WO2020000645A1 - 连接器及手持设备 - Google Patents

连接器及手持设备 Download PDF

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Publication number
WO2020000645A1
WO2020000645A1 PCT/CN2018/104379 CN2018104379W WO2020000645A1 WO 2020000645 A1 WO2020000645 A1 WO 2020000645A1 CN 2018104379 W CN2018104379 W CN 2018104379W WO 2020000645 A1 WO2020000645 A1 WO 2020000645A1
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WO
WIPO (PCT)
Prior art keywords
connector
slave
housing
contact
positioning
Prior art date
Application number
PCT/CN2018/104379
Other languages
English (en)
French (fr)
Inventor
李德熙
郭盛家
农贵升
唐尹
Original Assignee
深圳市大疆创新科技有限公司
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
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Application filed by 深圳市大疆创新科技有限公司 filed Critical 深圳市大疆创新科技有限公司
Publication of WO2020000645A1 publication Critical patent/WO2020000645A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16MFRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
    • F16M13/00Other supports for positioning apparatus or articles; Means for steadying hand-held apparatus or articles
    • F16M13/04Other supports for positioning apparatus or articles; Means for steadying hand-held apparatus or articles for supporting on, or holding steady relative to, a person, e.g. by chains, e.g. rifle butt or pistol grip supports, supports attached to the chest or head
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/02Contact members
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/46Bases; Cases
    • H01R13/502Bases; Cases composed of different pieces
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R31/00Coupling parts supported only by co-operation with counterpart
    • H01R31/06Intermediate parts for linking two coupling parts, e.g. adapter

Definitions

  • the invention relates to a connector and a handheld device, and belongs to the technical field of connection joints.
  • a mobile electronic device is supported on a handheld device, so that the mobile electronic device can be controlled by the handheld device through a connection line provided by the handheld device to communicate with the mobile electronic device.
  • a connecting wire connected to the control chip is provided in the main body of the gimbal, and the connecting wire passes through the main body of the gimbal to be connected with a mobile electronic device.
  • the control chip also passes It is connected with a control switch or remote control wirelessly or wired, so that the user can control the mobile electronic device to perform one or more operations through the control switch or remote control.
  • the existing connection lines of such handheld devices are packaged with the main body of the gimbal, so that a connection line can only be used for mobile electronic devices with specific interfaces, for example, type-
  • the cable of the c connector can only be used for mating with mobile electronic devices with type-c interface, and cannot be mated with mobile electronic devices with USB and Micro-b connectors; if you want to make the handheld device able to adapt to For mobile electronic devices with any interface to be mated, all interface forms must be exhausted, and separate connection lines must be configured for each interface form. This results in a large number of connection lines on the handheld device, which not only increases the design burden, It's also very unsightly.
  • Embodiments of the present invention provide a connector and a handheld device to solve the above or other potential technical problems.
  • a connector including: a housing and a connector; the housing for detachably mounting in an installation slot opened by a handheld portion of a handheld device; and the connector is provided in the connector.
  • a front wall of the casing is used for mating with an interface of a movable electronic device; and at least one side wall of the casing between the front wall and the rear wall is provided with
  • the master connection contact is electrically connected to the slave connection contact, and the slave connection contact is electrically connected to the joint.
  • the slave detection contact array and the slave connection contact array are located on the same side wall of the housing, and the slave detection contact array and the slave connection contact array Spaced along the length of the connector; or, the slave detection area and the slave connection contact array are located on the same side wall of the housing, and the slave detection area and the slave connection The dot arrays are spaced apart along the length of the connector.
  • the second sliding structure is a protrusion for mating with a sliding groove in the mounting groove, and the protrusion is along a side wall of the connector on a side wall of the housing. Lengthwise.
  • the second positioning structure is a positioning slot for cooperating with a retractable positioning block in the mounting slot; the positioning slot and the slave connection contact are located in the housing. On the same side wall.
  • a positioning groove is formed on a side wall of the housing for cooperating with a retractable positioning block formed in the mounting groove; the slave detection contact, the positioning groove And the slave connection contact, or the slave detection area, the positioning groove, and the slave connection contact are sequentially arranged in a direction away from the joint.
  • the connector as described above wherein the positioning groove penetrates two opposite side walls of the housing to form a positioning through hole, and an elastic pressing portion protruding from the housing is provided in the positioning through hole, and And releasing the positioning between the positioning hole and the retractable positioning block.
  • the connector is any one of a USB connector, a Type-c connector, and a Micro-b connector.
  • a handheld device including: a handheld portion and the connector; the handheld portion is provided with a mounting slot, and the connector is detachably mounted in the mounting slot.
  • the hand-held device as described above, wherein when the connector is installed in the mounting slot in a forward direction, the hand-held device is used for communication connection with a movable electronic device through the connector, and the connector projects out The mounting groove; when the connector is reversely mounted in the mounting groove, the joint is received in the mounting groove.
  • the mounting slot includes: a first receiving slot for receiving a housing of the connector and a second receiving slot for receiving a connector of the connector; the first receiving slot
  • the horizontal height of the lower surface of the second receiving groove is lower than the horizontal height of the lower surface of the second receiving groove.
  • the connector is detachably installed in an installation slot provided by the hand-held part of the handheld device, and is electrically connected to the hand-held part through a contact, so that there is no need to set a connecting wire, and at the same time
  • the connector can be conveniently replaced with a connector having different joints to satisfy a communication connection with a movable electronic device having a different interface.
  • FIG. 1 is a schematic partial structural diagram of a handheld device according to an embodiment of the present invention
  • Figure 2 is an exploded view of Figure 1;
  • FIG. 3 and 4 are schematic structural diagrams of the connector in FIG. 1 under different perspectives;
  • FIG. 5 is a left side view of FIG. 4;
  • FIG. 6 is a partial plan view of the hand-held portion in FIG. 1;
  • FIG. 7 is a partial left side view of the hand-held portion in FIG. 1;
  • FIG. 8 is a partial cross-sectional view of another handheld portion according to an embodiment of the present invention.
  • Hand-held devices 11. Connectors; 111; housings;
  • 1113a upper side wall
  • 1113b lower side wall
  • 1113c right side wall
  • first and second are used for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as “first” and “second” may explicitly or implicitly include at least one of the features. In the description of the embodiment of the present invention, the meaning of "a plurality" is at least two, for example, two, three, etc., unless it is specifically and specifically defined otherwise.
  • FIG. 1 is a schematic structural view of a part of a handheld device provided in this embodiment
  • FIG. 2 is an exploded view of FIG. 1
  • FIG. 3 and FIG. 4 are structural schematic views of the connector in FIG. 1 at different perspectives; Left view.
  • the handheld device 1 provided in this embodiment includes a handheld portion 12 with a mounting slot 13 and a connector 11.
  • the connector 11 includes a housing 111 for being detachably installed in the mounting slot 13 opened by the hand-held portion 12 and a front wall 1111 of the housing 111 for interfacing with a movable electronic device.
  • At least one side wall 1113 between the front wall 1111 and the rear wall 1112 of the housing 111 is further provided with a slave connection contact 113 for electrically connecting with a master connection contact 133 provided in the mounting groove 13, and the slave connection
  • the contact point 113 is also electrically connected to a joint 112 mounted on the front wall 1111.
  • the connector 11 provided in this embodiment is detachably installed in a mounting slot 13 opened by the handheld portion 12 of the handheld device 1 and is electrically connected to the handheld portion 12 through a contact, thereby eliminating the need to provide a connection cable.
  • the connector 11 with different joints 112 can be easily replaced by disassembling and assembling the connector 11 to satisfy the communication connection with the movable electronic device having different interfaces.
  • the housing 111 of the connector 11 may have a shape similar to a rectangular parallelepiped or a cylinder, and when the shape of the housing 111 is a polyhedron, a smooth transition may be made between two adjacent faces.
  • the housing 111 of this embodiment may include a front wall 1111 (lower left side in FIG. 3), a rear wall 1112 (upper right side in FIG. 3), and a front wall.
  • an opening may also be opened in the front wall 1111 so that the connector 112 can be inserted into the housing 111 from the opening so as to be connected with the electrical connector (for example, Circuit board, etc.) so as to be indirectly electrically connected to the slave connection contact 113 described below, or the connector 112 may be electrically connected to the slave connection contact 113 described below directly or through a connection cable after being inserted into the housing 111 .
  • the size of the opening opened on the front wall 1111 can be designed according to actual needs.
  • the electrical connection member installed in the housing 111 may be a PCB board and an FPC board welded together, or of course, it may be any one of the PCB board and the FPC board.
  • the connector 112 in this embodiment may be any one of a USB connector, a Type-c connector, and a Micro-b connector.
  • the side wall 1113 may include an upper cover and a lower cover that are closed together, so as to form an accommodating space capable of accommodating the circuit board, the connection line, and other components.
  • the side wall 1113 can also be selectively designed as a structure including an upper cover and a lower plate, so that when the upper cover and the lower plate are closed together, the above-mentioned accommodating space for accommodating other components can also be formed.
  • parts of the housing 111 other than the side wall 1113 provided with the above-mentioned slave contact 113 may be formed as an integrated part by molding or other integral molding.
  • the side wall 1113 includes an upper cover and a lower part, Board
  • the connection contact 113 is provided on the lower board
  • the front wall 1111, the rear wall 1112 and the upper cover can be integrated into a single piece, so that when assembling, the circuit board and connecting wires can be installed on the lower board first. Up, and then cover the upper cover that is integral with the front wall 1111 and the rear wall 1112 to the lower plate to complete the assembly of the connector 11.
  • the side wall 1113 includes an upper side wall 1113a, a lower side wall 1113b, and a left side wall 1113d and a right side wall 1113c located between the upper side wall 1113a and the lower side wall 1113b.
  • the above-mentioned slave connection contact 113 may be provided on any one of the upper side wall 1113a, the lower side wall 1113b, the left side wall 1113d, and the right side wall 1113c.
  • slave connection contacts 113 may also be provided on a plurality of the upper side wall 1113a, the lower side wall 1113b, the left side wall 1113d, and the right side wall 1113c to improve the reliability of the electrical connection.
  • the master connection contact 133 is disposed on a surface of the mounting groove 13 that is in contact with the slave connection contact 113.
  • the master connection contact 133 is provided on the lower surface 13b of the mounting groove 13; when the slave connection contact 113 is provided on the left side wall 1113d or the right side wall 1113c In the upward direction, the main connection contact 133 is provided on the left side surface 13 d or the right side surface 13 c of the mounting groove 13.
  • the slave connection contacts 113 may include a plurality of slave connection contacts 113 forming a circular or rectangular array of slave connection contacts 113 in order to improve the master connection contact 133 and the slave connection 113.
  • the electrical connection of the contact point 113 is reliable.
  • FIG. 4 shows four rectangular arrays arranged from the connection contacts 113.
  • the number of the main connection contacts 133 mating with the slave connection contacts 113 in the mounting groove 13 is the same as the number of the slave connection contacts 113.
  • These master connection contacts 133 also form an array of master connection contacts 133.
  • the shape of the array of master connection contacts 133 is the same as that of the array of slave connection contacts 113. See FIG. 2 and FIG.
  • the plurality of slave connection contacts 113 may include at least one power supply contact and at least one communication contact, so as to realize the movable electronic device through the mating of the main connection contact 133 and the slave connection contact 113.
  • the power supply contact referred to in this embodiment includes a positive contact and a negative contact, so as to form a power supply loop.
  • a slave detection area 114 may also be provided on the side wall 1113 of the housing 111 so as to cooperate with the main detection contact 134 provided in the mounting groove 13, so that it can be used to detect the connector 11. Mounted state when assembled to the mounting groove 13. It can be understood that, similar to the slave connection contact 113, the above-mentioned slave detection area 114 may also be provided on one or more of the upper side wall 1113a, the lower side wall 1113b, the left side wall 1113d, and the right side wall 1113c. Similar to the main connection contact 133, the main detection contact 133 cooperating with the slave detection area 114 is also provided on the surface of the mounting groove 13 facing the slave detection area 114. Optionally, the slave detection region 114 may be rectangular as shown in FIG. 4 or may be other shapes such as a circle.
  • a slave detection contact may also be used instead of the slave detection area 114 in the above example. It can be understood that there may be multiple slave detection contacts disposed on the side wall 1113, and the multiple slave detection contacts may form a circular or rectangular slave detection contact array.
  • the detection area 114 is either a circular or rectangular shape that has a substantially uniform shape from the detection array.
  • the connector 11 when it is necessary to assemble the connector 11 to the handheld portion 12 so as to mate with the movable electronic device, the connector 11 can be inserted into the mounting slot 13.
  • the main detection contact 134 detects the slave detection area 114 Or when the contact is detected, it can be determined that the connector 11 has been correctly assembled to the hand-held part 12, and at this time, the hand-held part 12 can be electrically connected through the main connection contact 133 and the slave connection contact 113.
  • the portable electronic device mated with the connector 112 of the connector 11 supplies power, or controls the portable electronic device to execute one or more instructions, or the portable electronic device can send one or more instructions to the handheld device 1
  • An executable instruction is used to control the work of the portable electronic device, or the portable electronic device can also supply power to the handheld device 1.
  • master detection contacts 134 designed, when a preset number or a predetermined number of master detection contacts 134 detect the slave detection area 114 or the slave detection contacts corresponding to these master detection contacts 134 It is determined that the connector 11 has been correctly assembled on the handheld portion 12 to improve the accuracy of detection.
  • main connection contact 133 the slave connection contact 113, the main detection contact 134, the slave detection contact, and the slave detection area 114 are not limited in this embodiment, and they can be There are any forms in the technology, such as elastic metal contacts or reeds.
  • the slave connection contact 113 array and the slave detection area 114 may all be disposed on the lower side wall 1113 b of the housing 111, and the slave detection area 114 and the slave connection contact 113 array.
  • the connectors 11 are arranged at intervals along the length of the connector 11, that is, sequentially arranged in a direction away from the joint 112.
  • the array from the detection area 114 or from the detection contact is disposed near the joint 112, and the array from the connection contact 113 is disposed away from the joint 112.
  • the above-mentioned slave detection area 114 may be replaced with a slave detection contact.
  • the detection area 114 or the detection contact array may be arranged at a position far away from the joint 112, and the connection contact 113 array may be arranged at a position close to the joint 112. It can be understood that this embodiment also does not exclude that the array of the slave connection contacts 113 and the slave detection area 114 are both disposed on the upper side wall 1113a, the left side wall 1113d, or the right side wall 1113c. Of course, in these alternative structures, the slave detection area 114 can also be replaced by a slave detection contact array.
  • a left side wall 1113d and a right side wall 1113c of the housing 111 are each formed with a mounting groove. 13
  • the projection 115 on the left side surface 13d and the right side surface 13c cooperate with the sliding groove 135.
  • the two protrusions 115 extending along the length of the connector 11 on the left side wall 1113d and the right side wall 1113c can slide the two protrusions 115 into the sliding grooves 135 on both sides of the mounting groove 13 when assembling the connector 11.
  • a protrusion 115 may be provided only on the left side wall 1113d or the right side wall 1113c, or a protrusion 115 may be provided on the upper side wall 1113a or the lower side wall 1113b, of course.
  • a protrusion 115 may be provided on each of the upper side wall 1113a and the lower side wall 1113b.
  • the sliding groove 135 provided in the mounting groove 13 and corresponding to the protrusion 115 is also adjusted to the lower surface 13 b or the upper surface of the mounting groove 13.
  • first and second sliding structures provided in the mounting groove 13 and on the side wall 1113 of the housing 111 to cooperate with each other are not limited to the above-mentioned sliding grooves 135 and
  • the protrusion 115 may also be other sliding structures, including but not limited to balls and rollers, rollers, and the like.
  • a positioning groove 116 matching a retractable positioning block 136 provided on the lower surface 13 b of the mounting groove 13 is further provided on the lower side wall 1113 b of the housing 111, so that when the connector 11 is mounted to When the holding groove 12 is in the mounting groove 13, the retractable positioning block 136 can be inserted into the positioning groove 116 of the lower side wall 1113 b of the housing 111, so as to limit the connector 11 and prevent the connector 11 from moving in a lateral direction. This prevents movement of the connector 11 from the handheld portion 12.
  • the positioning groove 116 may also be designed on the upper side wall 1113a, the left side wall 1113d, or the right side wall 1113c.
  • a retractable positioning block 136 that cooperates with the positioning groove 116 is correspondingly disposed on the upper surface, the left side 13d, or the right side 13c of the mounting groove 13.
  • the retractable positioning block 136 may be an elastic positioning pin or other similar structures.
  • cooperating retractable positioning block 136 and the positioning slot 116 may also be replaced by other cooperating first positioning structures and second positioning structures, including but not limited to snap rings and retaining rings, And claws.
  • an elastic positioning pin may be provided on the housing 111, and a through hole cooperating with the elastic positioning pin may be provided on the handheld portion 12, the through hole communicates with the mounting groove 13, and the above elastic positioning portion may penetrate into the through hole.
  • the positioning pin can be unlocked by disengaging it from the cooperation with the through hole, so as to remove the connector 11 from the mounting groove 13.
  • the slave detection area 114, the positioning groove 116, and the slave connection contact 113 may be provided on the lower side wall 1113b of the housing 111 as shown in FIG.
  • the length direction is set in order. For example, they can be sequentially arranged in a direction away from the joint 112 as shown in FIG. 4.
  • the above-mentioned slave detection area 114 may be replaced with a slave detection contact.
  • the positioning groove 116, the slave connection contact 113, and the slave detection area 114 (or the slave detection contact) may not be provided on the same side wall of the housing 111, or only two of them are provided. It is disposed on the same side wall of the casing 111.
  • the positioning groove 116 and the slave connection contact 113 may be provided on the same side wall 1113 of the housing 111, and the slave detection area 114 or the test contact may be provided on different side walls 1113.
  • the positioning groove 116 and the slave connection contact 113 are provided on the lower side wall 1113b, and the slave detection area 114 or the slave detection contact is provided on the left side wall 1113d or the right side wall 1113c.
  • the positioning groove 116 may be penetrated through the entire casing 111 to form a positioning through hole, and an elastic pressing may be provided in the positioning through hole. Therefore, when the connector 11 needs to be detached from the mounting groove 13, the retractable positioning block 136 protruding into the positioning through hole can be compressed by pressing the elastic pressing part, thereby releasing its blocking effect on the connector 11. Furthermore, the connector 11 can be easily taken out from the mounting groove 13. Taking FIG.
  • the positioning hole penetrates the upper side wall 1113a and the lower side wall 1113b of the housing 111, the retractable positioning block 136 is disposed on the lower surface 13b of the mounting groove 13, and an elastic pressing portion is provided in the positioning hole.
  • the elastic pressing portion may protrude outside the casing 111, for example, the upper side wall 1113a of the casing 111.
  • the mounting groove 13 of the handheld portion 12 may be opened on the top of the handheld portion, thereby forming a shape including a front opening 13 e and an upper opening 13 a. That is, in this example, the mounting groove includes a front opening 13e, a rear surface opposite to the front opening 13e, an upper opening 13a, a lower surface 13b, a left side 13d, and a right side located between the front opening 13e and the rear surface. Face 13c.
  • the elastic pressing portion when the above-mentioned elastic pressing portion is installed in the positioning through hole provided by the connector 11 and the connector 11 is installed on the hand-held portion 12, the elastic pressing portion can protrude from the opening surface of the upper opening 13a to facilitate User's press.
  • the size of the upper opening 13a of the mounting groove 13 can be designed according to actual needs. It can be understood that the main connection contact 133, the main detection contact 134, the retractable positioning block 136, and the sliding slot 135 provided in the mounting portion 13 of the hand-held portion having the structure of this example are provided on the left side 13d of the mounting slot 13, One or more of the right side surface 13c and the lower surface 13b may be provided on the lower surface 13b, for example, as shown in FIG. 6.
  • FIG. 8 is a partial cross-sectional view of another handheld portion provided by this embodiment.
  • the mounting groove 13 may be opened between the top and the bottom of the handheld portion 12. That is, the mounting groove 13 in this example includes a front opening 13e, a rear surface opposite to the front opening 13e, an upper surface 13f, a lower surface 13b, a left side 13d, and a right side located between the front opening 13e and the rear surface. Face 13c.
  • one or both of the main connection contact 133 and the main detection contact 134 provided in the mounting groove 13 may be provided on the upper surface 13f.
  • the main connection contact 133 and The main detection contact 134 is provided on one or more of the lower surface 13b, the left side surface 13d, and the right side surface 13c of the mounting groove.
  • the retractable positioning block 136 is provided on the lower surface 13b, and an escape hole 121 opposite to the retractable positioning block 136 is opened on the upper surface 13f to make the mounting on the connector 11 flexible.
  • the pressing portion can pass through the avoiding hole 121 to facilitate pressing operation to unlock the connection between the connector 11 and the handheld portion 12.
  • the mounting groove 13 can have only one open surface, its setting position or shape can also be adjusted accordingly according to needs.
  • the upper surface 13f of the mounting groove 13 can be in full contact with the elastic pressing portion.
  • a part is made of an elastic material such as silicone, so as to facilitate the pressing of the elastic pressing portion through the upper surface 13f, which is not specifically limited here.
  • the connector 11 in order to make the storage of the connector 11 more convenient, can not only be installed in the mounting groove 13 in a forward direction as shown in FIG. 1, so that the joint 112 of the connector 11 projects out.
  • the mounting groove 13 facilitates the connection of the movable electronic device; and can also be reversely installed into the mounting groove 13 as shown in FIG. 2, so that the joint 112 of the connector 11 is also accommodated in the mounting groove 13 to avoid The joint 112 of the connector 11 interferes with other objects, thereby protecting the joint 112 and facilitating the installation and transportation of the handheld device 1.
  • the mounting groove 13 includes a first housing 111 for receiving the connector 111.
  • the slave detection area 114 or the slave detection contact of the connector 11 is in contact with the main detection contact 134 in the installation slot 13, and the slave connection contact 113 is in contact with The main connection contact 133 comes into contact, and the retractable positioning block 136 in the mounting groove 13 snaps into the positioning groove 116 of the connector 11.
  • the main detection contact 134 does not It is in contact with the slave detection area 114 or the slave detection contact, and the main connection contact 133 is not in contact with the slave detection contact 113, but the retractable positioning block 136 in the mounting groove 13 can be snapped into the positioning groove 116 of the connector 11 .
  • FIG. 1 and FIG. 2 show that the mounting groove 13 is disposed along the horizontal direction, and the main connection contact 133 is also disposed on the lower surface 13 b in the mounting groove 13 to improve the reliability of the electrical connection.
  • the mounting groove 13 may be provided along a vertical direction or other suitable directions.
  • the handheld device 1 in the above embodiment includes, but is not limited to, a handheld gimbal, a selfie stick, and other devices that need to be connected to a mobile electronic device.
  • the movable electronic device can send a control instruction to the handheld gimbal to control the rotation of the handheld gimbal or control the shooting device on the handheld gimbal.
  • the shooting device can be integrated with other structures on the handheld gimbal, such as the gimbal.
  • the mobile electronic device is connected to the handheld gimbal, the handheld gimbal
  • the stage can carry a removable electronic device, or the movable electronic device can carry a handheld gimbal.
  • the selfie stick when the selfie stick is connected to the movable electronic device, the selfie or camera function of the movable electronic device can be controlled through the selfie stick.
  • the selfie stick when it is a handheld gimbal, selfie stick, or other handheld device, when it is mated with a removable electronic device through the above-mentioned connector 11, it can be used to power the removable electronic device through the handheld device 1.
  • the mobile electronic device is used to power the handheld device 1 or certain components on the handheld device 1.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Telephone Set Structure (AREA)
  • Details Of Connecting Devices For Male And Female Coupling (AREA)

Abstract

一种连接器和手持设备。一种连接器(11),包括:壳体(111)以及接头(112);所述壳体(111),用于可拆卸地安装于手持设备(1)的手持部(12)所开设的安装槽(13)内;所述接头(112)设置在所述壳体(111)的前壁(1111)上,用于与可移动电子设备的接口配接;所述壳体(111)位于所述前壁(1111)和后壁(1112)之间的至少一个侧壁(1113)上设置有用于与所述安装槽(13)内的主连接触点(133)电连接的从连接触点(113),且所述从连接触点(113)与所述接头(112)电连接。上述连接器(11)可拆卸地安装在手持设备(1)的手持部(12)所开设的安装槽(13)内,并与手持部(12)之间通过触点实现电连接,从而无需再设置连接线,同时通过拆装连接器(11)可以方便的更换具有不同接头的连接器(11)来满足与具有不同接口的可移动电子设备的通信连接。

Description

连接器及手持设备 技术领域
本发明涉及一种连接器及手持设备,属于连接接头技术领域。
背景技术
随着移动式电子设备朝着小型化、智能化和触屏控制方向发展,给使用者带来了前所未有的体验和操作便捷性。例如,现有的移动式电子设备越来越多的取代了原来的相机或者控制器作为远距离拍摄或者控制的平台。一般来讲,是将移动式电子设备支撑在一个手持设备上,以便通过手持设备设置的连接线与移动式电子设备进行通信连接,从而可以通过该手持设备来操控移动式电子设备。以手持云台为例,在其云台主体部内设置有与控制芯片连接的连接线,该连接线穿出云台主体部,以便与移动式电子设备的配接,同时,该控制芯片还通过无线或者有线的方式与一个控制开关或者遥控器连接,从而用户可以通过控制开关或者遥控器来控制移动式电子设备进行一种或者多种操作。但是,现有的这种手持设备的连接线都是与云台主体部封装在一起的,这样就造成了一根连接线只能用于与特定接口的移动式电子设备,例如,具有type-c接头的连接线只能用于与type-c接口的移动式电子设备配接,而无法与具有USB和Micro-b接头的移动式电子设备配接;如果想要使手持设备能够适应与具有任意接口的移动式电子设备进行配接,就必须穷尽所有的接口形式,并为每一种接口形式配置单独的连接线,这样就造成了手持设备上的连接线很多,不仅加重了设计负担,而且还非常不美观。
发明内容
本发明实施例提供一种连接器及手持设备,以解决上述或者其他潜在技术问题。
根据本发明的一方面,提供一种连接器,包括:壳体以及接头;所述壳体,用于可拆卸地安装于手持设备的手持部所开设的安装槽内;所述接 头设置在所述壳体的前壁上,用于与可移动电子设备的接口配接;所述壳***于所述前壁和后壁之间的至少一个侧壁上设置有用于与所述安装槽内的主连接触点电连接的从连接触点,且所述从连接触点与所述接头电连接。
如上所述的连接器,其中,所述壳体的至少一个侧壁上还设置有用于配合所述安装槽内的主检测触点的从检测区域或从检测触点,所述从检测区域或所述从检测触点用于检测所述连接器的安装状态。
如上所述的连接器,其中,所述从连接触点为多个,所述多个从连接触点中包括至少一个供电触点以及至少一个通信触点;和/或,所述从检测触点为多个。
如上所述的连接器,其中,多个所述从连接触点形成圆形或者矩形从连接触点阵列,和/或,所述多个从检测触点形成圆形或者矩形从检测触点阵列。
如上所述的连接器,其中,所述从检测触点阵列和从连接触点阵列位于所述壳体的同一个侧壁上、且所述从检测触点阵列与所述从连接触点阵列沿着所述连接器的长度方向间隔设置;或,所述从检测区域与所述从连接触点阵列位于所述壳体的同一个侧壁上,且所述从检测区域与所述从连接点阵列沿着所述连接器的长度方向间隔设置。
如上所述的连接器,其中,所述壳体的侧壁上还形成有用于配合所述安装槽内的第一滑动结构的第二滑动结构。
如上所述的连接器,其中,所述第二滑动结构为用于配合所述安装槽内的滑槽的凸起,所述凸起在所述壳体的侧壁上沿所述连接器的长度方向延伸。
如上所述的连接器,其中,所述壳体的侧壁上还形成有用于配合所述安装槽内的第一定位结构的第二定位结构。
如上所述的连接器,其中,所述第二定位结构为用于配合所述安装槽内的可收缩定位块的定位槽;所述定位槽与所述从连接触点位于所述壳体的同一个侧壁上。
如上所述的连接器,其中,所述壳体的侧壁上形成有定位槽,用于与形成于所述安装槽内的可伸缩定位块配合;所述从检测触点、所述定位槽以及所述从连接触点,或所述从检测区域、所述定位槽以及所述从连接触点沿着远离所述接头的方向依次设置。
如上所述的连接器,其中,所述定位槽贯穿所述壳体相对的两个侧壁以形成定位通孔,所述定位通孔内设置有伸出所述壳体外的弹性按压部,用于解除所述定位孔与所述可伸缩定位块之间的定位。
如上所述的连接器,其中,所述壳体内设置有电连接件,所述电连接件用于电连接所述接头和从连接触点。
如上所述的连接器,其中,所述接头为USB接头、Type-c接头、Micro-b接头中的任意一种。
根据本发明的另一方面,提供一种手持设备,包括:手持部以及上述连接器;所述手持部开设有安装槽,所述连接器可拆卸地安装于所述安装槽内。
如上所述的手持设备,其中,当所述连接器正向安装于所述安装槽内时,所述手持设备用于通过所述接头与可移动电子设备通信连接,所述接头凸出于所述安装槽;当所述连接器反向安装于所述安装槽内时,所述接头收容于所述安装槽内。
如上所述的手持设备,其中,所述安装槽包括:用于容纳所述连接器的壳体的第一容纳槽以及容纳所述连接器的接头的第二容纳槽;所述第一容纳槽的下表面的水平高度低于所述第二容纳槽的下表面的水平高度。
根据实施例的技术方案,连接器可拆卸地安装在手持设备的手持部所开设的安装槽内,并与手持部之间通过触点实现电连接,从而无需再设置连接线,同时通过拆装连接器可以方便的更换具有不同接头的连接器来满足与具有不同接口的可移动电子设备的通信连接。
本发明的附加方面的优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本发明的实践了解到。
附图说明
通过参照附图的以下详细描述,本发明实施例的上述和其他目的、特征和优点将变得更容易理解。在附图中,将以示例以及非限制性的方式对本发明的多个实施例进行说明,其中:
图1为本发明实施例提供的手持设备的局部结构示意图;
图2为图1的***图;
图3和图4为图1中的连接器在不同视角下的结构示意图;
图5为图4的左视图;
图6为图1中的手持部的局部俯视图;
图7为图1中的手持部的局部左视图;
图8为本发明实施例提供的另一种手持部的局部剖视图。
图中:
1、手持设备;       11、连接器;        111、壳体;
1111、前壁;        1112、后壁;        1113、侧壁;
1113a、上侧壁;       1113b、下侧壁;      1113c、右侧壁;
1113d、左侧壁;        112、接头;         113、从连接触点;
114、从检测区域;      115、凸起;         116、定位槽;
12、手持部;           121、避让孔;       13、安装槽;
13a、上开口;          13b、下表面;       13c、右侧面;
13d、左侧面;          13e、前开口;       13f、上表面;
131、第一容纳槽;      132、第二容纳槽;   133、主连接触点;
134、主检测触点;      135、滑槽;         136、可伸缩定位块。
具体实施方式
下面详细描述本发明的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,旨在用于解释本发明,而不能理解为对本发明的限制。
在本发明的描述中,需要理解的是,术语“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。
此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。在本发明实施例的描述中,“多个”的含义是至少两个,例如两个,三个等,除非另有明确具体的限定。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不必须针对的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任一个或多个实施例或示例中以合适的方式结合。此外,在不相互矛盾的情况下,本领域的技术人员可以将本说明书中描述的不同实施例或示例以及不同实施例或示例的特征进行结合和组合。
图1为本实施例提供的手持设备的部分结构示意图;图2为图1的***图;图3和图4为图1中的连接器在不同视角下的结构示意图;图5为图4的左视图。如图1至图5所示,本实施例提供的手持设备1包括:开设有安装槽13的手持部12以及连接器11。其中,连接器11包括:用于可拆卸的安装于手持部12所开设的安装槽13内的壳体111,以及设置在壳体111的 前壁1111上、用于与可移动电子设备的接口配接的接头112。在壳体111前壁1111与后壁1112之间的至少一个侧壁1113上还设置有从连接触点113,用于与安装槽13内设置的主连接触点133电连接,且该从连接触点113还与安装在前壁1111上的接头112电连接。
本实施例提供的连接器11,其可拆卸地安装在手持设备1的手持部12所开设的安装槽13内,并与手持部12之间通过触点实现电连接,从而无需再设置连接线,同时通过拆装连接器11可以方便的更换具有不同接头112的连接器11来满足与具有不同接口的可移动电子设备的通信连接。
具体来说,在本实施例中,连接器11的壳体111可以是类似于长方体或者圆柱体的形状,并且当壳体111式多面体的形状时,其相邻两个面之间可以圆滑过渡。举例而言,如图3至图5所示,本实施例的壳体111可以包括:前壁1111(图3中的左下侧)、后壁1112(图3中的右上侧)以及位于前壁1111和后壁1112之间的四个侧壁1113a、1113b、1113c和1113d。从图3和图4中可以看出,前壁1111与侧壁1113之间、四个侧壁1113a、1113b、1113c和1113d之间、后壁1112与侧壁1113之间均圆滑过渡。
继续参见图3和图4,在本实施例中,还可以在前壁1111上开设开口,从而接头112可以从该开口***到壳体111内,以便与壳体111安装的电连接件(例如电路板等)连接在一起从而间接与下述的从连接触点113电连接,或者该接头112也可以在***到壳体111后直接或者通过连接线与下述的从连接触点113电连接。应当理解,在本实施例中,开设在前壁1111上的开口的大小可以根据实际需要进行设计。此外,安装在壳体111内的电连接件可以是焊接在一起的PCB板和FPC板,当然也可以是PCB板和FPC板中的任意一个。本实施例的接头112则可以是USB接头、Type-c接头、Micro-b接头中的任意一种。
可选的,侧壁1113可以包括盖合在一起的上盖和下盖,以便形成可以容纳上述电路板、连接线以及其他部件的容纳空间。当然,也可以选择性地将侧壁1113设计成为包括上盖和下板的结构,以便将上盖和下板盖合在一起时同样可以形成上述用于容纳其他部件的容纳空间。为了装配方便,可以将除设置有上述从连接触点113的侧壁1113之外的其他壳体111部分通过模塑或 者其他一体成型的方式形成一体件,例如当侧壁1113包括上盖和下板,且从连接触点113设置在下板上时,就可以将前壁1111、后壁1112和上盖形成一体件,从而在装配时,就可以先将电路板、连接线等安装到下板上,然后再将与前壁1111和后壁1112形成一体件的上盖盖合到下板上以便完成连接器11的组装。
具体来说,参见图3至图5,上述侧壁1113包括上侧壁1113a、下侧壁1113b、以及位于上侧壁1113a和下侧壁1113b之间的左侧壁1113d和右侧壁1113c。上述从连接触点113可以设置在上侧壁1113a、下侧壁1113b、左侧壁1113d和右侧壁1113c的任何一个上。当然,在某些示例中,也可以在上侧壁1113a、下侧壁1113b、左侧壁1113d和右侧壁1113c的多个上均设置从连接触点113,以便提高电连接的可靠性。可以理解,主连接触点133设置在安装槽13与从连接触点113接触的表面上。例如,当从连接触点113设置在下侧壁1113b上时,则主连接触点133设置在安装槽13的下表面13b上;当从连接触点113设置在左侧壁1113d或者右侧壁1113c上时,则主连接触点133设置在安装槽13的左侧面13d或者右侧面13c上。
参见图4,在本实施例中,从连接触点113可以包括多个,这多个从连接触点113形成圆形或者矩形从连接触点113阵列,以便提高主连接触点133和从连接触点113的电连接可靠性。例如,图4中示出了四个从连接触点113排列成一个2×2的矩形阵列。相应的,安装槽13内与从连接触点113配合的主连接触点133的数量与从连接触点113的数量相同。这些主连接触点133也形成主连接触点133阵列,该主连接触点133阵列的形状与从连接触点113阵列的形状相同,参见图2、以及图6示出的手持部12的俯视图。可选的,多个从连接触点113中可以包括有至少一个供电触点以及至少一个通信触点,以便通过主连接触点133和从连接触点113的配接来实现可移动式电子设备与手持设备之间的通信连接,和/或,实现可移动式电子设备对手持设备的供电和/或,或实现手持设备对可移动式电子设备的供电和/或控制。可以理解,本实施例所称的供电触点包括一个正极触点和一个负极触点,以便形成一个供电回路。
继续参照图4,在一些示例中,还可以在壳体111的侧壁1113上设置从检测区域114,以便与安装槽13内设置的主检测触点134配合,从而可以用 于检测连接器11在装配到安装槽13时的安装状态。可以理解,与从连接触点113类似的,上述从检测区域114也可以设置在上侧壁1113a、下侧壁1113b、左侧壁1113d和右侧壁1113c的其中一个或者多个上。同主连接触点133类似,与从检测区域114配合的主检测触点133也设置在安装槽13内与从检测区域114正对的表面上。可选的,从检测区域114可以是如图4所示的矩形或者也可以是圆形等其他形状。
在另一些示例中,还可以使用从检测触点替代上述示例中的从检测区域114。可以理解,设置在侧壁1113上的从检测触点可以是多个,这多个从检测触点可以形成圆形或者矩形从检测触点阵列。
相应的,在安装槽13内设置的与上述示例中的从检测区域114或者从检测触点阵列配合的主检测触点134也可以是多个,这些主检测触点134也可以排列成与从检测区域114或者从检测阵列形状大致一致的圆形或者矩形形状。
在本实施例中,当需要将连接器11装配到手持部12以便与可移动电子设备配接时,可以将连接器11***到安装槽13内,当主检测触点134检测到从检测区域114或者从检测触点时,就可以确定该连接器11已经被正确地装配到了手持部12上,此时,手持部12就可以通过主连接触点133和从连接触点113的电连接为与连接器11的接头112配接的可移动式电子设备供电,或者控制该可移动式电子设备执行一项或者多项指令,或者也可以是可移动式电子设备向手持设备1发送一项或者多项可执行指令,用于控制可移动电子设备工作,或者也可以是可移动式电子设备为手持设备1供电。当然,如果设计有多个主检测触点134,则当预设数量或者预设位置的主检测触点134均检测到从检测区域114或者与这些主检测触点134对应的从检测触点时,确定该连接器11已经被正确地装配到了手持部12上,以提高检测的准确性。
在此需要说明一点,主连接触点133、从连接触点113、主检测触点134、从检测触点以及从检测区域114的具体形式在本实施例中并不进行限定,其可以采用现有技术中的任意形式,例如弹性金属触点或者簧片等。
在如图4的一些具体的示例中,从连接触点113阵列和从检测区域114可以全部被设置在壳体111的下侧壁1113b上,且该从检测区域114和从连 接触点113阵列沿着连接器11的长度方向间隔设置,也即沿着远离接头112的方向依次设置。换句话说,从检测区域114或从检测触点阵列设置在靠近接头112的位置,而从连接触点113阵列设置在远离接头112的位置。同样的,上述从检测区域114可以使用从检测触点替代。当然,在另一些具体的示例中,也可以将从检测区域114或者从检测触点阵列设置在远离接头112的位置,而将从连接触点113阵列设置在靠近接头112的位置。可以理解,本实施例也不排除将从连接触点113阵列和从检测区域114均设置在上侧壁1113a、左侧壁1113d或者右侧壁1113c上。当然,在这些可替换的结构中,从检测区域114同样可以被从检测触点阵列所替代。
进一步,请参照图3至图5,以及图7所示出的手持部12的部分左视图,在壳体111的左侧壁1113d和右侧壁1113c上还各形成有一个用于与安装槽13左侧面13d和右侧面13c所设置的滑槽135相配合的凸起115。通过左侧壁1113d和右侧壁1113c的两个沿连接器11的长度方向延伸的凸起115,可以在装配连接器11时,将两个凸起115滑入安装槽13两边的滑槽135内,并且由于滑槽135的上下限位作用,连接器11也就被在上下方向上不会出现移动的情况,从而避免连接器11从安装槽13内掉落。可以理解,在另外一些示例中,也可以仅在左侧壁1113d或者右侧壁1113c上设置一个凸起115,或者也可以在上侧壁1113a或者下侧壁1113b上设置一个凸起115,当然也可以在上侧壁1113a和下侧壁1113b上各设置一个凸起115。相应的,安装槽13内设置的与该凸起115相配合的滑槽135也相应调整到安装槽13的下表面13b或者上表面等。此外,还应当理解,在本实施例中,分别设置在安装槽13内以及壳体111的侧壁1113上的相互配合的第一滑动结构和第二滑动结构并不仅限于是上述滑槽135和凸起115,也可以是其他滑动结构,包括但不限于滚珠和滚道以及滚轮等。
参照图4和图6,在壳体111的下侧壁1113b上还开设有与安装槽13的下表面13b设置的可收缩定位块136相匹配的定位槽116,从而当连接器11被安装到手持部12的安装槽13内时,该可收缩定位块136可以***到壳体111下侧壁1113b的定位槽116内,从而实现对连接器11的限位,避免该连接器11在横向上移动,进而防止连接器11从手持部12上掉落。当然,在另外一些示例中,上述定位槽116也可以设计在上侧壁1113a、左侧壁1113d 或者右侧壁1113c上。相应的,与该定位槽116相配合的可伸缩定位块136也相应的设置在该安装槽13的上表面、左侧面13d或者右侧面13c上。在本实施例中,可伸缩定位块136可以是弹性定位销或者是其他类似结构。
容易理解,上述相互配合的可伸缩定位块136和定位槽116在其他一些示例中也可以被其他相互配合的第一定位结构与第二定位结构所替代,包括但不限于卡环和挡圈、以及卡爪等结构。例如,可以在壳体111上设置弹性定位销,并在手持部12上开设与该弹性定位销配合的通孔,该通孔与安装槽13连通,且上述弹性定位部可穿入通孔内并伸出到手持部12外,从而当连接器11安装到安装槽13内时,可以通过该弹性定位部与通孔的配合实现定位作用;当需要拆卸该连接器11时,通过按压该弹性定位销,使其脱离与通孔的配合即可实现解锁,以便将连接器11从安装槽13内取出。
可选的,在一些示例中,可以如图4所示的将从检测区域114、定位槽116和从连接触点113设置在壳体111的下侧壁1113b上,并沿着连接器11的长度方向依次设置。例如,可以如图4所示的沿着远离接头112的方向依次设置。同样的,上述从检测区域114可以使用从检测触点替代。当然,在另一些示例中,定位槽116、从连接触点113、从检测区域114(或从检测触点)也可以均不设置在壳体111的同一侧壁上,或只有其中的两种设置在壳体111的同一侧壁上。例如,可以只是将定位槽116和从连接触点113设置在壳体111的同一个侧壁1113上,而将从检测区域114或者从检测触点设置在不同的侧壁1113上。例如,将定位槽116和从连接触点113设置在下侧壁1113b上,而将从检测区域114或者从检测触点设置在左侧壁1113d或者右侧壁1113c上。
在本实施例中,为了便于解除上述定位槽116与可伸缩定位块136之间的定位,可以使定位槽116贯穿整个壳体111以形成定位通孔,在定位通孔内可以设置有弹性按压部,从而当需要从安装槽13内拆卸连接器11时,通过按压该弹性按压部可以将伸入到定位通孔内的可伸缩定位块136进行压缩,解除其对连接器11的阻挡作用,进而该连接器11可以轻松地从安装槽13内取出。以图4为例,定位孔贯穿壳体111的上侧壁1113a和下侧壁1113b,可伸缩定位块136设置在安装槽13的下表面13b上,在定位孔内设置有弹性按压部。其中,弹性按压部可以伸出于壳体111外,如伸出于壳体111的上侧 壁1113a。
参照图1、图2、图6,如图7所示,手持部12的安装槽13可以开设于手持部的顶部,从而形成包括有前开口13e和上开口13a的形状。也即,在本示例中,安装槽包括:前开口13e,与前开口13e相对的后表面,位于前开口13e和后表面之间的上开口13a、下表面13b、左侧面13d、右侧面13c。这样,当连接器11所设置的定位通孔内安装有上述弹性按压部,且连接器11安装在手持部12上时,弹性按压部就可以从凸出于上开口13a的开口面,以便于使用者的按压。在本实施例中,安装槽13的上开口13a的大小可以根据实际需要进行设计。可以理解,具有本示例结构的手持部,其安装槽13内设置的主连接触点133、主检测触点134、可伸缩定位块136以及滑槽135设置在安装槽13的左侧面13d、右侧面13c和下表面13b的其中一个或者多个上,例如可以如图6所示的全部设置在下表面13b上。
图8为本实施例提供的另一种手持部的局部剖视图。如图8所示,在另一些示例中,该安装槽13还可以开设在手持部12的顶部和底部之间。也即,本示例中的安装槽13包括:前开口13e,与前开口13e相对的后表面,位于前开口13e和后表面之间的上表面13f、下表面13b、左侧面13d、右侧面13c。此时,安装槽13内设置的主连接触点133和主检测触点134中的一个或者两个可以均设置在该上表面13f上,当然,本示例也不排除将主连接触点133和主检测触点134设置在安装槽的下表面13b、左侧面13d和右侧面13c中的一个或者多个上。可选地,为了解锁方便,在本示例中可伸缩定位块136设置在下表面13b,并在上表面13f开设与该可伸缩定位块136相对的避让孔121,以使连接器11上安装的弹性按压部能够从该避让孔121穿出,从而便于按压操作,以解锁连接器11和手持部12的连接。当然,在实际应用中,当安装槽13也可以只有一个开口面,其设置位置或形状还可以根据需要进行其它的相应调整,例如,安装槽13的上表面13f可以全部或与弹性按压部接触的一部分由硅胶等弹性材料制成,以方便通过上表面13f实现对弹性按压部的按压,此处不做具体限定。
在本实施例中,为了使连接器11的收纳更加方便,还可以使连接器11不仅能够如图1所示的正向安装于安装槽13内,以使连接器11的接头112凸出于安装槽13,从而方便可移动电子设备配接;而且还能够如图2所示的 反向安装到安装槽13内,从而使连接器11的接头112也被收纳到安装槽13内,以避免连接器11的接头112与其他物体发生干涉,从而保护接头112,并便于手持设备1的安装和运输。
具体的,为了能够使连接器11可以正向和反向安装于安装槽13内,可以如图2和图6所示,使得安装槽13包括用于容纳连接器11的壳体111的第一容纳槽131以及用于容纳该连接器11的接头112的第二容纳槽132,且第一容纳槽131的下表面的水平高度低于第二容纳槽132的下表面的水平高度。可以理解,当连接器11正向安装于安装槽13内时,该连接器11的从检测区域114或者从检测触点与安装槽13内的主检测触点134接触,从连接触点113与主连接触点133接触,安装槽13内的可伸缩定位块136卡入连接器11的定位槽116内;而当连接器11反向安装于安装槽13内时,则主检测触点134不与从检测区域114或者从检测触点接触,且主连接触点133也不与从检测触点113接触,但安装槽13内的可伸缩定位块136可以卡入连接器11的定位槽116内。
应当可以理解,虽然图1和图2示出了安装槽13沿水平方向设置,并且主连接触点133也设置在安装槽13内的下表面13b,以提高电连接的可靠性。但是,在其他一些示例中,也可以沿着垂直方向或者其他合适的方向设置该安装槽13。
此外,还需要说明一点,上述实施例中的手持设备1包括但不限于是手持云台、自拍杆以及其它需要连接可移动电子设备的装置等。
例如,当手持云台与可移动电子设备配接时,该可移动电子设备可以向该手持云台发送控制指令,以控制手持云台的转动或控制手持云台上的拍摄装置。其中,当手持云台上设有拍摄装置时,该拍摄装置可以与手持云台上的其它结构,如云台,为一体结构,同时,可移动电子设备与手持云台配接时,手持云台可以承载可移动电子设备,或者,可移动电子设备可以承载手持云台。
例如,当自拍杆与可移动电子设备配接时,可以通过自拍杆控制可移动电子设备的拍照或者摄像功能。当然,无论是手持云台、自拍杆或者其他手持装置,当其通过上述连接器11与可移动电子设备配接后,均可以通过该手 持设备1为可移动电子设备供电,当然,也可以是由可移动电子设备为手持设备1或者手持设备1上的某些部件供电。
最后应说明的是:以上实施方式仅用以说明本发明的技术方案,而非对其进行限制;尽管参照前述实施方式对本发明已经进行了详细的说明,但本领域的普通技术人员应当理解:其依然可以对前述实施方式所记载的技术方案进行修改,或者对其中部分或者全部技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明实施方式技术方案的范围。

Claims (30)

  1. 一种连接器,其特征在于,包括:壳体以及接头;
    所述壳体,用于可拆卸地安装于手持设备的手持部所开设的安装槽内;
    所述接头设置在所述壳体的前壁上,用于与可移动电子设备的接口配接;
    所述壳***于所述前壁和后壁之间的至少一个侧壁上设置有用于与所述安装槽内的主连接触点电连接的从连接触点,且所述从连接触点与所述接头电连接。
  2. 根据权利要求1所述的连接器,其特征在于,所述壳体的至少一个侧壁上还设置有用于配合所述安装槽内的主检测触点的从检测区域或从检测触点,所述从检测区域或所述从检测触点用于检测所述连接器的安装状态。
  3. 根据权利要求2所述的连接器,其特征在于,所述从连接触点为多个,所述多个从连接触点中包括至少一个供电触点以及至少一个通信触点;
    和/或,
    所述从检测触点为多个。
  4. 根据权利要求3所述的连接器,其特征在于,多个所述从连接触点形成圆形或者矩形从连接触点阵列,和/或,所述多个从检测触点形成圆形或者矩形从检测触点阵列。
  5. 根据权利要求4所述的连接器,其特征在于,所述从检测触点阵列和从连接触点阵列位于所述壳体的同一个侧壁上、且所述从检测触点阵列与所述从连接触点阵列沿着所述连接器的长度方向间隔设置;或,
    所述从检测区域与所述从连接触点阵列位于所述壳体的同一个侧壁上,且所述从检测区域与所述从连接点阵列沿着所述连接器的长度方向间隔设置。
  6. 根据权利要求1至5任一项所述的连接器,其特征在于,所述壳体的侧壁上还形成有用于配合所述安装槽内的第一滑动结构的第二滑动结构。
  7. 根据权利要求6所述的连接器,其特征在于,所述第二滑动结构为用于配合所述安装槽内的滑槽的凸起,所述凸起在所述壳体的侧壁上沿所述连接器的长度方向延伸。
  8. 根据权利要求1至5任一项所述的连接器,其特征在于,所述壳体的侧壁上还形成有用于配合所述安装槽内的第一定位结构的第二定位结构。
  9. 根据权利要求8所述的连接器,其特征在于,所述第二定位结构为用于配合所述安装槽内的可收缩定位块的定位槽;
    所述定位槽与所述从连接触点位于所述壳体的同一个侧壁上。
  10. 根据权利要求2至5任一项所述的连接器,其特征在于,所述壳体的侧壁上形成有定位槽,用于与形成于所述安装槽内的可伸缩定位块配合;
    所述从检测触点、所述定位槽以及所述从连接触点,或所述从检测区域、所述定位槽以及所述从连接触点沿着远离所述接头的方向依次设置。
  11. 根据权利要求10所述的连接器,其特征在于,所述定位槽贯穿所述壳体相对的两个侧壁以形成定位通孔,所述定位通孔内设置有弹性按压部,用于解除所述定位孔与所述可伸缩定位块之间的定位。
  12. 根据权利要求1至5任一项所述的连接器,其特征在于,所述壳体内设置有电连接件,所述电连接件用于电连接所述接头和从连接触点。
  13. 根据权利要求1至5任一项所述的连接器,其特征在于,所述接头为USB接头、Type-c接头、Micro-b接头中的任意一种。
  14. 一种手持设备,其特征在于,包括:手持部以及连接器;所述连接器包括壳体以及接头;所述壳体,用于可拆卸地安装于手持设备的手持部所开设的安装槽内;所述接头设置在所述壳体的前壁上,用于与可移动电子设备的接口配接;所述壳***于所述前壁和后壁之间的至少一个侧壁上设置有用于与所述安装槽内的主连接触点电连接的从连接触点,且所述从连接触点与所述接头电连接;所述手持部开设有安装槽,所述连接器可拆卸地安装于所述安装槽内。
  15. 根据权利要求14所述的手持设备,其特征在于,所述壳体的至少一个侧壁上还设置有用于配合所述安装槽内的主检测触点的从检测区域或从检测触点,所述从检测区域或所述从检测触点用于检测所述连接器的安装状态。
  16. 根据权利要求15所述的手持设备,其特征在于,所述从连接触点为多个,所述多个从连接触点中包括至少一个供电触点以及至少一个通信触点;
    和/或,
    所述从检测触点为多个。
  17. 根据权利要求16所述的手持设备,其特征在于,多个所述从连接触点形成圆形或者矩形从连接触点阵列,和/或,所述多个从检测触点形成圆形或者矩形从检测触点阵列。
  18. 根据权利要求17所述的手持设备,其特征在于,所述从检测触点阵列和从连接触点阵列位于所述壳体的同一个侧壁上、且所述从检测触点阵列与所述从连接触点阵列沿着所述连接器的长度方向间隔设置;或,
    所述从检测区域与所述从连接触点阵列位于所述壳体的同一个侧壁 上,且所述从检测区域与所述从连接点阵列沿着所述连接器的长度方向间隔设置。
  19. 根据权利要求14至18任一项所述的手持设备,其特征在于,所述壳体的侧壁上还形成有用于配合所述安装槽内的第一滑动结构的第二滑动结构。
  20. 根据权利要求19所述的手持设备,其特征在于,所述第二滑动结构为用于配合所述安装槽内的滑槽的凸起,所述凸起在所述壳体的侧壁上沿所述连接器的长度方向延伸。
  21. 根据权利要求14至18任一项所述的手持设备,其特征在于,所述壳体的侧壁上还形成有用于配合所述安装槽内的第一定位结构的第二定位结构。
  22. 根据权利要求21所述的手持设备,其特征在于,所述第二定位结构为用于配合所述安装槽内的可收缩定位块的定位槽;
    所述定位槽与所述从连接触点位于所述壳体的同一个侧壁上。
  23. 根据权利要求15至18任一项所述的手持设备,其特征在于,所述壳体的侧壁上形成有定位槽,用于与形成于所述安装槽内的可伸缩定位块配合;
    所述从检测触点、所述定位槽以及所述从连接触点,或所述从检测区域、所述定位槽以及所述从连接触点沿着远离所述接头的方向依次设置。
  24. 根据权利要求23所述的手持设备,其特征在于,所述定位槽贯穿所述壳体相对的两个侧壁以形成定位通孔,所述定位通孔内设置有弹性按压部,用于解除所述定位孔与所述可伸缩定位块之间的定位。
  25. 根据权利要求14至18任一项所述的手持设备,其特征在于,所 述壳体内设置有电连接件,所述电连接件用于电连接所述接头和从连接触点。
  26. 根据权利要求14至18任一项所述的手持设备,其特征在于,所述接头为USB接头、Type-c接头、Micro-b接头中的任意一种。
  27. 根据权利要求14至26任一项所述的手持设备,其特征在于,当所述连接器正向安装于所述安装槽内时,所述手持设备用于通过所述接头与可移动电子设备通信连接,所述接头凸出于所述安装槽;
    当所述连接器反向安装于所述安装槽内时,所述接头收容于所述安装槽内。
  28. 根据权利要求27所述的手持设备,其特征在于,所述安装槽包括:用于容纳所述连接器的壳体的第一容纳槽以及容纳所述连接器的接头的第二容纳槽;
    所述第一容纳槽的下表面的水平高度低于所述第二容纳槽的下表面的水平高度。
  29. 根据权利要求28所述的手持设备,其特征在于,所述安装槽沿水平方向设置,所述主连接触点位于所述安装槽内的下表面。
  30. 根据权利要求28所述的手持设备,其特征在于,所述手持设备为手持云台或者自拍杆。
PCT/CN2018/104379 2018-06-29 2018-09-06 连接器及手持设备 WO2020000645A1 (zh)

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CN2495037Y (zh) * 2001-09-20 2002-06-12 旭丽股份有限公司 连接装置
CN101118991A (zh) * 2006-08-02 2008-02-06 凌阳科技股份有限公司 电子装置
CN201450206U (zh) * 2009-07-17 2010-05-05 王鸿 数据连接装置的接头转换结构
US20130027863A1 (en) * 2011-07-25 2013-01-31 Pegatron Corporation Electronic Device with Interchangeable Electronic Module
CN205509064U (zh) * 2016-03-18 2016-08-24 浙江国际海运职业技术学院 可拆卸式usb接头及应用其的电子设备
CN205960358U (zh) * 2016-09-05 2017-02-15 李利 一种可拓展数据线

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CN2495037Y (zh) * 2001-09-20 2002-06-12 旭丽股份有限公司 连接装置
CN101118991A (zh) * 2006-08-02 2008-02-06 凌阳科技股份有限公司 电子装置
CN201450206U (zh) * 2009-07-17 2010-05-05 王鸿 数据连接装置的接头转换结构
US20130027863A1 (en) * 2011-07-25 2013-01-31 Pegatron Corporation Electronic Device with Interchangeable Electronic Module
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