WO2019228324A1 - Terminal mobile - Google Patents

Terminal mobile Download PDF

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Publication number
WO2019228324A1
WO2019228324A1 PCT/CN2019/088734 CN2019088734W WO2019228324A1 WO 2019228324 A1 WO2019228324 A1 WO 2019228324A1 CN 2019088734 W CN2019088734 W CN 2019088734W WO 2019228324 A1 WO2019228324 A1 WO 2019228324A1
Authority
WO
WIPO (PCT)
Prior art keywords
acquisition device
image acquisition
mounting hole
wall
mobile terminal
Prior art date
Application number
PCT/CN2019/088734
Other languages
English (en)
Chinese (zh)
Inventor
杨自美
黄茂昭
王嘉蒙
范晓宇
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
Priority claimed from CN201810547799.4A external-priority patent/CN110557470A/zh
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 WO2019228324A1 publication Critical patent/WO2019228324A1/fr

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets

Definitions

  • the present application relates to the technical field of mobile terminals, and in particular, to a mobile terminal.
  • a general mobile terminal (mobile phone, tablet, etc.) is equipped with a front camera, and the front camera can be used to provide functions such as video calls and selfies.
  • the front camera needs to occupy a part of the area on the side where the display screen of the mobile terminal is located, which is not conducive to increasing the screen ratio of the mobile terminal.
  • a mobile terminal includes:
  • the host end includes a housing, a display screen, and an ejection mechanism.
  • the housing includes a rear wall and a side wall extending from an edge of the rear wall. The rear wall and the side wall are enclosed as a receiving space.
  • the display cover is disposed on the receiving space, and the ejection mechanism is disposed in the receiving space; the side wall is provided with a mounting hole; and
  • An image acquisition device includes a camera module and a first connection end, the camera module is connected to the first connection end, the camera module has a light incident surface, and the image acquisition device can be received in the mounting hole And can be ejected from the mounting end through the ejection mechanism to be detached from the host end; after the image acquisition device is detached from the host end, the image acquisition device can pass through the first A connection end is connected to the host end, so that the light incident surface is exposed on the side where the display screen is located, and the image acquisition device can be communicatively connected with the host end.
  • a mobile terminal includes:
  • the host end includes a housing, a display screen, and an ejection mechanism.
  • the housing includes a rear wall and a side wall extending from an edge of the rear wall. The rear wall and the side wall are enclosed as a receiving space.
  • the display cover is disposed on the receiving space, and the ejection mechanism is disposed in the receiving space; the side wall is provided with a mounting hole; and
  • An image acquisition device includes a camera module, a main board, and a power module.
  • the main board can be electrically connected to the power module and can communicate with the camera module.
  • the camera module has a light incident surface.
  • the device can be accommodated in the mounting hole, and can be ejected from the mounting hole through the ejection mechanism to be detached from the host end; after the image acquisition device is detached from the host end, the device The image acquisition device can be communicatively connected with the host side.
  • a mobile terminal includes:
  • the host end includes a casing, a display screen, a pop-up mechanism, and a second communication module.
  • the casing includes a rear wall and a side wall extending from an edge of the rear wall.
  • a receiving space, the display cover is provided on the receiving space, the ejection mechanism and the second communication module are provided in the receiving space; a mounting hole is formed on the side wall; and
  • An image acquisition device includes a camera module, a main board, and a power module, and the power module can be electrically connected to the camera module and the main board, respectively.
  • the main board includes a first communication module, and the first communication module can be separately connected. Communicate with the camera module and the second communication module; the image acquisition device can be accommodated in the installation hole, and can be ejected from the installation hole through the ejection mechanism to be ejected from the host end Disassembly; after the image acquisition device is disassembled from the host side, the image acquisition device and the host side can be communicatively connected through the first communication module and the second communication module.
  • FIG. 1 is a perspective view of a mobile terminal according to an embodiment
  • FIG. 2 is a perspective view of the mobile terminal shown in FIG. 1 from another perspective;
  • FIG. 3 is a perspective view of the image acquisition device of the mobile terminal shown in FIG. 1 after being detached from the host;
  • FIG. 4 is a partial cross-sectional view of the image acquisition device of the mobile terminal shown in FIG. 1 accommodated in a mounting hole;
  • FIG. 5 is an enlarged schematic view of A of the mobile terminal shown in FIG. 4; FIG.
  • FIG. 6 is a perspective view of a first connection end of the image acquisition device shown in FIG. 3 in a first state
  • FIG. 7 is a perspective view of a first connection end of the image acquisition device shown in FIG. 3 in a second state
  • FIG. 8 is a perspective view of an image acquisition device connected to a host end according to an embodiment of the mobile terminal shown in FIG. 3;
  • FIG. 9 is a perspective view of an image acquisition device connected to a host terminal in another embodiment of the mobile terminal shown in FIG. 3;
  • FIG. 10 is a top view of the movable block of the ejection mechanism shown in FIG. 5 in a first position
  • FIG. 11 is a rear view of the ejection mechanism shown in FIG. 10;
  • FIG. 12 is a plan view of the movable block of the ejection mechanism shown in FIG. 10 in a second position;
  • FIG. 13 is a partial cross-sectional view of the image acquisition device shown in FIG. 5 popping out from a mounting hole;
  • FIG. 14 is a rear view of the image acquisition device shown in FIG. 7;
  • FIG. 15 is an exploded view of an embodiment of the image acquisition device shown in FIG. 6;
  • FIG. 16 is a perspective view of the image acquisition device shown in FIG. 15 after the cover is removed;
  • FIG. 17 is an exploded view of another embodiment of the image acquisition device shown in FIG. 6;
  • FIG. 18 is a front view of the image acquisition device shown in FIG. 13 popping out from a mounting hole;
  • 19 is a partial cross-sectional view of a mobile terminal in another embodiment
  • FIG. 20 is a front view of the image acquisition device of the mobile terminal shown in FIG. 19 after being removed from the host;
  • FIG. 21 is a partial cross-sectional view of the image acquisition device shown in FIG. 19 popping out from a mounting hole;
  • FIG. 22 is a front view of the image acquisition device shown in FIG. 21 popping out from a mounting hole.
  • terminal device refers to a device capable of receiving and / or transmitting communication signals including, but not limited to, connection via any one or more of the following connection methods:
  • wired lines such as via Public Switched Telephone Networks (PSTN), Digital Subscriber Line (DSL), digital cable, or direct cable connection;
  • PSTN Public Switched Telephone Networks
  • DSL Digital Subscriber Line
  • DSL Digital Subscriber Line
  • a wireless interface method such as a cellular network, a wireless local area network (WLAN), a digital television network such as a DVB-H network, a satellite network, and an AM-FM broadcast transmitter.
  • WLAN wireless local area network
  • DVB-H digital television network
  • satellite network a satellite network
  • AM-FM broadcast transmitter an AM-FM broadcast transmitter
  • a terminal device configured 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:
  • Satellite phone or cellular phone (1) Satellite phone or cellular phone
  • PCS Personal Communication System
  • the mobile terminal 10 is a smart phone.
  • the mobile terminal 10 includes a host terminal 100 and an image acquisition device 200.
  • the host end 100 includes a casing 110 and a display screen 120.
  • the casing 110 includes a rear wall 111 and a side wall 113 extending from an edge of the rear wall 111.
  • the side wall 113 is provided with a mounting hole 140, and the rear wall 111 and the side wall 113 surround
  • the display screen 120 is arranged on the storage space and is connected to the housing 110.
  • the display screen 120 can be used to display information and provide an interactive interface for the user.
  • the accommodating space can also be used for installing electronic components such as a battery, a processor, and a circuit board of the host terminal 100. Referring to FIG.
  • a pop-up mechanism 130 is provided in the host terminal 100.
  • the pop-up mechanism 130 is disposed in the receiving space and is connected to the housing 110.
  • the pop-up mechanism 130 is used to eject the image acquisition device 200 from the mounting hole 140 to facilitate The image acquisition device 200 is detached from the host terminal 100.
  • the image acquisition device 200 includes a camera module 210 and a first connection terminal 220.
  • the camera module 210 is connected to the first connection terminal 220.
  • the camera module 210 has a light incident surface 211 through which light can pass through. The light surface 211 is irradiated onto the photosensitive element of the camera module 210.
  • the image capturing device 200 can be received in the mounting hole 140 and can be ejected from the mounting hole 140 through the ejection mechanism 130 to be detached from the host end 100.
  • the image acquisition device 200 can be connected to the host terminal 100 through the first connection terminal 220, so that the light incident surface 211 is exposed to a place where the display screen 120 is located. Side, and enables the image acquisition device 200 to be communicatively connected with the host terminal 100.
  • the image acquisition device 200 After the image acquisition device 200 is communicatively connected with the host terminal 100, it can perform the function of a front camera to facilitate users to perform operations such as self-timer and video call.
  • the mobile terminal 10 may be a tablet or the like.
  • the image acquisition device 200 can be detached from the host terminal 100, and can be connected to the host terminal 100 through the first connection terminal 220, so that the orientation of the light incident surface 211 is the same as that of the display screen 120, and
  • the image acquisition device 200 is communicatively connected to the host terminal 100, and the image acquisition device 200 can perform the function of a front camera, so that the camera can be prevented from occupying the area on the side of the display screen 120, which is beneficial to increasing the screen ratio of the mobile terminal 10.
  • the screen ratio can be more than 85%, which is conducive to improving product expression and improving user experience.
  • the setting of the ejection mechanism 130 facilitates the image capturing device 200 to be ejected from the mounting hole 140, and thus facilitates the image capturing device 200 to be disassembled from the mounting hole 140.
  • the housing 110 is substantially rectangular.
  • the material of the housing 110 may be metal such as stainless steel or aluminum alloy, and the material of the housing 110 may also be non-metal such as ceramic, glass, and plastic. Wait.
  • the mounting hole 140 is located between the display screen 120 and the rear wall 111.
  • the above structure can maintain the overall appearance of the rear wall 111 and is beneficial to beautifying the appearance of the mobile terminal 10.
  • the side wall 113 may include a top wall 1131, a bottom wall 1133 disposed opposite to each other, and a left wall 1135, a right wall 1137, a top wall 1131, a bottom wall 1133, a left wall 1135, and a right wall disposed opposite to each other.
  • a coordinate system is established with the length direction of the host end 100 as the X axis, the width direction as the Y axis, and the thickness direction as the Z axis.
  • the top wall 1131 and the bottom The walls 1133 are located at both ends in the length direction (X-axis direction) of the host end 100, and the left wall 1135 and the right wall 1137 are located at both ends in the width direction (Y-axis direction) of the host end 100, respectively.
  • the mounting hole 140 penetrates the left wall 1135, and the mounting hole 140 is located between the top wall 1131 and the bottom wall 1133.
  • the mounting hole 140 of the above structure can be used to receive the image acquisition device 200 and is advantageous for disassembly of the image acquisition device 200 from the host terminal 100.
  • a through hole 1134 is provided in the bottom wall 1133, and a second connection end 150 is provided in the through hole 1134.
  • the first connection end 220 can be connected to the second connection end 150.
  • the first connection end 220 may be a Type-C type connector male or a connector female seat
  • the second connection end 150 corresponds to a Type-C type and matches the first connection end 220.
  • the image acquisition device 200 can be inserted into or reversely inserted into the second connection end 150, so that the light incident surface 211 faces the same or opposite direction as the display screen 120.
  • the image capture device 200 can perform the function of a front camera, as shown in FIG.
  • the image capture device 200 may also perform the function of a rear camera, as shown in FIG.
  • the above-mentioned settings make the image acquisition device 200 be used as both a front-facing camera and a rear-facing camera, so that it is not necessary to provide other rear-facing cameras on the host terminal 100, which is beneficial to saving the cost of components.
  • the first connection end 220 may also be a Micro USB connector or a female connector, and the second connection end 150 is matched with the first connection end 220, and the first connection end 220 is inserted into the second connection end. After being connected inside the end 150, the light incident surface 211 faces the same direction as the display screen 120. At this time, the image capturing device 200 can perform the function of a front camera, and the host 100 can be provided with another rear camera.
  • the image acquisition device 200 is substantially rectangular in shape.
  • the image acquisition device 200 may include a front surface 231 and a rear surface 233 disposed opposite to each other, and a front surface 235 and a rear surface 237 disposed opposite to each other.
  • the front surface 231 is connected to one end of the front surface 235 and the rear surface 237 and the rear end surface 233 is connected.
  • the light incident surface 211 may be located on the front surface 235.
  • the image capture device 200 can be inserted into the mounting hole 140 from the side where the front surface 235 is located, so that the light incident surface 211 faces the same direction as the display screen 120.
  • the image capture device 200 can also be mounted from the side where the rear surface 237 is located Into the mounting hole 140 so that the light incident surface 211 faces the display screen 120 in the opposite direction.
  • the user does not need to deliberately locate the side where the light incident surface 211 is located and then install the image acquisition device 200, thereby facilitating the image acquisition device 200 to be installed in the mounting hole 140 and improving the convenience of the user.
  • the front end surface 231 is flush with the outer surface of the side wall 113.
  • the front surface 231 is flush with the outer surface of the left wall 1135.
  • a recess 238 is defined in the rear end surface 233, and the first connection end 220 is rotatably disposed in the recess 238 and has a first state and a second state.
  • the first connection end 220 in the first state, the first connection end 220 protrudes from the rear end surface 233. At this time, the first connection end 220 may be connected to the second connection end 150 on the host end 100.
  • the first connection end 220 in the second state, the first connection end 220 is received in the groove 238, so that the first connection end 220 can be prevented from protruding on the rear end surface 233, so as to prevent the first connection end 220 from being damaged by accidental collision.
  • the above structure is also beneficial to improving the overall appearance of the image acquisition device 200.
  • the ejection mechanism 130 may include a connecting member 131, an elastic member 133, a movable block 135, and a tie rod 137.
  • the connecting member 131 is connected to the housing 110.
  • the connecting member 131 may be connected by screwing or welding or gluing. It is fixed on the casing 110.
  • One end of the elastic member 133 is in contact with the connecting member 131, and the other end of the elastic member 133 is in contact with the movable block 135.
  • the elastic member 133 is a spring.
  • One end of the pull rod 137 is rotatably connected to the connecting member 131, the other end of the pull rod 137 is slidingly connected to the movable block 135, and the movable block 135 is slidingly connected to the connecting member 131. It can be understood that one end of the sliding connection of the pull rod 137 and the movable block 135 can be regarded as the free end of the pull rod 137. In one embodiment, the free end of the pull rod 137 is a right-angled hook.
  • the width direction (Y-axis direction) of the host end 100 is set as the setting direction.
  • the setting direction refers to the negative direction of the Y axis.
  • the image acquisition device 200 When the lever 137 is engaged with the movable block 135, the image acquisition device 200 is pushed again in the set direction. The free end of the lever 137 can be disengaged from the movable block 135, and the elastic member 133 is extended and pushes the movable block 135 to the second position, such as As shown in FIG. 12, the image acquisition device 200 is fully or partially ejected from the mounting hole 140. After the image acquisition device 200 is fully or partially ejected from the mounting hole 140, the user can remove the image acquisition device 200 from the host terminal 100.
  • the movable block 135 is provided with a sliding groove 136.
  • the sliding groove 136 includes an entry groove 1361, an engagement groove 1363, and an exit groove 1365.
  • the engagement groove 1363 communicates with the entry groove 1361 and the exit groove 1365, respectively.
  • 1365 communicates with the entry slot 1361.
  • the bottom wall of the entry groove 1361 is provided with a plurality of steps so that the depth of the entry groove 1361 increases from the entrance of the entry groove 1361 to the position where the engagement groove 1363 is located.
  • the setting of the step can realize the unidirectional movement of the free end of the pull rod 137.
  • the setting of the step can prevent the free end of the pull rod 137 from sliding from the engaging groove 1363 into the groove 1361.
  • the depth of the exit groove 1365 is smaller than the depth of the engagement groove 1363, and the bottom wall of the exit groove 1365 and the bottom wall of the engagement groove 1363 smoothly transition.
  • the above structure allows the free end of the tie rod 137 to slide from the engagement groove 1363 into the exit groove 1365. Inside.
  • the image acquisition device 200 After the image acquisition device 200 is installed in the mounting hole 140, the image acquisition device 200 is pushed in the set direction, and the free end of the pull rod 137 slides into the entry slot 1361 from the entrance into the slot 1361, and slides along the extension direction of the entry slot 1361 to Sliding into the engaging groove 1363, the elastic member 133 is compressed. The free end of the pull rod 137 is engaged with the movable block 135 in the engaging groove 1363 so that the movable block 135 is engaged in the first position. As shown in FIG. 10, the image acquisition device 200 can be received in the mounting hole 140.
  • the image acquisition device 200 When the tie rod 137 is engaged with the movable block 135, the image acquisition device 200 is pushed again in the set direction, and the tie rod 137 slides into the exit slot 1365 and slides along the extension direction of the exit slot 1365 to slide into the entry slot 1361. The elastic potential energy is released, and the movable block 135 is pushed to the second position. As shown in FIG. 12, the image acquisition device 200 can be fully or partially ejected from the mounting hole 140.
  • the exit groove 1365 is substantially linear and extends in a set direction, and the depth of the exit groove 1365 is smaller than the depth of the entrance to the groove 1361.
  • the bottom wall of the exit slot 1365 is convexly arranged on the bottom wall of the entry slot 1361.
  • the above-mentioned setting is beneficial to the free end of the pull rod 137 to exit from the exit slot 1365 to make the image
  • the smooth ejection of the collecting device 200 also facilitates the unidirectional movement of the free end of the pull rod 137 and prevents the free end of the pull rod 137 from entering the exit slot 1365 from the entrance of the entry slot 1361.
  • a guide rail 138 may be provided on the connecting member 131, a convex block 1367 may be provided on the movable block 135, and the convex block 1367 may be integrally formed with the movable block 135.
  • the convex block 1367 may be regarded as a part of the movable block 135 .
  • the protrusion 1367 is slidably disposed in the slide rail 138, and the protrusion 1367 protrudes from the side of the connecting member 131. After the image acquisition device 200 is installed in the mounting hole 140, the end of the image acquisition device 200 can abut or engage with the projection 1367 to push the movable block 135 to slide.
  • the cooperation of the convex block 1367 and the slide rail 138 is beneficial to the smooth sliding of the movable block 135 in the connecting member 131.
  • the projection 1367 can also abut or engage with the image acquisition device 200 to push the image acquisition device 200 from the installation hole 140, and the projection 1367 and the slide
  • the cooperation of the channel 138 is also beneficial to the smooth sliding of the image acquisition device 200 in the mounting hole 140.
  • the image acquisition device 200 further includes a side surface 239 connected between the front surface 235 and the rear surface 237.
  • a first groove 141 (refer to FIG. 13) is formed on the wall of the mounting hole 140, and the side surface 239 is formed on the side wall 239.
  • a protrusion 240 is provided.
  • the protrusion 240 can be elastically deformed to engage in the first slot 141 (refer to FIG. 4). The cooperation of the first card slot 141 and the protrusion 240 facilitates the reliable positioning of the image capture device 200 in the mounting hole 140 and prevents the image capture device 200 from being easily detached from the host terminal 100.
  • the image acquisition device 200 may not be provided with a power module. After the image acquisition device 200 is connected to the second connection end 150 of the host end 100 through the first connection end 220, the host end The battery in 100 can supply power to the image acquisition device 200, and the processor in the host 100 can process the data captured by the image acquisition device 200.
  • the image capturing device 200 is provided with a power module 250 and a main board 260.
  • the main board 260 includes a first communication module.
  • the first communication module of the main board 260 can be connected to the power module 250 through power. It can also be communicatively connected with the camera module 210.
  • the image acquisition device 200 can be accommodated in the mounting hole 140, and can be ejected from the mounting hole 140 through the ejection mechanism 130 to be detached from the host terminal 100.
  • the host terminal 100 is provided with a battery, a second communication module, and a third communication module.
  • the battery can be connected to the second communication module and the third communication module through power connection, respectively.
  • the second communication module is used to communicate with the first communication module
  • the third communication module is used to communicate with an external device such as a base station or other mobile terminal 10.
  • the image acquisition device 200 can operate independently and can communicate with the host terminal 100.
  • the user can perform multi-angle and multi-scene shooting through the image capturing device 200, and view the image captured by the image capturing device 200 through the display screen 120 of the host 100.
  • the user can hold the image acquisition device 200 with one hand and the host terminal 100 with the other hand.
  • images of various positions and angles can be captured and displayed on the display screen 120 of the host terminal 100. View images.
  • the user may place the image acquisition device 200 somewhere and view the image captured by the image acquisition device 200 through the host 100 at another place.
  • the image acquisition device 200 includes a cover 230.
  • the front surface 231, the rear end 233, the front surface 235, the rear surface 237, and the side surface 239 are all located on the cover 230.
  • the cover 230 is opened on the cover 230.
  • the power module 250, the main board 260, and the camera module 210 are housed in a cover 230, and the light incident surface 211 is exposed through the light through hole 236.
  • the main board 260 is stacked on the power supply module 250.
  • the main board 260 can be connected to the power supply module 250 electrically, and the first communication module of the main board 260 can be communicatively connected to the camera module 210.
  • the power module 250 is L-shaped and defines a first right-angle area 251.
  • the first right-angle area 251 is formed by two substantially vertical parts of the power module 250.
  • the camera module 210 is disposed in the first right-angle area 251. .
  • the power module 250 with the above structure can avoid stacking the camera module 210 on the power module 250, so that the overall thickness of the image acquisition device 200 can be reduced.
  • the main board 260 is L-shaped and defines a second right-angle region 261.
  • the second right-angle region 261 is formed by two substantially vertical portions of the main board 260.
  • the camera module 210 is disposed in the second right-angle region 261.
  • the motherboard 260 with the above structure can also avoid stacking the motherboard 260 on the camera module 210, thereby reducing the overall thickness of the image acquisition device 200.
  • the power module 250 of the image acquisition device 200 may include a lithium battery that can be repeatedly charged and discharged, and may also include other types of batteries that can be repeatedly charged and discharged.
  • the power module 250 can provide power to the camera module 210 and the first communication module.
  • the first communication unit and the second communication unit use the same communication protocol.
  • the first communication unit and the second communication unit may both be Bluetooth communication units, or both WiFi (Wireless Fidelity) communication units, or both A ZigBee communication unit, or an NFC (Near Field Communication) communication unit.
  • the power module 250 is provided with a first through hole 253 so that the power module 250 has a substantially circular shape, and the camera module 210 is inserted through the first through hole 253.
  • the power module 250 with the above structure It is possible to avoid stacking the camera module 210 on the power module 250, so that the overall thickness of the image acquisition device 200 can be reduced.
  • the main board 260 is provided with a second through hole 263 so that the main board 260 has a substantially circular shape, and the camera module 210 is inserted into the second through hole 263.
  • the motherboard 260 with the above structure can also avoid stacking the motherboard 260 on the camera module 210, thereby reducing the overall thickness of the image acquisition device 200.
  • a first card slot 141 may be opened on the hole wall of the mounting hole 140 of the host terminal 100, and a protrusion 270 is provided on the side surface 239.
  • the protrusion 270 can be engaged in the first engaging groove 141.
  • the above structure facilitates the positioning of the image acquisition device 200 in the mounting hole 140, which is not repeated here.
  • a second card slot 143 may be provided on the hole wall of the mounting hole 140. The second card slot 143 is closer to the opening of the mounting hole 140 than the first card slot 141.
  • the image acquisition device 200 When the part is ejected in 140, the image acquisition device 200 is engaged with the second card slot 143 through the protrusion 270, and the light incident surface 211 is exposed outside the mounting hole 140, as shown in FIG. Through the cooperation of the protrusion 270 and the second card slot 143, the positioning of the image acquisition device 200 in the mounting hole 140 can be achieved, and at this time the image acquisition device 200 can be communicatively connected with the host terminal 100 to enable the image acquisition device 200 to execute Features of front camera or rear camera.
  • the image capture device 200 may perform the function of a front camera, and when the light incident surface 211 is exposed outside the mounting hole.
  • the image acquisition device 200 can perform the function of a rear camera, and details are not described herein again.
  • the mounting hole 140 penetrates the left wall 1135, and the mounting hole 140 is located between the top wall 1131 and the bottom wall 1133. In another embodiment, the mounting hole 140 penetrates the right side wall 1137. Referring to FIGS. 19 and 20, in other embodiments, the mounting hole 140 may further penetrate the top wall 1131, and the mounting hole 140 is located between the left wall 1135 and the right wall 1137.
  • the mounting hole 140 with the above structure can be used to receive the image capturing device 200, and facilitates the image capturing device 200 to be removed from the host terminal 100. The state of the image capturing device 200 after being removed from the mounting hole 140 is shown in FIG. Referring to FIG. 21 and FIG.
  • the image acquisition device 200 can also be installed in the mounting hole 140 and the light incident surface 211 is exposed on the side where the display screen 120 is located.
  • the collection device 200 can perform the function of a front camera, so there is no need to set a front camera on the side where the display screen 120 is located, and thus the screen ratio of the mobile terminal 10 can be increased.
  • the mounting hole 140 may pass through the bottom wall 1133, which is not repeated here. It can be understood that, in the embodiment in which the mounting hole 140 penetrates the top wall 1131 or the bottom wall 1133, the setting direction may be the length direction (X-axis direction) of the host end 100, which is not repeated here.

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

Abstract

L'invention concerne un terminal mobile, comprenant un hôte (100) et un dispositif de collecte d'images (200). L'hôte (100) comprend une coque extérieure (110), un écran d'affichage (120) et un mécanisme d'éjection (130), la coque extérieure (110) comprenant une paroi arrière (11) et une paroi latérale (113) qui enferme un espace de réception, l'écran d'affichage (120) recouvrant l'espace de réception, le mécanisme d'éjection (130) étant agencé à l'intérieur de l'espace de réception, et un trou de montage (140) étant présent sur la paroi latérale (113) ; et le dispositif de collecte d'images (200) comprend un module de caméra (210) et une première extrémité de connexion (220), qui sont connectées l'une à l'autre, le module de caméra (210) ayant une face d'incidence de lumière (211), le dispositif de collecte d'images (200) pouvant être accueilli à l'intérieur du trou de montage (140) et pouvant être éjecté grâce au mécanisme d'éjection (130) de façon à être détaché ; après avoir été détaché, le dispositif de collecte d'images (200) peut être connecté à l'hôte (100) grâce à la première extrémité de connexion (220), de sorte que la face d'incidence de lumière (211) soit exposée d'un côté de l'écran d'affichage (120) et le dispositif de collecte d'images (200) puisse effectuer une connexion de communication avec l'hôte (100).
PCT/CN2019/088734 2018-05-31 2019-05-28 Terminal mobile WO2019228324A1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
CN201820841679.0 2018-05-31
CN201810547799.4A CN110557470A (zh) 2018-05-31 2018-05-31 移动终端
CN201810547799.4 2018-05-31
CN201820841679 2018-05-31

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WO2019228324A1 true WO2019228324A1 (fr) 2019-12-05

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Application Number Title Priority Date Filing Date
PCT/CN2019/088734 WO2019228324A1 (fr) 2018-05-31 2019-05-28 Terminal mobile

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WO (1) WO2019228324A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20220400570A1 (en) * 2020-03-02 2022-12-15 Vivo Mobile Communication Co.,Ltd. Electronic Device
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US20220400570A1 (en) * 2020-03-02 2022-12-15 Vivo Mobile Communication Co.,Ltd. Electronic Device
EP4117255A4 (fr) * 2020-03-02 2023-08-09 Vivo Mobile Communication Co., Ltd. Dispositif électronique
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