (e.g., electronic device (201) or electronic device (301)) includes a foldable housing that can be folded or unfolded, a main display (230) disposed on a first side of the foldable housing, a cover display (250) disposed on a second side of the foldable housing, a coil and a communication circuit disposed toward the second side to wirelessly receive power from the outside or transmit power to the outside, a processor (e.g., processor (120)), and a memory (e.g., memory (130)) storing instructions, the instructions, when executed by the processor (e.g., processor (120)), cause the electronic device (e.g., electronic device (201) or electronic device (301)) to: determine whether a wearable device (401) is placed in a charging area corresponding to the coil, confirm one or more of a user or device name of the wearable device (401) through the communication circuit, and determine whether the wearable device (401) is placed in the charging area. If it is determined that the cover display (250) is facing a specific direction, the cover display (250) is controlled to display a user interface related to the wearable device (401) on the cover display (250), and power can be transmitted to the wearable device (401) based on the charging setting, and a user interface related to charging of the wearable device (401) can be displayed.

[0388] In one embodiment, the instructions, when executed by a processor (e.g., processor (120)), may cause an electronic device (e.g., electronic device (201) or electronic device (301)) to: display an application related to the wearable device (401) on the cover display (250) based on a user input on the cover display (250), and to display a user interface corresponding to the shape of the wearable device (401) in an area of ​​the cover display (250) corresponding to the user input.

[0389] In one embodiment, the instructions, when executed by a processor (e.g., processor (120)), may cause an electronic device (e.g., electronic device (201) or electronic device (301)) to: display a user interface corresponding to the shape of the wearable device (401) in a fade-in animation in an area of ​​the cover display (250) when a user and device of the wearable device (401) are identified.

[0390] In one embodiment, the instructions, when executed by a processor (e.g., processor (120)), may cause an electronic device (e.g., electronic device (201) or electronic device (301)) to: sequentially move a user interface corresponding to the shape of the wearable device (401) to a central area of ​​the cover display (250) in a fade-in animation and display a user interface regarding recognition of the wearable device (401) on the cover display (250).

[0391] In one embodiment, the instructions, when executed by a processor (e.g., processor (120)), may cause an electronic device (e.g., electronic device (201) or electronic device (301)) to: display a user interface associated with a wearable device (401) while receiving a user input for screen rotation, cause the cover display (250) to display the displayed content in an up-down direction.

[0392] In one embodiment, the instructions, when executed by a processor (e.g., processor (120)), may cause an electronic device (e.g., electronic device (201) or electronic device (301)) to: display a user interface for new device registration if the connection between the wearable device (401) and the electronic device (e.g., electronic device (201) or electronic device (301)) is determined to be a first connection.

[0393] In one embodiment, the instructions, when executed by a processor (e.g., processor (120)), may cause an electronic device (e.g., electronic device (201) or electronic device (301)) to: display an avatar and device name corresponding to a user when one or more of a user or device name of the wearable device (401) is identified.

[0394] In one embodiment, the instructions, when executed by a processor (e.g., processor (120)), may cause an electronic device (e.g., electronic device (201) or electronic device (301)) to: display a user interface on the cover display (250) guiding the wearable device (401) to a location where it can receive power when the wearable device (401) is placed in a charging area.

[0395] In one embodiment, the instructions, when executed by a processor (e.g., processor (120)), may cause an electronic device (e.g., electronic device (201) or electronic device (301)) to: display a user interface regarding recognition, connection status, and battery status of the wearable device (401) when a task is displayed on the cover display (250).

[0396] In one embodiment, the instructions, when executed by a processor (e.g., processor (120)), may cause an electronic device (e.g., electronic device (201) or electronic device (301)) to: display a user interface that sets charging of the wearable device (401) based on user input received via the wearable device (401).

[0397] In one embodiment, a method for providing a user interface may include an operation of determining whether a wearable device (401) is placed in a charging area corresponding to a coil, an operation of confirming one or more of a user or device name of the wearable device (401) through a communication circuit, an operation of controlling the cover display (250) to display a user interface related to the wearable device (401) on the cover display (250) when it is determined that the wearable device (401) is placed in the charging area and the cover display (250) is determined to be facing a specific direction, and an operation of transmitting power to the wearable device (401) based on a charging setting and displaying a user interface related to charging of the wearable device (401).

[0398] In one embodiment, a method for providing a user interface may include an operation of displaying an application related to a wearable device (401) on the cover display (250) based on a user input on the cover display (250) and an operation of displaying a user interface corresponding to the shape of the wearable device (401) in an area of ​​the cover display (250) corresponding to the user input.

[0399] In one embodiment, the method for providing a user interface may include an operation of displaying a user interface corresponding to the shape of the wearable device (401) in a fade-in animation in an area of ​​the cover display (250) when the user and device of the wearable device (401) are identified.

[0400] In one embodiment, the method for providing a user interface may include an operation of sequentially moving a user interface corresponding to the shape of the wearable device (401) to a central area of ​​the cover display (250) as a fade-in animation and displaying a user interface regarding recognition of the wearable device (401) on the cover display (250).

[0401] In one embodiment, the method for providing a user interface may include an operation of displaying contents of a cover display (250) by switching the up-down direction when receiving a user input for screen rotation while displaying a user interface related to a wearable device (401).

[0402] In one embodiment, the method for providing a user interface may include an action of displaying a user interface for new device registration when it is determined that the connection between the wearable device (401) and the electronic device (e.g., electronic device (201) or electronic device (301)) is a first connection.

[0403] In one embodiment, the method for providing a user interface may include an action of displaying an avatar and a device name corresponding to the user when one or more of the user or device names of the wearable device (401) are identified.

[0404] In one embodiment, the method for providing a user interface may include an operation of displaying a user interface on a cover display (250) that guides the wearable device (401) to a location where it can receive power well when the wearable device (401) is placed in a charging area.

[0405] In one embodiment, the method for providing a user interface may include an operation of displaying a user interface regarding recognition, connection status, and battery status of the wearable device (401) when a task is displayed on the cover display (250).

[0406] In one embodiment, a method for providing a user interface may include an action of displaying a user interface for setting charging of the wearable device (401) based on user input received through the wearable device (401).

[0407] Electronic devices according to the various embodiments disclosed in this document may take various forms. Electronic devices may include, for example, portable communication devices (e.g., smartphones), computer devices, portable multimedia devices, portable medical devices, cameras, wearable devices, or home appliances. Electronic devices according to the embodiments of this document are not limited to the aforementioned devices.

[0408] The various embodiments of this document and the terminology used therein are not intended to limit the technical features described in this document to specific embodiments, but should be understood to include various modifications, equivalents, or substitutes of the embodiments. In connection with the description of the drawings, similar reference numerals may be used for similar or related components. The singular form of a noun corresponding to an item may include one or more of the items, unless the context clearly indicates otherwise. In this document, each of the phrases "A or B", "at least one of A and B", "at least one of A or B", "A, B, or C", "at least one of A, B, and C", and "at least one of A, B, or C" can include any one of the items listed together in the corresponding phrase among those phrases, or all possible combinations thereof. Terms such as "first," "second," or "first" or "second" may be used merely to distinguish one component from another, and do not limit the components in any other respect (e.g., importance or order). When a component (e.g., a first component) is referred to as "coupled" or "connected" to another (e.g., a second component), with or without the terms "functionally" or "communicatively," it means that the component can be connected to the other component directly (e.g., wired), wirelessly, or through a third component.

[0409] The term "module" used in various embodiments of this document may include a unit implemented in hardware, software, or firmware, and may be used interchangeably with terms such as logic, logic block, component, or circuit. A module may be an integral component, or a minimum unit or part of such a component that performs one or more functions. For example, according to one embodiment, a module may be implemented in the form of an application-specific integrated circuit (ASIC).

[0410] Various embodiments of the present document may be implemented as software (e.g., a program (140)) including one or more instructions stored in a storage medium (e.g., an internal memory (136) or an external memory (138)) readable by a machine (e.g., an electronic device (101)). For example, a processor (e.g., a processor (120)) of the machine (e.g., an electronic device (101)) may call at least one instruction among the one or more instructions stored from the storage medium and execute it. This enables the machine to operate to perform at least one function according to the at least one called instruction. The one or more instructions may include code generated by a compiler or code executable by an interpreter. The machine-readable storage medium may be provided in the form of a non-transitory storage medium. Here, 'non-transitory' simply means that the storage medium is a tangible device and does not contain signals (e.g., electromagnetic waves), and the term does not distinguish between cases where data is stored semi-permanently or temporarily on the storage medium.

[0411] According to one embodiment, the method according to various embodiments disclosed in this document may be provided as a computer program product. The computer program product may be traded between sellers and buyers as a product. The computer program product may be distributed in the form of a device-readable storage medium (e.g., compact disc read-only memory (CD-ROM)) or may be provided through an application store (e.g., Play Store). TM ) or directly between two user devices (e.g., smart phones), online (e.g., by download or upload). In the case of online distribution, at least a portion of the computer program product may be at least temporarily stored or temporarily created in a machine-readable storage medium, such as the memory of a manufacturer's server, an application store's server, or an intermediary server.

[0412] According to various embodiments, each component (e.g., a module or a program) of the above-described components may include one or more entities, and some of the entities may be separated and placed in other components. According to various embodiments, one or more components or operations of the aforementioned components may be omitted, or one or more other components or operations may be added. Alternatively or additionally, a plurality of components (e.g., a module or a program) may be integrated into a single component. In such a case, the integrated component may perform one or more functions of each of the plurality of components identically or similarly to those performed by the corresponding component among the plurality of components prior to the integration. According to various embodiments, the operations performed by a module, program, or other component may be executed sequentially, in parallel, iteratively, or heuristically, or one or more of the operations may be executed in a different order, omitted, or one or more other operations may be added.

Claims

1. In electronic devices, A foldable housing that can be folded or unfolded; A main display arranged on the first side of the foldable housing; A cover display arranged on the second side of the foldable housing; A coil disposed toward the second surface and wirelessly receiving power from the outside or transmitting power to the outside; and communication circuit; at least one processor; and Contains memory for storing instructions, The above instructions, when individually or collectively executed by the at least one processor, cause the electronic device to: Determine whether a wearable device is placed in a charging area corresponding to the above coil, Verifying one or more of the user or device names of the wearable device through the above communication circuit; When it is determined that the wearable device is placed in the charging area and the cover display is determined to be facing a specific direction, the cover display is controlled to display a user interface related to the wearable device on the cover display. An electronic device for transferring power to the wearable device based on a charging setting and displaying a user interface regarding charging of the wearable device.

2. In paragraph 1, The above instructions, when individually or collectively executed by the at least one processor, cause the electronic device to: Displaying an application related to the wearable device on the cover display based on a user input on the cover display; An electronic device that controls displaying a user interface corresponding to the shape of the wearable device in an area of ​​the cover display corresponding to the user input.

3. In paragraph 1, The above instructions, when individually or collectively executed by the at least one processor, cause the electronic device to: An electronic device that, when a user and device of the wearable device are identified, causes a user interface corresponding to the shape of the wearable device to be displayed in a fade-in animation on an area of ​​the cover display.

4. In paragraph 1, The above instructions, when individually or collectively executed by the at least one processor, cause the electronic device to: A user interface corresponding to the shape of the wearable device is sequentially displayed in a fade-in animation to the center area of ​​the cover display. An electronic device that displays a user interface regarding recognition of the wearable device on the cover display.

5. In paragraph 1, The above instructions, when individually or collectively executed by the at least one processor, cause the electronic device to: An electronic device that, when receiving a user input for screen rotation while displaying a user interface related to the wearable device, causes the content being displayed on the cover display to be displayed in an up-down direction.

6. In paragraph 1, The above instructions, when individually or collectively executed by the at least one processor, cause the electronic device to: If it is determined that the connection between the above wearable device and the electronic device is the first connection, a user interface for registering a new device is displayed, An electronic device that displays an avatar corresponding to the user and the device name when at least one of the user or device names of the wearable device is verified.

7. In paragraph 1, The above instructions, when individually or collectively executed by the at least one processor, cause the electronic device to: When the wearable device is placed in the charging area, a user interface guiding the wearable device to a location where it can receive power is displayed on the cover display. When a task is displayed on the cover display, a user interface regarding the recognition, connection status, and battery status of the wearable device is displayed. An electronic device that displays a user interface for setting charging of the wearable device based on user input received via the wearable device.

8. In the method of providing a user interface, An action for determining whether a wearable device is placed in a charging area corresponding to a coil; An act of identifying one or more of the user or device names of said wearable device via a communications circuit; An operation of controlling displaying a user interface related to the wearable device on the cover display by using the cover display when it is determined that the wearable device is placed in the charging area and the cover display is determined to be facing a specific direction; A method comprising: transferring power to the wearable device based on a charging setting; and displaying a user interface relating to charging of the wearable device.

9. In paragraph 8, An operation of displaying an application related to the wearable device on the cover display based on a user input on the cover display; and A method comprising the action of displaying a user interface corresponding to the shape of the wearable device in an area of ​​the cover display corresponding to the user input.

10. In paragraph 8, A method comprising: when a user and device of the wearable device are identified, displaying a user interface corresponding to the shape of the wearable device in an area of ​​the cover display with a fade-in animation.

11. In paragraph 8, An action of sequentially moving a user interface corresponding to the shape of the wearable device to the center area of ​​the cover display with a fade-in animation; and A method comprising the action of displaying a user interface relating to recognition of the wearable device on the cover display.

12. In paragraph 8, A method comprising: when receiving a user input for screen rotation while displaying a user interface related to the wearable device, an action of displaying the contents displayed on the cover display by switching the up-down direction.

13. In paragraph 8, If it is determined that the connection between the wearable device and the electronic device is the first connection, an action of displaying a user interface for registering a new device; and A method comprising: displaying an avatar corresponding to the user and the device name when at least one of the user or device names of the wearable device is verified.

14. In paragraph 8, A method comprising: displaying, on the cover display, a user interface guiding the wearable device to a location where it can receive power well when the wearable device is placed in the charging area.

15. In paragraph 8, When a task is displayed on the cover display, an operation of displaying a user interface regarding recognition, connection status, and battery status of the wearable device; and A method comprising: displaying a user interface for setting charging of the wearable device based on user input received via the wearable device.

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