KR20170080312A - Mobile terminal - Google Patents

Mobile terminal Download PDF

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Publication number
KR20170080312A
KR20170080312A KR1020150191694A KR20150191694A KR20170080312A KR 20170080312 A KR20170080312 A KR 20170080312A KR 1020150191694 A KR1020150191694 A KR 1020150191694A KR 20150191694 A KR20150191694 A KR 20150191694A KR 20170080312 A KR20170080312 A KR 20170080312A
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KR
South Korea
Prior art keywords
rib
case
mobile terminal
touch
side wall
Prior art date
Application number
KR1020150191694A
Other languages
Korean (ko)
Inventor
전대웅
시민규
강준홍
이영일
최준민
엄태기
이진환
Original Assignee
엘지전자 주식회사
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Application filed by 엘지전자 주식회사 filed Critical 엘지전자 주식회사
Priority to KR1020150191694A priority Critical patent/KR20170080312A/en
Publication of KR20170080312A publication Critical patent/KR20170080312A/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/0249Details of the mechanical connection between the housing parts or relating to the method of assembly

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  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Telephone Set Structure (AREA)
  • Telephone Function (AREA)

Abstract

The present invention relates to a mobile terminal, comprising: a first case having at least one rib formed on a lower surface thereof; And a second case having a shape corresponding to the rib and having a rib accommodating portion in which the rib is received and fixing the first case, the second case being formed to cover a lower portion of the first case along a first direction, Wherein the rib and the rib receiving portion are formed so that at least a portion thereof is inclined with respect to a second direction perpendicular to the first direction.

Description

[0001] MOBILE TERMINAL [0002]

The present invention relates to a mobile terminal having a new fastening structure for securing rigidity and fastness.

A terminal can be divided into a mobile terminal (mobile / portable terminal) and a stationary terminal according to whether the terminal can be moved. The mobile terminal can be divided into a handheld terminal and a vehicle mounted terminal according to whether the user can directly carry the mobile terminal.

The functions of mobile terminals are diversified. For example, there are data and voice communication, photographing and video shooting through a camera, voice recording, music file playback through a speaker system, and outputting an image or video on a display unit. Some terminals are equipped with an electronic game play function or a multimedia player function. In particular, modern mobile terminals can receive multicast signals that provide visual content such as broadcast and video or television programs.

Such a terminal has various functions, for example, in the form of a multimedia device having multiple functions such as photographing and photographing of a moving picture, reproduction of a music or video file, reception of a game and broadcasting, etc. .

In recent years, various methods for reducing the size of a bezel area in which a display area of a mobile terminal is not displayed have been attempted. In addition, in order to reduce the bezel area, it is necessary to consider the fastening structure at the side end where the bezel is formed when assembling the terminal set.

The present invention is directed to solving the above-mentioned problems and other problems. Another object is to provide a rib structure that can reduce the bezel area in fastening two cases.

According to an aspect of the present invention, there is provided a display device comprising: a first case having at least one rib formed on a lower surface thereof; And a second case having a shape corresponding to the rib and having a rib accommodating portion in which the rib is received and fixing the first case, the second case being formed to cover a lower portion of the first case along a first direction, And the rib and the rib receiving portion are formed so that at least a portion thereof is inclined with respect to a second direction perpendicular to the first direction.

According to an aspect of the present invention, the first case includes a rim perpendicular to the first direction and forming an end portion; And a first main surface portion formed to be stepped by the first sidewall from the rim portion, and the ribs may be formed protruding from the first sidewall and the rim.

According to an aspect of the present invention, the second case may include: a second sidewall spaced apart from the first sidewall; And a second main surface portion extending from the second side wall and facing the first main surface portion, wherein the rib accommodation portion protrudes inward from the second side wall.

According to an aspect of the present invention, the rib includes: a first portion formed in parallel with the first sidewall; And a second portion and a third portion extending from the first portion toward the first sidewall.

According to an aspect of the present invention, at least one of the second and third portions may be formed to be inclined with respect to the width direction of the terminal.

According to an aspect of the present invention, one side of the rib may be formed on the first side wall, and the other side may be exposed along the edge of the rim.

According to an aspect of the present invention, the ribs may have first and second ribs formed at opposite ends of the terminal, respectively, and the first portions of the first and second ribs may be formed in directions away from each other.

According to an aspect of the present invention, the rib receiving portion may include first and second movement restricting portions formed inward from the second side wall.

According to an aspect of the present invention, at least one groove is formed in a region formed by the first sidewall and the first through third portions, and a forming direction of the second sidewall is formed to face the second sidewall And the third movement restricting portion can be inserted and fixed in the groove.

According to an aspect of the present invention, an auxiliary rib protruding from a lower surface of the first main surface portion along a first direction; And an auxiliary rib receiving portion formed on an upper surface of the second main surface portion in a shape corresponding to the auxiliary rib.

According to an aspect of the present invention, the auxiliary rib may be formed such that at least a part of the auxiliary rib is inclined with respect to the width direction of the terminal.

According to an aspect of the present invention, the first case may be a front case having a display unit, and the second case may be a rear case covering the rear surface of the front case.

The effect of the mobile terminal according to the present invention will be described below.

According to at least one of the embodiments of the present invention, space utilization is maximized, and a rib having the same effect as the conventional one can be disposed in a smaller space.

Further, according to at least one of the embodiments of the present invention, it is possible to secure a component mounting space due to the reduction of the rib structure and reduce the bezel area.

1A is a block diagram illustrating a mobile terminal according to the present invention.
FIGS. 1B and 1C are conceptual diagrams illustrating an example of a mobile terminal according to the present invention in different directions.
FIG. 2A is a rear view of a front case according to an embodiment of the present invention, and FIG. 2B is a rear view of a rear case according to an embodiment of the present invention.
3 is a cross-sectional view taken along the xy plane of the coupled front and rear cases according to an embodiment of the present invention.
4 is an enlarged view of a portion A in Fig.
5 is a conceptual view for explaining a fastening structure according to an embodiment of the present invention.
6 is a rear view of a front case according to an embodiment of the present invention.
7 is a rear view of a rear case according to an embodiment of the present invention.
FIG. 8A is a cross-sectional view taken along the thickness direction of a conventional mobile terminal, and FIG. 8B is a conceptual view illustrating a conventional cover fastening structure.

Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings, wherein like or similar components are denoted by the same reference numerals, and redundant explanations thereof will be omitted. The suffix "module" and " part "for the components used in the following description are given or mixed in consideration of ease of specification, and do not have their own meaning or role. In the following description of the embodiments of the present invention, a detailed description of related arts will be omitted when it is determined that the gist of the embodiments disclosed herein may be blurred. It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory and are intended to provide further explanation of the invention as claimed. , ≪ / RTI > equivalents, and alternatives.

Terms including ordinals, such as first, second, etc., may be used to describe various elements, but the elements are not limited to these terms. The terms are used only for the purpose of distinguishing one component from another.

It is to be understood that when an element is referred to as being "connected" or "connected" to another element, it may be directly connected or connected to the other element, . On the other hand, when an element is referred to as being "directly connected" or "directly connected" to another element, it should be understood that there are no other elements in between.

The singular expressions include plural expressions unless the context clearly dictates otherwise.

In the present application, the terms "comprises", "having", and the like are used to specify that a feature, a number, a step, an operation, an element, a component, But do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, or combinations thereof.

The mobile terminal described in this specification includes a mobile phone, a smart phone, a laptop computer, a digital broadcasting terminal, a personal digital assistant (PDA), a portable multimedia player (PMP), a navigation device, a slate PC A tablet PC, an ultrabook, a wearable device such as a smartwatch, a smart glass, and a head mounted display (HMD). have.

The mobile terminal described in this specification includes a mobile phone, a smart phone, a laptop computer, a digital broadcasting terminal, a personal digital assistant (PDA), a portable multimedia player (PMP), a navigation device, a slate PC A tablet PC, an ultrabook, a wearable device such as a smartwatch, a smart glass, and a head mounted display (HMD). have.

However, it will be appreciated by those skilled in the art that the configuration according to the embodiments described herein may be applied to fixed terminals such as a digital TV, a desktop computer, a digital signage, and the like, will be.

1A to 1C are block diagrams for explaining a mobile terminal according to the present invention, and FIGS. 1B and 1C are conceptual diagrams showing an example of a mobile terminal according to the present invention in different directions.

The mobile terminal 100 includes a wireless communication unit 110, an input unit 120, a sensing unit 140, an output unit 150, an interface unit 160, a memory 170, a control unit 180, ), And the like. The components shown in FIG. 1A are not essential for implementing a mobile terminal, so that the mobile terminal described herein may have more or fewer components than the components listed above.

The wireless communication unit 110 may be connected between the mobile terminal 100 and the wireless communication system or between the mobile terminal 100 and another mobile terminal 100 or between the mobile terminal 100 and the external server 100. [ Lt; RTI ID = 0.0 > wireless < / RTI > In addition, the wireless communication unit 110 may include one or more modules for connecting the mobile terminal 100 to one or more networks.

The wireless communication unit 110 may include at least one of a broadcast receiving module 111, a mobile communication module 112, a wireless Internet module 113, a short distance communication module 114, and a location information module 115 .

The input unit 120 includes a camera 121 or an image input unit for inputting a video signal, a microphone 122 for inputting an audio signal, an audio input unit, a user input unit 123 for receiving information from a user A touch key, a mechanical key, and the like). The voice data or image data collected by the input unit 120 may be analyzed and processed by a user's control command.

The sensing unit 140 may include at least one sensor for sensing at least one of information in the mobile terminal, surrounding environment information surrounding the mobile terminal, and user information. For example, the sensing unit 140 may include a proximity sensor 141, an illumination sensor 142, a touch sensor, an acceleration sensor, a magnetic sensor, A G-sensor, a gyroscope sensor, a motion sensor, an RGB sensor, an infrared sensor, a finger scan sensor, an ultrasonic sensor, A microphone 226, a battery gauge, an environmental sensor (for example, a barometer, a hygrometer, a thermometer, a radiation detection sensor, A thermal sensor, a gas sensor, etc.), a chemical sensor (e.g., an electronic nose, a healthcare sensor, a biometric sensor, etc.). Meanwhile, the mobile terminal disclosed in the present specification can combine and utilize information sensed by at least two of the sensors.

The output unit 150 includes at least one of a display unit 151, an acoustic output unit 152, a haptic tip module 153, and a light output unit 154 to generate an output related to visual, auditory, can do. The display unit 151 may have a mutual layer structure with the touch sensor or may be integrally formed to realize a touch screen. The touch screen may function as a user input unit 123 that provides an input interface between the mobile terminal 100 and a user and may provide an output interface between the mobile terminal 100 and a user.

The interface unit 160 serves as a path to various types of external devices connected to the mobile terminal 100. The interface unit 160 is connected to a device having a wired / wireless headset port, an external charger port, a wired / wireless data port, a memory card port, And may include at least one of a port, an audio I / O port, a video I / O port, and an earphone port. In the mobile terminal 100, corresponding to the connection of the external device to the interface unit 160, it is possible to perform appropriate control related to the connected external device.

In addition, the memory 170 stores data supporting various functions of the mobile terminal 100. The memory 170 may store a plurality of application programs or applications running on the mobile terminal 100, data for operation of the mobile terminal 100, and commands. At least some of these applications may be downloaded from an external server via wireless communication. Also, at least a part of these application programs may exist on the mobile terminal 100 from the time of shipment for the basic functions (e.g., telephone call receiving function, message receiving function, and calling function) of the mobile terminal 100. Meanwhile, the application program may be stored in the memory 170, installed on the mobile terminal 100, and may be operated by the control unit 180 to perform the operation (or function) of the mobile terminal.

In addition to the operations related to the application program, the control unit 180 typically controls the overall operation of the mobile terminal 100. The control unit 180 may process or process signals, data, information, and the like input or output through the above-mentioned components, or may drive an application program stored in the memory 170 to provide or process appropriate information or functions to the user.

In addition, the controller 180 may control at least some of the components illustrated in FIG. 1A in order to drive an application program stored in the memory 170. FIG. In addition, the controller 180 may operate at least two of the components included in the mobile terminal 100 in combination with each other for driving the application program.

The power supply unit 190 receives external power and internal power under the control of the controller 180 and supplies power to the components included in the mobile terminal 100. The power supply unit 190 includes a battery, which may be an internal battery or a replaceable battery.

At least some of the components may operate in cooperation with one another to implement a method of operation, control, or control of a mobile terminal according to various embodiments described below. In addition, the operation, control, or control method of the mobile terminal may be implemented on the mobile terminal by driving at least one application program stored in the memory 170. [

Hereinafter, the various components of the mobile terminal 100 will be described in detail with reference to FIG. 1A.

First, referring to the wireless communication unit 110, the broadcast receiving module 111 of the wireless communication unit 110 receives broadcast signals and / or broadcast-related information from an external broadcast management server through a broadcast channel. The broadcast channel may include a satellite channel and a terrestrial channel. Two or more broadcast receiving modules may be provided to the mobile terminal 100 for simultaneous broadcast reception or broadcast channel switching for at least two broadcast channels.

The mobile communication module 112 may be a mobile communication module or a mobile communication module such as a mobile communication module or a mobile communication module that uses technology standards or a communication method (e.g., Global System for Mobile communication (GSM), Code Division Multi Access (CDMA), Code Division Multi Access 2000 (Enhanced Voice-Data Optimized Enhanced Voice-Data Only), Wideband CDMA (WCDMA), High Speed Downlink Packet Access (HSDPA), High Speed Uplink Packet Access (HSUPA), Long Term Evolution (LTE) Long Term Evolution-Advanced), and the like, to a base station, an external terminal, and a server.

The wireless signal may include various types of data depending on a voice call signal, a video call signal or a text / multimedia message transmission / reception.

The wireless Internet module 113 is a module for wireless Internet access, and may be built in or externally attached to the mobile terminal 100. The wireless Internet module 113 is configured to transmit and receive a wireless signal in a communication network according to wireless Internet technologies.

Wireless Internet technologies include, for example, wireless LAN (WLAN), wireless fidelity (Wi-Fi), wireless fidelity (Wi-Fi) Direct, DLNA (Digital Living Network Alliance), WiBro Interoperability for Microwave Access, High Speed Downlink Packet Access (HSDPA), High Speed Uplink Packet Access (HSUPA), Long Term Evolution (LTE) and Long Term Evolution-Advanced (LTE-A) 113 transmit and receive data according to at least one wireless Internet technology, including Internet technologies not listed above.

The wireless Internet module 113 for performing a wireless Internet connection through the mobile communication network can be used for wireless Internet access by WiBro, HSDPA, HSUPA, GSM, CDMA, WCDMA, LTE or LTE- May be understood as a kind of the mobile communication module 112.

The short-range communication module 114 is for short-range communication, and includes Bluetooth ™, Radio Frequency Identification (RFID), Infrared Data Association (IrDA), Ultra Wideband (UWB) (Near Field Communication), Wi-Fi (Wireless-Fidelity), Wi-Fi Direct, and Wireless USB (Wireless Universal Serial Bus) technology. The short-range communication module 114 is connected to the mobile terminal 100 and the wireless communication system through the wireless area networks, between the mobile terminal 100 and another mobile terminal 100, or between the mobile terminal 100 ) And the other mobile terminal 100 (or the external server). The short-range wireless communication network may be a short-range wireless personal area network.

Here, the other mobile terminal 100 may be a wearable device (e.g., a smartwatch, a smart glass, etc.) capable of interchanging data with the mobile terminal 100 according to the present invention (smart glass), HMD (head mounted display)). The short range communication module 114 may detect (or recognize) a wearable device capable of communicating with the mobile terminal 100 around the mobile terminal 100. [ If the detected wearable device is a device authenticated to communicate with the mobile terminal 100 according to the present invention, the control unit 180 may transmit at least a part of the data processed by the mobile terminal 100 to the short- 114 to the wearable device. Therefore, the user of the wearable device can use the data processed by the mobile terminal 100 through the wearable device. For example, according to this, when a telephone is received in the mobile terminal 100, the user performs a telephone conversation via the wearable device, or when a message is received in the mobile terminal 100, It is possible to check the message.

The position information module 115 is a module for obtaining the position (or current position) of the mobile terminal, and a representative example thereof is a Global Positioning System (GPS) module or a Wireless Fidelity (WiFi) module. For example, when the mobile terminal utilizes the GPS module, it can acquire the position of the mobile terminal by using a signal transmitted from the GPS satellite. As another example, when the mobile terminal utilizes the Wi-Fi module, it can acquire the position of the mobile terminal based on information of a wireless access point (AP) that transmits or receives the wireless signal with the Wi-Fi module. Optionally, the location information module 115 may perform any of the other functions of the wireless communication unit 110 to obtain data relating to the location of the mobile terminal, in addition or alternatively. The location information module 115 is a module used to obtain the location (or current location) of the mobile terminal, and is not limited to a module that directly calculates or obtains the location of the mobile terminal.

Next, the input unit 120 is for inputting image information (or signal), audio information (or signal), data, or information input from a user. For inputting image information, Or a plurality of cameras 121 may be provided. The camera 121 processes image frames such as still images or moving images obtained by the image sensor in the video communication mode or the photographing mode. The processed image frame may be displayed on the display unit 151 or stored in the memory 170. [ A plurality of cameras 121 provided in the mobile terminal 100 may be arranged to have a matrix structure and various angles or foci may be provided to the mobile terminal 100 through the camera 121 having the matrix structure A plurality of pieces of image information can be input. In addition, the plurality of cameras 121 may be arranged in a stereo structure to acquire a left image and a right image for realizing a stereoscopic image.

The microphone 122 processes the external acoustic signal into electrical voice data. The processed voice data can be utilized variously according to a function (or a running application program) being executed in the mobile terminal 100. Meanwhile, the microphone 122 may be implemented with various noise reduction algorithms for eliminating noise generated in receiving an external sound signal.

The user input unit 123 is for receiving information from a user and when the information is inputted through the user input unit 123, the control unit 180 can control the operation of the mobile terminal 100 to correspond to the input information . The user input unit 123 may include a mechanical input means (or a mechanical key such as a button located on the front, rear or side of the mobile terminal 100, a dome switch, a jog wheel, Jog switches, etc.) and touch-type input means. For example, the touch-type input means may comprise a virtual key, a soft key or a visual key displayed on the touch screen through software processing, And a touch key disposed on the touch panel. Meanwhile, the virtual key or the visual key can be displayed on a touch screen having various forms, for example, a graphic, a text, an icon, a video, As shown in FIG.

Meanwhile, the sensing unit 140 senses at least one of information in the mobile terminal, surrounding environment information surrounding the mobile terminal, and user information, and generates a corresponding sensing signal. The control unit 180 may control the driving or operation of the mobile terminal 100 or may perform data processing, function or operation related to the application program installed in the mobile terminal 100 based on the sensing signal. Representative sensors among various sensors that may be included in the sensing unit 140 will be described in more detail.

First, the proximity sensor 141 refers to a sensor that detects the presence of an object approaching a predetermined detection surface, or the presence of an object in the vicinity of the detection surface, without mechanical contact by using electromagnetic force or infrared rays. The proximity sensor 141 may be disposed in the inner area of the mobile terminal or in proximity to the touch screen, which is covered by the touch screen.

Examples of the proximity sensor 141 include a transmission type photoelectric sensor, a direct reflection fluorescent light sensor, a mirror reflection fluorescent light sensor, a high frequency oscillation proximity sensor, a capacitive proximity sensor, a magnetic proximity sensor, and an infrared proximity sensor. In the case where the touch screen is electrostatic, the proximity sensor 141 can be configured to detect the proximity of the object with a change of the electric field along the proximity of the object having conductivity. In this case, the touch screen (or touch sensor) itself may be classified as a proximity sensor.

On the other hand, for convenience of explanation, the act of recognizing that the object is located on the touch screen in proximity with no object touching the touch screen is referred to as "proximity touch & The act of actually touching an object on the screen is called a "contact touch. &Quot; The position at which the object is closely touched on the touch screen means a position where the object corresponds to the touch screen vertically when the object is touched. The proximity sensor 141 can detect a proximity touch and a proximity touch pattern (e.g., a proximity touch distance, a proximity touch direction, a proximity touch speed, a proximity touch time, a proximity touch position, have. Meanwhile, the control unit 180 processes data (or information) corresponding to the proximity touch operation and the proximity touch pattern sensed through the proximity sensor 141 as described above, and further provides visual information corresponding to the processed data It can be output on the touch screen. Furthermore, the control unit 180 can control the mobile terminal 100 such that different operations or data (or information) are processed according to whether the touch to the same point on the touch screen is a proximity touch or a touch touch .

The touch sensor senses a touch (or touch input) applied to the touch screen (or the display unit 151) by using at least one of various touch methods such as a resistance film type, a capacitive type, an infrared type, an ultrasonic type, do.

For example, the touch sensor may be configured to convert a change in a pressure applied to a specific portion of the touch screen or a capacitance generated in a specific portion to an electrical input signal. The touch sensor may be configured to detect a position, an area, a pressure at the time of touch, a capacitance at the time of touch, and the like where a touch object touching the touch screen is touched on the touch sensor. Here, the touch object may be a finger, a touch pen, a stylus pen, a pointer, or the like as an object to which a touch is applied to the touch sensor.

Thus, when there is a touch input to the touch sensor, the corresponding signal (s) is sent to the touch controller. The touch controller processes the signal (s) and transmits the corresponding data to the controller 180. Thus, the control unit 180 can know which area of the display unit 151 is touched or the like. Here, the touch controller may be a separate component from the control unit 180, and may be the control unit 180 itself.

On the other hand, the control unit 180 may perform different controls or perform the same control according to the type of the touch object touching the touch screen (or a touch key provided on the touch screen). Whether to perform different controls or to perform the same control according to the type of the touch object may be determined according to the current state of the mobile terminal 100 or an application program being executed.

On the other hand, the touch sensors and the proximity sensors discussed above can be used independently or in combination to provide a short touch (touch), a long touch, a multi touch, a drag touch ), Flick touch, pinch-in touch, pinch-out touch, swipe touch, hovering touch, and the like. Touch can be sensed.

The ultrasonic sensor can recognize the position information of the object to be sensed by using ultrasonic waves. Meanwhile, the controller 180 can calculate the position of the wave generating source through the information sensed by the optical sensor and the plurality of ultrasonic sensors. The position of the wave source can be calculated using the fact that the light is much faster than the ultrasonic wave, that is, the time when the light reaches the optical sensor is much faster than the time the ultrasonic wave reaches the ultrasonic sensor. More specifically, the position of the wave generating source can be calculated using the time difference with the time when the ultrasonic wave reaches the reference signal.

The camera 121 includes at least one of a camera sensor (for example, a CCD, a CMOS, etc.), a photo sensor (or an image sensor), and a laser sensor.

The camera 121 and the laser sensor may be combined with each other to sense a touch of the sensing object with respect to the three-dimensional stereoscopic image. The photosensor can be laminated to the display element, which is adapted to scan the movement of the object to be detected proximate to the touch screen. More specifically, the photosensor mounts photo diodes and TRs (Transistors) in a row / column and scans the contents loaded on the photosensor using an electrical signal that varies according to the amount of light applied to the photo diode. That is, the photo sensor performs coordinate calculation of the object to be sensed according to the amount of change of light, and position information of the object to be sensed can be obtained through the calculation.

The display unit 151 displays (outputs) information processed by the mobile terminal 100. For example, the display unit 151 may display execution screen information of an application program driven by the mobile terminal 100 or UI (User Interface) and GUI (Graphic User Interface) information according to the execution screen information .

Also, the display unit 151 may be configured as a stereoscopic display unit for displaying a stereoscopic image.

In the stereoscopic display unit, a three-dimensional display system such as a stereoscopic system (glasses system), an autostereoscopic system (no-glasses system), and a projection system (holographic system) can be applied.

The sound output unit 152 may output audio data received from the wireless communication unit 110 or stored in the memory 170 in a call signal reception mode, a call mode or a recording mode, a voice recognition mode, a broadcast reception mode, The sound output unit 152 also outputs sound signals related to functions (e.g., call signal reception sound, message reception sound, etc.) performed in the mobile terminal 100. [ The audio output unit 152 may include a receiver, a speaker, a buzzer, and the like.

The haptic module 153 generates various tactile effects that the user can feel. A typical example of the haptic effect generated by the haptic module 153 may be vibration. The intensity and pattern of the vibration generated in the haptic module 153 can be controlled by the user's selection or the setting of the control unit. For example, the haptic module 153 may synthesize and output different vibrations or sequentially output the vibrations.

In addition to vibration, the haptic module 153 may be configured to perform various functions such as a pin arrangement vertically moving with respect to the contact skin surface, a spraying force or suction force of the air through the injection port or the suction port, a touch on the skin surface, And various tactile effects such as an effect of reproducing a cold sensation using an endothermic or exothermic element can be generated.

The haptic module 153 can transmit the tactile effect through the direct contact, and the tactile effect can be felt by the user through the muscles of the finger or arm. The haptic module 153 may include two or more haptic modules 153 according to the configuration of the mobile terminal 100.

The light output unit 154 outputs a signal for notifying the occurrence of an event using the light of the light source of the mobile terminal 100. Examples of events that occur in the mobile terminal 100 may include message reception, call signal reception, missed call, alarm, schedule notification, email reception, information reception through an application, and the like.

The signal output from the light output unit 154 is implemented as the mobile terminal emits light of a single color or a plurality of colors to the front or rear surface. The signal output may be terminated by the mobile terminal detecting the event confirmation of the user.

The interface unit 160 serves as a path for communication with all external devices connected to the mobile terminal 100. The interface unit 160 receives data from an external device or supplies power to each component in the mobile terminal 100 or transmits data in the mobile terminal 100 to an external device. For example, a port for connecting a device equipped with a wired / wireless headset port, an external charger port, a wired / wireless data port, a memory card port, an audio I / O port, a video I / O port, an earphone port, and the like may be included in the interface unit 160.

The identification module is a chip for storing various information for authenticating the use right of the mobile terminal 100 and includes a user identification module (UIM), a subscriber identity module (SIM) A universal subscriber identity module (USIM), and the like. Devices with identification modules (hereinafter referred to as "identification devices") can be manufactured in a smart card format. Accordingly, the identification device can be connected to the terminal 100 through the interface unit 160. [

The interface unit 160 may be a path through which power from the cradle is supplied to the mobile terminal 100 when the mobile terminal 100 is connected to an external cradle, And various command signals may be transmitted to the mobile terminal 100. The various command signals or the power source input from the cradle may be operated as a signal for recognizing that the mobile terminal 100 is correctly mounted on the cradle.

The memory 170 may store a program for the operation of the controller 180 and temporarily store input / output data (e.g., a phone book, a message, a still image, a moving picture, etc.). The memory 170 may store data on vibration and sound of various patterns outputted when a touch is input on the touch screen.

The memory 170 may be a flash memory type, a hard disk type, a solid state disk type, an SDD type (Silicon Disk Drive type), a multimedia card micro type ), Card type memory (e.g., SD or XD memory), random access memory (RAM), static random access memory (SRAM), read-only memory (ROM), electrically erasable programmable read memory, a programmable read-only memory (PROM), a magnetic memory, a magnetic disk, and / or an optical disk. The mobile terminal 100 may operate in association with a web storage that performs the storage function of the memory 170 on the Internet.

Meanwhile, as described above, the control unit 180 controls the operations related to the application program and the general operation of the mobile terminal 100. [ For example, when the state of the mobile terminal meets a set condition, the control unit 180 can execute or release a lock state for restricting input of a user's control command to applications.

In addition, the control unit 180 performs control and processing related to voice communication, data communication, video call, or the like, or performs pattern recognition processing to recognize handwriting input or drawing input performed on the touch screen as characters and images, respectively . Further, the controller 180 may control any one or a plurality of the above-described components in order to implement various embodiments described below on the mobile terminal 100 according to the present invention.

The power supply unit 190 receives external power and internal power under the control of the controller 180 and supplies power necessary for operation of the respective components. The power supply unit 190 includes a battery, the battery may be an internal battery configured to be chargeable, and may be detachably coupled to the terminal body for charging or the like.

In addition, the power supply unit 190 may include a connection port, and the connection port may be configured as an example of an interface 160 through which an external charger for supplying power for charging the battery is electrically connected.

As another example, the power supply unit 190 may be configured to charge the battery in a wireless manner without using the connection port. In this case, the power supply unit 190 may use at least one of an inductive coupling method based on a magnetic induction phenomenon from an external wireless power transmission apparatus and a magnetic resonance coupling method based on an electromagnetic resonance phenomenon Power can be delivered.

In the following, various embodiments may be embodied in a recording medium readable by a computer or similar device using, for example, software, hardware, or a combination thereof.

Referring to FIGS. 1B and 1C, the disclosed mobile terminal 100 includes a bar-shaped terminal body. However, the present invention is not limited thereto and can be applied to various structures such as a folder type, a flip type, a slide type, a swing type, and a swivel type in which a watch type, a clip type, a glass type or two or more bodies are relatively movably coupled . A description of a particular type of mobile terminal, although relevant to a particular type of mobile terminal, is generally applicable to other types of mobile terminals.

Here, the terminal body can be understood as a concept of referring to the mobile terminal 100 as at least one aggregate.

The mobile terminal 100 includes a case (for example, a frame, a housing, a cover, and the like) that forms an appearance. As shown, the mobile terminal 100 may include a front case 101 and a rear case 102. Various electronic components are disposed in the inner space formed by the combination of the front case 101 and the rear case 102. At least one middle case may be additionally disposed between the front case 101 and the rear case 102.

A display unit 151 is disposed on a front surface of the terminal body to output information. The window 151a of the display unit 151 may be mounted on the front case 101 to form a front surface of the terminal body together with the front case 101. [

In some cases, electronic components may also be mounted on the rear case 102. Electronic parts that can be mounted on the rear case 102 include detachable batteries, an identification module, a memory card, and the like. In this case, a rear cover 103 for covering the mounted electronic components can be detachably coupled to the rear case 102. Therefore, when the rear cover 103 is separated from the rear case 102, the electronic parts mounted on the rear case 102 are exposed to the outside.

As shown, when the rear cover 103 is coupled to the rear case 102, a side portion of the rear case 102 can be exposed. In some cases, the rear case 102 may be completely covered by the rear cover 103 during the engagement. Meanwhile, the rear cover 103 may be provided with an opening for exposing the camera 121b and the sound output unit 152b to the outside.

These cases 101, 102, and 103 may be formed by injection molding of synthetic resin or may be formed of metal such as stainless steel (STS), aluminum (Al), titanium (Ti), or the like.

The mobile terminal 100 may be configured such that one case provides the internal space, unlike the above example in which a plurality of cases provide an internal space for accommodating various electronic components. In this case, a universal mobile terminal 100 in which a synthetic resin or metal is connected from the side to the rear side can be realized.

Meanwhile, the mobile terminal 100 may include a waterproof unit (not shown) for preventing water from penetrating into the terminal body. For example, the waterproof portion is provided between the window 151a and the front case 101, between the front case 101 and the rear case 102, or between the rear case 102 and the rear cover 103, And a waterproof member for sealing the inside space of the oven.

The mobile terminal 100 is provided with a display unit 151, first and second sound output units 152a and 152b, a proximity sensor 141, an illuminance sensor 142, a light output unit 154, Cameras 121a and 121b, first and second operation units 123a and 123b, a microphone 122, an interface unit 160, and the like.

1B and 1C, a display unit 151, a first sound output unit 152a, a proximity sensor 141, an illuminance sensor 142, an optical output unit (not shown) A second operation unit 123b, a microphone 122 and an interface unit 160 are disposed on a side surface of the terminal body, And a mobile terminal 100 having a second sound output unit 152b and a second camera 121b disposed on a rear surface thereof.

However, these configurations are not limited to this arrangement. These configurations may be excluded or replaced as needed, or placed on different planes. For example, the first operation unit 123a may not be provided on the front surface of the terminal body, and the second sound output unit 152b may be provided on the side surface of the terminal body rather than the rear surface of the terminal body.

The display unit 151 displays (outputs) information processed by the mobile terminal 100. For example, the display unit 151 may display execution screen information of an application program driven by the mobile terminal 100 or UI (User Interface) and GUI (Graphic User Interface) information according to the execution screen information .

The display unit 151 may be a liquid crystal display (LCD), a thin film transistor-liquid crystal display (TFT LCD), an organic light-emitting diode (OLED), a flexible display display, a 3D display, and an e-ink display.

In addition, the display unit 151 may exist in two or more depending on the embodiment of the mobile terminal 100. In this case, the mobile terminal 100 may be provided with a plurality of display portions spaced apart from each other or disposed integrally with one another, or may be disposed on different surfaces, respectively.

The display unit 151 may include a touch sensor that senses a touch with respect to the display unit 151 so that a control command can be received by a touch method. When a touch is made to the display unit 151, the touch sensor senses the touch, and the control unit 180 generates a control command corresponding to the touch based on the touch. The content input by the touch method may be a letter or a number, an instruction in various modes, a menu item which can be designated, and the like.

The touch sensor may be a film having a touch pattern and disposed between the window 151a and a display (not shown) on the rear surface of the window 151a, or may be a metal wire . Alternatively, the touch sensor may be formed integrally with the display. For example, the touch sensor may be disposed on a substrate of the display or inside the display.

In this way, the display unit 151 can form a touch screen together with the touch sensor. In this case, the touch screen can function as a user input unit 123 (see FIG. 1A). In some cases, the touch screen may replace at least some functions of the first operation unit 123a.

The first sound output unit 152a may be implemented as a receiver for transmitting a call sound to a user's ear and the second sound output unit 152b may be implemented as a loud speaker for outputting various alarm sounds or multimedia playback sounds. ). ≪ / RTI >

The window 151a of the display unit 151 may be provided with an acoustic hole for emitting the sound generated from the first acoustic output unit 152a. However, the present invention is not limited to this, and the sound may be configured to be emitted along an assembly gap (for example, a gap between the window 151a and the front case 101) between the structures. In this case, the appearance of the mobile terminal 100 can be made more simple because the hole formed independently for the apparent acoustic output is hidden or hidden.

The optical output unit 154 is configured to output light for notifying the occurrence of an event. Examples of the event include a message reception, a call signal reception, a missed call, an alarm, a schedule notification, an email reception, and reception of information through an application. The control unit 180 may control the light output unit 154 to terminate the light output when the event confirmation of the user is detected.

The first camera 121a processes an image frame of a still image or a moving image obtained by the image sensor in the photographing mode or the video communication mode. The processed image frame can be displayed on the display unit 151 and can be stored in the memory 170. [

The first and second operation units 123a and 123b may be collectively referred to as a manipulating portion as an example of a user input unit 123 operated to receive a command for controlling the operation of the mobile terminal 100 have. The first and second operation units 123a and 123b can be employed in any manner as long as the user is in a tactile manner such as touch, push, scroll, or the like. In addition, the first and second operation units 123a and 123b may be employed in a manner that the user operates the apparatus without touching the user through a proximity touch, a hovering touch, or the like.

In this figure, the first operation unit 123a is a touch key, but the present invention is not limited thereto. For example, the first operation unit 123a may be a mechanical key, or a combination of a touch key and a touch key.

The contents input by the first and second operation units 123a and 123b can be variously set. For example, the first operation unit 123a receives a command such as a menu, a home key, a cancellation, a search, and the like, and the second operation unit 123b receives a command from the first or second sound output unit 152a or 152b The size of the sound, and the change of the display unit 151 to the touch recognition mode.

On the other hand, a rear input unit (not shown) may be provided on the rear surface of the terminal body as another example of the user input unit 123. The rear input unit is operated to receive a command for controlling the operation of the mobile terminal 100, and input contents may be variously set. For example, commands such as power on / off, start, end, scrolling, and the like, the size adjustment of the sound output from the first and second sound output units 152a and 152b, And the like can be inputted. The rear input unit may be implemented as a touch input, a push input, or a combination thereof.

The rear input unit may be disposed so as to overlap with the front display unit 151 in the thickness direction of the terminal body. For example, the rear input unit may be disposed at the rear upper end of the terminal body such that when the user holds the terminal body with one hand, the rear input unit can be easily manipulated using the index finger. However, the present invention is not limited thereto, and the position of the rear input unit may be changed.

When a rear input unit is provided on the rear surface of the terminal body, a new type of user interface using the rear input unit can be realized. When the first operation unit 123a is not disposed on the front surface of the terminal body in place of at least a part of the functions of the first operation unit 123a provided on the front surface of the terminal body, The display unit 151 may be configured as a larger screen.

Meanwhile, the mobile terminal 100 may be provided with a fingerprint recognition sensor for recognizing the fingerprint of the user, and the controller 180 may use the fingerprint information sensed through the fingerprint recognition sensor as authentication means. The fingerprint recognition sensor may be embedded in the display unit 151 or the user input unit 123.

The microphone 122 is configured to receive the user's voice, other sounds, and the like. The microphone 122 may be provided at a plurality of locations to receive stereophonic sound.

The interface unit 160 is a path through which the mobile terminal 100 can be connected to an external device. For example, the interface unit 160 may include a connection terminal for connection with another device (for example, an earphone or an external speaker), a port for short-range communication (for example, an infrared port (IrDA Port), a Bluetooth port A wireless LAN port, or the like), or a power supply terminal for supplying power to the mobile terminal 100. The interface unit 160 may be implemented as a socket for receiving an external card such as a SIM (Subscriber Identification Module) or a UIM (User Identity Module) or a memory card for storing information.

And a second camera 121b may be disposed on a rear surface of the terminal body. In this case, the second camera 121b has a photographing direction which is substantially opposite to that of the first camera 121a.

The second camera 121b may include a plurality of lenses arranged along at least one line. The plurality of lenses may be arranged in a matrix form. Such a camera can be named an 'array camera'. When the second camera 121b is configured as an array camera, images can be taken in various ways using a plurality of lenses, and a better quality image can be obtained.

The flash 124 may be disposed adjacent to the second camera 121b. The flash 124 shines light toward the subject when the subject is photographed by the second camera 121b.

And a second sound output unit 152b may be additionally disposed in the terminal body. The second sound output unit 152b may implement a stereo function together with the first sound output unit 152a and may be used for implementing a speakerphone mode in a call.

The terminal body may be provided with at least one antenna for wireless communication. The antenna may be embedded in the terminal body or formed in the case. For example, an antenna constituting a part of the broadcast receiving module 111 (see FIG. 1A) may be configured to be able to be drawn out from the terminal body. Alternatively, the antenna may be formed in a film type and attached to the inner surface of the rear cover 103, or a case including a conductive material may be configured to function as an antenna.

The terminal body is provided with a power supply unit 190 (see FIG. 1A) for supplying power to the mobile terminal 100. The power supply unit 190 may include a battery 191 built in the terminal body or detachable from the outside of the terminal body.

The battery 191 may be configured to receive power through a power cable connected to the interface unit 160. In addition, the battery 191 may be configured to be wirelessly chargeable through a wireless charger. The wireless charging may be implemented by a magnetic induction method or a resonance method (magnetic resonance method).

The rear cover 103 is configured to be coupled to the rear case 102 so as to cover the battery 191 to restrict the release of the battery 191 and to protect the battery 191 from external impact and foreign matter . When the battery 191 is detachably attached to the terminal body, the rear cover 103 may be detachably coupled to the rear case 102.

The mobile terminal 100 may be provided with an accessory that protects the appearance or supports or expands the function of the mobile terminal 100. [ One example of such an accessory is a cover or pouch that covers or accommodates at least one side of the mobile terminal 100. [ The cover or pouch may be configured to interlock with the display unit 151 to expand the function of the mobile terminal 100. Another example of an accessory is a touch pen for supplementing or extending a touch input to the touch screen.

FIG. 2A is a rear view of a front case 101 according to an embodiment of the present invention, and FIG. 2B is a rear view of a rear case 102 according to an embodiment of the present invention. Hereinafter, a fastening structure of the mobile terminal 100 according to an embodiment of the present invention will be described with reference to FIGS. 2A and 2B.

One embodiment of the present invention provides a rib structure for preventing the case from flowing when engaging between cases or covers of the mobile terminal 100. The case at this time may be the front case 101 and the rear case 102 or may be the rear case 102 and the rear cover 103. [ When an intermediate frame (not shown) is formed between the front case 101 and the rear case 102, the fastening structure between the front case 101 and the intermediate frame, the fastening structure between the intermediate frame and the rear case 102, As shown in FIG.

The rib structure may be formed along the edge of the mobile terminal 100 or may be formed in the inner space of the mobile terminal 100.

Hereinafter, the fastening structure of the front case 101 and the rear case 102 will be described. However, the present invention is not limited thereto, and a cover or case formed to face each other is not particularly limited.

In the following description, the front case 101 will be referred to as a first case 101 and the rear case 102 will be referred to as a second case 102. [

The first and second cases 101 and 102 have substantially the same size and are formed to face each other. An inner space is formed by the first and second cases 101 and 102, and the inner space is provided with a printed circuit board (Not shown) and a plurality of electronic components (not shown).

The mobile terminal 100 according to an embodiment of the present invention is formed by combining two or more covers (or cases) and has a certain thickness. For example, the mobile terminal 100 may include a first case 101 in which a display unit 151 including a window 151a is accommodated, and a second case 101 that covers one side of the first case 101 to form an empty space therein And a second case 102 on which the second case 102 is mounted. Also, the present invention can be applied to a uni-body type terminal having a single cover while covering the rear surface of the first case 101 in which the display unit 151 is provided. In the case of a unibody type terminal, the first case 101 and a rear cover (not shown) covering the first case 101 should be fastened along the rim.

At least one rib 131 is formed on one side of the lower surface of the first case 101 so that the second case 102 covers the lower portion of the first case 101 along the first direction. . The second case 102 has a rib receiving portion 132 for receiving the rib 131 and fixing the first case 101. Thus, the second case 102 is formed to cover the lower surface of the first case 101.

The ribs 131 protrude from the reference surface in a first direction, that is, in the thickness direction of the mobile terminal 100 or in the direction of engagement of the first and second cases 101 and 102, 132 are fixed so that the first and second cases 101 and 102 are prevented from moving relative to each other by receiving the protruding ribs 131. For this purpose, the rib 131 and the rib receiving portion 132 have shapes corresponding to each other. For example, the rib 131 and the rib receiving portion 132 may have a trapezoidal shape. The reference surface of the rib 131 may be a rim portion 101a and / or a first side wall 101b described later. Although the rib 131 protrudes from the rim portion 101a and the first sidewall 101b in the drawing of the present invention, it is only one example, and if the rib 131 protrudes from the other portion, can do.

That is, the rib 131 and the rib receiving portion 132 are formed to have at least one inclined surface along a second direction perpendicular to the first direction.

2A, the ribs 131 are formed at predetermined intervals along the y-axis direction (the longitudinal direction of the mobile terminal), and the ribs R1, R2, R3, Are formed symmetrically with the ribs R1 ', R2', R3 ', and R4' formed on the substrate. 2B, the rib accommodating portion 132 includes rib accommodating portions S1, S2, S3, and S4 that engage with ribs R1, R2, R3, and R4 formed on the left side of FIG. 2A, The rib receiving portions S1 ', S2', S3 ', and S4' that engage with the ribs R1 ', R2', R3 ', and R4' are formed. 2A shows a rear surface of the first case 101 and FIG. 2B shows a front surface of the second case 102. The first case 101 is seated in the second case 102 .

Hereinafter, this will be described in more detail with reference to FIG. 3 to FIG.

FIG. 3 is a cross-sectional view of the coupled front case 101 and rear case 102 taken along the xy plane according to an embodiment of the present invention, and FIG. 4 is an enlarged view of part A of FIG. FIG. 5 is a conceptual view for explaining a fastening structure according to an embodiment of the present invention, FIG. 6 is a rear view of a first case 101 according to an embodiment of the present invention, and FIG. And is a rear view of the rear case 102 according to the example.

In this case, the x axis in the embodiment of the present invention means the width direction of the mobile terminal 100, the y axis means the longitudinal direction of the mobile terminal 100, and the z axis indicates the thickness direction of the mobile terminal 100 do. The z-axis direction means a first direction, and the x-axis direction means a second direction.

T2, T3, and T4 in which the ribs R1, R2, R3, and R4 are coupled with the rib receiving portions S1, S2, S3, and S4, T2 ', T3', T4 ', in which the rib receiving portions S1', S2 ', S3', S4 'are connected, And are spaced apart at predetermined intervals.

Referring to FIG. 6, the first case 101 includes a frame portion 101a formed in a plane perpendicular to the first direction, and a first side wall 101b formed to be stepped by the first side wall 101b from the frame portion 101a And includes a first main surface portion 101c. That is, the rim portion 101a is a portion provided on the xy plane, the first side wall 102b is a portion provided on the yz plane, and the first main surface portion 101c is a portion provided on the xy plane . The rim portion 101a is formed to be thin and forms the edge of the first case 101. The first main surface portion 101c is formed to be stepped by a predetermined height from the rim portion 101a. At this time, the first main surface portion 101c and the rim portion 101a are connected by the first side wall 101b. The rim portion 101a is formed at a height different from that of the first main surface portion 101c and the rib 131 is formed in a direction protruding from the first sidewall 101b and the rim portion 101a. That is, as shown in FIG. 2A, two or more ribs 131 are formed at the predetermined intervals in the rim portion 101a.

7, the second case 102 includes a second side wall 102b formed at a predetermined distance from the first side wall 101b, a second side wall 102b extending from the second side wall 102b, And a second main surface portion 102c formed so as to face the portion 101c. The first side wall 101b and the second side wall 102b are spaced from each other and the rib 131 and the rib accommodating portion 132 are disposed in a space between the first and second side walls 101b and 102b. The rib receiving portion 132 protrudes from the second side wall 102b toward the inside of the mobile terminal 100 and the second side wall 102b and the second main surface portion 102c are formed on the base 102a Lt; / RTI > The base 102a is formed with the rib receiving portion 132 as a portion facing the rim portion 101a. The rib receiving portion 132 is also protruded from the second side wall 102b and the base 102a similarly to the rib 131. [

5 and 6, one side of the rib 131 is formed on the first side wall 101b and the other side is exposed along the edge of the rim portion 101a. More specifically, The rib 131 according to the embodiment includes a first portion 131a formed parallel to the first sidewall 101b and a second portion 131a formed from the first portion 131a toward the first sidewall 101b. And third portions 131b and 131c. At this time, the region formed by the first sidewall 101b, the first to third portions 131a, 131b, and 131c may have a trapezoidal shape.

At least one of the second and third portions 131b and 131c may be an inclined surface formed to have an acute angle with the x-axis and the y-axis.

If at least one of the second and third portions 131b and 131c is formed to be inclined, the rib 131 is prevented from flowing while being accommodated in the rib receiving portion 132. [ The rib 131 is prevented from flowing on the xy plane and does not prevent flow to the z-axis. In order to prevent the flow in the z-axis, a fastening by a hook may be employed, but this is not related to the gist of the present invention, so that the understanding of the present invention can be understood, and a detailed description thereof will be omitted.

The ribs 131 and the ribs 131 and the ribs 131 and the ribs 131 and the ribs 131 and the ribs 131 and the ribs 131 and the ribs 131, The region where the receiving portion 132 is engaged is overlapped with the bezel region of the mobile terminal 100.

8A is a cross-sectional view taken along the thickness direction of a conventional mobile terminal 100, and FIG. 8B is a conceptual view for explaining a conventional cover fastening structure, which will be described below with reference to FIGS. 8A and 8B.

The width D1 of the rib 13 should be at least 0.5 mm and the width of the rib accommodating portion 14 surrounding the rib 13 should be at least 0.5 mm, D1) should be secured to both sides of the rib 13 by 0.5 mm each. The gap between the rib 13 and the rib receiving portion 14 is spaced by about 0.1 mm in consideration of the tolerance. According to this method, the width D 'of the bezel is 1.7 mm or more. This is because the shape of the ribs 13 is rectangular and is formed so as to be wrapped in four directions of up, down, left, and right in order to prevent the flow of the ribs 13. However, if the terminal size is small and the bezel portion is narrow, such a fastening structure can not be employed.

That is, in order to narrow the bezel, the width of the portion forming the bezel of the mobile terminal 100, more specifically, the width of the lower surface supporting the edge of the window in the xy plane (bezel width) must be reduced. 8B has a limitation in reducing the width of the bezel.

In an embodiment of the present invention, as shown in FIGS. 5 to 7, the ribs 131 and the rib receiving portions 132 are formed in a rhomboid shape to reduce the bezel width. The rib receiving portion 132 includes first and second movement restricting portions 132a and 132b formed inward from the second side wall 102b. The first and second movement restricting portions 132a and 132b function to prevent the rib 131 from flowing on the xy plane. The rib accommodating portion 132 is formed in a virtual shape that connects the second side wall 102b, the first and second movement restricting portions 132a and 132b, and the first and second movement restricting portions 132a and 132b. And the area formed by the line corresponds to the rib 131. [ Since the rib 131 has a shape gradually increasing in width from the first side wall 101b toward the outside, the first and second movement restricting portions 132a and 132b are spaced apart from the second side wall 102b So that the spacing distance becomes smaller.

With the above structure, the first and second cases 101 and 102 are fastened along the z-axis (first direction), and flow on the xy plane is prevented.

More specifically, the distance D1 between the first portion 131a and the first side wall 101b and the minimum area D1 of the rib accommodating portion 132 which should be formed outside the first portion 131a, And the distance D2 between the rib 131 and the rib receiving portion 132. The width D of the bezel is determined by the sum of the spacing D2 between the rib 131 and the rib receiving portion 132. [ Since the width D of the bezel is smaller than the width D 'of the bezel shown in FIG. 8B, the width of the bezel of the mobile terminal 100 can be reduced.

Meanwhile, when the rib 131 is elongated along a specific direction, the first and second movement restricting parts 132a and 132b may be somewhat insufficient to fix the rib 131 firmly. In order to more firmly fasten the first and second cases 101 and 102, in an embodiment of the present invention, the first side wall 101b and the first to third parts 131a, One or more grooves 133 are formed in the region formed by the first side wall 102b and the second side wall 102b so as to face the second side wall 102b as shown in Fig. The third movement restricting portion 132c can be formed. The third movement restricting portion 132c may be formed parallel to the second side wall 102b and may be connected to the second side wall 102b and the first to third movement restricting portions 132a, 132b, The extension line becomes a trapezoidal shape. The third movement restricting portion 132c is inserted into the groove 133 and fixed. As described above, according to the embodiment of the present invention, the groove 133 and the third movement restricting portion 132c are formed according to the formation length of the rib 131, so that the first and second cases 101 and 102 can be tightly fastened have.

The rib 131 is formed to be long along the y-axis direction, and the rib 131 has a first portion 131a corresponding to the bottom surface and a first side wall 101b corresponding to the top surface of the rib 131, . When the direction from the bottom surface to the top surface is referred to as a rib forming direction, the rib forming directions may be opposite to each other in a line symmetric position with respect to the center of the mobile terminal 100 according to an embodiment of the present invention. 2A, when the rib forming direction of the first rib R1 formed at the left end of the rear surface of the first case 101 is the (+) x direction, the first case 101 The rib forming direction of the second rib R1 'formed at the right end of the rear surface of the first rib R1' may be the (-) x direction. That is, the first portion 131a is formed longer than the portion of the rib 131 formed on the first side wall 101b. The first portion 131a of the first and second ribs R1 and R1 ' So that the first and second cases 101 and 102 are coupled with each other, so that the flow in the xy plane can be suppressed by itself.

By thus forming the first and second ribs R1 and R1 'opposite to each other in the opposite direction, it is possible to prevent the flow on the xy plane more stably. That is, the first and second ribs R1 and R1 'are accommodated in the rib accommodating portion 132 so that the first and second ribs R1 and R1', which are prevented from flowing on the xy plane, So that the first and second cases 101 and 102 can be more firmly fastened.

2A and 2B, the ribs R5, R6, R5 ', and R6' and the rib accommodating portions S5 and S5 'are formed on one surface of the first and second cases 101 and 102, , S6, S5 ', S6') may be formed.

Referring to FIGS. 2A, 2B, 6 and 7, an auxiliary rib 131 'protruding along the first direction on the lower surface of the first main surface portion 101c and the second main surface portion 102c, And an auxiliary rib receiving portion 132 'which is recessed in a shape corresponding to the auxiliary rib 131' on the upper surface of the auxiliary rib 131 '. The auxiliary rib 131 'includes second and third portions 131b' and 131c 'formed to be inclined similarly to the rib 131, and the auxiliary rib receiving portion 132' is formed to be recessed The first and second movement preventing portions 132a 'and 132b'.

The auxiliary rib 131 'and the auxiliary rib receiving portion 132' are the same except that they are formed on one side of the inner region of the first and second cases 101 and 102, do.

The present invention described above can be embodied as computer-readable codes on a medium on which a program is recorded. The computer readable medium includes all kinds of recording devices in which data that can be read by a computer system is stored. Examples of the computer readable medium include a hard disk drive (HDD), a solid state disk (SSD), a silicon disk drive (SDD), a ROM, a RAM, a CD-ROM, a magnetic tape, a floppy disk, , And may also be implemented in the form of a carrier wave (e.g., transmission over the Internet). Also, the computer may include a control unit 180 of the terminal. Accordingly, the above description should not be construed in a limiting sense in all respects and should be considered illustrative. The scope of the present invention should be determined by rational interpretation of the appended claims, and all changes within the scope of equivalents of the present invention are included in the scope of the present invention.

Claims (12)

A first case having at least one rib formed on a lower surface thereof; And
And a second case having a shape corresponding to the rib and having a rib accommodating portion in which the rib is received and fixing the first case, the second case being formed to cover a lower portion of the first case along a first direction,
The rib and the rib accommodating portion,
Wherein at least a portion of the first terminal is formed to be inclined with respect to a second direction perpendicular to the first direction.
The method according to claim 1,
The first case includes:
A rim perpendicular to the first direction and defining an end; And
And a first main surface portion formed to be stepped by the first sidewall from the rim portion,
And the ribs are formed protruding from the first side wall and the rim.
3. The method of claim 2,
The second case includes:
A second sidewall spaced apart from the first sidewall; And
And a second main surface portion extending from the second side wall and facing the first main surface portion,
And the rib receiving portion protrudes inward from the second side wall.
The method of claim 3,
The ribs
A first portion formed parallel to the first sidewall;
And a second portion and a third portion extending from the first portion toward the first side wall.
5. The method of claim 4,
And at least one of the second and third portions is formed to be inclined with respect to the width direction of the terminal.
6. The method of claim 5,
Wherein one side of the rib is formed on the first side wall, and the other side is exposed along the edge of the rim.
The method according to claim 6,
The ribs may have first and second ribs formed at opposite ends of the terminal, respectively,
Wherein the first portion of the first and second ribs are formed to face away from each other.
The method according to claim 6,
The rib-
And first and second movement restricting portions formed inward from the second side wall.
9. The method of claim 8,
Wherein at least one groove is formed in a region formed by the first sidewall and the first through third portions,
A third movement restricting portion formed along the forming direction of the second sidewall so as to face the second sidewall,
And the third movement restricting portion is inserted and fixed in the groove.
The method of claim 3,
An auxiliary rib protruding from a lower surface of the first main surface portion along a first direction; And
Further comprising an auxiliary rib receiving portion formed on an upper surface of the second main surface portion and recessed in a shape corresponding to the auxiliary rib.
11. The method of claim 10,
Wherein at least a part of the auxiliary rib is formed to be inclined with respect to a width direction of the terminal.
The method according to claim 1,
Wherein the first case is a front case having a display unit and the second case is a rear case covering the rear surface of the front case.
KR1020150191694A 2015-12-31 2015-12-31 Mobile terminal KR20170080312A (en)

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Application Number Priority Date Filing Date Title
KR1020150191694A KR20170080312A (en) 2015-12-31 2015-12-31 Mobile terminal

Publications (1)

Publication Number Publication Date
KR20170080312A true KR20170080312A (en) 2017-07-10

Family

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Country Link
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