WO2022169241A2 - Plateau comprenant un verrou et dispositif de communication mobile le comprenant - Google Patents

Plateau comprenant un verrou et dispositif de communication mobile le comprenant Download PDF

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Publication number
WO2022169241A2
WO2022169241A2 PCT/KR2022/001627 KR2022001627W WO2022169241A2 WO 2022169241 A2 WO2022169241 A2 WO 2022169241A2 KR 2022001627 W KR2022001627 W KR 2022001627W WO 2022169241 A2 WO2022169241 A2 WO 2022169241A2
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WO
WIPO (PCT)
Prior art keywords
tray
housing
latch
mobile communication
electronic device
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Application number
PCT/KR2022/001627
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English (en)
Korean (ko)
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WO2022169241A3 (fr
Inventor
박종길
한재룡
Original Assignee
삼성전자 주식회사
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Publication date
Application filed by 삼성전자 주식회사 filed Critical 삼성전자 주식회사
Publication of WO2022169241A2 publication Critical patent/WO2022169241A2/fr
Publication of WO2022169241A3 publication Critical patent/WO2022169241A3/fr

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K7/00Methods or arrangements for sensing record carriers, e.g. for reading patterns
    • G06K7/0013Methods or arrangements for sensing record carriers, e.g. for reading patterns by galvanic contacts, e.g. card connectors for ISO-7816 compliant smart cards or memory cards, e.g. SD card readers
    • G06K7/0056Methods or arrangements for sensing record carriers, e.g. for reading patterns by galvanic contacts, e.g. card connectors for ISO-7816 compliant smart cards or memory cards, e.g. SD card readers housing of the card connector
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K7/00Methods or arrangements for sensing record carriers, e.g. for reading patterns

Definitions

  • Various embodiments of the present disclosure relate to a tray including a latch and a mobile communication device including the same.
  • an interface device for external components mounted on a mobile communication device is also downsized.
  • a memory card that can expand the storage space of a mobile communication device
  • a so-called 'SIM (subscriber identity module) card that is detachably installed so that multiple users who have been authenticated with one mobile communication device can use it.
  • Efforts are being made to simplify a device such as a tray for efficiently applying card-type external components including a subscriber identification module card called 'to a mobile communication device.
  • a tray on which these external parts can be mounted and an eject bar and an eject lever for ejecting the tray are provided.
  • a separate opening is formed around the tray or tray, and a pin is inserted to release the tray , and such an opening may also damage the design of the electronic device.
  • each waterproof structure for the tray and the separate groove is also required, there may be restrictions on space utilization inside the mobile communication device due to these waterproof structures, and manufacturing cost may increase.
  • an electronic device having a tray structure and a waterproof structure coupled to the tray through a tray structure including a rotatable latch may be provided.
  • a mobile communication device includes a housing including a slit formed in an area and a tray disposed to be inserted into the slit, wherein the tray includes a subscriber identity module (SIM) A first portion forming a recess in which it can be seated, a second portion having a shape corresponding to the slit and having a hole formed in one region, and disposed between the first portion and the second portion, the A third portion including an opening extending from the hole, a waterproof member disposed to surround at least a portion of the third portion, and a latch disposed in a space formed by the hole and the opening, wherein the latch includes: rotatable within the space and when the latch is aligned in the first direction within the opening of the third portion with the tray inserted into the housing, at least a portion of the tray is withdrawn from the housing; When the latch is aligned in a direction different from the first direction while the tray is inserted into the housing, the tray may be fixed while being inserted
  • SIM subscriber identity module
  • a mobile communication device includes a housing including a slit formed in one region and a tray disposed to be insertable into the slit, wherein the tray includes a li on which at least one external component can be seated.
  • the tray structure and the waterproof structure coupled to the tray through the tray structure including a rotatable latch.
  • the tray structure includes a rotatable latch, it is possible to omit the tray or a separate groove formed around the tray, thereby improving the design of the mobile communication device.
  • FIG. 1A is a perspective view illustrating a part of an electronic device according to an exemplary embodiment
  • FIG. 1B illustrates a state in which a tray of the electronic device of FIG. 1A is discharged to the outside by an external member according to an exemplary embodiment.
  • FIG. 2 is a perspective view illustrating a state in which a tray is drawn out from an electronic device according to an exemplary embodiment.
  • FIG 3 shows a configuration of a tray according to an embodiment.
  • FIG. 4A illustrates a tray in a state in which latches are aligned in a first direction, according to an exemplary embodiment.
  • FIG. 4B is a cross-sectional view of the tray of FIG. 4A taken along a cross section formed by the axis A and the axis A'.
  • Fig. 4c is a cross-sectional view of the tray of Fig. 4a taken along axis B;
  • 5A illustrates a tray in a state in which latches are aligned in a second direction, according to an exemplary embodiment.
  • FIG. 5B is a cross-sectional view of the tray of FIG. 5A taken along a cross-section formed by the axis A and the axis A'.
  • Fig. 5c is a cross-sectional view of the tray of Fig. 5a taken along axis B;
  • FIG. 6A illustrates a portion of a tray including a latch having at least one beveled surface according to one embodiment.
  • FIG. 6b shows a side comprising at least one beveled surface of the latch of FIG. 6a;
  • Fig. 6c shows a side view of the latch of Fig. 6a
  • FIG. 7 is a block diagram of an electronic device in a network environment, according to various embodiments.
  • FIG. 1A is a perspective view illustrating a part of an electronic device according to an exemplary embodiment
  • FIG. 1B illustrates a state in which a tray of the electronic device of FIG. 1A is discharged to the outside by an external member according to an exemplary embodiment.
  • the electronic device 100 includes a front cover 103 forming a front surface of the electronic device 100 and a rear surface of the electronic device 100 .
  • the rear cover and the front glass cover 103 may include a bezel 101 surrounding the space formed by the rear cover.
  • the bezel 101 may be referred to as a housing that forms the exterior of the electronic device 100 (eg, the housing 250 of FIG. 2 ).
  • the electronic device 100 according to an embodiment may be referred to as a mobile communication device including a mobile phone, a tablet, and the like.
  • the front cover 103 may be made of a glass material.
  • the front cover 103 is not limited to being made of a glass material, and may be formed of various materials having transparency, such as reinforced plastic.
  • the bezel 101 may be formed integrally with or separately from the rear cover.
  • the bezel 101 and the rear cover according to an embodiment may be formed of a plastic material, for example, a polycarbonate material.
  • the bezel 101 and the rear cover are not limited to the polycarbonate material, and may be formed of various plastic materials.
  • the bezel 101 and the rear cover may be formed of a metal material.
  • the bezel 101 may be formed of a metal material
  • the rear cover may be formed of a plastic material.
  • at least a portion of the bezel 101 made of a metal material may be used as an antenna radiator of the electronic device 100 .
  • a circuit board (not shown) is provided in the space composed of the front cover 103 , the rear cover and the bezel 101 , and the circuit board includes at least one processor, communication circuit, etc. required to drive the electronic device 100 . and various connection terminals connected to the earphone jack and the USB connector.
  • the bezel 101 may include a hole for various input/output devices such as a button, a receiver hole 111 , and a microphone hole 107 , and a hole for various sensors such as a roughness sensor.
  • the electronic device 100 may include a display and a tray 105 .
  • the display may include a screen area exposed through the front cover 103 .
  • the display is disposed on the rear side of the front cover 103 and may include a touch panel.
  • the front cover 103 may transmit a screen output through the display.
  • the front cover may be integrally configured with the touch panel to provide a function of the input device.
  • one surface of the front cover 103 may include a curved surface. For example, both sides of the front cover 103 are curved, so that images such as images or icons can be displayed on both sides as well as the front of the front cover 103 .
  • the tray 105 may include a recess (eg, the recess 240 of FIG. 2 ) in which at least one external component (eg, a subscriber identity module (SIM) card) may be seated.
  • at least one external component eg, a subscriber identity module (SIM) card
  • the at least one external component may include a secure digital card (SD card), a micro SD card, a memory card, or a subscriber identity module card (SIM card). have.
  • SD card secure digital card
  • SIM subscriber identity module
  • the tray 105 may be detachably coupled to one surface of the bezel 101 , for example, an upper surface of the bezel 101 .
  • the outer surface of the tray 105 according to an embodiment is formed in a flat or curved surface corresponding to one surface of the bezel 101 , so that the outer surface of the electronic device 100 together with the bezel 101 is integrated with the outer surface.
  • a hole 151 through which at least a portion of a latch to be described later is exposed may be formed on the outer surface of the tray 105 . A detailed description thereof will be given later.
  • the tray 105 mounted inside the electronic device 100 may be moved to the electronic device 100 or the bezel 101 (or the housing). ) can be withdrawn.
  • the external member 109 according to an embodiment may be formed of a grip portion that a user can grip while being formed in a shape corresponding to the latch groove, but is not limited thereto, and is mounted on a clip, a pen, or the electronic device 100 . It can be formed in various structures that can be combined with an electronic pen or latch groove. 1B, when the external member 109 according to an embodiment is coupled to the latch groove and a force is applied to rotate the latch, the tray 105 is separated from the bezel 101 (or housing) while being separated from the bezel ( 101) may be withdrawn at least partially.
  • FIG. 2 is a perspective view illustrating a state in which a tray is drawn out from an electronic device according to an exemplary embodiment.
  • an electronic device (eg, the electronic device 100 of FIG. 1A ) may include a housing 250 , a tray 200 , an elastic member 271 , and a sensor 272 . have. However, according to another embodiment (not shown), some of the above-described components (eg, the sensor 272 ) may be omitted, and other components may be added.
  • the housing 250 together with the side bezel (eg, the bezel 101 of FIG. 1A ) and the rear cover may form an external shape of the electronic device and provide mechanical rigidity of the electronic device.
  • the housing 250 may include a slit 280 in one area.
  • the slit 280 according to an embodiment is not limited to a specific shape, and may be referred to as a hole or an opening.
  • the tray 200 may be inserted into the housing 250 or drawn out from the housing 250 through the slit 280 formed in the housing 250 .
  • the tray 200 includes a first portion 201 forming a recess 240 in which at least one external component (eg, SIM) can be seated, and a slit formed in the housing 250 . It may include a second part 202 having a shape corresponding to that of 280 , and a third part 203 disposed between the first part 201 and the second part 202 . According to an embodiment, the second part 202 may form a hole 151 in one area. According to an embodiment, the third part 203 may include an opening extending from the hole 151 formed in the second part 202 .
  • SIM external component
  • the latch 210 may be disposed in a space formed by the hole 151 and an opening extending from the hole 151 . According to an embodiment, at least a portion of the latch 210 may be exposed to the outside of the electronic device through the hole 151 formed in the second portion 202 . As shown in FIG. 1B , a force of an external member (eg, the external member 109 of FIGS. 1A and 1B ) acts on a portion of the latch 210 exposed to the outside of the electronic device through the hole 151 . By doing so, it can rotate within the space in which the latch is arranged.
  • an external member eg, the external member 109 of FIGS. 1A and 1B
  • the tray 200 is drawn out from the inside of the housing 250 or inserted into the inside of the housing 250 . It can be fixed in the inserted state. A detailed description thereof will be given later.
  • the tray 200 may include a waterproof member 220 disposed to surround at least a portion of the third portion 203 .
  • the waterproof member 220 may have a ring shape and may be formed of a rubber material. A detailed description thereof will be given later.
  • the electronic device includes an elastic member 271 applying pressure to the tray 200 and a sensor contacting the elastic member 271 in a state in which the tray 200 is inserted into the housing 250 . 272) may be included.
  • the elastic member 271 may have elasticity and apply a force to the tray 200 .
  • the elastic member 271 may apply a force to the tray 200 in a direction in which the tray 200 is drawn out.
  • a force can be applied in the direction with which it is drawn out.
  • the electronic device may include a sensor 272 electrically connected to at least one processor (not shown) disposed therein.
  • the elastic member 271 may be in contact with the sensor 272 while in contact with the tray 200 .
  • the sensor 272 may detect a state in which the tray 200 is inserted into the housing 250 as it comes into contact with the elastic member 271 .
  • the at least one processor may determine whether the tray 200 is inserted into the housing 250 or pulled out from the housing 250 through the sensor 272 .
  • the electronic device may include at least one terminal 290 in contact with at least one external component (eg, a SIM card) while the tray 200 is inserted into the housing 250 .
  • At least one terminal 290 may be disposed inside the electronic device and may be electrically connected to at least one processor.
  • the at least one terminal 290 may be disposed inside the electronic device to contact at least one external component (eg, a SIM card) while the tray 200 is inserted into the housing 250 .
  • at least one external component eg, an SD card mounted on the tray 200 may be electrically connected to at least one processor through at least one terminal 290 .
  • the at least one processor is electrically connected to at least one external component (eg, a memory card) mounted on the tray 200 through at least one terminal 290 , and connects at least one external component to the at least one external component. can be controlled
  • the electronic device 100 may include a metal shell (not shown) coupled to the slit 280 and/or the housing 250 .
  • the metal shell may include a path into which the tray 200 may be inserted.
  • the metal shell may include a path for guiding the insertion of the tray 200 into the housing 250 .
  • FIG 3 shows a configuration of a tray according to an embodiment.
  • the tray 200 has a latch 210 and a third portion disposed in a space formed by at least a portion of the second portion 202 and the third portion 203 . It may include a waterproofing member 220 disposed to surround at least a portion of the portion 203 .
  • the same reference numerals are used for the same or substantially the same components as those described above, and overlapping descriptions are omitted.
  • the tray 200 corresponds to the first part 201 and the slit (eg, the slit 280 in FIG. 2 ) forming the recess 240 in which at least one external component can be seated.
  • the second portion 202 having a shape of (203) may be included.
  • the first portion 201 to the third portion 203 are not limited to the region shown in the drawings, and may be formed to have various sizes and widths.
  • the third part 203 may include an opening extending from a hole included in the second part 202 (eg, the hole 151 of FIG. 1B ).
  • the tray 200 may include a latch 210 disposed in a space formed by the hole of the second part 202 and the opening of the third part 203 .
  • the latch 210 may rotate in a space formed by the hole of the second part 202 and the opening of the third part 203 .
  • the latch 210 may rotate in the space by an external force.
  • the latch 210 is a body (inner wall) (or inner surface) in contact with the tray 200 is inserted into the housing (eg, the housing 250 in FIG. 2 ) of the housing. 212 ) and a head 211 integrally formed with the body 212 and at least partially exposed to the outside of the electronic device.
  • the body 212 of the latch 210 may have a larger diameter than the head 211, but is not limited thereto.
  • the head 211 may include at least one groove 213 on one surface exposed to the outside of the electronic device.
  • the head 211 of the latch 210 may include at least one groove 213 having a shape corresponding to one end of an external member (eg, the external member 109 of FIG. 1B ).
  • the latch 210 is disposed in a space formed by the hole of the second part 202 and the opening of the third part 203 by a force applied by an external member coupled to the at least one groove 213 . can be rotated in
  • the tray 200 may include a waterproof member 220 coupled to surround at least a portion of the third portion 203 .
  • the waterproof member 220 may have a ring shape and may be coupled to the tray 200 to surround at least a portion of the third portion 203 .
  • the waterproof member 220 may be disposed to surround at least a portion of the third portion 203 and the first portion 201 .
  • the waterproof member 220 may be formed of a rubber material, but the material of the waterproof member 220 is not limited thereto. At least one of urethane, silicone, tape, adhesive, and waterproof dispensing may be applicable.
  • the waterproof member 220 may provide a waterproof function in a manner of sealing the internal space of the electronic device by being coupled to the tray 200 .
  • the waterproofing member 220 may provide a waterproofing function of blocking the inflow of external moisture to the internal space of the electronic device 100 or the housing 250 .
  • FIG. 4A illustrates a tray in a state in which latches are aligned in a first direction, according to an exemplary embodiment.
  • FIG. 4B is a cross-sectional view of the tray of FIG. 4A taken along a cross section formed by the axis A and the axis A'.
  • Fig. 4c is a cross-sectional view of the tray of Fig. 4a taken along axis B;
  • the tray 200 when the latch 210 according to an embodiment is aligned in the first direction, the tray 200 may be inserted into the housing 250 or drawn out from the housing 250 .
  • one surface of the latch 210 does not contact the inner wall of the housing 250 , so that the tray 200 is moved to the housing 250 .
  • the tray 200 may be withdrawn from the inside of the housing 250 .
  • the tray 200 is moved to the housing ( 250) can be withdrawn from the inside.
  • the tray 200 may include a compression spring 430 in contact with a portion of the latch 210 .
  • the tray 200 may include a compression spring 430 in contact with at least a portion of the third portion 203 or the first portion 201 and at least a portion of the latch 210 .
  • the tray 200 may include a compression spring 430 in contact with one surface of the third portion 203 and a portion of the body of the latch 210 (eg, the body 212 of FIG. 3 ). .
  • the compression spring 430 may apply a force to the latch 210 with elasticity.
  • the compression spring 430 may apply pressure to the latch 210 in a direction toward the hole of the second part 202 (eg, the hole 151 of FIG. 1A ).
  • the latch 210 is exposed to the outside of the housing 250 among the latches 210 while the tray 200 is inserted into the housing 250 by receiving pressure by the compression spring 430 .
  • One surface to be formed may be flush with an outer wall of the housing 250 .
  • the latch 210 receives pressure by the compression spring 430 , one surface of the latch 210 exposed to the outside of the housing 250 and the outer surface of the housing 250 may be formed so that there is no height difference.
  • FIG. 5A illustrates a tray in a state in which latches are aligned in a second direction, according to an exemplary embodiment.
  • FIG. 5B is a cross-sectional view of the tray of FIG. 5A taken along a cross-section formed by the axis A and the axis A'.
  • Fig. 5c is a cross-sectional view of the tray of Fig. 5a taken along axis B;
  • the latch 210 may be aligned in the first direction or the second direction as it rotates by an external force.
  • the same reference numerals are used for the same or substantially the same components as those described above, and overlapping descriptions are omitted.
  • the latch 210 may rotate from the first direction to the second direction or from the second direction to the first direction by an external force.
  • the first direction and the second direction may mean a direction substantially perpendicular to each other, but is not limited thereto.
  • the tray 200 may be fixed while being inserted into the housing 250 as the latches 210 are aligned in the second direction while being inserted into the housing 250 .
  • the latch 210 when the latch 210 is aligned in the second direction while the tray 200 is inserted into the housing 250 , at least one surface of the latch 210 (eg, one surface of the body 212 ) and As it comes into contact with the inner wall (or inner surface) of the housing 250 , it may be fixedly inserted into the housing 250 .
  • the housing 250 may include a locking protrusion 450 in a slit (eg, the slit 280 of FIG. 2 ).
  • the locking protrusion 450 included in the slit of the housing 250 may be formed to protrude toward the center of the slit, but the shape of the locking protrusion 450 is not limited thereto.
  • the stopping protrusion 450 may be in contact with the second portion 202 of the tray 200 .
  • at least a portion of the second portion 202 of the tray 200 and the engaging protrusion 450 may contact.
  • the insertion of the tray 200 into the housing 250 may be terminated due to interference between at least a portion of the second portion 202 of the tray 200 and the clasp 450 .
  • the tray 200 may be inserted into the housing 250 .
  • one surface of the second portion 202 of the tray 200 may be in contact with the locking jaw 450 .
  • the tray 200 when the latch 210 is rotated from the second direction to the first direction by an external force in a state in which the tray 200 is inserted into the housing 250, the tray 200 is inserted into the housing ( 250) can be withdrawn to the outside.
  • FIG. 6A illustrates a portion of a tray including a latch having at least one beveled surface according to one embodiment.
  • FIG. 6b shows a side comprising at least one beveled surface of the latch of FIG. 6a;
  • Fig. 6c shows a side view of the latch of Fig. 6a;
  • the tray 200 may include a latch 210 including at least one inclined surface 601 or 602 .
  • the tray 200 may include a latch 210 and a torsion spring 610 coupled with at least a portion of the second portion 202 of the tray 200 .
  • the latch 210 may receive a force by a torsion spring 610 coupled to the latch 210 and the second portion 202 of the tray 200 .
  • the latch 210 may be aligned in the second direction (eg, the second direction of FIG. 5A ) by the torsion spring 610 .
  • the latch 210 may be aligned in the second direction by receiving a force by the torsion spring 610 .
  • the first direction may be referred to as the first direction of FIGS. 4A to 4C
  • the second direction may be referred to as the second direction of FIGS. 5A to 5C .
  • the latch 210 may include at least one inclined surface 601 or 602 on one surface of the body 212 . According to an embodiment, the latch 210 may include at least one inclined surface 601 or 602 on one surface of the body 212 adjacent to the first portion 201 of the tray 200 . According to an embodiment, the latch 210 may include at least one inclined surface 601 or 602 inclined at a predetermined angle with respect to the outer wall (or outer surface) of the housing (eg, the housing 250 of FIG. 2 ). have. According to an embodiment, the at least one inclined surface 601 or 602 may include a first inclined surface 601 and a second inclined surface 602 .
  • the first inclined surface 601 and the second inclined surface 602 may be formed in a symmetrical shape.
  • the shape of the at least one inclined surface 601 or 602 and the latch 210 including the same is not limited thereto, and an additional inclined surface is included depending on the shape of the housing or the slit (eg, the slit 280 in FIG. 2 ).
  • the second inclined surface 602 may be omitted.
  • the latch 210 may be aligned in the second direction by interference between the at least one inclined surface 601 and 602 and the outer wall of the housing.
  • the latch 210 may rotate as at least one inclined surface 601 and 602 contacts the outer wall of the housing.
  • the latch 210 may be aligned in the first direction (eg, the first direction in FIG. 4A ).
  • the tray 200 may be inserted into the electronic device or the housing.
  • the latch 210 is aligned in the second direction by the torsion spring 610 .
  • the latch 210 may be aligned in the second direction by rotating by the force applied by the torsion spring 610 .
  • the tray 200 is fixed while being inserted into the electronic device or the housing.
  • the latch 210 in a state in which the tray 200 is inserted into the electronic device or the housing, the latch 210 may be aligned in the second direction by the torsion spring 610 .
  • the tray 200 in a state in which the tray 200 is inserted into the electronic device or the housing, and the latch 210 is aligned in the second direction, the tray 200 is inserted into the electronic device or the housing. can be fixed.
  • the latch 210 is aligned in the second direction by the torsion spring 610 in a state in which the tray 200 is inserted into the electronic device or the housing, one surface of the latch 210 becomes the inner wall of the housing. By contacting (or the inner surface), the tray 200 may be fixed while being inserted into the housing.
  • the tray 200 includes a latch 210 including at least one inclined surface 601 or 602, so that it can be fixed while being inserted into the housing without receiving external force. .
  • FIG. 7 is a block diagram of an electronic device 701 in a network environment 700 , according to various embodiments.
  • the electronic device 701 communicates with the electronic device 702 through a first network 798 (eg, a short-range wireless communication network) or a second network 799 . It may communicate with at least one of the electronic device 704 and the server 708 through (eg, a long-distance wireless communication network). According to an embodiment, the electronic device 701 may communicate with the electronic device 704 through the server 708 .
  • the electronic device 701 includes a processor 720 , a memory 730 , an input module 750 , a sound output module 755 , a display module 760 , an audio module 770 , and a sensor module ( 776), interface 777, connection terminal 778, haptic module 779, camera module 780, power management module 788, battery 789, communication module 790, subscriber identification module 796 , or an antenna module 797 .
  • at least one of these components eg, the connection terminal 778
  • some of these components are integrated into one component (eg, display module 760 ). can be
  • the processor 720 executes software (eg, a program 740) to execute at least one other component (eg, a hardware or software component) of the electronic device 701 connected to the processor 720 . It can control and perform various data processing or operations. According to one embodiment, as at least part of data processing or computation, the processor 720 converts commands or data received from other components (eg, the sensor module 776 or the communication module 790 ) to the volatile memory 732 . may store the command or data stored in the volatile memory 732 , and store the result data in the non-volatile memory 734 .
  • software eg, a program 740
  • the processor 720 converts commands or data received from other components (eg, the sensor module 776 or the communication module 790 ) to the volatile memory 732 .
  • the volatile memory 732 may store the command or data stored in the volatile memory 732 , and store the result data in the non-volatile memory 734 .
  • the processor 720 may include a main processor 721 (eg, a central processing unit or an application processor) or a secondary processor 723 (eg, a graphics processing unit, a neural network processing unit (eg, a graphics processing unit) capable of operating independently or together with the main processor 721 (eg, a central processing unit or an application processor). a neural processing unit (NPU), an image signal processor, a sensor hub processor, or a communication processor).
  • the electronic device 701 includes a main processor 721 and a sub-processor 723
  • the sub-processor 723 uses less power than the main processor 721 or is set to be specialized for a specified function.
  • the coprocessor 723 may be implemented separately from or as part of the main processor 721 .
  • the coprocessor 723 may, for example, act on behalf of the main processor 721 while the main processor 721 is in an inactive (eg, sleep) state, or when the main processor 721 is active (eg, executing an application). ), together with the main processor 721, at least one of the components of the electronic device 701 (eg, the display module 760, the sensor module 776, or the communication module 790) It is possible to control at least some of the related functions or states.
  • coprocessor 723 eg, image signal processor or communication processor
  • the auxiliary processor 723 may include a hardware structure specialized for processing an artificial intelligence model.
  • Artificial intelligence models can be created through machine learning. Such learning may be performed, for example, in the electronic device 701 itself on which the artificial intelligence model is performed, or may be performed through a separate server (eg, the server 708).
  • the learning algorithm may include, for example, supervised learning, unsupervised learning, semi-supervised learning, or reinforcement learning, but in the above example not limited
  • the artificial intelligence model may include a plurality of artificial neural network layers.
  • Artificial neural networks include deep neural networks (DNNs), convolutional neural networks (CNNs), recurrent neural networks (RNNs), restricted boltzmann machines (RBMs), deep belief networks (DBNs), bidirectional recurrent deep neural networks (BRDNNs), It may be one of deep Q-networks or a combination of two or more of the above, but is not limited to the above example.
  • the artificial intelligence model may include, in addition to, or alternatively, a software structure in addition to the hardware structure.
  • the memory 730 may store various data used by at least one component (eg, the processor 720 or the sensor module 776 ) of the electronic device 701 .
  • the data may include, for example, input data or output data for software (eg, the program 740 ) and instructions related thereto.
  • the memory 730 may include a volatile memory 732 or a non-volatile memory 734 .
  • the program 740 may be stored as software in the memory 730 , and may include, for example, an operating system 742 , middleware 744 , or an application 746 .
  • the input module 750 may receive a command or data to be used by a component (eg, the processor 720 ) of the electronic device 701 from the outside (eg, a user) of the electronic device 701 .
  • the input module 750 may include, for example, a microphone, a mouse, a keyboard, a key (eg, a button), or a digital pen (eg, a stylus pen).
  • the sound output module 755 may output a sound signal to the outside of the electronic device 701 .
  • the sound output module 755 may include, for example, a speaker or a receiver.
  • the speaker can be used for general purposes such as multimedia playback or recording playback.
  • the receiver can be used to receive incoming calls. According to one embodiment, the receiver may be implemented separately from or as part of the speaker.
  • the display module 760 may visually provide information to the outside (eg, a user) of the electronic device 701 .
  • the display module 760 may include, for example, a control circuit for controlling a display, a hologram device, or a projector and a corresponding device.
  • the display module 760 may include a touch sensor configured to sense a touch or a pressure sensor configured to measure the intensity of a force generated by the touch.
  • the audio module 770 may convert a sound into an electric signal or, conversely, convert an electric signal into a sound. According to an embodiment, the audio module 770 acquires a sound through the input module 750 or an external electronic device (eg, a sound output module 755 ) directly or wirelessly connected to the electronic device 701 .
  • the electronic device 702) eg, a speaker or headphones
  • the sensor module 776 detects an operating state (eg, power or temperature) of the electronic device 701 or an external environmental state (eg, a user state), and generates an electrical signal or data value corresponding to the sensed state. can do.
  • the sensor module 776 may include, for example, a gesture sensor, a gyro sensor, a barometric pressure sensor, a magnetic sensor, an acceleration sensor, a grip sensor, a proximity sensor, a color sensor, an IR (infrared) sensor, a biometric sensor, It may include a temperature sensor, a humidity sensor, or an illuminance sensor.
  • the interface 777 may support one or more designated protocols that may be used for the electronic device 701 to directly or wirelessly connect with an external electronic device (eg, the electronic device 702 ).
  • the interface 777 may include, for example, a high definition multimedia interface (HDMI), a universal serial bus (USB) interface, an SD card interface, or an audio interface.
  • HDMI high definition multimedia interface
  • USB universal serial bus
  • SD card interface Secure Digital Card
  • connection terminal 778 may include a connector through which the electronic device 701 can be physically connected to an external electronic device (eg, the electronic device 702 ).
  • the connection terminal 778 may include, for example, an HDMI connector, a USB connector, an SD card connector, or an audio connector (eg, a headphone connector).
  • the haptic module 779 may convert an electrical signal into a mechanical stimulus (eg, vibration or movement) or an electrical stimulus that the user can perceive through tactile or kinesthetic sense.
  • the haptic module 779 may include, for example, a motor, a piezoelectric element, or an electrical stimulation device.
  • the camera module 780 may capture still images and moving images. According to one embodiment, the camera module 780 may include one or more lenses, image sensors, image signal processors, or flashes.
  • the power management module 788 may manage power supplied to the electronic device 701 .
  • the power management module 788 may be implemented, for example, as at least a part of a power management integrated circuit (PMIC).
  • PMIC power management integrated circuit
  • the battery 789 may supply power to at least one component of the electronic device 701 .
  • battery 789 may include, for example, a non-rechargeable primary cell, a rechargeable secondary cell, or a fuel cell.
  • the communication module 790 is a direct (eg, wired) communication channel or a wireless communication channel between the electronic device 701 and an external electronic device (eg, the electronic device 702 , the electronic device 704 , or the server 708 ). It can support establishment and communication performance through the established communication channel.
  • the communication module 790 may include one or more communication processors that operate independently of the processor 720 (eg, an application processor) and support direct (eg, wired) communication or wireless communication.
  • the communication module 790 may include a wireless communication module 792 (eg, a cellular communication module, a short-range wireless communication module, or a global navigation satellite system (GNSS) communication module) or a wired communication module 794 (eg, : It may include a local area network (LAN) communication module, or a power line communication module).
  • a corresponding communication module among these communication modules is a first network 798 (eg, a short-range communication network such as Bluetooth, wireless fidelity (WiFi) direct, or infrared data association (IrDA)) or a second network 799 (eg, a legacy network).
  • the wireless communication module 792 uses the subscriber information (eg, International Mobile Subscriber Identifier (IMSI)) stored in the subscriber identification module 796 within a communication network, such as the first network 798 or the second network 799 .
  • the electronic device 701 may be identified or authenticated.
  • the wireless communication module 792 may support a 5G network after a 4G network and a next-generation communication technology, for example, a new radio access technology (NR).
  • NR access technology includes high-speed transmission of high-capacity data (eMBB (enhanced mobile broadband)), minimization of terminal power and access to multiple terminals (mMTC (massive machine type communications)), or high reliability and low latency (URLLC (ultra-reliable and low-latency) -latency communications)).
  • eMBB enhanced mobile broadband
  • mMTC massive machine type communications
  • URLLC ultra-reliable and low-latency
  • the wireless communication module 792 may support a high frequency band (eg, mmWave band) to achieve a high data rate, for example.
  • a high frequency band eg, mmWave band
  • the wireless communication module 792 uses various techniques for securing performance in a high frequency band, for example, beamforming, massive multiple-input and multiple-output (MIMO), all-dimensional multiplexing. It may support technologies such as full dimensional MIMO (FD-MIMO), an array antenna, analog beam-forming, or a large scale antenna.
  • the wireless communication module 792 may support various requirements specified in the electronic device 701 , an external electronic device (eg, the electronic device 704 ), or a network system (eg, the second network 799 ).
  • the wireless communication module 792 includes a peak data rate (eg, 20 Gbps or more) for realization of eMBB, loss coverage for realization of mMTC (eg, 164 dB or less), or U-plane latency (for URLLC realization) ( Example: downlink (DL) and uplink (UL) each 0.5 ms or less, or round trip 1 ms or less) may be supported.
  • a peak data rate eg, 20 Gbps or more
  • mMTC eg, 164 dB or less
  • U-plane latency for URLLC realization
  • the antenna module 797 may transmit or receive a signal or power to the outside (eg, an external electronic device).
  • the antenna module 797 may include an antenna including a conductor formed on a substrate (eg, a PCB) or a radiator formed of a conductive pattern.
  • the antenna module 797 may include a plurality of antennas (eg, an array antenna). In this case, at least one antenna suitable for a communication scheme used in a communication network such as the first network 798 or the second network 799 is connected from the plurality of antennas by, for example, the communication module 790 . can be selected. A signal or power may be transmitted or received between the communication module 790 and an external electronic device through the selected at least one antenna.
  • other components eg, a radio frequency integrated circuit (RFIC)
  • RFIC radio frequency integrated circuit
  • the antenna module 797 may form a mmWave antenna module.
  • the mmWave antenna module comprises a printed circuit board, an RFIC disposed on or adjacent to a first side (eg, bottom side) of the printed circuit board and capable of supporting a designated high frequency band (eg, mmWave band); and a plurality of antennas (eg, an array antenna) disposed on or adjacent to a second side (eg, top or side) of the printed circuit board and capable of transmitting or receiving signals of the designated high frequency band. can do.
  • peripheral devices eg, a bus, general purpose input and output (GPIO), serial peripheral interface (SPI), or mobile industry processor interface (MIPI)
  • GPIO general purpose input and output
  • SPI serial peripheral interface
  • MIPI mobile industry processor interface
  • the command or data may be transmitted or received between the electronic device 701 and the external electronic device 704 through the server 708 connected to the second network 799 .
  • Each of the external electronic devices 702 and 704 may be the same or a different type of the electronic device 701 .
  • all or a part of operations executed by the electronic device 701 may be executed by one or more external electronic devices 702 , 704 , or 708 .
  • the electronic device 701 may instead of executing the function or service itself.
  • one or more external electronic devices may be requested to perform at least a part of the function or the service.
  • One or more external electronic devices that have received the request may execute at least a part of the requested function or service, or an additional function or service related to the request, and transmit a result of the execution to the electronic device 701 .
  • the electronic device 701 may process the result as it is or additionally and provide it as at least a part of a response to the request.
  • cloud computing, distributed computing, mobile edge computing (MEC), or client-server computing technology may be used.
  • the electronic device 701 may provide an ultra-low latency service using, for example, distributed computing or mobile edge computing.
  • the external electronic device 704 may include an Internet of things (IoT) device.
  • Server 708 may be an intelligent server using machine learning and/or neural networks.
  • the external electronic device 704 or the server 708 may be included in the second network 799 .
  • the electronic device 701 may be applied to an intelligent service (eg, smart home, smart city, smart car, or health care) based on 5G communication technology and IoT-related technology.
  • the electronic device may have various types of devices.
  • the electronic device may include, for example, a portable communication device (eg, a smart phone), a computer device, a portable multimedia device, a portable medical device, a camera, a wearable device, or a home appliance device.
  • a portable communication device eg, a smart phone
  • a computer device e.g., a smart phone
  • a portable multimedia device e.g., a portable medical device
  • a camera e.g., a portable medical device
  • a camera e.g., a portable medical device
  • a camera e.g., a portable medical device
  • a wearable device e.g., a smart bracelet
  • a home appliance device e.g., a home appliance
  • first, second, or first or second may be used simply to distinguish an element from other elements in question, and may refer elements to other aspects (e.g., importance or order) is not limited. It is said that one (eg, first) component is “coupled” or “connected” to another (eg, second) component, with or without the terms “functionally” or “communicatively”. When referenced, it means that one component can be connected to the other component directly (eg by wire), wirelessly, or through a third component.
  • module used in various embodiments of this document may include a unit implemented in hardware, software, or firmware, and is interchangeable with terms such as, for example, logic, logic block, component, or circuit.
  • a module may be an integrally formed part or a minimum unit or a part of the part that performs one or more functions.
  • the module may be implemented in the form of an application-specific integrated circuit (ASIC).
  • ASIC application-specific integrated circuit
  • Various embodiments of the present document include one or more instructions stored in a storage medium (eg, internal memory 736 or external memory 738) readable by a machine (eg, electronic device 701). may be implemented as software (eg, a program 740) including
  • a processor eg, processor 720
  • a device eg, electronic device 701
  • the one or more instructions may include code generated by a compiler or code executable by an interpreter.
  • the device-readable storage medium may be provided in the form of a non-transitory storage medium.
  • 'non-transitory' only means that the storage medium is a tangible device and does not contain a signal (eg, electromagnetic wave), and this term is used in cases where data is semi-permanently stored in the storage medium and It does not distinguish between temporary storage cases.
  • a signal eg, electromagnetic wave
  • the method according to various embodiments disclosed in this document may be provided as included in a computer program product.
  • Computer program products may be traded between sellers and buyers as commodities.
  • the computer program product is distributed in the form of a machine-readable storage medium (eg compact disc read only memory (CD-ROM)), or via an application store (eg Play Store TM ) or on two user devices ( It can be distributed (eg downloaded or uploaded) directly or online between smartphones (eg: smartphones).
  • a part of the computer program product may be temporarily stored or temporarily created in a machine-readable storage medium such as a memory of a server of a manufacturer, a server of an application store, or a relay server.
  • each component eg, a module or a program of the above-described components may include a singular or a plurality of entities, and some of the plurality of entities may be separately disposed in other components. have.
  • one or more components or operations among the above-described corresponding components may be omitted, or one or more other components or operations may be added.
  • a plurality of components eg, a module or a program
  • the integrated component may perform one or more functions of each component of the plurality of components identically or similarly to those performed by the corresponding component among the plurality of components prior to the integration. .
  • operations performed by a module, program, or other component are executed sequentially, in parallel, repeatedly, or heuristically, or one or more of the operations are executed in a different order, or omitted. or one or more other operations may be added.
  • the mobile communication device 100 includes a housing 250 including a slit 280 formed in an area and a tray 200 disposed to be inserted into the slit 280 and , the tray 200 includes a first portion 201 forming a recess 240 in which a subscriber identity module (SIM) can be seated, and a second portion 202 having a shape corresponding to the slit 280 .
  • SIM subscriber identity module
  • a third part 203 having a hole 151 formed in one region of the second part 202 and disposed between the first part 201 and the second part 202, the The third portion 203 includes an opening extending from the hole 151 , and includes a waterproof member 220 and the hole 151 disposed to surround at least a portion of the third portion 203 , and a latch 210 disposed in the space formed by the opening, the latch 210 rotatable in the space, and the latch (
  • 210 is aligned in the first direction within the opening of the third portion 203 , at least a portion of the tray 200 is drawn out from the housing 250 , and the tray 200 is moved to the housing
  • the latch 210 is aligned in a direction different from the first direction while being inserted into the housing 250 , the tray 200 is attached to the housing 250 by an inner wall of the housing 250 . It can be fixed in the inserted state.
  • the mobile communication device 100 includes an elastic member 271 disposed in the slit 280 , and when the tray 200 is inserted into the housing 250 , the tray 200 . ) presses the elastic member 271 , and in a state in which the tray 200 is inserted into the housing 250 , the latch 210 moves in the first direction within the opening of the third part 203 . When aligned, at least a portion of the tray 200 may be drawn out from the housing 250 by the elastic member 271 .
  • the mobile communication device 100 includes at least one processor 720 and a sensor 272 electrically connected to the at least one processor 720 , and the at least one processor 720 . may detect whether the elastic member 271 is in contact with the sensor 272 and determine whether the tray 200 is inserted based on the contact.
  • the mobile communication device 100 includes at least one terminal 290 , and in a state in which the tray 200 is inserted into the housing 250 , the at least one terminal 290 . may be in contact with the SIM, and the at least one processor 720 may be electrically connected to the SIM through the at least one terminal 290 .
  • the latch 210 includes a body 212 and the body 212 in contact with the inner wall of the housing 250 while the tray 200 is inserted into the housing 250 . It may include a head 211 integrally formed with and at least partially exposed to the outside of the mobile communication device 100 through the hole 151 .
  • the latch 210 is on one surface exposed to the outside of the mobile communication device 100 among the heads 211 in a state in which the tray 200 is inserted into the housing 250, At least one groove 213 may be included.
  • the latch 210 may be rotated by an external force applied through the groove 213 .
  • the mobile communication device 100 includes a compression spring 430 coupled to at least a portion of the body 212 and the third portion 203 of the latch 210, and the tray ( In a state where 200 is inserted into the housing 250 , the latch 210 is pressed by the compression spring 430 in a direction toward the hole 151 to move the latch 210 .
  • One surface exposed to the outside of the communication device 100 may flush with the outer wall of the housing 250 .
  • the body 212 may have a larger diameter than the head 211 .
  • the housing 250 includes a locking protrusion inside the slit 280 , and due to the interference between the locking protrusion and the second part 202 , the housing of the tray 200 is Insertion to 250 may be complete.
  • the tray 200 includes a torsion spring 610 coupled to at least a portion of the latch 210 and the second part 202, and the latch 210 includes the torsion spring ( 610), pressure may be applied to be aligned in a second direction different from the first direction.
  • the latch 210 includes at least one inclined surface on one surface of the head 211 facing the first part 201 , and the tray 200 is inserted into the housing 250 .
  • the latch 210 is aligned in the first direction by bringing the at least one inclined surface of the latch 210 into contact with the outer wall of the housing 250 , and the tray 200 . is inserted into the housing 250 , the latch 210 is aligned in the second direction by the torsion spring 610 , so that the tray 200 is secured to the housing by the inner wall of the housing 250 . It may be fixed in the inserted state in 250 .
  • the latch 210 when the tray 200 is withdrawn from the housing 250 , the latch 210 may be aligned in the second direction by the torsion spring 610 .
  • it further includes a metal shell coupled to the slit 280, wherein the metal shell includes a path for guiding the insertion of the tray 200 into the housing 250.
  • the waterproof member 220 may be formed of a rubber material and may have a ring shape.
  • the mobile communication device 100 includes a housing 250 including a slit 280 formed in an area and a tray 200 disposed to be inserted into the slit 280, the tray Reference numeral 200 denotes a first part 201 forming a recess 240 in which at least one external component can be seated, a shape corresponding to the slit 280, and a hole 151 in one region.
  • a waterproof member 220 disposed to surround at least a part of the third part 203 , and disposed in a space formed by the hole 151 of the second part 202 and the opening of the third part 203 .
  • the latch 210 and the second part 202 and a torsion spring 610 coupled to the latch 210, the latch 210 rotatable in the space is the first part 201 and at least one inclined surface on one surface facing toward ), aligned in the first direction, and after the tray 200 is inserted into the housing 250, the latch 210 is By being aligned in a second direction different from the first direction, the tray 200 may be fixedly inserted into the housing 250 by the inner wall of the housing 250 .
  • the at least one external component may include at least one of a subscriber identity module (SIM) and a secure digital card (SD card).
  • SIM subscriber identity module
  • SD card secure digital card
  • the mobile communication device 100 includes an elastic member 271 disposed in the slit 280 , and when the tray 200 is inserted into the housing 250 , the tray 200 . ) presses the elastic member 271 , and in a state in which the tray 200 is inserted into the housing 250 , the latch 210 moves in the first direction within the opening of the third part 203 . When aligned, at least a portion of the tray 200 may be drawn out from the housing 250 by the elastic member 271 .
  • the mobile communication device 100 includes at least one processor 720 and a sensor 272 electrically connected to the at least one processor 720 , and the at least one processor 720 . may detect whether the elastic member 271 is in contact with the sensor 272 and determine whether the tray 200 is inserted based on the contact.
  • a compression spring 430 coupled to at least a portion of the latch 210 and the third part 203 is included, and the tray 200 is inserted into the housing 250 in a state in which it is inserted. , the latch 210 is pressed in a direction toward the hole 151 by the compression spring 430 so that the outer surface of the latch 210 is flush with the outer wall of the housing 250 . )can do.

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  • Engineering & Computer Science (AREA)
  • Artificial Intelligence (AREA)
  • Computer Vision & Pattern Recognition (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Telephone Set Structure (AREA)

Abstract

Un dispositif de communication mobile selon divers modes de réalisation de la présente divulgation comprend : un boîtier comprenant une fente formée dans une région ; et un plateau conçu pour pouvoir être inséré dans la fente, le plateau comprenant : une première partie servant à former un évidement dans lequel un module d'identification d'abonné (SIM) peut être chargé ; une deuxième partie ayant une forme correspondant à celle de la fente ; un trou formé dans une région de la deuxième partie ; une troisième partie ménagée entre la première partie et la deuxième partie, la troisième partie comprenant une ouverture s'étendant à partir du trou ; un élément d'imperméabilisation conçu pour englober au moins une partie de la troisième partie ; et un verrou ménagé dans un espace formé au moyen du trou et de l'ouverture, le verrou pouvant tourner dans l'espace, le plateau comportant au moins une partie retirée du boîtier si le verrou est disposé dans une première direction à l'intérieur de l'ouverture de la troisième partie tandis que le plateau est inséré dans le boîtier, et le plateau pouvant être fixé tout en étant inséré dans le boîtier au moyen de la paroi interne du boîtier si le verrou est disposé dans une direction différente de la première direction tandis que le plateau est inséré dans le boîtier.
PCT/KR2022/001627 2021-02-02 2022-01-28 Plateau comprenant un verrou et dispositif de communication mobile le comprenant WO2022169241A2 (fr)

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