WO2019206007A1 - Terminal mobile - Google Patents

Terminal mobile Download PDF

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Publication number
WO2019206007A1
WO2019206007A1 PCT/CN2019/083065 CN2019083065W WO2019206007A1 WO 2019206007 A1 WO2019206007 A1 WO 2019206007A1 CN 2019083065 W CN2019083065 W CN 2019083065W WO 2019206007 A1 WO2019206007 A1 WO 2019206007A1
Authority
WO
WIPO (PCT)
Prior art keywords
side wall
mobile terminal
sidewall
disposed
terminal
Prior art date
Application number
PCT/CN2019/083065
Other languages
English (en)
Chinese (zh)
Inventor
杨自美
李彪
黄茂昭
余厚晖
Original Assignee
Oppo广东移动通信有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Oppo广东移动通信有限公司 filed Critical Oppo广东移动通信有限公司
Publication of WO2019206007A1 publication Critical patent/WO2019206007A1/fr

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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

Definitions

  • the present invention relates to the technical field of mobile terminals, and in particular, to a mobile terminal.
  • a mobile terminal includes:
  • the host end is provided with a first battery, a processor, a first communication unit, and a second communication unit, and the processor, the first communication unit, and the second communication unit are respectively associated with the first a battery coupled connection, the first communication unit is configured to perform a communication connection with an external device;
  • the handheld end comprising a flexible display screen and at least two support members, at least two of the support members being spaced apart on the flexible display screen for forming a flexible display on the handheld end a spacer-shaped spacer, the support member is provided with a third communication unit and a second battery, and the flexible display screen and the third communication unit are respectively coupled to the second battery, and the third communication unit is used for Communicating with the second communication unit;
  • the hand-held end and the host end can be separated and assembled from each other by a fixing mechanism, and when the hand-held end and the host end are in an assembled state, the hand-held end is bent at the spacing area to receive On the host side.
  • a mobile terminal includes:
  • the first terminal includes a first surface, a second surface, and a first side, the first surface and the second surface are oppositely disposed, and the first side is connected between the first surface and the second surface;
  • a second terminal includes a first portion, a connecting portion and a second portion that are sequentially connected, wherein the first portion and the second portion are bendable by the connecting portion, and the first portion is disposed on the first surface
  • the second portion is disposed on the second surface
  • the connecting portion is disposed on the first side
  • the second terminal is detachably and fixedly coupled to the first terminal.
  • a mobile terminal includes:
  • the first terminal includes a first surface, a second surface, and a first side, the first surface and the second surface are oppositely disposed, and the first side is connected between the first surface and the second surface;
  • a second terminal includes a first portion, a connecting portion and a second portion that are sequentially connected, wherein the first portion and the second portion are bendable by the connecting portion, and the first portion is disposed on the first surface
  • the first portion has a size equal to a size of the first surface
  • the first portion covers the first surface
  • the second portion is disposed on the second surface
  • the connecting portion is disposed at the first portion
  • the second terminal is detachably and fixedly connected to the first terminal.
  • a mobile terminal includes:
  • the slave end includes a flexible screen, a first communication module, and a first power module, wherein the first power module is capable of being electrically connected to the flexible screen and the first communication module respectively;
  • the flexible screen includes a first display portion a third display unit and a second display unit connected between the first display unit and the third display unit and located between the first display unit and the third display unit;
  • a host end having a first surface, a second surface, and side peripheral surfaces connecting the first surface and the second surface, the first surface and the second surface are disposed opposite to each other, and the host end further has a second surface a communication module, a third communication module, and a second power module, wherein the second power module is capable of being electrically connected to the second communication module and the third communication module, respectively; the third communication module is configured to communicate with an external device ;
  • the mobile terminal has a combined state and a split state; wherein, in the combined state, the slave end can be mounted on the host end, and the first display portion is attached to the first surface, The third display portion is attached to the second surface; in the split state, the second communication module is communicably connected to the first communication module.
  • a mobile terminal includes:
  • the main end includes a front end surface and a rear end surface disposed opposite to each other, and a top end surface and a bottom end surface connected between the front end surface and the rear end surface, the top end surface being located at one end of the main end, the bottom end surface
  • the other end of the host end includes: a first power module and a first wireless communication module, wherein the first power module is capable of being electrically connected to the first wireless communication module;
  • the handheld terminal includes a flexible screen, a second power module, and a second wireless communication module, wherein the second power module is capable of being electrically connected to the flexible screen and the second wireless communication module, respectively, and the second wireless communication module is capable of Communicating with the first wireless communication module;
  • the flexible screen includes a first portion, a second portion, and a third portion connected between the first portion and the second portion; the flexible screen can be bent to Mounted on the main body end such that the first portion is disposed on the front end surface, the second portion is disposed on the rear end surface, and the third portion is disposed on the bottom end surface
  • the handheld end is also detachable from the host end, and the handheld end is communicably connected to the host end after the handheld end is detached from the host end.
  • FIG. 1 is a perspective structural view of an embodiment of a mobile terminal in an assembled state according to an embodiment
  • FIG. 2 is a schematic perspective structural view of an embodiment of the mobile terminal of FIG. 1 in a separated state
  • FIG. 3 is a schematic structural view of an embodiment of the host end 10 of FIG. 1;
  • FIG. 4 is a schematic structural view of another embodiment of the host end 10 of FIG. 1;
  • Figure 5 is a schematic cross-sectional view taken along line V-V of Figure 1;
  • Figure 6 is a partial enlarged view of the area A in Figure 5;
  • Figure 7 is a partial enlarged view of the area B in Figure 5;
  • Figure 8 is a perspective structural view of another embodiment of the mobile terminal in an assembled state
  • FIG. 9 is a perspective structural view of another embodiment of the mobile terminal in a separated state
  • FIG. 10 is a schematic structural diagram of a mobile terminal according to another embodiment.
  • FIG. 10 is another schematic structural diagram of the mobile terminal in FIG. 10;
  • FIG. 12 is a schematic structural view of the first terminal in FIG. 10;
  • Figure 13 is a block diagram of the main board of the first terminal of Figure 12;
  • Figure 14 is a schematic structural view of the second terminal of Figure 10;
  • FIG. 15 is a schematic structural diagram of separating a first terminal and a second terminal in the mobile terminal in FIG. 10;
  • FIG. 16 is another schematic structural diagram of separating a first terminal and a second terminal in the mobile terminal in FIG. 10;
  • FIG. 17 is another schematic structural diagram of the second terminal in FIG. 15;
  • 18 is another schematic structural diagram of a mobile terminal in an embodiment
  • FIG. 19 is another schematic structural diagram of separating a first terminal and a second terminal in the mobile terminal in FIG. 18;
  • FIG. 20 is another schematic structural diagram of separating a first terminal and a second terminal in the mobile terminal in FIG. 18;
  • FIG. 21 is another schematic structural diagram of separating a first terminal and a second terminal in a mobile terminal according to an embodiment
  • FIG. 22 is another schematic structural diagram of separating a first terminal and a second terminal in the mobile terminal in FIG. 21;
  • FIG. 23 is a schematic diagram of another structure in which a first terminal and a second terminal are separated in a mobile terminal according to an embodiment
  • FIG. 24 is another schematic structural diagram of separating a first terminal and a second terminal in the mobile terminal in FIG. 23;
  • 25 is another schematic structural diagram of separating a first terminal and a second terminal in a mobile terminal according to an embodiment
  • 26 is another schematic structural diagram of separating a first terminal and a second terminal in the mobile terminal in FIG. 25;
  • FIG. 27 is another schematic structural diagram of a first terminal according to an embodiment
  • FIG. 29 is another schematic structural diagram of a mobile terminal according to an embodiment.
  • FIG. 30 is another schematic structural diagram of the first terminal and the second terminal separated in the mobile terminal in FIG. 29; FIG.
  • FIG. 31 is a schematic diagram of another structure in which a first terminal and a second terminal are separated in a mobile terminal according to an embodiment
  • 32 is a schematic structural diagram of a mobile terminal in still another embodiment
  • Figure 33 is a front elevational view of the mobile terminal of Figure 32;
  • Figure 34 is a rear elevational view of the mobile terminal of Figure 32;
  • Figure 35 is a left side view of the mobile terminal of Figure 32;
  • Figure 36 is an exploded view of the mobile terminal of Figure 32;
  • Figure 38 is a perspective view showing a state of the slave end of the mobile terminal shown in Figure 36;
  • Figure 39 is a perspective view showing another state of the slave end of the mobile terminal shown in Figure 36;
  • Figure 40 is a cross-sectional view of the mobile terminal shown in Figure 33 taken along line A-A;
  • FIG. 41 is an enlarged schematic view of the mobile terminal B shown in FIG. 40;
  • Figure 43 is a front elevational view of the mobile terminal of Figure 42;
  • Figure 44 is a rear elevational view of the mobile terminal of Figure 42;
  • Figure 45 is an exploded view of the mobile terminal of Figure 42;
  • Figure 46 is a cross-sectional view of the mobile terminal of Figure 43 taken along line A-A;
  • Figure 47 is a front elevational view of the handheld terminal of Figure 45 after being flattened
  • Figure 48 is a cross-sectional view of the mobile terminal of Figure 44 taken along line B-B;
  • FIG. 49 is an enlarged schematic view showing a portion C of the mobile terminal in FIG. 48;
  • Figure 50 is a left side view of the mobile terminal of Figure 43;
  • FIG. 51 is a flowchart of a mobile terminal in a first working state according to an embodiment
  • Figure 52 is another flow chart of the mobile terminal of Figure 51 in a first mode of operation
  • 53 is a flowchart of a mobile terminal in a second working state in an embodiment
  • Figure 54 is another flow chart of the mobile terminal of Figure 53 in a second working state
  • FIG. 55 is a schematic structural diagram of a module of a mobile terminal according to an embodiment
  • FIG. 56 is a schematic structural diagram of a module of a mobile terminal in another embodiment.
  • 57 is a schematic structural diagram of a module of a mobile terminal in still another embodiment.
  • Terminal device refers to a device capable of receiving and/or transmitting a communication signal, including but not limited to being connected via any one or more of the following connection methods:
  • wired line connection such as via Public Switched Telephone Networks (PSTN), Digital Subscriber Line (DSL), digital cable, direct cable connection;
  • PSTN Public Switched Telephone Networks
  • DSL Digital Subscriber Line
  • DSL Digital Subscriber Line
  • a wireless interface such as a cellular network, a Wireless Local Area Network (WLAN), a digital television network such as a DVB-H network, a satellite network, an AM-FM broadcast transmitter.
  • WLAN Wireless Local Area Network
  • DVB-H digital television network
  • satellite network an AM-FM broadcast transmitter.
  • a terminal device that is set to communicate through a wireless interface may be referred to as a "mobile terminal.”
  • mobile terminals include, but are not limited to, the following electronic devices:
  • PCS Personal Communication System
  • FIG. 1 is a schematic perspective structural view of an embodiment of a mobile terminal in an assembled state according to an embodiment
  • FIG. 2 is a perspective structural view of an embodiment of the mobile terminal of the present invention in a separated state.
  • the mobile terminal in the present invention may include a mobile phone, a tablet computer, a wearable device, or the like.
  • the mobile terminal in this embodiment includes two parts, a host end 10 and a handheld end 20.
  • a fixing mechanism 30 is disposed between the host end 10 and the handheld end 20, and the fixing mechanism 30 is used to separate the handheld end 20 from the main end 10. And assembly.
  • the handheld terminal 20 and the host terminal 10 can be used in combination to form a unitary structure (refer to FIG. 1); and can also be used separately, that is, in the process of using the mobile terminal, the handheld terminal 20 can be simply held.
  • the host terminal 10 is placed at other locations to achieve the purpose of split use (refer to FIG. 2).
  • the host terminal 10 is provided with a first battery, a processor, a first communication unit, and a second communication unit, and the processor, the first communication unit, and the second communication unit are respectively coupled to the first battery, and the first The battery supplies power to components such as the processor, the first communication unit, and the second communication unit.
  • the first battery may be in a detachable structure to facilitate the timely replacement of the energy source by the host end 10.
  • the first battery can also be used with a small size, long life, and no need for repeated charging and discharging.
  • the first battery can also be a new type of battery that can be charged by light energy.
  • the shape of the first battery may be a square shape, a circular shape or the like, and is not specifically limited herein.
  • the charging form of the first battery of the host terminal 10 may be directly charged through the interface, and the charging form of the first battery of the host terminal 10 may also be wireless charging.
  • the handheld end 20 in this embodiment includes a flexible display screen 21 and at least two support members 22, and the flexible display screen 21 can be bent at will and can display information such as video, image text, and the like.
  • At least two support members 22 are spaced apart from each other on the flexible display screen 21 to form a space 23 for bending the flexible display screen 21 on the hand-held end 20, and the flexible display screen 21 can be bent at a position separated by the space 23 fold.
  • the support member 22 is a rigid member, and the support member 22 can facilitate the user to hold the flexible display screen 21.
  • the number of the support members 22 may be two, three, four, etc., and FIGS. 1 and 2 show that the number of the support members 22 is two, and the number of the spacers 23 is one, which will be used in the following embodiments. A detailed description is given for the premise.
  • the flexible display screen 21 When the handheld terminal 20 and the host terminal 10 are in an assembled state, the flexible display screen 21 can be bent into a flexible display screen 21 having a smaller area to be mounted on the host end 10, and at the same time, the flexible display screen 21 is divided into a plurality of on the host end 10. Display areas for display information.
  • the user can bend the handheld terminal 20 according to its own use.
  • the support member 22 is provided with a second battery and a third communication unit.
  • the flexible display screen 21 and the third communication unit are respectively coupled to the second battery, and the second battery is used to supply components such as the flexible display 21 and the third communication unit. .
  • the second battery can be in a detachable configuration to facilitate the timely replacement of the energy source by the handheld end 20.
  • the second battery can also be used with a small size, long life, and no need for repeated charging and discharging.
  • the second battery can also be a new type of battery that can be charged by light energy.
  • the shape of the second battery may be a square shape, a circular shape or the like, and is not specifically limited herein.
  • the charging form of the second battery of the handheld terminal 20 may be directly charged through the interface or may be charged through the host terminal 10. This part of the technical features will be described in detail later.
  • the flexible display 21 may be a flexible display 21 having a touch function.
  • the flexible display screen 21 can also be a transparent flexible display screen 21, which fully reflects the technical sense of the structure of the hand-held end 20.
  • the first communication unit is configured to perform a communication connection with an external device
  • the second communication unit is configured to perform a communication connection with the third communication unit
  • the external device referred to in this embodiment includes a base station, a cloud server, or another host terminal. 10 or terminal equipment, etc., the processor is used to process data.
  • the third communication unit of the handheld terminal 20 and the second communication unit of the host terminal 10 are any one of a Bluetooth communication unit, a WIFI communication unit, a ZigBee communication unit, or an NFC communication unit.
  • the short-range communication unit is used for near-field communication between the handheld terminal 20 and the host terminal 10.
  • the usage scenario includes: home or office, etc., and the host terminal 10 can be placed at a certain location, and the user only holds the handheld terminal during use. 20, the third communication unit and the second communication unit provide a near field communication connection between the handheld terminal 20 and the host terminal 10.
  • the first communication unit of the host terminal 10 is a remote communication unit, and the first communication unit of the host terminal 10 is a main antenna, which implements normal communication and network functions; the remote communication unit can be 2G ⁇ 3G ⁇ 4G ⁇ 5G ⁇ 6G, CDMA.
  • the cellular communication unit is used for data remote communication and transmission. The types of remote communication units are not listed here.
  • the division of the handheld terminal 20 and the host terminal 10 is generally: the handheld terminal 20 is mainly used for display, TP manipulation, and may also include images or other functions; and the host terminal 10 is used for computing, storage, communication, energy storage images, and other additions. Features (such as audio output, external interface, etc.).
  • the mobile terminal provided by the embodiment of the present invention includes a host processing part (host end 10) and a display control part (handheld end 20).
  • the host end 10 is provided with a first battery, a processor, a first communication unit and a second communication unit, and is processed.
  • the first communication unit and the second communication unit are respectively coupled to the first battery, and include a flexible display screen 21 and at least two support members 22, and at least two support members 22 are spaced apart on the flexible display screen 21 to A spacer 23 for bending the flexible display screen 21 is formed on the handheld end 20, the support member 22 is provided with a third communication unit and a second battery, and the host terminal 10 communicates with the external device through the first communication unit, the handheld terminal 20 and The host terminal 10 communicates through a communication connection between the second communication unit and the third communication unit. In this way, the handheld terminal 20 and the host terminal 10 can be separated independently, and the designs of the handheld terminal 20 and the host terminal 10 do not affect each other, and the homogenization of the mobile terminal product is avoided in design.
  • the number of devices (such as the camera module 14) of the handheld terminal 20 can be greatly reduced, thereby achieving a larger screen ratio, thereby achieving the ultimate thinness of the handheld terminal 20, and moving when the host terminal 10 is designed.
  • the overall performance of the terminal, such as battery capacity, is no longer limited by the size of the form factor.
  • the mobile terminal is split into two relatively independent parts, which solves the problem that the mobile terminal product cannot be both thin and light.
  • the handheld end 20 and the main end 10 are in the assembled state, the handheld end 20 is bent at the spacer 23 and fixed to the main end 10 by the fixing mechanism 30, and the flexible display is when the handheld end 20 and the main end 10 are in a separated state. 21 can be arbitrarily bent in the compartment 23.
  • FIG. 3 is a schematic structural diagram of an embodiment of the host end 10 of FIG.
  • the opposite sides of the host end 10 are provided with a first recess 11 and a second recess 12.
  • the first recess 11 and the second recess 12 extend through the same end of the host end 10, and the handheld end 20 and the host
  • the support member 22 is received in the first recess 11 and the second recess 12, and the flexible display screen 21 is displayed on the front and back sides and the top of the main body end 10.
  • FIG. 4 is a schematic structural diagram of another embodiment of the host end 10 of FIG.
  • the end of the host end 10 is provided with a third recess 13 , the third recess 13 communicates the first recess 11 and the second recess 12 , and the spacer 23 of the handheld end 20 is received in the third recess 13 so that the support member 22 and the flexible display screen 21 are accommodated together in the first recess 11, the second recess 12 and the third recess 13.
  • the supporting member 22 is respectively connected to the sidewall of the first recess 11 and the sidewall of the second recess 12 by the fixing mechanism 30, so that the handheld end 20 is fixedly received in the first recess 11 and the second recess 12 And within the third recess 13.
  • FIG. 5 is a schematic cross-sectional view of the first embodiment of the present invention in the V-V direction
  • FIG. 6 is a partially enlarged schematic view of the A region of the present invention
  • the fixing mechanism 30 includes an elastic ejector pin 31, a thimble groove 32, a convex portion 33 and a snap groove 34.
  • One of the side wall of the first groove 11 and the support member 22 is provided with an elastic ejector pin 31, and the side wall of the first groove 11
  • the other of the support members 22 is provided with a thimble groove 32 matching the elastic ejector pin 31, and one of the side wall of the second groove 12 and the support member 22 is provided with a convex portion 33, a side wall of the second groove 12 and
  • the other of the support members 22 is provided with a snap groove 34 that matches the convex portion 33.
  • FIG. 6 shows that the side wall of the first recess 11 is provided with an elastic ejector pin 31, and the support member 22 is provided with a thimble groove 32 matching the elastic ejector pin 31, and FIG. 7 shows that the support member 22 is provided with a convex portion 33.
  • the side wall of the second recess 12 is provided with a latching groove 34 matching the convex portion 33, which will be described in detail in this embodiment.
  • the elastic thimble 31 is held in the ejector groove 32, and the convex portion 33 is caught in the engaging groove 34 to bring the hand end 20 and the main end 10 into an assembled state.
  • the hand end 20 is disposed with one end of the ejector pin 32 moving toward the side wall of the first groove 11 and being pressed tightly, and the elastic thimble 31 is held in the ejector pin 32, and the elastic thimble 31 is in a state of being compressed by the hand end 20; Then, the other end of the hand-held end 20 provided with the convex portion 33 is moved toward the side wall of the second groove 12 and is in close contact with each other, and the convex portion 33 and the engaging groove 34 are fitted to each other, so that the hand-held end 20 is assembled to the host end 10 the process of.
  • the elastic thimble 31 in the compressed state performs an appropriate amount of rebound or further compression according to the specific cooperation of the convex portion 33 and the engaging groove 34, thereby eliminating the convex portion 33 and The fitting tolerance of the snap groove 34.
  • the elastic ejector pin 31 may include a sealing case 311 and a resilient member 312.
  • the sealing case 311 is connected to the side wall of the first groove 11 or the support member 22.
  • the sealing case 311 and the first groove The side walls of the 11 are connected.
  • the sealing case 311 seals the elastic member 312 between the sealing case 311 and the side wall of the first recess 11, and the elastic member 312 elastically protrudes from the sealing case 311 to be inserted into the ejector groove 32.
  • the manner in which the sealing shell 311 is connected to the side wall of the first recess 11 may be a snap connection, a screw connection, or the like.
  • the sealing shell 311 is connected to the side wall of the first recess 11 in a threaded manner.
  • the resilient member 312 includes a spring 313 and a telescoping head 314 coupled to the spring 313 that holds the telescoping head 314 such that the telescoping head 314 can extend and be inserted into the ejector slot 32.
  • the protrusion 33 may include a top wall 331 and a mating wall 332 connected to the side wall of the support 22 or the second recess 12 .
  • the mating wall 332 is connected to the support member 22, and the mating wall 332 is disposed around the top wall 331.
  • the top wall 331 and the mating wall 332 are disposed on the support member 22 to form a convex portion 33.
  • the angle between the matching wall 332 and the top wall 331 is an acute angle, that is, the convex portion 33 gradually contracts from the top wall 331 to the support member 22 to form an engaging space, and the engaging groove 34 and the convex portion 33 are mutually Cooperating and further holding in the engaging space, thereby increasing the mating strength of the convex portion 33 and the engaging groove 34.
  • the angle between the matching wall 332 and the top wall 331 can also be any angle.
  • the fixing mechanism 30 further includes an elastic sleeve 35.
  • the elastic sleeve 35 can be received in the engaging groove 34, and the elastic sleeve 35 can also be sleeved on the convex sleeve.
  • the elastic sleeve 35 is elastically contracted on the convex portion 33 by its own elasticity.
  • the elastic sleeve 35 is disposed between the convex portion 33 and the engaging groove 34.
  • the elastic sleeve 35 is compressed between the two, so that two advantages are provided: the convex portion 33 and the card
  • the connecting slots 34 can be fixed to each other by an interference fit; the elastic sleeve 35 can prevent the hand-held end 20 from directly contacting the main end 10 when the convex portion 33 and the engaging groove 34 are mated with each other, and the focus of the present invention is on the handheld end.
  • the elastic sleeve 35 can effectively ensure that the handheld end 20 and the host end 10 are The process of mating and separating is not damaged, and the service life of the hand-held end 20 and the host end 10 is improved. In addition, if the elastic sleeve 35 is damaged, it can be easily disassembled and replaced, and the product use period is greatly improved.
  • the elastic sleeve 35 may be made of a soft material such as silica gel or foam.
  • the handheld terminal 20 may not be provided with the camera module 14
  • the host terminal 10 may be provided with the camera module 14 .
  • the camera module 14 on the host terminal 10 is activated by the interaction between the third communication module and the second communication module, or through the handheld terminal 20 and the host.
  • the physical electrical connection between the terminals 10 activates the camera module 14 on the host terminal 10, and the handheld terminal 20 retrieves the camera module 14 on the host terminal 10 to perform tasks such as photographing or photographing.
  • the components of the host terminal 10 are shared with the handheld terminal 20, and the internal accommodation space of the handheld terminal 20 is saved, so that the handheld terminal 20 is more light and thin.
  • Both the host terminal 10 and the handheld terminal 20 may also be provided with a camera module 14 for taking photographs or photographing.
  • the host terminal 10 and the handheld terminal 20 can both set buttons, and the button command of the handheld terminal 20 can control the handheld terminal 20.
  • the button command of the host terminal 10 can control the host terminal 10.
  • the handheld terminal 20 can be configured without a button.
  • the terminal 10 sets a button, and the button command of the host terminal 10 can control the host terminal 10 and the handheld terminal 20.
  • the host end 10 can charge the handheld terminal 20 when the handheld terminal 20 and the host end 10 are in an assembled state.
  • the host end 10 and the handheld end 20 may be provided with mating contact terminals.
  • the first battery and the second battery are electrically connected to each other through the contact terminals of the fixing mechanism 30.
  • the first battery and the second battery are electrically connected by the cooperation between the convex portion 33 and the engaging groove 34.
  • the first battery and the second battery are electrically connected by a cooperation between the elastic ejector pin 31 and the ejector pin 32.
  • a space for charging the second battery of the handheld terminal 20 can be designed at the host end 10, and a second battery of two handheld terminals 20 can be provided daily, one for mounting on the handheld terminal 20 and the other for the host.
  • the terminal 10 is charged and rotated for use, thereby achieving charging of the physical connection form of the host terminal 10 to the handheld terminal 20.
  • the host terminal 10 can also be a wireless charging form for the handheld terminal 20.
  • the host terminal 10 is provided with a wireless charging transmitting device, and the corresponding handheld terminal 20 is provided with a wireless charging receiving device, and the handheld terminal 20 and the host terminal 10 are provided.
  • the wireless charging of the handheld terminal 20 by the host terminal 10 is implemented.
  • the wireless charging mode between the host terminal 10 and the handheld terminal 20 may also be by using WIFI charging or the like.
  • the charging process of the host terminal 10 can be charged by connecting the socket through the charging cable.
  • FIG. 8 is a schematic perspective structural view of another embodiment of the mobile terminal of the present invention in an assembled state.
  • the handheld terminal 20 may be provided with an electroacoustic device 24, which may be a microphone (the microphone may be divided into a main microphone and a sub-microphone), a speaker, an earpiece, and the like for receiving or transmitting a sound signal, and the electro-acoustic device 24 Responsible for the input and output of the sound signal of the handheld terminal 20, the first sound hole 25 is disposed on the hand-held end 20, the position of the first sound hole 25 is matched with the electro-acoustic device 24, and the first sound hole 25 is used for the electro-acoustic device. 24 outputs a sound signal to the outside world or picks up a sound signal from the outside.
  • an electroacoustic device 24 which may be a microphone (the microphone may be divided into a main microphone and a sub-microphone), a speaker, an earpiece, and the like for receiving or transmitting a sound signal, and the electro-acoustic device 24 Responsible for the input and output of the sound signal of the handheld terminal 20, the first sound hole 25 is
  • the first sound hole 25 can be placed anywhere on the hand-held end 20 that matches the position of the electroacoustic device 24. However, considering that the handheld terminal 20 and the host terminal 10 are in an assembled state, the handheld terminal 20 is blocked by the host terminal 10, thereby affecting the normal sounding or incoming sound of the first sound hole 25, and the handheld terminal 20 is shared at the host terminal 10. In the case of an electroacoustic device 24, the solution for both cases will be described in detail below.
  • a sound channel matching the first sound hole 25 may be reserved between the support member 22 (see FIG. 2) and the side wall of the first recess 11, and the distance of the sound passage includes 0.4 mm to 2 mm, for example, 0.4 mm. , 0.6mm, 0.7mm, 1.0mm, 1.5mm or 1.0mm.
  • the first sound hole 25 ensures that the electroacoustic device 24 normally sounds or enters the sound when the hand end 20 and the host end 10 are in the assembled state through the sound channel, so that the host end 10 and the host end 10 can share the handheld end when the hand end 20 and the host end 10 are in the assembled state. 20 electroacoustic device 24.
  • a second sound hole 15 matching the position of the first sound hole 25 may be disposed on the host end 10, the second sound hole 15 is disposed on the sidewall of the first groove 11, and the host end 10 is provided with the third hole.
  • the sound hole 16, the third sound hole 16 and the second sound hole 15 are penetrated from the inside of the main body end 10.
  • the second sound hole 15 and the third sound hole 16 are transmitted or transmitted, thereby ensuring that the electroacoustic device 24 can also normally sound or feed when the handheld end 20 and the host end 10 are in an assembled state, and thus the handheld terminal 20 and the host end.
  • the host end 10 can share the electroacoustic device 24 of the handheld terminal 20 in the assembled state.
  • FIG. 9 is a schematic perspective structural view of another embodiment of the mobile terminal of the present invention in a separated state.
  • the mobile terminal in this embodiment includes a host end 10 and a plurality of handheld terminals 20, and the plurality of handheld terminals 20 can be simultaneously connected to one host end 10, with respect to the handheld terminal 20 and the host end 10
  • the mobile terminal in this embodiment is characterized in that the number of the host terminals 10 can be saved, one unit (home or company, etc.) can be provided with one host terminal 10, and a plurality of handheld terminals 20 are provided, and the functions of the host terminal 10 are fully utilized.
  • the host 10 is equivalent to a powerful data processing center, and can process data sent by multiple handheld terminals 20 at the same time.
  • FIG. 10 is a schematic structural diagram of a mobile terminal according to another embodiment
  • FIG. 11 is another schematic structural diagram of a mobile terminal according to an embodiment of the present invention.
  • the mobile terminal 100 includes a first terminal 110 and a second terminal 120.
  • the first terminal 110 can serve as a host side of the mobile terminal 100, and the first terminal 110 can be used alone.
  • the second terminal 120 can be used as the handheld terminal or the slave terminal or the slave terminal of the mobile terminal 100.
  • the second terminal 120 can be used separately.
  • the first terminal 110 and the second terminal 120 can be detachably and fixedly connected.
  • the first terminal 110 and the second terminal The terminal 120 can cooperate to form the mobile terminal 100 for use.
  • FIG. 12 is a schematic structural diagram of a first terminal according to an embodiment of the present invention.
  • the first terminal 110 can include a camera module 114, a first communication module 115, and a first battery 116.
  • the camera module 114 may include a camera, an ambient light sensor, an infrared sensor, a flash, and the like.
  • the camera module 114 can be directly disposed on the main board of the first terminal 110 or electrically connected to the main board of the first terminal 110 through a signal line.
  • the first communication module 115 may include a first short-range communication circuit and/or a first wired communication circuit.
  • the first short-range communication circuit may include Bluetooth or WIFI.
  • the first communication module 115 can be directly integrated on the main board of the first terminal 110 or can be electrically connected to the main board of the first terminal 110 through a signal line.
  • the first battery 116 is connected to the camera module 114 and the first communication module 115 respectively, and the first battery 116 can supply power to the first terminal 110.
  • the first terminal 110 is not limited to the above components.
  • FIG. 13 is a block diagram of a motherboard of a first terminal according to an embodiment of the present invention.
  • the main board 10 of the first terminal 110 may include a storage and processing circuit 11.
  • the storage and processing circuitry 11 may include a memory, such as a hard drive memory, a non-volatile memory (such as a flash memory or other electronically programmable read-only memory used to form a solid state drive, etc.), a volatile memory (eg, static or dynamic random)
  • the access memory, etc., etc. are not limited in the embodiment of the present invention.
  • the processing circuitry in the storage and processing circuitry 11 can be used to control the operation of the first terminal 110.
  • the processing circuit can be implemented based on one or more microprocessors, microcontrollers, digital signal processors, baseband processors, power management units, audio codec chips, application specific integrated circuits, display driver integrated circuits, and the like.
  • the storage and processing circuit 11 can be used to run software in the first terminal 110, such as an Internet browsing application, a Voice over Internet Protocol (VOIP) telephone call application, an email application, a media playback application, an operating system.
  • VOIP Voice over Internet Protocol
  • These software can be used to perform some control operations, such as camera-based image acquisition, ambient light sensor based ambient light measurements, proximity sensor based proximity sensor measurements, information based on status indicators such as status indicators of light emitting diodes.
  • Display functions touch sensor based touch event detection, functions associated with displaying information on multiple (eg, layered) displays, operations associated with performing wireless communication functions, operations associated with collecting and generating audio signals
  • the control operation associated with collecting and processing the button press event data, and other functions in the first terminal 110, etc., are not limited in the embodiment of the present invention.
  • the first terminal 110 may also include an input-output circuit 12.
  • the input-output circuit 12 can be used to cause the first terminal 110 to implement input and output of data, that is, to allow the first terminal 110 to receive data from an external device and also to allow the first terminal 110 to output data from the first terminal 110 to the external device.
  • the input-output circuit 12 may further include a sensor 13.
  • the sensor 13 may include an ambient light sensor, a light and capacitance based proximity sensor, a touch sensor (eg, based on a light touch sensor and/or a capacitive touch sensor, wherein the touch sensor may be part of a touch display screen, or may serve as a
  • the touch sensor structure is used independently, acceleration sensors, and other sensors.
  • the input-output circuit 12 may also include one or more displays, such as display 14, which may include one or more of a liquid crystal display, an organic light emitting diode display, an electronic ink display, a plasma display, a display using other display technologies, combination.
  • Display 14 can include a touch sensor array (ie, display 14 can be a touch display).
  • the touch sensor may be a capacitive touch sensor formed by an array of transparent touch sensor electrodes (eg, indium tin oxide (ITO) electrodes), or may be a touch sensor formed using other touch technologies, such as acoustic touch, pressure sensitive touch, and resistance. Touch, optical touch, etc., are not limited in the embodiment of the present invention.
  • the first terminal 110 may also include an audio component 15.
  • the audio component 15 can be used to provide audio input and output functionality to the first terminal 110.
  • the audio component 15 in the first terminal 110 can include a speaker, a microphone, a buzzer, a tone generator, and other components for generating and detecting sound.
  • the first terminal 110 may also include a communication circuit 16.
  • Communication circuitry 16 may be used to provide first terminal 110 with the ability to communicate with external devices.
  • Communication circuitry 16 may include analog and digital input-output interface circuitry, and wireless communication circuitry based on radio frequency signals and/or optical signals.
  • the wireless communication circuitry in communication circuitry 16 may include radio frequency transceiver circuitry, power amplifier circuitry, low noise amplifiers, switches, filters, and antennas.
  • the wireless communication circuitry in communication circuitry 16 may include circuitry for supporting Near Field Communication (NFC) by transmitting and receiving near field coupled electromagnetic signals.
  • NFC Near Field Communication
  • communication circuitry 16 may include a near field communication antenna and a near field communication transceiver.
  • Communication circuitry 16 may also include a cellular telephone transceiver, a wireless local area network transceiver circuit, a Bluetooth transceiver circuit, and the like. It should be noted that the communication circuit 16 includes a first communication module 115.
  • the first terminal 110 may further include a power management circuit and other input-output units 17.
  • the input-output unit 17 may include buttons, joysticks, click wheels, scroll wheels, touch pads, keypads, keyboards, cameras, light-emitting diodes, and other status indicators. The user can control the operation of the mobile terminal 10 by inputting a command through the input-output circuit 17, and can use the output data of the input-output circuit 17 to effect reception of status information and other outputs from the first terminal 110.
  • FIG. 14 is a schematic structural diagram of a second terminal according to an embodiment of the present invention.
  • the second terminal 120 can include a display screen 127, a second communication module 125, and a second battery 126.
  • the display screen 127 can cover the entire surface of the second terminal 120.
  • the main body of the second terminal 120 can be a flexible display made of a flexible material, which can be bent and folded.
  • the second terminal 120 is detachably disposed on the first terminal 110, and the second terminal 120 can be covered to different parts of the first terminal 110 by bending.
  • the second communication module 125 can be integrated on the display screen 127 or connected to the display screen 127 and disposed under the display screen 127.
  • the second communication module 125 can include a second short range communication circuit, such as a second short range communication circuit that can include Bluetooth or WIFI. It should be noted that the second communication module 125 is not limited to the second short-range communication circuit, and the second communication module 125 may also include the second wired communication circuit.
  • the second communication module 125 can implement a signal connection with the first communication module 115.
  • the first communication module 115 and the second communication module 125 can be physically connected through the first wired communication circuit and the second wired communication circuit to implement communication.
  • the first communication module 115 and the second communication module 125 may also implement a wireless connection through the first short-range communication circuit and the second short-range communication circuit to implement communication.
  • the second battery 126 is connected to the display screen 127, and the second battery 126 can be disposed under the display screen 127.
  • the display screen 127 can be displayed on the second terminal 110 in full screen
  • the second terminal 120 is on the display screen 127.
  • the display surface can be displayed in full screen.
  • the second battery 126 is electrically connected to the second communication module 125 and the display screen 127, respectively, and the second battery 126 can supply power to the second terminal 120.
  • the device of the second terminal 120 is not limited to the above content, and the second terminal 120 may further include other components.
  • first terminal 110 and the second terminal 120 of the mobile terminal 100 can be separated from each other.
  • first terminal 110 and the second terminal 120 are separated from each other, the first terminal 110 can be used separately, and the second terminal is used.
  • the 120 can be used alone, and the first terminal 110 and the second terminal 120 can be used together in a wireless communication manner.
  • a physical connection can be implemented to implement wired communication, and the mobile terminal 100 formed by the first terminal 110 and the second terminal 120 can be used in common.
  • the second terminal 120 may cover the two opposite faces of the first terminal 110 in a bent manner.
  • 15 is a schematic structural diagram of a first terminal and a second terminal in a mobile terminal according to an embodiment of the present disclosure
  • FIG. 16 is a first terminal in a mobile terminal according to an embodiment of the present invention. Another structural schematic diagram separated from the second terminal.
  • the first terminal 110 includes a first surface 1101, a second surface 1102, and a first side 1103.
  • the first surface 1101 and the second surface 1102 are oppositely disposed, and the first surface 1101 and the second surface 1102 are respectively located on the front and back surfaces of the first terminal 110.
  • the first side 1101 and the second side 1102 may be connected by a first side 1103, and the first side 1103 is connected between the first side 1101 and the second side 1102. It should be noted that other sides may be connected between the first surface 1101 and the second surface 1102.
  • the second terminal 120 includes a first portion 121, a second portion 122, and a connecting portion 123.
  • the first portion 121, the connecting portion 123, and the second portion 122 are sequentially connected, and the connecting portion 123 is connected to the first portion 121 and the second portion.
  • the first portion 121, the connecting portion 123 and the second portion 122 may be made of a flexible material, and may form a full-screen display screen 127.
  • the display screen 127 is distributed on the first portion 121, the connecting portion 123 and the second portion.
  • the first portion 121, the connecting portion 123, and the second portion 122 can be bent and folded, and the first portion 121, the connecting portion 123, and the second portion 122 together realize the display function of the display screen 127.
  • connection relationship between the components of the second terminal 120 is not limited thereto.
  • FIG. 17 is another schematic structural diagram of the second terminal according to the embodiment of the present invention.
  • the first portion 121 and the second portion 122 of the second terminal 120 may be connected by a connecting portion 123.
  • the connecting portion 123 may be made of a flexible material, and the connecting portion 123 may be bent and folded, and the first portion 121 and the second portion 122 are It is possible to move relative to the connecting portion 123, which is said to be bent and folded.
  • the display screen 127 of the second terminal 120 includes a first display screen 1271 and a second display screen 1272.
  • the first display screen 1271 is formed on the first portion 121
  • the second display screen 1272 is formed on the second portion 122, thereby being first.
  • the display screen 1271 and the second display screen 1272 can be moved relative to the connection portion 123.
  • the first portion 121 is disposed on the first side 1101, the second portion 122 is disposed on the second side 1102, and the connecting portion 123 is disposed on the first side 1103. It should be noted that the first portion 121 may directly cover the outer surface of the first surface 1101, and the second portion 122 may directly cover the outer surface of the second surface 1102. The connecting portion 123 may also directly cover the first surface. On the outer surface of the side 1103.
  • the first terminal 110 includes a receiving slot, and the second terminal 120 is received in the receiving slot of the first terminal 110.
  • the first terminal 110 is provided with a first receiving groove 111 on the first surface 1101 , and the first receiving groove 111 can accommodate the first portion 121 , that is, the first portion 121 can be received in the first receiving groove 111 .
  • the first receiving groove 111 may be adapted to the shape and size of the first portion 121, and the depth of the first receiving groove 111 may be the same as the thickness of the first portion 121.
  • the first terminal 110 is provided with a second receiving groove 112 on the second surface 1102 , and the second receiving groove 112 can accommodate the second portion 122 , that is, the second portion 122 can be received in the second receiving groove 112 .
  • the second receiving groove 112 can be adapted to the shape and size of the second portion 122, and the second receiving groove 112 can have the same depth as the second portion 122.
  • the first terminal 110 is provided with a third receiving slot 113 at the first side 1103.
  • the third housing groove 113 can accommodate the connecting portion 123 , that is, the connecting portion 123 can be housed in the third housing groove 113 .
  • the third receiving groove may be adapted to the shape and size of the connecting portion 123, and the depth of the third receiving groove 113 may be the same as the thickness of the connecting portion 123.
  • the second terminal 120 can be accommodated by the first storage groove 111, the second storage groove 112, and the third storage groove 113, and the second terminal 120 can be restricted and protected.
  • first portion 121 only in the first storage slot 111 in the first terminal 110. It is also possible to open the second storage portion 112 on the first terminal 110.
  • the first terminal is also possible. It is also possible to accommodate the connection portion 123 only in the third storage groove 113. It is also possible to accommodate the first storage portion 111 and the second storage portion 112 in the first terminal 110, respectively. It is also possible to accommodate only the first storage slot 111 and the third storage slot 113 in the first terminal 110 to accommodate the first portion 121 and the connection portion 123. Only the second storage slot 112 and the third storage slot 113 are opened in the first terminal 110. It is also possible to accommodate the second portion 122 and the connecting portion 123, respectively.
  • the first terminal 110 defines a first receiving slot 111 on the first surface 1101, and the first terminal 110 can form a first sidewall 1111, a second sidewall 1112, and a third side on the first surface 1101.
  • the wall 1113, the first side wall 1111, the second side wall 1112 and the third side wall 1113 surround the first receiving groove 111.
  • the first sidewall 1111 is connected between the second sidewall 1112 and the third sidewall 1113, and the second sidewall 1112 and the third sidewall 1113 are oppositely disposed.
  • the first portion 121 is disposed on the first surface 1101, the first sidewall 1111, the second sidewall 1112, and the third sidewall 1113 both limit and protect the first portion 121.
  • the camera module 114 is disposed on the first surface 1101, and the camera module 114 is adjacent to the first sidewall 1111, and the camera module 114 is disposed at the position of the first sidewall 1111.
  • the first terminal 110 defines a second receiving slot 112 on the second surface 1102.
  • the first terminal 110 can form a fourth sidewall 1121, a fifth sidewall 1122, and a sixth side on the second surface 1102.
  • the wall 1123, the fourth side wall 1121, the fifth side wall 1122, and the sixth side wall 1123 surround the second receiving groove 112.
  • the fourth sidewall 1121 is connected between the fifth sidewall 1122 and the sixth sidewall 1123, and the fifth sidewall 1122 and the sixth sidewall 1123 are oppositely disposed.
  • the fourth sidewall 1121, the fifth sidewall 1122, and the sixth sidewall 1123 both limit and protect the second portion 122.
  • the first terminal 110 defines a third receiving slot 113 on the first side 1103, and the first terminal 110 can form a seventh sidewall 1131 and an eighth sidewall 1132 on the first side 1103.
  • the seven side walls 1131 and the eighth side wall 1132 are oppositely disposed.
  • the seventh side wall 1131 and the eighth side wall 1132 are located at two sides of the third receiving groove 113, and the connecting portion 123 is disposed at the seventh side wall 1131 and the eighth side wall 1132.
  • the seventh side wall 1131 and the eighth side wall 1132 both limit and protect the second portion 122.
  • the first receiving groove 111 , the second receiving groove 112 , and the third receiving groove 113 may communicate with each other to collectively receive the second terminal 120 .
  • the seventh sidewall 1131 can be connected between the second sidewall 1112 and the fifth sidewall 1122.
  • the second sidewall 1112, the seventh sidewall 1131, and the fifth sidewall 1122 can be in the same plane.
  • the eighth side wall 1132 can be connected between the third side wall 113 and the sixth side wall 1123.
  • the third side wall 113, the eighth side wall 1132 and the sixth side wall 1123 can be in the same plane.
  • the structure in which the first terminal 110 accommodates the slot is not limited thereto.
  • FIG. 18 is another schematic structural diagram of a mobile terminal according to an embodiment of the present invention
  • FIG. 19 is another schematic structural diagram of separating a first terminal and a second terminal in a mobile terminal according to an embodiment of the present invention
  • FIG. 20 is another schematic structural diagram of separating a first terminal and a second terminal in a mobile terminal according to an embodiment of the present invention.
  • the first terminal 110 defines a first receiving slot 111 on the first surface 1101, and the first terminal 110 can form a second sidewall 1112 and a third sidewall 1113 on the first surface 1101, and the second side
  • the wall 1112 and the third side wall 1113 are opposite to each other, and the second side wall 1112 and the third side wall 1113 are located on both sides of the first receiving groove 111.
  • the first portion 121 is disposed on the first surface 1101, the first portion 121 is located between the second sidewall 1112 and the third sidewall 1113, and the second sidewall 1112 and the third sidewall 1113 are opposite to the first portion 121. Play a limit and protect the role.
  • the first portion 121 is disposed to the edge position of the first receiving groove 111, and the display area can be increased. That is, the first terminal 110 removes the first sidewall 1111 such that the first receiving groove 111 forms a through-groove structure.
  • the camera module 114 is adjacent to the second sidewall 1112.
  • the first terminal 110 defines a second receiving slot 112 on the second surface 1102.
  • the first terminal 110 can form a fifth sidewall 1122 and a sixth sidewall 1123 on the second surface 1102.
  • the wall 1122 and the sixth side wall 1123 are oppositely disposed, and the fifth side wall 1122 and the sixth side wall 1123 are located on both sides of the second receiving groove 112.
  • the second portion 122 is disposed on the second surface 1102
  • the second portion 122 is located between the fifth side wall 1122 and the sixth side wall 1123, and the fifth side wall 1122 and the sixth side wall 1123 are opposite to the second portion 122. Play a limit and protect the role.
  • the second portion 122 is disposed to the edge position of the second receiving groove 112, and the display area can be increased. That is, the first terminal 110 removes the fourth sidewall 1121 so that the second receiving groove 112 forms a through-groove structure.
  • the first receiving groove 111 , the second receiving groove 112 , and the third receiving groove 113 may communicate with each other to collectively receive the second terminal 120 .
  • the seventh sidewall 1131 can be connected between the second sidewall 1112 and the fifth sidewall 1122.
  • the second sidewall 1112, the seventh sidewall 1131, and the fifth sidewall 1122 can be in the same plane.
  • the eighth side wall 1132 can be connected between the third side wall 113 and the sixth side wall 1123.
  • the third side wall 113, the eighth side wall 1132 and the sixth side wall 1123 can be in the same plane.
  • FIG. 21 is another schematic structural diagram of a first terminal and a second terminal in a mobile terminal according to an embodiment of the present disclosure
  • FIG. 22 is a first terminal in a mobile terminal according to an embodiment of the present invention. Another structural schematic of the second terminal separation.
  • the first terminal 110 defines a first receiving slot 111 on the first surface 1101, and the first terminal 110 can form a first sidewall 1111 and a second sidewall 1112 on the first surface 1101, the first side
  • the first wall portion 1111 and the second side wall 1112 both limit and protect the first portion 121 when the first portion 121 is disposed on the first surface 1101. That is, the first terminal 110 removes the formation of the third sidewall 1113.
  • the first terminal 110 may also form the first sidewall 1111 and the third sidewall 1113 connected to each other at the position of the first receiving groove 111 without the second sidewall 1112.
  • the first terminal 110 defines a second receiving slot 112 on the second surface 1102.
  • the first terminal 110 can form a fourth sidewall 1121 and a fifth sidewall 1122 on the second surface 1102.
  • the fourth side The wall 1121 and the fifth side wall 1122 are connected.
  • the fourth side wall 1121 and the fifth side wall 1122 both limit and protect the second portion 122. That is, the first terminal 110 removes the formation of the sixth sidewall 1123.
  • the first terminal 110 may also form the fourth sidewall 1121 and the sixth sidewall 1123 connected to each other at the position of the second receiving groove 112 without the fifth sidewall 1112.
  • the first terminal 110 defines a third receiving slot 113 on the first side 1103, and the first terminal 110 can form a seventh sidewall 1131 on the first side 1103.
  • the seventh side wall 1131 has a limit and protection function for the connecting portion 123. That is, the first terminal 110 removes the eighth sidewall 1132. It should be noted that the first terminal 110 may also remove the seventh sidewall 1131 to form the eighth sidewall 1131.
  • the first storage groove 111 , the second storage groove 112 , and the third storage groove 113 may communicate with each other to collectively accommodate the second terminal 120 .
  • the seventh sidewall 1131 may be connected between the second sidewall 1112 and the fifth sidewall 1122, and the second sidewall 1112, the seventh sidewall 1131, and the fifth sidewall 1122 may be in the same plane.
  • FIG. 23 is another schematic structural diagram of a first terminal and a second terminal in a mobile terminal according to an embodiment of the present disclosure
  • FIG. 24 is a first terminal in a mobile terminal according to an embodiment of the present invention. Another structural schematic of the second terminal separation.
  • the first terminal 110 defines a first receiving slot 111 on the first surface 1101, and the first terminal 110 can form a second sidewall 1112 on the first surface 1101, and the second sidewall 1112 and the first side The side 1103 is connected.
  • the first portion 121 is disposed on the first surface 1101, the second side wall 1112 limits and protects the first portion 121, and the first portion 121 is disposed to the edge of the first receiving slot 111. position. That is, the first terminal 110 is formed by removing the first sidewall 1111 and the third sidewall 1113. It should be noted that the first terminal 110 may also form the third sidewall 1113 at the position of the first receiving groove 111 without the first sidewall 1111 and the second sidewall 1112.
  • the first terminal 110 defines a second receiving slot 112 on the second surface 1102.
  • the first terminal 110 can form a fifth sidewall 1122 on the second surface 1102.
  • the fifth sidewall 1122 and the first side The side 1103 is connected.
  • the fifth sidewall 1122 limits and protects the second portion 122, and the second portion 122 is disposed to the edge of the second receiving slot 112. position. That is, the first terminal 110 is formed by removing the fourth sidewall 1121 and the sixth sidewall 1123. It should be noted that the first terminal 110 may also form the sixth sidewall 1123 at the position of the second receiving groove 112 without the fourth sidewall 1121 and the fifth sidewall 1112.
  • FIG. 25 is another schematic structural diagram of a first terminal and a second terminal in a mobile terminal according to an embodiment of the present disclosure
  • FIG. 26 is a first terminal in a mobile terminal according to an embodiment of the present invention. Another structural schematic of the second terminal separation.
  • the first terminal 110 defines a first receiving slot 111 on the first surface 1101, and the first terminal 110 can form a first sidewall 1111 on the first surface 1101, and the second sidewall 1111 and the first side
  • the first side wall 1111 limits and protects the first portion 121, and the first portion 121 is disposed to the first receiving groove 111.
  • the first terminal 110 defines a second receiving slot 112 on the second surface 1102.
  • the first terminal 110 can form a fourth sidewall 1121 on the second surface 1102.
  • the side 1103 is oppositely disposed.
  • the fourth sidewall 1121 limits and protects the second portion 122, and the second portion 122 is disposed to the second receiving slot 112. Edge position. That is, the first terminal 110 is formed by removing the fourth sidewall 1121 and the sixth sidewall 1123.
  • the first receiving groove 113 does not have side walls on both sides, and the connecting portion 123 is directly disposed to the edge position of the third receiving groove 113, or the connecting portion 123 is directly disposed to the edge position of the first side edge 1103.
  • the shape of the first receiving groove 111 and the shape of the second receiving groove 112 may be the same.
  • the size of the first receiving groove 111 and the size of the second receiving groove 112 may be equal.
  • the first terminal 110 is provided with different storage slots to accommodate the second terminal 120.
  • the structure of the receiving groove of the embodiment of the present invention is not limited to the above, for example, the first receiving groove 111, the second receiving groove 112 and the third receiving groove 113 may form different side walls to form a shape.
  • the accommodating groove structure of different sizes is such that the first portion 121 and the second portion 122 have different structures, so that the second terminal 120 can have a profiled screen structure.
  • the first terminal 110 and the second terminal 120 are detachably fixed to each other, and may include a snap-fit fixed connection, a fastener fastening connection, and the like.
  • FIG. 27 and FIG. 28 are another schematic structural diagram of a first terminal according to an embodiment of the present invention
  • FIG. 28 is another schematic structural diagram of a second terminal according to an embodiment of the present invention.
  • the first terminal 110 is provided with a plurality of buckles 118.
  • the second terminal 120 is provided with a plurality of card slots 128.
  • the plurality of buckles 118 are received in the plurality of card slots 128, and the number of the buckles 118 and the card slots 128 are The same, that is, a buckle 118 is housed in a card slot 128. It should be noted that the manner in which the first terminal 110 and the second terminal 120 are detachably and fixedly connected to each other is not limited thereto.
  • the storage slot is opened in the first terminal 110 to receive the second terminal 120. It should be noted that the embodiment of the present invention directly covers the second terminal 120 to the first terminal 110.
  • FIG. 29 is another schematic structural diagram of a mobile terminal according to an embodiment of the present invention.
  • the first portion 121 of the second terminal 120 is disposed on the first surface 1101.
  • the size of the first portion 121 is equal to the size of the first surface 1101, and the first portion 121 covers the first surface 1101.
  • FIG. 30 is a schematic diagram of another structure in which a first terminal and a second terminal are separated in a mobile terminal according to an embodiment of the present invention.
  • a camera component 140 may be disposed on the first terminal 110, and the camera component 140 may be disposed in the first Inside the terminal 110, the camera assembly 140 is located on the first side 1101.
  • the first portion 121 of the second terminal 120 can be disposed with the first transparent area 1291.
  • the first transparent area 1291 corresponds to the position of the camera module 140, and the camera module 140 can be transmitted outward through the first transparent area 1291. signal.
  • FIG. 31 is another schematic structural diagram of a first terminal and a second terminal in a mobile terminal according to an embodiment of the present invention.
  • the camera assembly 140 can also face the external direction of the mobile terminal 10 along the outer surface of the first surface 1101.
  • the extension is formed and protrudes outside the first face 1101.
  • the first portion 121 of the second terminal 120 may be provided with a first receiving space, and the first receiving space may be a first through hole 1292 that penetrates the first portion 121 of the first portion 121 in the thickness direction of the first portion 121.
  • the first storage space may include a first notch, and the first notch may be disposed at a periphery of the first portion 121 , and the first notch may penetrate the first portion 121 in a thickness direction of the first portion 121 .
  • the second portion 122 is disposed on the second face 1102, the second portion 122 has a size equal to the second face 1102, and the second portion 122 covers the second face 1102.
  • the connecting portion 123 is disposed on the first side 1103, the size of the connecting portion 123 is equal to the size of the first side 1103, and the connecting portion 123 covers the first side 1103.
  • the mobile terminal 10 is a smartphone.
  • the mobile terminal 10 includes a host side 100 and a slave side 200 that are detachably usable.
  • the slave 200 includes a flexible screen 210, a first communication module, and a first power module.
  • the first power module can be electrically connected to the flexible screen 210 and the first communication module, respectively, and the first power module can be the flexible screen 210 and the first communication.
  • the module is powered.
  • the flexible screen 210 is generally rectangular in shape and has a bendable display characteristic.
  • the flexible screen 210 includes a first display portion 211 , a third display portion 215 , and a second display portion 213 that connects the first display portion 211 and the third display portion 215 and is located between the first display portion 211 and the third display portion 215 .
  • the host end 100 has a first surface 121, a second surface 123, and a side peripheral surface 124 connecting the first surface 121 and the second surface 123.
  • the first surface 121 and the second surface 123 are disposed opposite each other.
  • the host end 100 further has a second communication module, a third communication module, and a second power module, and the second power module is capable of being electrically connected to the second communication module and the third communication module, respectively.
  • the third communication module is for communicating with an external device such as a base station or other mobile terminal.
  • the mobile terminal 10 has a combined state and a split state. Referring to FIG. 32 to FIG. 34, in the combined state, the slave end 200 can be mounted on the host end 100, and the first display portion 211 is attached to the first surface 121, and the third display portion 215 is attached to the second surface 123. .
  • the second communication module in the split state, can be communicatively coupled to the first communication module, and the slave terminal 200 can operate independently and provide a display function for normal use by the user.
  • the first power module includes a nuclear battery, and the nuclear battery can be electrically connected to the first communication module and the flexible screen 210, respectively.
  • the nuclear battery can be a neon battery, which is small in size, relatively thin and thin, and has a long service life, and can provide electric energy for the flexible screen 210 and other electronic components in the slave end 200 for a long time, thereby facilitating the slave end 200.
  • the first power module may also include a lithium battery or the like, and the first power module may perform repeated charging and discharging to supply power to the flexible screen 210 and other electronic components in the slave 200.
  • the second power module may be a battery having repeated charge and discharge performance, such as a lithium battery, etc., and the second power module may have a larger volume, so that the host end 100 has a strong endurance.
  • the first communication module and the second communication module are used for communication connection between the slave terminal 200 and the host terminal 100 to implement data transmission between the host terminal 100 and the slave terminal 200.
  • the first communication module and the second communication module both adopt a close communication technology, and the first communication module and the second communication module adopt the same communication protocol.
  • the first communication module and the second communication module may both be Bluetooth communication modules, or all of the wireless local area network (Wi-Fi, Wireless Fidelity) communication modules, or all of the infrared data transmission (lrDA, Infrared Data Association) modules. Or all ZigBee communication modules, or both Ultra WideBand, or NFC (Near Field Communication) modules.
  • the data transmitted from the host end 100 to the slave 200 can be further converted into a touch, display, etc. signal transmitted from the terminal 200 to the host 100 can be stored or otherwise processed.
  • the slave end 200 since the slave end 200 includes the flexible screen 210, the first communication module, and the first power module, the first communication module can be communicably connected with the second communication module of the host terminal 100, and the slave terminal 200 can be slaved from the host end.
  • the 100 is separated, and the slave 200 can receive the signal of the host 100 and provide a display function for the user to use normally, and the host 100 can be placed in a pocket or elsewhere.
  • the slave end 200 can be made extremely thin and light, and the electronic components of the slave end 200 can be less, so that the endurance capability of the slave end 200 can be improved, and a large-sized battery can be set in the host end 100 to raise the host end. 100 battery life.
  • the flexible screen 210 is attached to the oppositely disposed first surface 121 and second surface 123 of the host end 100, and the mobile terminal 10 has the effect of double-sided display.
  • the flexible screen 210 of the slave end 200 can be deployed, and the slave end 200 can be held and used by the user, thereby obtaining a large screen display effect.
  • the mobile terminal 10 can provide high portability, ensure the performance of the mobile terminal 10, and ensure the endurance of the mobile terminal 10.
  • the host end 100 is substantially in the shape of a rectangular block, and the coordinate system is established by the length direction of the host end 100 being the x-axis, the width direction being the y-axis, and the thickness direction being the z-axis.
  • the surface 121 and the second surface 123 are respectively located at both ends of the main body end 100 in the z-axis direction.
  • the host end 100 can include a camera 150.
  • the camera 150 can be electrically connected to the second power module.
  • the camera 150 has a light incident surface 151, and the light incident surface 151 is located on the first surface 121. The light can pass through the light incident surface 151 and enter the light. On the photosensitive element of the camera 150.
  • the camera 150 is electrically connected to the second power module, and the second power module is capable of supplying power to the camera 150.
  • the host end 100 includes a processor, the processor can be electrically connected to the second power module, the camera 150 can be communicatively coupled to the processor, and the processor can control the operation of the camera 150.
  • the first display portion 211 and the second display portion are disposed opposite to each other in the thickness direction of the host end 100, when the user views the mobile terminal 10 from the side where the first display portion 211 is located.
  • the camera 150 can be communicably connected to the first display portion 211 to use the camera 150 as a front camera; when the user views the mobile terminal 10 from the side where the second display portion is located, the camera 150 can communicate with the second display portion. To use the camera 150 as a rear camera.
  • the above arrangement realizes the multiplexing of the front and the rear of the camera 150, which is beneficial to save the cost of components.
  • the side peripheral surface 124 may include a first side peripheral surface 1241, and a second side peripheral surface 1243 and a third side peripheral surface 1245 that are coupled to the first side peripheral surface 1241.
  • the second side peripheral surface 1243 and the third side peripheral surface 1245 are opposite to each other, and the first surface 121 is recessed toward the side where the second surface 123 is located to form a first recessed area 300.
  • the first recessed area 300 extends through the first side peripheral surface 1241.
  • the second side peripheral surface 1243 and the third side peripheral surface 1245 are opposite to each other, and the first surface 121 is recessed toward the side where the second surface 123 is located to form a first recessed area 300.
  • the first recessed area 300 extends through the first side peripheral surface 1241.
  • the second side peripheral surface 1243 and the third side peripheral surface 1245 are opposite to each other, and the first surface 121 is recessed toward the side where the second surface 123 is located to form a first recessed area 300.
  • the first recessed area 300 extends
  • the second surface 123 is recessed toward a side where the first surface 121 is located to form a second recessed area 400, and the second recessed area 400 extends through the first side peripheral surface 1241, the second side peripheral surface 1243, and the third side peripheral surface 1245.
  • the mobile terminal 10 has the effect of double-sided display.
  • the first display portion 211 is entirely or partially housed in the first recessed region 300
  • the third display portion 215 is entirely or partially housed in the second recessed region 400.
  • the arrangement of the first recessed region 300 and the second recessed region 400 facilitates thinning of the thickness of the entire mobile terminal 10.
  • the second display portion 213 of the flexible screen 210 can also be used for display, and the second display portion 213 can be made unnecessary for display by software and hardware control.
  • the flexible screen 210 of the slave end 200 can be flattened to obtain a large screen display effect.
  • the side peripheral surface 124 includes a first side peripheral surface 1241, and a second side peripheral surface 1243 and a third side peripheral surface 1245 that are coupled to the first side peripheral surface 1241.
  • the second side circumferential surface 1243 and the third side circumferential surface 1245 are opposite to each other.
  • the first surface 121 defines a first mounting groove 500 extending through the first side circumferential surface 1241.
  • the first mounting groove 500 does not penetrate the second side circumferential surface. 1243 and a third side peripheral surface 1245.
  • the second surface 123 is provided with a second mounting groove 600 penetrating the first side circumferential surface 1241.
  • the second mounting groove 600 does not penetrate the second side circumferential surface 1243 and the third side circumferential surface 1245.
  • the first display portion 211 is completely or partially housed in the first mounting slot 500
  • the third display portion 215 is entirely or partially housed in the second mounting slot 600.
  • the above structure facilitates the positioning of the flexible screen 210 on the host end 100, and can protect the flexible screen 210 by using the first mounting slot 500 and the second mounting slot 600 of the host end 100.
  • the slave end 200 further includes a first support member 220 and a second support member 230.
  • the first support member 220 is coupled to the first display portion 211, and the second support member 230 is connected to the third display portion 215.
  • the first support member 220 is entirely or partially received in the first recessed region 300, and when the second display portion is attached to the first display portion When the two surfaces 123 are on, the second support member 230 is wholly or partially housed in the second recessed area 400.
  • the flexible screen 210 may include a display surface 217 and a non-display surface 219.
  • the display surface 217 is a surface that the user can directly view and contact, and the user can view the information displayed by the flexible screen 210 through the display surface 217.
  • the display surface 217 can also provide an interactive interface for the user to facilitate user interaction with the slave 200, such as a touch operation.
  • the first support member 220 and the second support member 230 are connected to the non-display surface 219.
  • the first support member 220 can support and protect the first display portion 211, and the second support member 230 can be opposite to the third display portion 215. Play a supporting and protective role.
  • the flexible screen 210 When the flexible screen 210 is flattened, there is a gap between an end of the first support member 220 adjacent to the second display portion 213 and an end of the second support member 230 adjacent to the second display portion 213, and the gap may be the second display portion 213 Provide deformation space.
  • the first support member 220 may have a hollow structure, and the material of the second support member 230 may be a hollow structure, and the material may be plastic.
  • the first power module may be disposed in the first support 220 or in the second support 230.
  • the slave end 200 may further include an audio output module or the like for outputting sound.
  • the audio output module may be disposed in the first support member 220 or the second support member 230, and details are not described herein.
  • the side of the first display portion 211 facing away from the first surface 121 may be flush with the side of the host end 100 facing away from the second surface 123.
  • the above structure can make the appearance of the mobile terminal 10 in the combined state better overall.
  • the side of the third display portion 215 facing away from the second surface 123 may also be flush with the side of the host end 100 facing away from the first surface 121.
  • the above structure can also make the mobile terminal 10 in the combined state have better appearance integrity.
  • the end surface of the first support member 220 is provided with a socket 221, and a side of the main body end 100 facing the first recessed area 300 is provided with a thimble 130, and the ejector pin 130 can be inserted.
  • the insertion hole 221 the engagement of the slave end 200 with the insertion hole 221 by the ejector pin 130 is engaged with the host end 100, and the slave end 200 is prevented from being easily detached from the host end 100.
  • the main body end 100 may further include an elastic member (not shown), and the elastic member is connected to the ejector pin 130.
  • the ejector pin 130 can be slidably extended and contracted in the longitudinal direction of the main body end 100 by the elastic member, so that the ejector pin 130 is locked to the insertion hole 221 Inside.
  • the elastic member is a spring, and the spring is coupled to the ejector pin 130.
  • the ejector pin 130 can compress the spring to retract the thimble 130, thereby achieving sliding expansion and contraction of the ejector pin 130 in the x-axis direction.
  • the elastic member may also be a spring piece or a silica gel column or the like, and the elastic member functions to realize the sliding expansion and contraction of the ejector pin 130 in the x-axis direction so that the slave end 200 is combined with the main body end 100.
  • the position of the machine end 200 is finely adjusted by the deformation of the elastic member to facilitate the engagement of the thimble 130 in the insertion hole 221.
  • the cooperation of the ejector pin 130 and the jack 221 can also be utilized to enable the host end 100 to charge the slave end 200.
  • the flexible screen 210 is communicatively coupled to the processor via the ejector pin 130.
  • wireless data transmission between the first communication module and the second communication module may be stopped, and communication between the host terminal 100 and the slave terminal 200 is implemented by the ejector pin 130.
  • the wired communication between the host terminal 100 and the slave terminal 200 can be realized by the cooperation of the ejector pin 130 and the slave terminal 200 to improve the efficiency of data transmission and reduce the power consumption of the host terminal 100 and the slave terminal 200.
  • the second support member 230 is provided with a protrusion 240 integrally formed on the second support member 230.
  • the side of the main body end 100 facing the second recessed portion 400 is provided with a card hole 111.
  • the protrusion 240 can be locked in the card hole 111.
  • the insertion holes 221 and the projections 240 are respectively located at both ends of the flexible screen 210.
  • the slave end 200 When the slave end 200 is combined with the host end 100, one end of the flexible screen 210 is fixed to the host end 100 through the engagement of the jack 221 and the ejector pin 130, and the other end of the flexible screen 210 passes the card of the protrusion 240 and the card hole 111. The combination is fixed on the host end 100. After both ends of the flexible screen 210 are engaged with the host end 100, the slave end 200 can be reliably positioned on the host end 100, and the slave end 200 can be prevented from being easily detached from the host end 100. It can be understood that the cooperation of the protrusion 240 and the hole 111 can also be replaced by the structure of the ejector pin 130 and the socket 221, and the reliable connection between the host end 100 and the slave end 200 can be achieved.
  • the jacks 221 having the same position and the same structure may be disposed at the two ends of the flexible screen 210, and the positions and structures are the same on the side of the host end 100 facing the first recessed area 300 and the side facing the second recessed area 400.
  • the ejector pin 130 corresponding to the insertion hole 221 and the first support member 220 and the second support member 230 are symmetrically disposed at opposite ends of the second display portion 213. The above arrangement enables the user to insert either end of the flexible screen 210 into the position of any thimble 130 on the host end 100 during the process of combining the slave end 200 to the host end 100, thereby greatly improving the use. Convenience.
  • the structure of the ejector pin 130 is also applicable to the host end 100, and the card hole 111 is also applicable to the host end 100, where No longer.
  • the slave end 200 can further include a first receiver 250.
  • the first receiver 250 is connected to the first support member 220 and can be electrically connected to the first power module.
  • the first power module can be The first receiver 250 is powered.
  • the first display portion 211 is provided with a first sound hole 212 for conducting the sound generated by the first receiver 250 to the outside of the host end 100.
  • the slave 200 can be used to answer the call, and the portable terminal 200 is portable and light and thin, and is also convenient for improving user convenience. Sex.
  • a box sound chamber may be further disposed on the first support member 220, and the box sound chamber is used to enhance the output effect of the sound from the machine end 200.
  • the box sound chamber may be located on the non-display surface 219 of the flexible screen 210. On the side. It can be understood that the first receiver 250 and the box sound cavity can be omitted.
  • a side of the host end 100 facing away from the second surface 123 is provided with a second sound hole 113, and the host end 100 may further include a second receiver 140 connected to the host end 100.
  • the second sound hole 113 is for transmitting the sound generated by the second receiver 140 to the outside of the host end 100.
  • the second receiver 140 can be electrically connected to the second power module, the second power module can supply power to the second receiver 140, the second receiver 140 can be communicatively coupled to the processor of the host 100, and the processor can control the operation of the second receiver 140. status.
  • the processor can also control the first receiver 250 to stop operating to prevent the first receiver 250 from interfering with the second receiver 140.
  • the mobile terminal 10 is a smart phone.
  • the mobile terminal 10 includes a host terminal 100 and a handheld terminal 200.
  • the host end 100 is substantially rectangular, and the main end 100 includes a front end surface 110 and a rear end surface 120 disposed opposite to each other, and a top end surface 130 and a bottom end surface 140 connected between the front end surface 110 and the rear end surface 120.
  • the top end surface 130 is located at one end of the host end 100, and the bottom end surface 140 is located at the other end of the host end 100.
  • the host end 100 includes a first power module and a first wireless communication module, and the first power module is capable of being electrically connected to the first wireless communication module.
  • the handheld terminal 200 includes a flexible screen 210, a second power module 220, and a second wireless communication module.
  • the second power module 220 can be electrically connected to the flexible screen 210 and the second wireless communication module, respectively, and the second wireless communication module can be connected to the first wireless Communication module communication connection.
  • the flexible screen 210 has a bendable display feature that can be used to display information and provide an interactive interface for the user. Referring to FIGS. 43 and 44, the flexible screen 210 may include a first portion 211, a second portion 213, and a third portion 215 connected between the first portion 211 and the second portion 213.
  • the flexible screen 210 can be bent to be mounted on the main body end 100 such that the first portion 211 is disposed on the front end surface 110, the second portion 213 is disposed on the rear end surface 120, and the third portion 215 is disposed on the bottom end surface 140. . It can be understood that when the handheld terminal 200 is mounted on the host end 100, the first portion 211, the second portion 213, and the third portion 215 can be used for display, and the second portion 213 can also be controlled by the program to be used for display.
  • the handheld terminal 200 can also be detached from the host terminal 100. After the handheld terminal 200 is detached from the host terminal 100, the handheld terminal 200 can be communicatively coupled to the host terminal 100. After the handheld terminal 200 is detached from the host end 100, the handheld terminal 200 can provide basic functions such as display for user convenience. For example, the user can view information or the like through the handheld terminal 200, and the host terminal 100 can be placed in a pocket or elsewhere.
  • the first power module may be a nuclear battery, and the nuclear battery can be electrically connected to the first wireless communication module and the flexible screen 210, respectively.
  • the nuclear battery can be a neon battery, which is small in size, relatively thin and thin, and has a long service life, and can provide electric energy for the flexible electronic device 210 and other electronic components in the handheld terminal 200 for a long time, and is beneficial to the thinning and thinning of the handheld terminal 200.
  • the first power module may also be a lithium battery or the like, and the first power module may perform repeated charging and discharging to provide power for the flexible screen 210 and other electronic components in the handheld terminal 200.
  • the second power module 220 can be a battery with repeated charge and discharge performance, such as a lithium battery. The battery capacity of the second power module 220 can be large, so that the host end 100 has a strong endurance, thereby making the mobile terminal 10 more Strong endurance.
  • the first wireless communication module and the second communication module are used for communication connection between the handheld terminal 200 and the host terminal 100 to implement data transmission between the host terminal 100 and the handheld terminal 200.
  • the first wireless communication module and the second wireless communication module may adopt a short-range communication technology, and the first wireless communication module and the second wireless communication module adopt the same communication protocol.
  • the first wireless communication module and the second wireless communication module may both be Bluetooth communication modules, or both are wireless local area network (Wi-Fi, Wireless Fidelity) communication modules, or both are infrared data transmission (lrDA, Infrared Data The Association modules, or all of the ZigBee communication modules, are either Ultra WideBand or NFC (Near Field Communication) modules.
  • the displayable area of the first portion 211 is parallel to the displayable area of the second portion 213.
  • the flexible screen 210 can be flattened such that the displayable area of the first portion 211 is on the same plane as the displayable area of the second portion 213.
  • the handheld terminal 200 can have a larger displayable area, which is advantageous for obtaining a large screen display effect, thereby facilitating the user experience.
  • the handheld terminal 200 can be detached from the host end 100, and the handheld terminal 200 can be communicably connected to the host end 100 after being detached from the host end 100.
  • the handheld terminal 200 can have fewer electronic components and thus can be extremely Lightweight and user-friendly, the host side 100 can be placed in a pocket or elsewhere, and the host end 100 can be provided with a larger capacity battery to ensure the endurance of the mobile terminal 10.
  • the mobile terminal 10 has the effect of double-sided display.
  • the flexible screen 210 of the handheld terminal 200 is flattened, the handheld terminal 200 can obtain a display effect of a large screen, which is advantageous for improving the expressiveness and user experience of the product.
  • the mobile terminal 10 can provide high portability, ensure the performance of the mobile terminal 10, and ensure the endurance of the mobile terminal 10.
  • the host end 100 may include a left end surface 150 and a right end surface 160 disposed opposite to each other.
  • the left end surface 150 and the right end surface 160 are respectively located between the top end surface 130 and the bottom end surface 140, and the left end surface 150 and the right end surface 160 are respectively located.
  • the front end surface 110, the rear end surface 120, the left end surface 150, the right end surface 160, the top end surface 130 and the right end surface 160 may be enclosed as a receiving space, and the receiving space may be used for mounting the circuit board of the host end 100, the first power module, the processor, etc.
  • Electronic Component The first recessed area 111 and the second recessed area 121 are disposed on the main end 100.
  • the first recessed area 111 extends through the front end surface 110, the top end surface 130, the left end surface 150, and the right end surface 160.
  • the second recessed area 121 extends through the rear end surface 120.
  • the handheld end 200 includes a first boss 231 and a second boss 233.
  • the first boss 231 and the second boss 233 are respectively located at two ends of the handheld end 200, that is, when the flexible screen When the 210 is flattened, the first boss 231 is located at the end position of the first portion 211 of the flexible screen 210, and the second boss 233 is located at the end position of the second portion 213 of the flexible screen 210.
  • the first boss 231 is received in the first recessed area 111
  • the second boss 233 is received in the second recessed area 121.
  • the cooperation of the first boss 231 and the first recessed area 111 and the cooperation of the second boss 233 and the second recessed area 121 facilitate the mounting of the handheld end 200 on the host end 100 and facilitate the handheld end 200 at the host end. Reliable positioning on 100.
  • the thickness of the first protrusion 231 and the second protrusion 233 is larger than the thickness of the other positions of the handheld end 200, and the first recessed area 111 and the second recessed area 121 are disposed on the host end 100.
  • the first boss 231 is engaged with the first recessed area 111
  • the second boss 233 is engaged with the second recessed area 121.
  • the buckle 240 when the handheld end 200 is mounted on the host end 100, the buckle 240 can be locked in the card slot 170.
  • the buckle 240 may be a structure such as a silicone or a spring, and the buckle 240 can be elastically deformed to enter the slot 170 and engage with the slot wall of the slot 170.
  • the buckle 240 can be disposed on the first boss 231 , and the card slot 170 is correspondingly disposed in the first recessed area 111 .
  • the buckle 240 can also be disposed on the second boss 233.
  • the second recessed area 121 is correspondingly provided with a card slot 170.
  • a first terminal may be disposed on the buckle 240, and a second terminal may be disposed in the first recessed area 111 or the second recessed area 121.
  • the first terminal can be The second terminal is communicatively coupled to enable the handheld terminal 200 to be communicatively coupled to the host end 100.
  • the handheld terminal 200 can wirelessly communicate with the host end 100 after the handheld terminal 200 is detached from the host terminal 100.
  • the handheld terminal 200 can communicate with the second terminal of the host terminal 100 through the first terminal, so that the host terminal 100 and the handheld terminal 200 implement wired communication, and the wired communication facilitates the promotion.
  • the quality and efficiency of communication and help to reduce energy consumption in the communication process can be understood that when the handheld terminal 200 is mounted on the host end 100, the second terminal of the host terminal 100 and the first terminal of the host terminal 100 can be electrically connected, and the first terminal and the second terminal are electrically connected.
  • the host terminal 100 is implemented to charge the handheld terminal 200.
  • the above structure is beneficial for the handheld terminal 200 to maintain sufficient power for user convenience.
  • the host terminal 100 can also charge the handheld terminal 200 by wireless charging.
  • the charging coil can be correspondingly disposed on the handheld terminal 200 and the host terminal 100. When the handheld terminal 200 is mounted on the host terminal 100, The handheld terminal 200 can be charged using a charging coil.
  • At least one of a side of the handheld end 200 facing away from the first portion 211 and a side of the handheld end 200 facing away from the second portion 213 is provided with a recess 260, the second power module 220 is received in the recess 260.
  • a side of the first end portion 211 of the handheld end 200 facing away from the flexible screen 210 and a side of the second end portion 213 of the handheld end 200 facing away from the flexible screen 210 are provided with a recess 260.
  • the second power module 220 includes two, and the two second power modules 220 are respectively disposed in the two recesses 260. The arrangement of the recess 260 facilitates the installation of the second power module 220.
  • the number of the grooves 260 can be one, and the number of the corresponding second power modules 220 is also one.
  • the groove 260 can be located on the side of the first end 211 of the hand-held end 200 facing away from the flexible screen 210 or the hand-held end. The side of the 200 is facing away from the side of the second portion 213 of the flexible screen 210.
  • the handheld end 200 includes a support member 270 that is disposed on the second power module 220.
  • the support member 270 is located in the recess 260.
  • the support member 270 is made of steel.
  • the number of the support members 270 may also be two, the two support members 270 are respectively disposed in the two recesses 260, and the support member 270 can be disposed on the second power module. 220 protects the second power module 220. It can be understood that the support member 270 can also be used to support the flexible screen 210 to better protect the flexible screen 210.
  • the flexible screen 210 at the location where the support member 270 is located does not have to be bent, and its position is relatively fixed with the position of other structures of the handheld end 200, thereby facilitating the flexible screen 210 and the handheld.
  • the reliability of the connection structure of the end 200 It can be understood that the material of the support member 270 can also be an aluminum alloy or other harder material.
  • the host end 100 may include a plurality of adsorbing members 180 disposed on the front end surface 110 and the rear end surface 120, and the handheld end 200 is mounted on the host end 100.
  • the support member 270 can be adsorbed on the adsorbing member 180.
  • the above structure facilitates the mounting of the handheld end 200 on the host end 100 and facilitates reliable positioning of the handheld end 200 on the host end 100.
  • the adsorbing member 180 can be a permanent magnet.
  • the supporting member 270 can be adsorbed on the adsorbing member 180.
  • the adsorbing member 180 can also be an electromagnet, and the electromagnet can generate magnetism after being energized, so that the supporting member 270 can be adsorbed on the adsorbing member 180, so that the handheld end 200 can be reliably positioned on the host end 100. , will not repeat them here.
  • the handheld terminal 200 can include a camera module 280.
  • the camera module 280 has a light incident surface 281.
  • the camera module 280 is disposed in the first boss 231 and the light incident surface 281 is exposed.
  • ambient light can pass through the light incident surface 281 and be incident on the photosensitive element of the camera module 280.
  • the camera module 280 provides functions such as shooting and video recording, thereby improving user convenience.
  • the thickness of the first boss 231 can be large, so that the installation space of the camera module 280 can be provided to facilitate the compact arrangement of the electronic components on the handheld end 200.
  • the camera module 280 can also be disposed in the second boss 233 and the light incident surface 281 is exposed on the side where the second portion 213 is located. Since the thickness of the second boss 233 is large, the camera is also beneficial. The mounting of the module 280 facilitates a compact arrangement of electronic components on the handheld end 200.
  • the handheld terminal 200 can include a receiver 290, and the receiver 290 is disposed in the first boss 231.
  • the sound of the receiver 290 can be transmitted to the handheld terminal 200.
  • the receiver 290 can facilitate the user to answer the call, thereby facilitating the user.
  • Convenience of use Since the thickness of the first boss 231 can be large, installation space can be provided for the installation of the receiver 290 to facilitate compact arrangement of electronic components on the handheld terminal 200. It can be understood that the receiver 290 can also be disposed in the second boss 233. Since the thickness of the second boss 233 can be large, the installation space can be provided for the installation of the receiver 290, and the electronic component on the handheld terminal 200 can be facilitated. Compact layout of the device.
  • the following describes the communication mode between the host terminal and the handheld terminal, and the communication mode between the host terminal and the external device.
  • the host side includes a wireless modem module, a host master controller, and a host wireless transceiver module.
  • the handheld terminal includes a slave keyboard, a slave master controller, and a slave wireless transceiver module.
  • the control command output by the slave keyboard is modulated by the slave wireless transceiver module under the control of the slave main controller, and then sent to the host wireless transceiver module, which is controlled by the host master controller.
  • the wireless modem module After being modulated by the wireless modem module, it is sent to the air.
  • the control signal from the air is demodulated by the wireless modem module, and then passed through the host main controller, modulated by the host wireless transceiver module and sent to the handheld terminal.
  • the slave controller controls the slave controller. Next, it is displayed by the display.
  • the slave keyboard can be a touch keyboard or a display screen with touch screen operation function.
  • the host side includes a wireless modem module, a host master controller, and a host wireless transceiver module
  • the handheld terminal includes a slave master controller, a slave microphone, a slave receiver, and a child.
  • the machine audio encoder, the sub-machine audio decoder, and the slave wireless transceiver module capable of communicating with the host wireless transceiver module.
  • the audio signal from the slave microphone is encoded by the slave audio encoder and transmitted to the slave main controller, and is sent by the slave wireless transceiver module under the control of the slave master controller.
  • the host wireless transceiver module After being received by the host wireless transceiver module, it is transmitted to the wireless modem module under the control of the host master controller, modulated by the wireless modem module, and then transmitted to the air.
  • the signal from the air is demodulated by the wireless modem module and transmitted to the host controller.
  • the host wireless transceiver module Under the control of the host controller, it is transmitted to the host wireless transceiver module, modulated by the host wireless transceiver module, and sent to the handheld.
  • the audio signal demodulated by the slave transceiver unit is output by the slave receiver after being decoded by the slave audio decoder under the control of the slave master controller.
  • the sub-machine audio encoder can be a separate hardware unit, can also be integrated in the sub-machine microphone, or can be integrated in the sub-machine main controller, and can have audio decoding function in terms of its function.
  • the audio codec; the sub-machine audio decoder can be a separate hardware unit, can also be integrated in the handset receiver, or can be integrated in the slave main controller, and can have audio coding for its function. Functional audio codec.
  • the host end includes a wireless modem module, a host master controller, and a host wireless transceiver module, and the host master controller can communicate with the wireless modem module and the host wireless transceiver module.
  • the handheld terminal includes a slave main controller, a slave wireless transceiver module capable of communicating with the host wireless transceiver module, and the slave master controller can communicate with the slave wireless transceiver module. The handheld terminal can access the communication network through the host.
  • the host end includes a host first wireless communication module, a host main controller, and a host second wireless communication module, and the host main controller can communicate with the host first wireless communication module and the host second wireless communication module.
  • the handheld terminal includes a slave main controller and a slave wireless communication module, the slave master controller can communicate with the slave wireless communication module, the slave wireless communication module can communicate with the host first wireless communication module, and the host second wireless communication The module is capable of communicating with a base station.
  • the host first wireless communication module and the slave wireless communication module are both low power Bluetooth communication modules.
  • the host first wireless communication module and the slave wireless communication module may both be wireless local area network (WiFi) communication modules.
  • WiFi wireless local area network

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Abstract

L'invention concerne un terminal mobile comprend une extrémité hôte (10) et une extrémité portative (20). L'extrémité hôte (10) est pourvue d'une première batterie, d'un processeur, d'une première unité de communication et d'une seconde unité de communication. Le processeur, la première unité de communication et la seconde unité de communication sont respectivement connectés à la première batterie. La première unité de communication est configurée pour être dans une connexion de communication avec un appareil externe. L'extrémité portative (20) comprend un écran d'affichage souple (21) et au moins deux éléments de support (22). Les au moins deux éléments de support (22) sont agencés au niveau de l'écran d'affichage souple (21) à un intervalle, formant ainsi une région d'intervalle au niveau de l'extrémité portative (20) permettant la flexion de l'écran d'affichage souple (21). L'élément de support (22) est pourvu d'une troisième unité de communication et d'une seconde batterie. L'écran d'affichage souple (21) et la troisième unité de communication sont respectivement connectés à la seconde batterie. La troisième unité de communication est configurée pour être dans une connexion de communication avec la seconde unité de communication. La séparation et l'assemblage de l'extrémité portative (20) et de l'extrémité hôte (10) peuvent être réalisés au moyen d'un mécanisme de fixation (30). Lorsque l'extrémité portative (20) et l'extrémité hôte (10) sont dans un état assemblé, l'extrémité portative (20) est pliée au niveau de la région d'intervalle à stocker au niveau de l'extrémité hôte (10).
PCT/CN2019/083065 2018-04-28 2019-04-17 Terminal mobile WO2019206007A1 (fr)

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CN204362121U (zh) * 2014-12-22 2015-05-27 昆山工研院新型平板显示技术中心有限公司 可穿戴移动终端
CN105590555A (zh) * 2016-03-18 2016-05-18 王广武 柔性屏幕显示电子设备
CN105700841A (zh) * 2016-01-11 2016-06-22 联想(北京)有限公司 一种柔性电子设备
CN107437378A (zh) * 2017-09-20 2017-12-05 上海天马微电子有限公司 柔性显示模组

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CN204362121U (zh) * 2014-12-22 2015-05-27 昆山工研院新型平板显示技术中心有限公司 可穿戴移动终端
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