Adhesive member and electronic device including the same
By designing multiple slit structures in the adhesive component, the problem of unstable connection between the display and the support component in electronic devices is solved, improving the durability and user experience of the device and meeting the needs of multi-functional miniaturization.
Patent Information
- Application Number
- CN202480024017.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2023-05-26
- Filing Date
- 2024-04-19
- Publication Date
- 2025-11-11
AI Technical Summary
In the process of integrating multiple functions and miniaturizing existing electronic devices, the design of adhesive components is difficult to balance strength and flexibility, resulting in unstable connection between the display and the support components, which affects the durability of the device and the user experience.
The adhesive component employs multiple slits, including a first, second, and third slit portion. The first slit extends along a first direction, the second slit is spaced apart from it, and the third slit obliquely connects the two. This ensures that the adhesive component has sufficient strength and flexibility in the width direction to adapt to stress changes in different directions.
It improves the connection stability between the display and the supporting components, enhances the durability and user experience of electronic devices, and adapts to various stress changes during the carrying and use of electronic devices.
Smart Images

Figure CN120936684A_ABST
Abstract
Description
Technical Field
[0001] Various embodiments of this disclosure relate to an electronic device, such as an adhesive member and an electronic device including the adhesive member. Background Technology
[0002] Advances in information and communication technologies and semiconductor technologies have accelerated the popularization and use of various electronic devices. In particular, recent electronic devices are being developed to perform communication while being carried.
[0003] The term "electronic device" can refer to a device that performs specific functions according to its equipped programs (such as home appliances, electronic schedulers, portable multimedia players, mobile communication terminals, tablet PCs, video / audio devices, desktop or laptop PCs, car navigation systems, etc.). For example, an electronic device can output stored information as voice or images. With the high integration of electronic devices and the widespread adoption of high-speed, high-capacity wireless communication, electronic devices (such as mobile communication terminals) have recently been equipped with a variety of functions. For example, electronic devices have integrated functions, including entertainment functions (such as playing video games), multimedia functions (such as playing music / videos), communication and security functions (such as for mobile banking), and scheduling or e-wallet functions. These electronic devices have been miniaturized for easy carrying by users. Summary of the Invention
[0004] Technical solution An electronic device according to an embodiment of the present disclosure includes: a housing including a support member extending along a first direction; a display including a film facing the support member; and an adhesive member disposed between the support member and the film, including a plurality of slits disposed along the first direction and having a width in a second direction intersecting the first direction. At least one of the plurality of slits includes: a first slit portion extending along the first direction and facing a portion of another slit adjacent to the first slit portion in the width direction of the adhesive member; a second slit portion spaced apart from the first slit portion and facing a portion of another slit adjacent to the second slit portion in the width direction of the adhesive member; and a third slit portion connecting the first slit portion and the second slit portion and extending obliquely relative to the first direction.
[0005] An electronic device according to an embodiment of the present disclosure includes: a housing including a support member extending along a first direction; a display including a thin film facing the support member; and an adhesive member disposed between the support member and the thin film, including a plurality of slits arranged along the first direction and having a width in a second direction intersecting the first direction. At all portions of the adhesive member extending along the first direction, at least a portion of the plurality of slits lies within the width of the adhesive member. Attached Figure Description
[0006] Figure 1 This is a block diagram illustrating an electronic device in a network environment according to an embodiment; Figure 2 This is a front perspective view showing an electronic device according to an embodiment of the present disclosure; Figure 3 This is a rear perspective view showing an electronic device according to an embodiment of the present disclosure; Figure 4 This is a front exploded perspective view showing an electronic device according to an embodiment of the present disclosure; Figure 5 This is a rear exploded perspective view showing an electronic device according to an embodiment of the present disclosure; Figure 6 This is a portion of an exploded view illustrating an electronic device according to an embodiment of the present disclosure; Figure 7 This is a portion of an exploded view illustrating an electronic device according to an embodiment of the present disclosure; Figure 8 An adhesive member according to an embodiment of the present disclosure is shown; Figure 9 A peeling sheet according to an embodiment of the present disclosure is shown; Figure 10a A display is shown prior to the attachment of the adhesive component according to an embodiment of the present disclosure; Figure 10b A display is shown after attaching the adhesive member and the release tab, according to an embodiment of the present disclosure; Figure 10c The image shows the state in which the release tab has been removed from the adhesive member according to an embodiment of the present disclosure; Figure 11 An adhesive member according to an embodiment of the present disclosure is shown; Figure 12a A portion of an adhesive member according to an embodiment of the present disclosure is shown; Figure 12b It is along Figure 12a The cross-sectional views of lines A-A' and B-B' shown in the figure; Figure 13 This is a table showing the shapes of adhesive members according to various embodiments of the present disclosure; Figure 14 The illustration shows a form in which an adhesive member is attached to a support member according to an embodiment of the present disclosure; Figure 15 This is a view showing the disassembly of an electronic device according to an embodiment of the present disclosure; Figure 16 This is a conceptual diagram illustrating the effect of an adhesive member according to an embodiment of the present disclosure; and Figure 17 This is a view illustrating the effect of an adhesive member according to an embodiment of the present disclosure. Detailed Implementation
[0007] Figure 1 This is a block diagram illustrating an electronic device 101 in a network environment 100 according to various embodiments.
[0008] Reference Figure 1 In network environment 100, electronic device 101 can communicate with electronic device 102 via a first network 198 (e.g., a short-range wireless communication network), or with at least one of electronic device 104 or server 108 via a second network 199 (e.g., a long-range wireless communication network). According to an embodiment, electronic device 101 can communicate with electronic device 104 via server 108. According to an embodiment, electronic device 101 may include a processor 120, memory 130, input module 150, sound output module 155, display module 160, audio module 170, sensor module 176, interface 177, connection terminal 178, haptic module 179, camera module 180, power management module 188, battery 189, communication module 190, user identification module (SIM) 196, or antenna module 197. In an embodiment, at least one of the above components (e.g., connection terminal 178) may be omitted from electronic device 101, or one or more other components may be added to electronic device 101. According to an embodiment, some of the components described above (e.g., sensor module 176, camera module 180, or antenna module 197) may be integrated into a single component (e.g., display module 160).
[0009] Processor 120 may run software (e.g., program 140) to control at least one other component (e.g., hardware or software component) of electronic device 101 in conjunction with processor 120, and may perform various data processing or calculations. According to embodiments, as at least part of the data processing or calculations, processor 120 may store commands or data received from another component (e.g., sensor module 176 or communication module 190) in volatile memory 132, process the commands or data stored in volatile memory 132, and store the resulting data in non-volatile memory 134. According to embodiments, processor 120 may include a main processor 121 (e.g., central processing unit (CPU) or application processor (AP)) or an auxiliary processor 123 (e.g., graphics processing unit (GPU), neural processing unit (NPU), image signal processor (ISP), sensor central processor, or communication processor (CP)) that is operationally independent of or combined with the main processor 121. For example, when electronic device 101 includes a main processor 121 and an auxiliary processor 123, the auxiliary processor 123 may be configured to consume less power than the main processor 121 or be configured to be dedicated to a specific function. The auxiliary processor 123 may be implemented separately from the main processor 121 or as part of the main processor 121.
[0010] When the main processor 121 is inactive (e.g., in sleep mode), the auxiliary processor 123 (rather than the main processor 121) can control at least some of the functions or states associated with at least one component of the electronic device 101 (e.g., display module 160, sensor module 176, or communication module 190), or when the main processor 121 is active (e.g., running an application), the auxiliary processor 123 can work with the main processor 121 to control at least some of the functions or states associated with at least one component of the electronic device 101 (e.g., display module 160, sensor module 176, or communication module 190). According to embodiments, the auxiliary processor 123 (e.g., an image signal processor or a communication processor) may be implemented as part of another component (e.g., camera module 180 or communication module 190) functionally associated with the auxiliary processor 123. According to embodiments, the auxiliary processor 123 (e.g., a neural processing unit) may include hardware architecture dedicated to artificial intelligence model processing. Artificial intelligence models can be generated via machine learning. For example, such learning can be performed via electronic device 101 where artificial intelligence is performed or via a separate server (e.g., server 108). The learning algorithm may include, but is not limited to, supervised learning, unsupervised learning, semi-supervised learning, or reinforcement learning. The artificial intelligence model may include multiple layers of artificial neural networks. The artificial neural network may be 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 thereof, but is not limited thereto. Additionally or optionally, the artificial intelligence model may include software structures in addition to hardware structures.
[0011] Memory 130 may store various data used by at least one component of electronic device 101 (e.g., processor 120 or sensor module 176). The various data may include, for example, software (e.g., program 140) and input or output data for commands associated with it. Memory 130 may include volatile memory 132 or non-volatile memory 134.
[0012] The program 140 may be stored as software in the memory 130, and the program 140 may include, for example, an operating system (OS) 142, middleware 144, or application 146.
[0013] Input module 150 can receive commands or data from outside electronic device 101 (e.g., a user) that will be used by other components of electronic device 101 (e.g., processor 120). Input module 150 may include, for example, a microphone, mouse, keyboard, keys (e.g., buttons), or digital pen (e.g., stylus).
[0014] The sound output module 155 can output sound signals to the outside of the electronic device 101. The sound output module 155 may include, for example, a speaker or a receiver. The speaker can be used for general purposes such as playing multimedia or playing records. The receiver can be used to receive incoming calls. According to an embodiment, the receiver can be implemented separately from the speaker or as part of the speaker.
[0015] Display module 160 can visually provide information to the outside of electronic device 101 (e.g., to a user). Display module 160 may include, for example, a display, a holographic device, or a projector, and control circuitry for controlling a respective one of the display, holographic device, and projector. According to an embodiment, display module 160 may include a touch sensor configured to detect a touch or a pressure sensor configured to measure the intensity of the force generated by the touch.
[0016] The audio module 170 can convert sound into electrical signals and vice versa. According to an embodiment, the audio module 170 can obtain sound via the input module 150, or output sound via the sound output module 155 or via headphones of an external electronic device (e.g., electronic device 102) that is directly (e.g., wired) or wirelessly connected to the electronic device 101.
[0017] Sensor module 176 can detect the operating state of electronic device 101 (e.g., power or temperature) or the environmental state outside electronic device 101 (e.g., user state), and then generate an electrical signal or data value corresponding to the detected state. According to embodiments, sensor module 176 may include, for example, a gesture sensor, gyroscope sensor, atmospheric pressure sensor, magnetic sensor, accelerometer, grip sensor, proximity sensor, color sensor, infrared (IR) sensor, biometric sensor, temperature sensor, humidity sensor, or illuminance sensor.
[0018] Interface 177 may support one or more specific protocols used to enable electronic device 101 to be directly (e.g., wired) or wirelessly coupled to external electronic device (e.g., electronic device 102). According to embodiments, interface 177 may include, for example, a High Definition Multimedia Interface (HDMI), a Universal Serial Bus (USB) interface, a Secure Digital Card (SD) interface, or an audio interface.
[0019] Connection 178 may include a connector, through which electronic device 101 may be physically connected to an external electronic device (e.g., electronic device 102). According to embodiments, connection 178 may include, for example, an HDMI connector, a USB connector, an SD card connector, or an audio connector (e.g., a headphone connector).
[0020] The haptic module 179 can convert electrical signals into mechanical stimuli (e.g., vibration or motion) or electrical stimuli that can be recognized by a user through his touch or kinesthesia. According to an embodiment, the haptic module 179 may include, for example, a motor, a piezoelectric element, or an electrical stimulator.
[0021] Camera module 180 can capture still or moving images. According to an embodiment, camera module 180 may include one or more lenses, an image sensor, an image signal processor, or a flash.
[0022] The power management module 188 manages the power supply to the electronic device 101. According to an embodiment, the power management module 188 may be implemented as at least part of, for example, a power management integrated circuit (PMIC).
[0023] Battery 189 can power at least one component of electronic device 101. According to embodiments, battery 189 may include, for example, a non-rechargeable primary battery, a rechargeable accumulator, or a fuel cell.
[0024] Communication module 190 can support the establishment of a direct (e.g., wired) or wireless communication channel between electronic device 101 and external electronic devices (e.g., electronic device 102, electronic device 104, or server 108), and perform communication via the established communication channel. Communication module 190 may include one or more communication processors capable of operating independently of processor 120 (e.g., application processor (AP)) and supporting direct (e.g., wired) or wireless communication. According to embodiments, communication module 190 may include wireless communication module 192 (e.g., cellular communication module, short-range wireless communication module, or Global Navigation Satellite System (GNSS) communication module) or wired communication module 194 (e.g., local area network (LAN) communication module or power line communication (PLC) module). A corresponding one of these communication modules can communicate via a first network 198 (e.g., a short-range communication network, such as Bluetooth). TM The wireless communication module 192 can communicate with external electronic devices 104 via a Wi-Fi Direct or Infrared Data Association (IrDA) network or a second network 199 (e.g., a long-range communication network, such as a traditional cellular network, a 5G network, a next-generation communication network, the Internet, or a computer network (e.g., a local area network (LAN) or a wide area network (WAN))). These various types of communication modules can be implemented as a single component (e.g., a single chip) or as multiple components separate from each other (e.g., multiple chips). The wireless communication module 192 can use user information (e.g., an International Mobile Subscriber Identity (IMSI)) stored in the user identification module 196 to identify or verify electronic devices 101 in a communication network (such as a first network 198 or a second network 199).
[0025] Wireless communication module 192 can support 5G networks following 4G networks and next-generation communication technologies (e.g., new radio (NR) access technologies). NR access technologies can support enhanced mobile broadband (eMBB), massive machine-type communication (mMTC), or ultra-reliable low-latency communication (URLLC). Wireless communication module 192 can support high-frequency bands (e.g., millimeter-wave bands) to achieve, for example, high data transmission rates. Wireless communication module 192 can support various technologies used to ensure performance in high-frequency bands, such as, for example, beamforming, massive MIMO, full-dimensional MIMO (FD-MIMO), array antennas, analog beamforming, or massive antennas. Wireless communication module 192 can support various requirements specified in electronic device 101, external electronic devices (e.g., electronic device 104), or network systems (e.g., second network 199). According to an embodiment, the wireless communication module 192 may support peak data rates (e.g., 20 Gbps or greater) for implementing eMBB, lost coverage (e.g., 164 dB or less) for implementing mMTC, or U-plane latency (e.g., 0.5 ms or less for each of the downlink (DL) and uplink (UL), or 1 ms or less round trip) for implementing URLLC.
[0026] Antenna module 197 can transmit or receive signals or power to or from an external source (e.g., an external electronic device). According to an embodiment, antenna module 197 may include an antenna comprising a radiator formed of a conductor or conductive pattern formed on a substrate (e.g., a printed circuit board (PCB)). According to an embodiment, antenna module 197 may include multiple antennas (e.g., an array antenna). In this case, at least one antenna suitable for a communication scheme used in a communication network (such as a first network 198 or a second network 199) can be selected from the multiple antennas by, for example, communication module 190. Signals or power can then be transmitted or received between communication module 190 and an external electronic device via the selected at least one antenna. According to an embodiment, other components besides the radiator (e.g., a radio frequency integrated circuit (RFIC)) may also be formed as part of antenna module 197.
[0027] According to various embodiments, antenna module 197 can form a millimeter-wave antenna module. According to embodiments, the millimeter-wave antenna module may include a printed circuit board, an RFIC, and multiple antennas (e.g., an array antenna), wherein the RFIC is disposed on or adjacent to a first surface (e.g., a bottom surface) of the printed circuit board and is capable of supporting a specified high-frequency band (e.g., a millimeter-wave band), and the multiple antennas are disposed on or adjacent to a second surface (e.g., a top or side surface) of the printed circuit board and are capable of transmitting or receiving signals in the specified high-frequency band.
[0028] At least some of the aforementioned components can be combined with each other and communicate signals (e.g., commands or data) between them via an inter-peripheral communication scheme (e.g., bus, general purpose input / output (GPIO), serial peripheral interface (SPI), or mobile industrial processor interface (MIPI)).
[0029] According to an embodiment, instructions or data can be sent or received between electronic device 101 and external electronic device 104 via server 108 connected to a second network 199. Each of external electronic device 102 or external electronic device 104 can be a device of the same type as electronic device 101, or a device of a different type. According to an embodiment, all or some operations that would be performed on electronic device 101 can be performed on one or more of external electronic devices 102, 104, or 108. For example, if electronic device 101 is required to automatically perform a function or service, or is required to perform a function or service in response to a request from a user or another device, electronic device 101 may request the one or more external electronic devices to perform at least a portion of the function or service instead of running the function or service, or electronic device 101 may request the one or more external electronic devices to perform at least a portion of the function or service in addition to running the function or service. Upon receiving the request, the one or more external electronic devices may perform at least a portion of the requested function or service, or perform additional functions or services related to the request, and send the result of the performance to electronic device 101. Electronic device 101 may provide the result as at least a partial response to the request, either with further processing or without further processing. For this purpose, technologies such as cloud computing, distributed computing, mobile edge computing (MEC), or client-server computing may be used. Electronic device 101 may use, for example, distributed computing or mobile edge computing to provide ultra-low latency services. In another embodiment, external electronic device 104 may include an Internet of Things (IoT) device. Server 108 may be an intelligent server using machine learning and / or neural networks. According to embodiments, external electronic device 104 or server 108 may be included in a second network 199. Electronic device 101 may be applied to intelligent services based on 5G communication technology or IoT-related technologies (e.g., smart homes, smart cities, smart cars, or healthcare).
[0030] The electronic device according to various embodiments of this disclosure can be one of a variety of types of electronic devices. 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. According to embodiments of this disclosure, the electronic device is not limited to those described above.
[0031] It should be understood that the various embodiments of this disclosure and the terminology used therein are not intended to limit the technical features set forth herein to particular embodiments, but rather to include various changes, equivalents, or substitutions to the respective embodiments. In the description of the drawings, similar reference numerals may be used to refer to similar or related elements. It will be understood that the singular form of a noun corresponding to an item may include one or more things unless the relevant context clearly indicates otherwise. As used herein, each of the phrases such as “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” may include all possible combinations of the items enumerated together with the corresponding phrase among the plurality of phrases. As used herein, terms such as “first” and “second” or “first” and “second” may be used to simply distinguish one component from another and do not limit the components in other respects (e.g., importance or order). It will be understood that, whether or not the terms “operably” or “communically” are used, if an element (e.g., a first element) is referred to as being “combined” with, “combined to”, “connected to”, or “attached to” another element (e.g., a second element), it means that the first element can be directly (e.g., wiredly) connected to the other element, wirelessly connected to the other element, or connected to the other element via a third element.
[0032] As used herein, the term "module" can include units implemented in hardware, software, or firmware, and is used interchangeably with other terms such as "logic," "logic block," "part," or "circuit." A module can be a single integrated component adapted to perform one or more functions, or the smallest unit or part of such a single integrated component. For example, according to embodiments, modules can be implemented in the form of application-specific integrated circuits (ASICs).
[0033] The various embodiments described herein can be implemented as software (e.g., program 140) including one or more instructions stored in a storage medium (e.g., internal memory 136 or external memory 138) readable by a machine (e.g., electronic device 101). For example, a processor (e.g., processor 120) of the machine (e.g., electronic device 101) can invoke and execute at least one of the one or more instructions stored in the storage medium, with or without the use of one or more other components, under the control of the processor. This allows the machine to be operated to perform at least one function according to the invoked at least one 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, the term "non-transitory" simply means that the storage medium is a tangible device and does not include signals (e.g., electromagnetic waves), but the term does not distinguish whether data is stored semi-permanently or temporarily in the storage medium.
[0034] According to embodiments, methods according to various embodiments of this disclosure may be included and incorporated into a computer program product. The computer program product may be traded as a product between a seller and a buyer. The computer program product may be distributed in the form of a machine-readable storage medium (e.g., a read-only optical disc (CD-ROM)) or via an app store (e.g., the Play Store). TM Online distribution (e.g., downloading or uploading) or direct distribution between two user devices (e.g., smartphones). If distributed online, at least a portion of the computer program product may be temporarily generated or at least temporarily stored in a machine-readable storage medium (such as the memory of a manufacturer's server, an app store's server, or a relay server).
[0035] According to various embodiments, each component (e.g., a module or program) described above may include a single entity or multiple entities. Some of the multiple entities may be separately located in different components. According to various embodiments, one or more of the components described above may be omitted, or one or more other components may be added. Optionally or additionally, multiple components (e.g., modules or programs) may be integrated into a single component. In this case, according to various embodiments, the integrated component may still perform one or more functions of the respective components in the multiple components in the same or similar manner as each of the multiple components performed its function before integration. According to various embodiments, operations performed by a module, program, or other component may be performed sequentially, in parallel, repeatedly, or heuristically, or may be run in a different order or one or more operations may be omitted, or one or more other operations may be added.
[0036] Figure 2 This is a front perspective view showing an electronic device according to an embodiment of the present disclosure.
[0037] Figure 3 This is a rear perspective view showing an electronic device according to an embodiment of the present disclosure.
[0038] Figure 2 and Figure 3 The embodiments can be compared with Figure 1 Implementation examples or Figures 4 to 11 Examples of combinations.
[0039] Reference Figure 2 and Figure 3 According to an embodiment, electronic device 101 (e.g., Figure 1 The electronic device 101 may include a housing 210, which includes a first surface (or front surface) 210A, a second surface (or rear surface) 210B, and a side surface 210C surrounding the space between the first surface 210A and the second surface 210B. According to an embodiment (not shown), the housing 210 may represent a structure forming... Figure 2 First surface 210A, Figure 3 The structure includes some of the second surface 210B and side surfaces 210C. According to an embodiment, at least a portion of the first surface 210A may have a substantially transparent front panel 202 (e.g., a glass or polymer panel including various coatings). The second surface 210B may be formed from a substantially opaque back panel 211. The back panel 211 may be formed from, for example, laminated or colored glass, ceramic, polymer, metal (e.g., aluminum, stainless steel (STS), or magnesium), or a combination of at least two of these. The side surfaces 210C may be formed from side structures (or “side frame structures”) 218 bonded to the front panel 202 and the back panel 211 and comprising metal and / or polymer. In an embodiment, the back panel 211 and the side structures 218 may be integrally formed together and comprise the same material (e.g., a metal such as aluminum).
[0040] Although not shown, the front panel 202 may include a region that curves seamlessly from at least a portion of its edge toward the rear panel 211. In an embodiment, only one of the regions of the front panel 202 (or rear panel 211) that curve and extend toward the rear panel 211 (or front panel 202) may be included in one edge of the first surface 210A. According to an embodiment, the front panel 202 or the rear panel 211 may have a generally flat shape. For example, the curved and extending region may not be included. When the curved and extending region is included, the thickness of the electronic device 101 at the portion including the curved and extending region may be less than the thickness of the remaining portion.
[0041] According to an embodiment, electronic device 101 may include at least one or more of the following: display 220, audio modules 203, 207 and 214, sensor modules 204 and 219, camera modules 205, 212 and 213, key input device 217, light-emitting device 206, and connector holes 208 and 209. In an embodiment, electronic device 101 may not include at least one of the components (e.g., key input device 217 or light-emitting device 206) or may include other components.
[0042] The display 220 can be visually exposed through a large portion of the front panel 202. In an embodiment, at least a portion of the display 220 can be visually exposed through the front panel 202 forming the first surface 210A or through a portion of the side surface 210C. In an embodiment, the edges of the display 220 may be formed to be substantially identical in shape to the adjacent outer edges of the front panel 202. In an embodiment (not shown), the spacing between the outer edges of the display 220 and the outer edges of the front panel 202 may be kept substantially uniform to give the display 220 a larger visually exposed area.
[0043] In one embodiment (not shown), the screen display area of the display 220 may have a recess or opening in a portion thereof, and at least one or more of the audio module 214, sensor module 204, camera module 205, and light-emitting device 206 may be aligned with the recess or opening. In another embodiment (not shown), at least one or more of the audio module 214, sensor module 204, camera module 205, fingerprint sensor (not shown), and light-emitting device 206 may be included on the rear surface of the screen display area of the display 220. In another embodiment (not shown), the display 220 may be configured in conjunction with or adjacent to a touch detection circuit, a pressure sensor capable of measuring the intensity (pressure) of a touch, and / or a digital converter for detecting a magnetic field type stylus. In another embodiment, at least a portion of sensor modules 204 and 219 and / or at least a portion of key input device 217 may be disposed in a first region 210D and / or a second region 210E.
[0044] Audio modules 203, 207, and 214 may include a microphone hole 203 and speaker holes 207 and 214. A microphone for acquiring external sound may be disposed in the microphone hole 203. In embodiments, multiple microphones may be disposed to detect the direction of sound. Speaker holes 207 and 214 may include an external speaker hole 207 and a telephone receiver hole 214. In embodiments, speaker holes 207 and 214 and microphone hole 203 may be implemented as a single hole, or a speaker (e.g., a piezoelectric speaker) may be placed without speaker holes 207 and 214.
[0045] Sensor modules 204 and 219 can generate electrical signals or data values corresponding to the internal operating state or external environmental state of electronic device 101. For example, sensor modules 204 and 219 may include a first sensor module 204 (e.g., a proximity sensor) and / or a second sensor module (not shown) (e.g., a fingerprint sensor) disposed on a first surface 210A of housing 210, and / or a third sensor module 219 and / or a fourth sensor module (e.g., a fingerprint sensor) disposed on a second surface 210B of housing 210. The fingerprint sensor may be disposed on the second surface 210B or side surface 210C of housing 210 and the first surface 210A (e.g., display 220). Electronic device 101 may also include at least one of, for example, a gesture sensor, a gyroscope sensor, an atmospheric pressure sensor, a magnetic sensor, an accelerometer, a grip sensor, a color sensor, an infrared (IR) sensor, a biometric sensor, a temperature sensor, a humidity sensor, or an illuminance sensor.
[0046] Camera modules 205, 212, and 213 may include a first camera device 205 disposed on a first surface 210A of electronic device 101, and a second camera device 212 and / or a flash 213 disposed on a second surface 210B. Camera devices 205 and 212 may include one or more lenses, an image sensor, and / or an image signal processor. Flash 213 may include, for example, a light-emitting diode (LED) or a xenon lamp. In embodiments, two or more lenses (infrared cameras, wide-angle and telephoto lenses) and image sensors may be disposed on one surface of electronic device 101. In embodiments, flash 213 may emit infrared light. Infrared light emitted by flash 213 and reflected by an object may be received by a third sensor module 219. Electronic device 101 or its processor may detect depth information about an object based on the time point at which infrared light is received from the third sensor module 219.
[0047] Key input device 217 may be disposed on side surface 210C of housing 210. In embodiments, electronic device 101 may not include all or some of the key input devices 217 described above, and the key input devices 217 not included may be implemented in other forms (e.g., soft keys on display 220). In embodiments, the key input device may include a sensor module disposed on second surface 210B of housing 210.
[0048] A light-emitting device 206 may be disposed on, for example, a first surface 210A of the housing 210. The light-emitting device 206 may provide information, for example, about the state of the electronic device 101, in the form of light. In embodiments, the light-emitting device 206 may provide a light source for interaction with, for example, a camera module 205. The light-emitting device 206 may include, for example, a light-emitting diode (LED), an infrared (IR) LED, or a xenon lamp.
[0049] Connector holes 208 and 209 may include a first connector hole 208 and / or a second connector hole 209 (e.g., a headphone jack), the first connector hole 208 being used to accommodate a connector for sending power and / or data to or receiving power and / or data from an external electronic device (e.g., a Universal Serial Bus (USB) connector), and the second connector hole 209 being used to accommodate a connector for sending audio signals to or receiving audio signals from an external electronic device.
[0050] Figure 4 This is an exploded front perspective view showing an electronic device according to an embodiment of the present disclosure.
[0051] Figure 5 This is a rear exploded perspective view showing an electronic device according to an embodiment of the present disclosure.
[0052] Figures 4 to 5 The embodiments can be compared with Figures 1 to 3 Implementation examples or Figures 6 to 11 Examples of combinations.
[0053] Reference Figure 3 and Figure 4 Electronic device 101 (e.g., Figure 1 or Figure 2 The electronic device 101 may include a side structure 310, a first support member 311 (e.g., a bracket), and a front panel 320 (e.g., Figure 1 Front panel 202), display 330 (e.g., Figure 1 The display 220), at least one printed circuit board (or board assembly) 340a or 340b, battery 350, second support member 360 (e.g., rear housing), antenna, camera assembly 307, and rear plate 380 (e.g., Figure 2 (Rear panel 211). When multiple printed circuit boards 340a and 340b are included, the electronic device 101 may include at least one flexible printed circuit board 340c to electrically connect the different printed circuit boards. For example, printed circuit boards 340a and 340b may include a first circuit board 340a disposed above the battery 350 and a second circuit board 340b disposed below the battery 350, and the flexible circuit board 340c may be electrically connected to the first circuit board 340a and the second circuit board 340b.
[0054] According to embodiments, electronic device 101 may not include at least one of the components (e.g., the first support member 311 or the second support member 360), or other components may be added. At least one component of electronic device 101 may be combined with... Figure 1 or Figure 2 At least one component of the electronic device 101 is the same or similar, and will not be described again below.
[0055] At least a portion of the first support member 311 may be configured as a flat plate. In embodiments, the first support member 311 may be disposed within the electronic device 101 to connect to or integrate with the side structure 310. The first support member 311 may be formed of, for example, metallic and / or non-metallic materials (e.g., polymers). When the first support member 311 is at least partially formed of metallic material, the side structure 310 or a portion of the first support member 311 may serve as an antenna. A display 330 may be attached to one surface of the first support member 311, and printed circuit boards 340a and 340b may be attached to opposite surfaces of the first support member 311. A processor, memory, and / or interface may be mounted on the printed circuit boards 340a and 340b. The processor may include one or more of, for example, a central processing unit, an application processor, a graphics processing device, an image signal processing unit, a sensor central processor, or a communication processor.
[0056] According to an embodiment, the first support member 311 and the side structure 310 may be collectively referred to as the front housing or housing 301. According to an embodiment, the housing 301 may generally be understood as a structure for accommodating, protecting, or housing printed circuit boards 340a and 340b or battery 350. In an embodiment, the housing 301 may be understood to include structures that a user can visually or tactilely identify from the exterior of the electronic device 101, such as the side structure 310, the front panel 320, and / or the rear panel 380. In an embodiment, "front surface or rear surface of housing 301" may refer to... Figure 1 First surface 210A or Figure 2 The second surface 210B. In an embodiment, the first support member 311 may be provided on the front plate 320 (e.g., Figure 1 The first surface 210A) and the rear plate 380 (e.g., Figure 2 The second surface 210B is between the two surfaces and can be used as a structure for placing electrical / electronic components such as printed circuit boards 340a and 340b or camera assembly 307.
[0057] The memory may include, for example, volatile memory or non-volatile memory.
[0058] The interface may include, for example, a High Definition Multimedia Interface (HDMI), a Universal Serial Bus (USB) interface, a Secure Digital (SD) card interface, and / or an audio interface. The interface can electrically or physically connect, for example, electronic device 101 to an external electronic device, and may include a USB connector, an SD card / Multimedia Card (MMC) connector, or an audio connector.
[0059] The second support member 360 may include, for example, an upper support member 360a and a lower support member 360b. In an embodiment, the upper support member 360a, together with a portion of the first support member 311, may be configured to surround printed circuit boards 340a and 340b (e.g., the first circuit board 340a). For example, the upper support member 360a of the second support member 360 may be configured to face the first support member 311, wherein the first circuit board 340a is located between the upper support member 360a and the first support member 311. In an embodiment, the lower support member 360b of the second support member 360 may be configured to face the first support member 311, wherein the second circuit board 340b is located between the lower support member 360b and the first support member 311. Circuit devices (e.g., processors, communication modules, or memories) implemented in the form of integrated circuit chips or various electrical / electronic components may be disposed on the printed circuit boards 340a and 340b. According to an embodiment, the printed circuit boards 340a and 340b may obtain an electromagnetic shielding environment from the second support member 360. In an embodiment, the lower support member 360b can be used as a structure for mounting electrical / electronic components, such as speaker modules and interfaces (e.g., USB connectors, SD card / MMC connectors, or audio connectors). In an embodiment, the electrical / electronic components (such as speaker modules and interfaces (e.g., USB connectors, SD card / MMC connectors, or audio connectors)) can be mounted on an additional printed circuit board (not shown). For example, the lower support member 360b, together with another portion of the first support member 311, can be configured to surround the additional printed circuit board. The speaker module or interface mounted on the additional printed circuit board (not shown) or the lower support member 360b can be... Figure 1 The audio module 207 or connector holes 208 and 309 are respectively set accordingly.
[0060] Battery 350 may be a device for supplying power to at least one component of electronic device 101. Battery 350 may include, for example, a non-rechargeable primary battery, a rechargeable secondary battery, or a fuel cell. At least a portion of battery 350 may be disposed on a plane substantially the same as printed circuit boards 340a and 340b. Battery 350 may be integrally or detachably disposed within electronic device 101.
[0061] Although not shown, the antenna may include a conductor pattern formed, for example, by direct laser forming on the surface of the second support member 360. In embodiments, the antenna may include a printed circuit pattern formed on the surface of a thin film. A thin-film antenna may be disposed between the rear plate 380 and the battery 350. The antenna may include, for example, a near-field communication (NFC) antenna, a wireless charging antenna, and / or a magnetically secure transmission (MST) antenna. The antenna may perform short-range communication with, for example, an external device, or may wirelessly transmit or receive power required for charging. In embodiments of the invention, another antenna structure may be formed from a portion or combination of the side structure 310 and / or the first support member 311.
[0062] According to an embodiment, the camera assembly may include at least one camera module. Inside the electronic device 101, the camera assembly 307 (or at least one camera module) may receive at least a portion of light incident through an optical aperture or camera window. In an embodiment, the camera assembly 307 may be positioned on a first support member 311 adjacent to printed circuit boards 340a and 340b. In an embodiment, the camera module of the camera assembly 307 may be substantially aligned with either of the camera windows and is at least partially surrounded by a second support member 360 (e.g., upper support member 360a).
[0063] Figure 6 The illustration shows the display 420 and adhesive member 430 separated from the housing 410 according to an embodiment of the present disclosure. (Refer to...) Figure 6 Some or all of the components described may be related to the reference. Figures 1 to 5 All or some of the components described are the same. (See reference) Figure 6 Some or all of the components described may be related to the reference. Figures 7 to 17 All or some of the components described are the same.
[0064] According to an embodiment, the electronic device 400 may include a housing 410. The housing 410 provides space for accommodating components of the electronic device 400. A description of the housing 410 can be found in reference to... Figures 1 to 5 The described housing (e.g., Figure 2 210 and Figure 5 The description is the same as that of 301.
[0065] According to an embodiment, the housing 410 may include a support member 411. The support member 411 may be disposed inside the housing 410. The display 420 may be mounted on the support member 411. A description of the support member 411 can be found in the reference... Figures 1 to 5 The described support member (e.g., Figure 5 The description is the same as that of 311).
[0066] According to an embodiment, the electronic device 400 may include a display 420. The display 420 may be coupled to a housing 410. The display 420 may be coupled to a support member 411 via an adhesive member 430. The display 420 may be exposed to the outside of the housing 410. A description of the display 420 may be referenced. Figures 1 to 5 The described display (e.g., Figure 2 220 and Figure 5 The description is the same as that of 330.
[0067] According to an embodiment, the electronic device 400 may include an adhesive member 430. The adhesive member 430 may bond a support member 411 to a display 420. One surface of the adhesive member 430 may be attached to the support member 411, and the other surface of the adhesive member 430 may be attached to the display 420. The adhesive member 430 may be disposed between the support member 411 and the display 420.
[0068] According to an embodiment, the display 420 may include a window 421. The window 421 may display a screen external to the electronic device 400. The display 420 may include an outer film 422. The outer film 422 may be disposed between the window 421 and the panel 423. The outer film 422 may bond the window 421 and the panel 423. The outer film 422 may be a thin film layer for applying on-cell touch AMOLED (OCTA). The display 420 may include a panel 423. The panel 423 may output a screen by receiving electrical signals. The display 420 may include an adhesive layer 424 and a buffer layer 425. The adhesive layer 424 may bond the panel 423 and the buffer layer 425. The buffer layer 425 may be formed of a sponge material. The display 420 may include an inner film 426. The inner film 426 may be referred to as a "film". The film 426 may be bonded to the buffer layer 425. The film 426 may be a sheet formed of copper (Cu) material. Thin film 426 can remove electromagnetic noise generated from outer film 422 and panel 423.
[0069] According to an embodiment, the adhesive member 430 can bond the support member 411 to the film 426. One surface of the adhesive member 430 can be attached to the film 426, and the other surface of the adhesive member 430 can be attached to the support member 411.
[0070] Figure 7 This is a view showing the display 420, adhesive member 430, and release tab 440 separated. Figure 8 This shows only the separated adhesive component 430. Figure 9 This shows only the separated peeling sheet 440. (See reference...) Figures 7 to 9 Some or all of the components described may be related to the reference. Figures 1 to 6 The components described are the same. (See reference...) Figures 7 to 9 Some or all of the components described may be related to the reference. Figures 10a to 17The components described are the same.
[0071] According to an embodiment, the electronic device 400 may include a display 420, an adhesive member 430, and a release tab 440. The adhesive member 430 may be attached to a surface of the display 420 (e.g., a film 426). The release tab 440 may be coupled to the adhesive member 430 so that it can be detached from the adhesive member 430. A portion of the release tab 440 may have a shape corresponding to the adhesive member 430.
[0072] According to an embodiment, the adhesive member 430 may have a rectangular closed-loop shape. The adhesive member 430 may include an adhesive portion 431 having adhesive properties. The two opposing surfaces of the adhesive portion 431 may be formed of a material having adhesive properties. The adhesive member 430 may include a non-adhesive portion 432. The non-adhesive portion 432 may be formed of a non-adhesive material. The non-adhesive portion 432 may be an aspect of the adhesive member 430 disposed on a support member (e.g., Figure 6 The portion of the electronic components (not shown) on the adhesive portion 431. The adhesive member 430 may include a plurality of slits 433. The plurality of slits 433 may be spaced apart from each other in the direction in which the adhesive portion 431 extends. According to an embodiment, the adhesive member 430 may be formed by a plurality of adhesive members 430-1 and 430-2. For example, the adhesive member 430 may form a closed loop by a first adhesive member 430-1 and a second adhesive member 430-2.
[0073] According to an embodiment, the adhesive member 430 may include multiple portions (e.g., 430-1 and 430-2). The multiple portions (e.g., 430-1 and 430-2) may form a closed loop. The adhesive member 430 may include a first adhesive member 430-1. The adhesive member 430 may include a second adhesive member 430-2. The adhesive member 430 may have gaps 430e and 430f. Gapes 430e and 430f may be formed between the first adhesive member 430-1 and the second adhesive member 430-2. The adhesive member 430 may include a first gap 430e formed between a second adhesive portion 430b and a third adhesive portion 430c. The adhesive member 430 may include a second gap 430f formed between a first adhesive portion 430a and a fourth adhesive portion 430d. Gapes 430e and 430f may be referred to as "slits".
[0074] According to an embodiment, the adhesive member 430 may include a first adhesive portion 430a, a second adhesive portion 430b, a third adhesive portion 430c, and a fourth adhesive portion 430d. The first adhesive portion 430a and the second adhesive portion 430b may form the long side of the adhesive member 430. The first adhesive portion 430a and the second adhesive portion 430b may be referred to as "side adhesive portions." The third adhesive portion 430c and the fourth adhesive portion 430d may form the short side of the adhesive member 430. A plurality of slits 433 may be formed on the side adhesive portions 430a and 430b. The plurality of slits 433 may be arranged along the direction in which the side adhesive portions 430a and 430b extend. According to an embodiment, the first adhesive portion 430a and the third adhesive portion 430c may be integrally formed. The second adhesive portion 430b and the fourth adhesive portion 430d may be integrally formed. For example, a slit 430f may be formed between the first adhesive portion 430a and the fourth adhesive portion 430d. For example, a slit 430e may be formed between the second adhesive portion 430b and the third adhesive portion 430c.
[0075] According to an embodiment, the release tab 440 may have a rectangular closed-loop shape. A portion of the release tab 440 may have a shape corresponding to the adhesive member 430. The release tab 440 may include a first cover portion 441 covering the adhesive portion 431. One surface of the first cover portion 441 may be attached to the adhesive portion 431. The release tab 440 may include a second cover portion 442 covering the non-adhesive portion 432. The second cover portion 442 may correspond to the non-adhesive portion 432. The release tab 440 may include a plurality of slit covers 443. The plurality of slit covers 443 may be formed to correspond to the plurality of slits 433 respectively. According to an embodiment, the release tab 440 may be formed from a plurality of release tabs 440-1 and 440-2. For example, the release tab 440 may form a closed loop through the first release tab 440-1 and the second release tab 440-2.
[0076] According to an embodiment, the peeling strip 440 may include multiple portions (e.g., 440-1 and 440-2). The multiple portions (e.g., 440-1 and 440-2) may form a closed loop. The peeling strip 440 may include a first peeling strip 440-1. The peeling strip 440 may include a second peeling strip 440-2. The peeling strip 440 may have gaps 440e and 440f. Gap 440e and 440f may be formed between the first peeling strip 440-1 and the second peeling strip 440-2. The peeling strip 440 may include a first gap 440e formed between a second peeling portion 440b and a third peeling portion 440c. The peeling strip 440 may include a second gap 440f formed between a first peeling portion 440a and a fourth peeling portion 440d. Gap 440e and 440f may be referred to as a "slit".
[0077] According to an embodiment, the first release tab 440-1 may have a shape corresponding to the shape of the first adhesive member 430-1. The second release tab 440-2 may have a shape corresponding to the shape of the second adhesive member 430-2. The gaps 430e and 430f of the adhesive member 430 may correspond to the gaps 440e and 440f of the release tab 440.
[0078] According to an embodiment, the peeling sheet 440 may include a first peeling portion 440a, a second peeling portion 440b, a third peeling portion 440c, and a fourth peeling portion 440d. The first peeling portion 440a and the second peeling portion 440b may form the long side of the peeling sheet 440. The first peeling portion 440a and the second peeling portion 440b may be referred to as "side peeling portions". The third peeling portion 440c and the fourth peeling portion 440d may form the short side of the peeling sheet 440. A plurality of slit covers 443 may be formed on the side peeling portions 440a and 440b. The plurality of slit covers 443 may be disposed along the direction in which the side peeling portions 440a and 440b extend.
[0079] According to an embodiment, the peeling tab 440 may include a gripping portion 444. The gripping portion 444 may protrude beyond the first cover portion 441. A plurality of gripping portions 444 may be formed to be spaced apart from each other in the circumferential direction of the peeling tab 440.
[0080] According to an embodiment, the gripping portion 444 may include a first gripping portion 444-1. The first gripping portion 444-1 may protrude from the first peeling portion 440a. The gripping portion 444 may include a second gripping portion 444-2. The second gripping portion 444-2 may protrude from the first peeling portion 440a. The first gripping portion 444-1 and the second gripping portion 444-2 may be spaced apart from each other in the longitudinal direction (e.g., the Y direction) of the adhesive member 430. The first gripping portion 444-1 and the second gripping portion 444-2 may extend in a direction parallel to each other (e.g., the X direction).
[0081] According to an embodiment, the gripping portion 444 may include a third gripping portion 444-3. The third gripping portion 444-3 may protrude from the second peeling portion 440b. The gripping portion 444 may include a fourth gripping portion 444-4. The fourth gripping portion 444-4 may protrude from the second peeling portion 440b. The third gripping portion 444-3 and the fourth gripping portion 444-4 may be spaced apart from each other in the longitudinal direction (e.g., the Y direction) of the adhesive member 430. The third gripping portion 444-3 and the fourth gripping portion 444-4 may extend in a direction parallel to each other (e.g., the X direction).
[0082] Figure 10a A surface of the display 420 is shown before the adhesive member 430 and the release tab 440 are attached. Figure 10bA surface of the display 420 is shown after the adhesive member 430 and the release tab 440 have been attached. Figure 10c It shows from Figure 10b The state of the stripper 440 has been removed. (Refer to...) Figures 10a to 10c Some or all of the components described may be related to the reference. Figures 1 to 9 The components described are the same. (See reference...) Figures 10a to 10c Some or all of the components described may be related to the reference. Figures 11 to 17 The components described are the same.
[0083] According to an embodiment, the adhesive member 430 and the release tab 440 may be attached to the display 420. The adhesive member 430 may be attached to the film 426. When the adhesive member 430 and the release tab 440 are attached to the display 420, the gripping portion 444 may protrude outside the display 420. The user can separate the release tab 440 from the adhesive member 430 by gripping the gripping portion 444. After the release tab 440 is separated from the adhesive member 430, the adhesive member 430 may be attached to the housing 410 (e.g., Figure 6 The support member 411 (e.g., 410) Figure 6 (411).
[0084] Figure 11 This shows only the separated adhesive component 430. Figure 12a This is an enlarged view showing a portion of the adhesive member 430. Figure 12b It is along Figure 12a The cross-sectional views taken by lines A-A' and B-B' are shown in the figure. (Refer to...) Figures 11 to 12b Some or all of the components described may be related to the reference. Figures 1 to 10c The components described are the same. (See reference...) Figures 11 to 12b Some or all of the components described may be related to the reference. Figures 13 to 17 The components described are the same.
[0085] According to an embodiment, the adhesive member 430 may include a plurality of slits 433. The plurality of slits 433 may be formed to open in the adhesive portion 431. The plurality of slits 433 may be provided along a first direction (e.g., L1). The plurality of slits 433 may be provided along a second direction (e.g., L2) opposite to the first direction (e.g., L1). The first direction L1 and the second direction L2 may be defined as a "length direction". The length direction may be a support member (e.g., Figure 6 The direction of extension of 411) (e.g., Figures 2 to 17 (Y direction shown in the figure). Multiple slits 433 may be arranged along the length direction L1 or L2, and may be spaced apart from each other in the length direction L1 or L2.
[0086] According to an embodiment, a plurality of slits 433 may be spaced apart from each other in a third direction (e.g., W1). The plurality of slits 433 may also be spaced apart from each other in a fourth direction (e.g., W2) opposite to the third direction (e.g., W1). The third direction W1 and the fourth direction W2 may be defined as "width directions". A width direction may be defined as a direction intersecting the length direction (e.g., ...). Figures 2 to 17 (in the X direction). The width direction can be orthogonal to the length direction. Multiple adjacent slits 433 can be spaced apart from each other in the width direction W1 or W2.
[0087] According to an embodiment, the length direction of the adhesive member 430 can be defined as a first direction, and the width direction of the adhesive member 430 can be defined as a second direction. The first and second directions may intersect each other (approximately orthogonal). Figure 11 As shown, the first direction can be the direction in which multiple slits 433 are arranged (e.g., L1 or L2). Figure 11 As shown, the second direction can be a direction that intersects with the first direction (e.g., W1 or W2). Figures 2 to 5 As shown, the first direction can be the direction in which boards 320 and 380 or display 330 extend (e.g., the Y direction). Figures 2 to 5 As shown, the second direction can be a direction that intersects the first direction (e.g., the Y direction) (e.g., the X direction).
[0088] According to an embodiment, the plurality of slits 433 may include first slits to fourth slits 433a, 433b, 433c, and 433d. The first slits to fourth slits 433a, 433b, 433c, and 433d may be arranged sequentially in the length direction L1. (Refer to...) Figure 15 Multiple slits 433 can be separated from the film 426 in a sequence arranged along the length direction L1. When the adhesive member 430 separates from the film 426, the first slit 433a can separate from the film 426 before the second to fourth slits 433b, 433c, and 433d. When the adhesive member 430 separates from the film 426, the fourth slit 433d can separate from the film 426 later than the first to third slits 433a, 433b, and 433c.
[0089] According to an embodiment, the first slit 433a among the plurality of slits 433 may be referred to as the "preceding slit". The second slit 433b among the plurality of slits 433 may be referred to as the "intermediate slit". Among the plurality of slits 433, the third slit 433c may be referred to as the "rearing slit".
[0090] According to an embodiment, slit 433 may include a first slit portion 4331. The first slit portion 4331 may extend along a first direction L1. The first slit portion 4331 may extend along the length direction (e.g., L1 or L2) of the adhesive member 430. Each of the first slits to the fourth slits 433a, 433b, 433c and 433d may include a first slit portion 4331. For example, the first slit portion 4331 of the second slit 433b may be referred to as "the second-first slit portion 433b1". For example, the first slit portion 4331 of the third slit 433c may be referred to as the third-first slit portion 433c1.
[0091] According to an embodiment, slit 433 may include a second slit portion 4332. The second slit portion 4332 may extend along a first direction L1. The second slit portion 4332 may extend along the length direction of the adhesive member 430 (e.g., L1 or L2). Each of the first to fourth slits 433a, 433b, 433c, and 433d may include a second slit portion 4332. For example, the second slit portion 4332 of the first slit 433a may be referred to as "first-second slit portion 433a2". For example, the second slit portion 4332 of the second slit 433b may be referred to as "second-second slit portion 433b2".
[0092] According to an embodiment, the first slit portion 4331 and the second slit portion 4332 may be spaced apart in the length direction (e.g., L1 or L2). The first slit portion 4331 and the second slit portion 4332 may be spaced apart in the width direction (e.g., W1 or W2).
[0093] According to an embodiment, slit 433 may include a third slit portion 4333. The third slit portion 4333 may connect to the first slit portion 4331 and the second slit portion 4332. The third slit portion 4333 may extend obliquely relative to a length direction (e.g., L1 or L2). The third slit portion 4333 may extend obliquely relative to a width direction (e.g., W1 or W2). Each of the first to fourth slits 433a, 433b, 433c, and 433d may include a third slit portion 4333. For example, the third slit portion 4333 of the first slit 433a may be referred to as "the first-third slit portion 433a3". For example, the third slit portion 4333 of the second slit 433b may be referred to as "the second-third slit portion 433b3". For example, the third slit portion 4333 of the third slit 433c may be referred to as "the third-third slit portion 433c3".
[0094] According to an embodiment, the first slit portion 4331 may include a first edge 4331a. The second slit portion 4332 may include a second edge 4332a. The third slit portion 4333 may include a first inclined surface 4333a. The third slit portion 4333 may include a second inclined surface 4333b. The first edge 4331a may face the second inclined surface 4333b of the adjacent slit 433. The first edge 4331a may be inclined parallel to the direction in which the second inclined surface 4333b of the adjacent slit 433 is inclined. The second edge 4332a may face the first inclined surface 4333a of the adjacent slit 433. The second edge 4332a may be inclined parallel to the direction in which the first inclined surface 4333a of the adjacent slit 433 is inclined.
[0095] According to an embodiment, the slit 433 may be continuous in the longitudinal direction (e.g., L1 or L2) of the adhesive member 430. Adhesive portions 431 where the slit 433 is not formed in the longitudinal direction (e.g., L1 or L2) of the adhesive member 430 may not exist. At least a portion of the slit 433 may be located at a predetermined portion of the adhesive member 430 in the width direction (e.g., W1 or W2).
[0096] According to an embodiment, the first slit portion 4331 (e.g., the second-1st slit portion 433b1) of any one of the plurality of slits 433 (e.g., the second slit 433b) may be spaced apart in the width direction W1 from the second slit portion 4332 (e.g., the first-2nd slit portion 433a2) of an adjacent slit of the plurality of slits 433 (e.g., the first slit 433a). The second slit portion 4332 (e.g., the second-2nd slit portion 433b2) of any one of the plurality of slits 433 (e.g., the second slit 433b) may be spaced apart in the width direction W2 from the first slit portion 4331 (e.g., the third-1st slit portion 433c1) of an adjacent slit of the plurality of slits 433 (e.g., the third slit 433c). The third slit portion 4333 (e.g., the second-third slit portion 433b3) of any of the plurality of slits (e.g., the second slit 433b) may be spaced apart in the longitudinal direction L1 or L2 from the first slit portion 4331 (e.g., the third-first slit portion 433c1) of another adjacent slit (e.g., the third slit 433c) and the second slit portion 4332 (e.g., the first-second slit portion 433a2) of yet another adjacent slit (e.g., the first slit 433a). The third slit portion 4333 (e.g., the second-third slit portion 433b3) of any one of the plurality of slits (e.g., the second slit 433b) may be located between the first slit portion 4331 (e.g., the third-first slit portion 433c1) of an adjacent slit (e.g., the third slit 433c) and the second slit portion 4332 (e.g., the first-second slit portion 433a2) of yet another adjacent slit (e.g., the first slit 433a).
[0097] According to an embodiment, a first slit portion 4331 of each of a plurality of slits 433a, 433b, 433c, and 433d may be arranged along the length direction L1. The first slit portions 4331 of each of the plurality of slits 433a, 433b, 433c, and 433d may be spaced apart from each other in the length direction L1.
[0098] According to an embodiment, the first slit portion 4331 of the first slit 433a may be referred to as "the first-1 slit portion 433a1". The first slit portion 4331 of the second slit 433b may be referred to as "the second-1 slit portion 433b1".
[0099] According to an embodiment, a plurality of slits 433a, 433b, 433c and 433d may be arranged along the length direction L1, each having a second slit portion 4332. The second slit portions 4332 of the plurality of slits 433a, 433b, 433c and 433d may be spaced apart from each other in the length direction L1.
[0100] According to an embodiment, the second slit portion 4332 of the first slit 433a may be referred to as "the first-second slit portion 433a2". The second slit portion 4332 of the second slit 433b may be referred to as "the second-second slit portion 433b2".
[0101] According to an embodiment, a plurality of slits 433a, 433b, 433c and 433d may be arranged along the length direction L1, each having a third slit portion 4333. The third slit portions 4333 of the plurality of slits 433a, 433b, 433c and 433d may be spaced apart from each other in the length direction L1.
[0102] According to an embodiment, the third slit portion 4333 of the first slit 433a may be referred to as "the first-third slit portion 433a3". The third slit portion 4333 of the second slit 433b may be referred to as "the second-third slit portion 433b3".
[0103] According to an embodiment, the adhesive member 430 may include a first section S1. The first section S1 may represent the area containing a first slit portion 4331 of any one of the plurality of slits 433 and a second slit portion 4332 of another slit 433. In the first section S1, the first slit portion 4331 of any one of the plurality of slits 433 and the second slit portion 4332 of another slit 433 may be spaced apart from each other in the width direction W1 or W2. The first section S1 may be referred to as an "overlapping section".
[0104] According to an embodiment, the adhesive member 430 may include a second section S2. The second section S2 may represent the area containing a first slit portion 4331 of any one of the plurality of slits 433 and a second slit portion 4332 of another slit 433. In the second section S2, the first slit portion 4331 of any one of the plurality of slits 433 and the second slit portion 4332 of another slit 433 may be spaced apart from each other in the width direction W1 or W2. The second section S2 may be referred to as an "overlapping section".
[0105] According to an embodiment, the adhesive member 430 may include a third section S3. The third section S3 may represent the area where the third slit portion of any one of the plurality of slits 433 is located. In the third section S3, only the third slit portion 4333 of any one of the plurality of slits 433 may be positioned along the width direction W1 or W2. The first edge 4331a or the second edge 4332a of adjacent slits 433 may be located in the third section S3.
[0106] According to an embodiment, when the adhesive member 430 is cut along the width direction W1 or W2 in the first segment S1 (e.g., cut along line A-A'), the second slit portion 4332 of the front slit 433a and the first slit portion 4331 of the intermediate slit 433b may be spaced apart from each other. The adhesive member 430 may include a first adhesive region 4311 and a second adhesive region 4312. The second slit portion 4332 of the front slit 433a and the first slit portion 4331 of the intermediate slit 433b may be formed between the first adhesive region 4311 and the second adhesive region 4312. The adhesive member 430 may include a third adhesive region 4313. The third adhesive region 4313 may be formed between the second slit portion 4332 of the front slit 433a and the first slit portion 4331 of the intermediate slit 433b. The first adhesive region 4311 and the third adhesive region 4313 may be spaced apart from each other by a gap t1, and the first slit portion 4331 of the intermediate slit 433b may form the gap t1. The second adhesive region 4312 and the third adhesive region 4313 may be spaced apart from each other by a gap t2, and the second slit portion 4332 of the preceding slit 433a may form the gap t2. The above description of the structures in the first segment S1 (e.g., 4311, 4312, 4313, t1, and t2) can also be applied to the second segment S2. For example, the third adhesive region 4313 may be formed between the second slit portion 4332 of the intermediate slit 433b and the first slit portion 4331 of the following slit 433c.
[0107] According to an embodiment, when the adhesive member 430 is cut along the width direction W1 or W2 in the third segment S3 (e.g., cut along line B-B'), the third slit portion 4333 of the intermediate slit 433b can be positioned. The adhesive member 430 may include a first adhesive region 4311 and a second adhesive region 4312. The third slit portion 4333 of the intermediate slit 433b may be formed between the first adhesive region 4311 and the second adhesive region 4312. The first adhesive region 4311 and the second adhesive region 4312 may be spaced apart from each other, with a gap t3 inserted between them, and the third slit portion 4333 of the intermediate slit 433b may form the gap t3.
[0108] According to an embodiment, the width t1 of the first slit portion 4331 can be smaller than the width t3 of the third slit portion 4333. The width t2 of the second slit portion 4332 can be smaller than the width t3 of the third slit portion 4333. The width t1 of the first slit portion 4331 can be in the range of 0.8 mm to 1.2 mm. The width t2 of the second slit portion 4332 can be in the range of 0.8 mm to 1.2 mm. The width t3 of the third slit portion 4333 can be in the range of 1.8 mm to 2.2 mm. By forming the width t3 of the third slit portion 4333 to be larger than the width of the first slit portion 4331 and the second slit portion 4332, the width occupied by the adhesive regions 4311, 4312 and 4313 can be kept constant in the first to third sections S1, S2 and S3. For example, the sum of the widths of the adhesive regions 4311, 4312, and 4313 in the first to third sections S1, S2, and S3 can be in the range of 7.8 mm to 8.2 mm. Since the widths of the adhesive regions 4311, 4312, and 4313 remain constant along the longitudinal direction L1 of the adhesive member 430, the stress acting on the adhesive regions 4311, 4312, and 4313 is dispersed when the adhesive member 430 separates from the film 426, preventing delamination of the film 426.
[0109] Figure 13 This is a table illustrating an adhesive member 530 including a slit 533 according to various embodiments of the present disclosure. (Refer to...) Figure 13 The described components may be used in whole or in part with the reference. Figures 1 to 12b The components described are the same.
[0110] According to various embodiments, the adhesive member 530 may include a plurality of slits 533. Each of the plurality of slits 533 and its adjacent slits may be arranged along the length direction of the adhesive member 530. At least a portion of the plurality of slits 533 may be formed in at least a portion of the adhesive member 530 along the length direction of the adhesive member 530. At least a portion of the plurality of slits 533 may be continuous along the length direction of the adhesive member 530. For example, as in embodiment A, the plurality of slits 533 extending along the length direction of the adhesive member 530 may be spaced apart from each other in both the width and length directions of the adhesive member 530, and may be arranged alternately along the length direction. For example, as in embodiment F, the plurality of slits 533 may be triangles having height in the width direction, and the vertices of adjacent slits 533 may be arranged alternately along the length direction of the adhesive member 530.
[0111] Figure 14 The illustration shows an adhesive member 450 being bonded to a support member 411 according to an embodiment of the present disclosure. (Refer to...) Figure 14 Some or all of the described elements may be compared with the reference. Figures 1 to 13 The components described are the same.
[0112] According to an embodiment, the housing 410 may include a support member 411, and the support member 411 may include a means for receiving the battery 350 (e.g., Figure 5 The battery housing portion 412 (350) is included. The electronic device 400 may include an adhesive member 450 attached to the battery housing portion 412. A description of the adhesive member 450 attached to the battery housing portion 412 can be found in the reference... Figures 1 to 13 The description of the adhesive component 430 is the same.
[0113] According to an embodiment, the adhesive member 450 may include an adhesive portion 451 and slits 453. A plurality of slits 453 may be formed to be spaced apart from each other in the longitudinal direction of the adhesive member 450. A description of the shape of the slits 453 may be found in reference to... Figures 1 to 13 The description of slit 433 is the same. For example, slit 453 may include a first slit portion 4531, a second slit portion 4532, and a third slit portion 4533.
[0114] Figure 15 This is a view showing the disassembly process of the housing 410 and the display 420. Figure 15 (a) shows an example of separating housing 410 and display 420 using disassembly devices Z1 and Z2. Figure 15 (b) shows the process of disassembling the housing 410 and the display 420.
[0115] According to an embodiment, the housing 410 and the display 420 can be separated from each other using a first disassembly device Z1 and a second disassembly device Z2. The display 420 can be fixed to the first disassembly device Z1 and can move together with the first disassembly device Z1. The housing 410 can be fixed to the second disassembly device Z2. When the first disassembly device Z1 and the second disassembly device Z2 are separated, the display 420 and the film 426 can move together with the first disassembly device Z1, and the adhesive member 430 can be fixed together with the housing 410 to the second disassembly device Z2. The display 420 can be moved along the disassembly direction Q using the first disassembly device Z1, and the adhesive member 430 can be separated from the film 426 in the order from the portion adjacent to the second direction L2 to the portion adjacent to the first direction L1.
[0116] Figure 16 These are views that conceptually illustrate the effects of adhesive members 430, 530 according to various embodiments of the present disclosure. Figure 17 This is a view showing a comparison between the effects of adhesive members 430, 530 according to various embodiments of the present disclosure and comparative embodiments. (Refer to...) Figure 16 and Figure 17 The described components may be used in whole or in part with the reference. Figures 1 to 15 The components described are the same.
[0117] Reference Figure 16 The adhesive member 430 can bond the housing 410 to the display 420 and may include a slit 433. The adhesive member 430 may include a base layer 437, a first layer 438 for bonding the base layer 437 and the display 420, and a second layer 439 for bonding the base layer 437 and the housing 410. According to embodiments of this disclosure, the adhesive member 430 may be a heat-responsive tape (HR tape) that reduces adhesive strength when heat is applied. Figure 15 When separating the housing 410 and the display 420, the user applies heat to the adhesive member 430 to reduce the adhesive force between the film 426 and the adhesive member 430. For example, since the slit 433 is formed in the adhesive member 430 as in the embodiments of this disclosure, heat is uniformly diffused to the layers 438 and 439 disposed on the two opposite sides of the slit 433, thereby facilitating separation between the film 426 and the adhesive member 430.
[0118] Reference Figure 17 , Figure 17 (a) illustrates the thin film (e.g., when the housing and display are separated according to a comparative embodiment) Figure 6 In 426), the state of delamination E and tearing F occurs. Figure 17 (b) illustrates the thin film (e.g., when the housing and display are separated, according to an embodiment of the present disclosure. Figure 6 In section 426), no delamination or tearing occurred. (Refer to...) Figure 17 It can be determined that, according to embodiments of this disclosure, the film has been reduced or removed by the adhesive member 430 (e.g., Figure 6 The layering and tearing of 426).
[0119] Electronic devices include displays that provide visual information to users. The displays include panels that output electrical signals as visual elements, and thin films (e.g., Cu films) are attached to them to remove electromagnetic noise generated from the panels. The films are attached to a housing via adhesive components such as tape.
[0120] However, when the display is separated from the housing, the tape cannot properly separate from the film, causing the film surface to delaminate, making it difficult to recycle the film and disassemble the display.
[0121] According to various embodiments of this disclosure, slits are continuously arranged along the direction of the separating tape, thereby reducing film delamination at locations where slits are not present.
[0122] According to various embodiments of this disclosure, by adjusting the width of the slit along the direction of the separating tape, heat can be uniformly diffused in the width direction of the tape.
[0123] This disclosure is not limited to the foregoing embodiments, but various modifications or changes can be made to this disclosure without departing from its spirit and scope.
[0124] Electronic devices according to various embodiments of the present disclosure can reduce film delamination by removing un-slit portions of an adhesive member by configuring a plurality of slits to at least partially overlap.
[0125] Due to the shape of the slits including the first slit portion to the third slit portion, the electronic device according to various embodiments of the present disclosure can constantly maintain the width of the adhesive member in the longitudinal direction.
[0126] The effects achievable by this disclosure are not limited to those described above, and other effects not mentioned will become apparent to those skilled in the art from the following description.
[0127] An electronic device according to an embodiment of the present disclosure (e.g., Figure 6 The 400) includes a housing (e.g., Figure 6 (410), the housing includes a support member extending along a first direction (e.g., Figure 6 (411).
[0128] Electronic devices according to embodiments of the present disclosure (e.g., Figure 6 The 400) includes displays (e.g., Figure 6 (420), the display includes a support member (e.g., Figure 6 411) thin film (e.g., Figure 6 (426).
[0129] Electronic devices according to embodiments of the present disclosure (e.g., Figure 6 The 400) includes adhesive components (e.g., Figure 12a (430), the adhesive member is provided on the support member (e.g., Figure 6 411) and thin films (e.g., Figure 6 Between 426), the adhesive member includes a plurality of slits (e.g., ) disposed in the first direction. Figure 12a (433), and has a width in a second direction that intersects the first direction.
[0130] According to embodiments of this disclosure, multiple slits (e.g., Figure 12a At least one slit in (e.g., 433) Figure 12a 433b) includes a first slit portion (e.g., Figure 12a (4331), the first slit portion extends along the first direction, and in the adhesive member (e.g., Figure 12a The width direction of 430 (e.g., Figure 11 W1) faces multiple slits (e.g., Figure 12a In 433) with the first slit portion (e.g., Figure 12a (4331) is an adjacent slit (e.g., Figure 12a Part of 433a) (e.g., Figure 12a (433a2).
[0131] According to embodiments of this disclosure, multiple slits (e.g., Figure 12a At least one slit in (e.g., 433) Figure 12a 433b) includes a second slit portion (e.g., Figure 12a (4332), the second slit portion is related to the first slit portion (e.g., Figure 12a 4331) are spaced apart, and in the adhesive member (e.g., Figure 12a The width direction of 430 (e.g., Figure 11 The W2) faces multiple slits (e.g., Figure 12a In 433) with the second slit portion (e.g., Figure 12a (4332) is part of another adjacent slit (e.g., Figure 12a (433c1).
[0132] According to embodiments of this disclosure, multiple slits (e.g., Figure 12a At least one slit in (e.g., 433) Figure 12a 433b) includes a third slit portion (e.g., Figure 12a (4333), the third slit portion connects to the first slit portion (e.g., Figure 12a 4331) and the second slit portion (e.g., Figure 12a (4332), and extends obliquely relative to the first direction.
[0133] According to embodiments of this disclosure, adhesive members (e.g., Figure 12a 430) may include a side adhesive portion extending along a first direction (e.g., Figure 12a (430a, 430b).
[0134] According to embodiments of this disclosure, in the side adhesive portion (e.g., Figure 12a At all parts of 430a, 430b, multiple slits (e.g., Figure 12a At least a portion of 433) may be located in the side adhesive portion (e.g., Figure 12a Within the width of 430a and 430b.
[0135] According to embodiments of this disclosure, multiple slits (e.g., Figure 11 433) may include a first slit (e.g., Figure 11 (433a).
[0136] According to embodiments of this disclosure, multiple slits (e.g., Figure 11 433) may include along the first direction and the first slit (e.g., Figure 11 The second slit (e.g., 433a) is arranged together with the second slit. Figure 11 (433b).
[0137] According to embodiments of this disclosure, the first slit (e.g., Figure 11 The first slit portion of 433a) (e.g., Figure 12a 433a1) and the second slit (e.g., Figure 11 The first slit portion of 433b) (e.g., Figure 12a (433b1) can be spaced apart from each other in the first direction.
[0138] According to embodiments of this disclosure, the first slit (e.g., Figure 12a The third slit portion of (e.g., 433a) Figure 12a 433a3) and the second slit (e.g., Figure 12a The third slit portion of 433b) (e.g., Figure 12a (433b3) can be spaced apart from each other in the first direction.
[0139] According to embodiments of this disclosure, adhesive members (e.g., Figure 12a 430) may include a first segment (e.g., Figure 12a S1), wherein the first slit portion (e.g., Figure 12a (4331) or the second slit portion (e.g., Figure 12a (4332) is positioned along the width direction.
[0140] According to embodiments of this disclosure, adhesive members (e.g., Figure 12a 430) may include a second segment (e.g., Figure 12a S2), wherein the first slit portion (e.g., Figure 12a (4331) or the second slit portion (e.g., Figure 12a (4332) is positioned along the width direction, and the second segment is in the first direction with the first segment (e.g., Figure 12a The S1) are separated.
[0141] According to embodiments of this disclosure, adhesive members (e.g., Figure 12a 430) may include those formed in the first segment (e.g., Figure 12a S1) and the second section (e.g., Figure 12a The third segment between S2 and (e.g., Figure 12a S3), and wherein the third slit portion (e.g., Figure 12a(4333) is positioned along the width direction.
[0142] According to embodiments of this disclosure, adhesive members (e.g., Figure 12a 430) may include a first adhesive region (e.g., Figure 12a (4311).
[0143] According to embodiments of this disclosure, adhesive members (e.g., Figure 12a 430) may include a first adhesive region (e.g., in the width direction) Figure 12a The second adhesive region (e.g., 4311) is spaced apart. Figure 12a (4312).
[0144] According to embodiments of this disclosure, adhesive members (e.g., Figure 12a 430) may include the first adhesive region (e.g., Figure 12a 4311) and the second adhesive region (e.g., Figure 12a The third adhesive region between (e.g., 4312) Figure 12a (4313).
[0145] According to embodiments of this disclosure, multiple slits (e.g., Figure 12a The first slit portion of any slit in (433) (e.g., Figure 12a 4331) can be formed in the first adhesive region (e.g., Figure 12a 4311) and the third adhesive region (e.g., Figure 12a Between 4313), and multiple slits (e.g., Figure 12a The second slit portion of another slit in (e.g., 433) Figure 12a 4332) is formed in the second adhesive region (e.g., Figure 12a 4312) and the third adhesive region (e.g., Figure 12a Between 4313).
[0146] According to embodiments of this disclosure, adhesive members (e.g., Figure 12a 430) may include a second adhesive region (e.g., Figure 12a (4312), the second adhesive region is in the width direction with the first adhesive region (e.g., Figure 12a (4311) are spaced apart and in the first adhesive area (e.g., Figure 12a 4311) and the second adhesive region (e.g., Figure 12a A third slit portion is formed between (e.g., 4312) Figure 12a (4333).
[0147] According to embodiments of this disclosure, the third slit portion (e.g., Figure 12a(4333) may include a second slit portion facing the adjacent slit (e.g., Figure 12a The first inclined surface of (e.g., 4332) Figure 12a (4333a).
[0148] According to embodiments of this disclosure, the third slit portion (e.g., Figure 12a (4333) may include a first slit portion facing another adjacent slit (e.g., Figure 12a The second inclined surface of (e.g., 4331) Figure 12a (4333b).
[0149] According to embodiments of this disclosure, the first slit portion (e.g., Figure 12a 4331) may include along the second inclined surface (e.g., Figure 12a The first edge extending in the inclined direction of 4333b) (e.g., Figure 12a (of 4331a), and the second slit portion (e.g., Figure 12a 4332) includes along the first inclined surface (e.g., Figure 12a The second edge extending in the inclined direction of 4333a) (e.g., Figure 12a (4332a).
[0150] According to embodiments of this disclosure, the third slit portion (e.g., Figure 12a The width of (4333) can be greater than that of the first slit portion (e.g., Figure 12a (4331) or the second slit portion (e.g., Figure 12a The width of 4332).
[0151] According to embodiments of this disclosure, the first slit portion (e.g., Figure 12a 4331) and the second slit portion (e.g., Figure 12a The width of (4332) can be in the range of 0.8mm to 1.2mm, and the third slit portion (e.g., Figure 12a The width of (4333) can be in the range of 1.8mm to 2.2mm.
[0152] According to embodiments of this disclosure, adhesive members (e.g., Figure 12a 430) may include a side adhesive portion extending along a first direction (e.g., Figure 8 (430a, 430b).
[0153] According to embodiments of this disclosure, multiple slits (e.g., Figure 8 433) can be formed in the side adhesive portion (e.g., Figure 8 At locations 430a and 430b.
[0154] According to embodiments of this disclosure, when the adhesive member (e.g., Figure 6 430) and thin films (e.g., Figure 6 When 426) separates, multiple slits (e.g., Figure 12a (433) can be arranged in a sequence along the first direction with the film (e.g., Figure 6 (426) Separation.
[0155] Electronic devices according to embodiments (e.g., Figure 6 (400) may include removable attachment to adhesive components (e.g., Figure 7 430) peeling sheets (e.g., Figure 7 (440).
[0156] According to embodiments of this disclosure, the peeling sheet (e.g., Figure 7 440) may include being shaped to correspond to a plurality of slits (e.g., Figure 7 433) slit cap (e.g., Figure 9 (443).
[0157] According to embodiments of this disclosure, the peeling sheet (e.g., Figure 9 440) may be included in the direction of the peeling sheet (e.g., Figure 9 The gripping portion protruding in the direction of the outer side of (e.g., 440) Figure 9 444).
[0158] An electronic device according to an embodiment of the present disclosure (e.g., Figure 6 The 400) includes: a housing (e.g., Figure 6 410), including a support member extending along a first direction (e.g., Figure 6 411); display (e.g., Figure 6 420), including those oriented towards support members (e.g., Figure 6 411) thin film (e.g., Figure 6 426); and adhesive components (e.g., Figure 12a and Figure 13 430, 530), are installed on the supporting members (e.g., Figure 6 411) and thin films (e.g., Figure 6 Between 426), including a plurality of slits (e.g., arranged along the first direction) Figure 12a and Figure 13 (433, 533), and has a width in a second direction intersecting the first direction. In adhesive members (e.g., Figure 12a and Figure 13 At all portions of (430, 530) extending along the first direction, multiple slits (e.g., Figure 12a and Figure 13At least a portion of 433, 533) in the adhesive member (e.g., Figure 12a and Figure 13 It is positioned within a width of 430 or 530.
[0159] According to embodiments of this disclosure, adhesive members (e.g., Figure 12a and Figure 13 430, 530) may include overlapping sections (e.g., Figure 12a S1, S2), where multiple slits (e.g., Figure 12a and Figure 13 A portion of a slit in (433, 533) and multiple slits (e.g., Figure 12a and Figure 13 A portion of another slit in (433, 533) faces each other in the width direction.
[0160] According to embodiments of this disclosure, multiple slits (e.g., Figure 12a and Figure 13 At least one of the slits in 433, 533 may have a portion that is inclined along a first direction.
[0161] According to embodiments of this disclosure, when the adhesive member (e.g., Figure 12a and Figure 13 (430, 530) and thin films (e.g., Figure 6 When 426) separates, multiple slits (e.g., Figure 12a and Figure 13 (433, 533) can be arranged in a sequence along the first direction with the thin film (e.g., Figure 6 (426) Separation.
[0162] Electronic devices according to embodiments (e.g., Figure 6 The 400 may also include components that can be detachably bonded to adhesive members (e.g., Figure 13 Peeling sheets (e.g., 430, 530) Figure 7 (440).
[0163] Although this disclosure has been shown and described with reference to exemplary embodiments thereof, it will be apparent to those skilled in the art that various changes in form and detail may be made therein without departing from the spirit and scope of this disclosure as defined by the appended claims.
Claims
1. An electronic device comprising: The housing (410) includes a support member (411) extending in a first direction. The display (420) includes a thin film (426) facing the support member (411); and An adhesive member (430), disposed between the support member (411) and the film (426), includes a plurality of slits (433) disposed along a first direction and has a width in a second direction intersecting the first direction, wherein at least one of the plurality of slits (433) includes: The first slit portion (4331; 433b1) extends along a first direction and faces a portion (433a2) of another slit (433a) adjacent to the first slit portion (4331; 433b1) in the width direction (W1) of the adhesive member (430). The second slit portion (4332; 433b2) is spaced apart from the first slit portion (4331; 433b1) and faces a portion (433c1) of another slit (433c) adjacent to the second slit portion (4332; 433b2) in the width direction (W2) of the adhesive member (430); and The third slit portion (4333; 433b3) connects the first slit portion (4331; 433b1) and the second slit portion (4332; 433b2), and extends obliquely relative to the first direction.
2. The electronic device as claimed in claim 1, wherein, The adhesive member (430) includes: a side adhesive portion (430a; 430b) extending in a first direction, and wherein, at all portions of the side adhesive portion (430a; 430b), at least a portion of the plurality of slits (433) is located within the width of the side adhesive portion (430a; 430b).
3. The electronic device as claimed in claim 1 or claim 2, wherein, The plurality of slits (433) include: First slit (433a); and The second slit (433b) is arranged together with the first slit (433a) along the first direction. The first slit portion (433a1) of the first slit (433a) and the first slit portion (433b1) of the second slit (433b) are spaced apart from each other in a first direction.
4. The electronic device according to any one of claims 1 to 3, wherein, The plurality of slits (433) include: First slit (433a); and The second slit (433b) is arranged together with the first slit (433a) along the first direction. The third slit portion (433a3) of the first slit (433a) and the third slit portion (433b3) of the second slit (433b) are spaced apart from each other in the first direction.
5. The electronic device according to any one of claims 1 to 4, wherein, The adhesive member (430) includes: The first section (S1) is wherein either the first slit portion (4331) or the second slit portion (4332) is positioned along the width direction; The second segment (S2) wherein either the first slit portion (4331) or the second slit portion (4332) is positioned along the width direction, and the second segment (S2) is spaced apart from the first segment (S1) in a first direction; and The third section (S3) is formed between the first section (S1) and the second section (S2), and the third slit portion (4333) is positioned along the width direction.
6. The electronic device according to any one of claims 1 to 5, wherein, The adhesive member (430) includes: First adhesive area (4311); The second adhesive region (4312) is spaced apart from the first adhesive region (4311) in the width direction; and The third adhesive region (4313) is formed between the first adhesive region (4311) and the second adhesive region (4312). Wherein, the first slit portion (4331) of any one of the plurality of slits (433) is formed between the first adhesive region (4311) and the third adhesive region (4313), and the second slit portion (4332) of another slit of the plurality of slits (433) is formed between the second adhesive region (4312) and the third adhesive region (4313).
7. The electronic device according to any one of claims 1 to 6, wherein, The adhesive member (430) includes: First adhesive region (4311); and The second adhesive region (4312) is spaced apart from the first adhesive region (4311) in the width direction and forms a third slit portion (4333) between the first adhesive region (4311) and the second adhesive region (4312).
8. The electronic device according to any one of claims 1 to 7, wherein, The third slit section (4333) includes: A first inclined surface (4333a), facing the second slit portion (4332) of the adjacent slit; and The second inclined surface (4333b) faces the first slit portion (4331) of another adjacent slit, wherein the first slit portion (4331) includes a first edge (4331a) extending in the inclined direction of the second inclined surface (4333b), and the second slit portion (4332) includes a second edge (4332a) extending in the inclined direction of the first inclined surface (4333a).
9. The electronic device according to any one of claims 1 to 8, wherein, The width of the third slit portion (4333) is greater than the width of the first slit portion (4331) or the second slit portion (4332).
10. The electronic device according to any one of claims 1 to 9, wherein, The widths of the first slit portion (4331) and the second slit portion (4332) are in the range of 0.8 mm to 1.2 mm, and the width of the third slit portion (4333) is in the range of 1.8 mm to 2.2 mm.
11. The electronic device according to any one of claims 1 to 10, wherein, The adhesive member (430) includes: a side adhesive portion (430a; 430b) extending in a first direction, wherein the plurality of slits (433) are formed at the side adhesive portion (430a; 430b).
12. The electronic device according to any one of claims 1 to 11, wherein, When the adhesive member (430) separates from the film (426), the plurality of slits (433) separate from the film (426) in an order arranged along a first direction.
13. The electronic device according to any one of claims 1 to 12, further comprising: The release tab (440) is detachably attached to the adhesive member (430).
14. The electronic device of claim 13, wherein, The peeling piece (440) includes a slit cap (443) shaped to correspond to the plurality of slits (433).
15. The electronic device as claimed in claim 13 or claim 14, wherein, The peeling tab (440) includes a gripping portion (444) that protrudes in a direction toward the outside of the peeling tab (440).