WO2020215327A1 - 遥控器支架及遥控器 - Google Patents

遥控器支架及遥控器 Download PDF

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Publication number
WO2020215327A1
WO2020215327A1 PCT/CN2019/084638 CN2019084638W WO2020215327A1 WO 2020215327 A1 WO2020215327 A1 WO 2020215327A1 CN 2019084638 W CN2019084638 W CN 2019084638W WO 2020215327 A1 WO2020215327 A1 WO 2020215327A1
Authority
WO
WIPO (PCT)
Prior art keywords
rotating shaft
remote control
base
assembly
clip
Prior art date
Application number
PCT/CN2019/084638
Other languages
English (en)
French (fr)
Inventor
姚远
刘军利
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
Publication date
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
Priority to PCT/CN2019/084638 priority Critical patent/WO2020215327A1/zh
Priority to CN201980005741.XA priority patent/CN111386420B/zh
Publication of WO2020215327A1 publication Critical patent/WO2020215327A1/zh

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Classifications

    • 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
    • F16M11/00Stands or trestles as supports for apparatus or articles placed thereon ; Stands for scientific apparatus such as gravitational force meters
    • F16M11/02Heads
    • F16M11/04Means for attachment of apparatus; Means allowing adjustment of the apparatus relatively to the stand
    • F16M11/041Allowing quick release of the apparatus
    • 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
    • F16M11/00Stands or trestles as supports for apparatus or articles placed thereon ; Stands for scientific apparatus such as gravitational force meters
    • F16M11/02Heads
    • F16M11/04Means for attachment of apparatus; Means allowing adjustment of the apparatus relatively to the stand
    • F16M11/06Means for attachment of apparatus; Means allowing adjustment of the apparatus relatively to the stand allowing pivoting
    • 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
    • F16M13/02Other supports for positioning apparatus or articles; Means for steadying hand-held apparatus or articles for supporting on, or attaching to, an object, e.g. tree, gate, window-frame, cycle

Definitions

  • This application relates to the technical field of drone equipment, and in particular to a remote control bracket and a remote control.
  • a user In the field of aerial photography, a user usually installs a display device on a remote control bracket, so as to be able to see an image taken by aerial photography through the display device.
  • the remote control stand in the related technology is inconvenient to use. For example, when the user needs the remote control stand, the user has to assemble the various parts of the remote control stand; after the user finishes using the remote control stand, the user needs to assemble the remote control stand.
  • the various parts of the bracket are disassembled, and the assembly and disassembly of the remote control bracket cause great inconvenience to use.
  • the embodiments of the present application provide a remote control bracket and a remote control.
  • the remote control bracket of the embodiment of the present application includes a base assembly, a rotating shaft assembly, and a clip assembly that are sequentially connected, the rotating shaft assembly can rotate relative to the base assembly, and the clip assembly can rotate relative to the rotating shaft assembly around at least one rotating shaft .
  • the remote control in the embodiment of the present application includes a remote control bracket and a remote control body, and the remote control body and the remote control bracket are detachably connected.
  • the base assembly, the shaft assembly, and the clip assembly can all rotate relatively, and the user can adjust the relative position of the clip assembly and the base assembly through the shaft assembly.
  • the user can unfold the clip assembly and the base assembly according to actual needs, and rotate the clip assembly to a suitable position to clamp the display device; when the user does not need to use the display device, the user can use the clip assembly It is folded with the base assembly, and the clip assembly is rotated to a position compact with the base assembly to facilitate the user's carrying.
  • the process of unfolding and folding the clip assembly and the base assembly does not require the user to frequently assemble and disassemble the entire remote control bracket, which is beneficial to improve the convenience of the user in using the remote control bracket.
  • Fig. 1 is a three-dimensional schematic diagram of a remote control according to an embodiment of the present application.
  • Fig. 2 is a three-dimensional schematic diagram of a remote control bracket in the remote control of Fig. 1.
  • Fig. 3 is a three-dimensional schematic diagram of the remote control bracket in the remote control of Fig. 1 in another posture.
  • FIG. 4 is a three-dimensional schematic diagram of the base assembly in the remote control bracket of FIG. 2.
  • Fig. 5 is a schematic cross-sectional view of the base assembly of the remote control bracket of Fig. 4 along the line V-V.
  • Fig. 6 is an enlarged schematic diagram of the base assembly of the remote control bracket of Fig. 5 at VI.
  • Fig. 7 is a partial exploded schematic view of the base assembly of the remote control bracket of Fig. 4.
  • FIG. 8 is an enlarged schematic diagram of the position-limiting member in the base assembly of the remote control bracket according to the embodiment of the present application installed on the inner shell of the base.
  • Fig. 9 is a partial exploded schematic view of the rotating shaft assembly of the remote control bracket of Fig. 4.
  • Fig. 10 is a perspective schematic view of the clip assembly of the remote control bracket of Fig. 4.
  • Fig. 11 is a schematic cross-sectional view of the clip assembly of the remote control bracket of Fig. 10 along line XI-XI.
  • Fig. 12 is an enlarged schematic view of the clip assembly of the remote control bracket of Fig. 11 at XII.
  • Fig. 13 is a partial exploded schematic view of the clip assembly of the remote control bracket of Fig. 4.
  • connection should be interpreted broadly unless otherwise clearly specified and limited.
  • it can be a fixed connection or a detachable connection.
  • Connected or integrally connected it can be mechanically connected, or electrically connected or can communicate with each other; it can be directly connected, or indirectly connected through an intermediate medium, it can be the internal communication of two components or the interaction of two components relationship.
  • connection should be interpreted broadly unless otherwise clearly specified and limited.
  • it can be a fixed connection or a detachable connection.
  • Connected or integrally connected it can be mechanically connected, or electrically connected or can communicate with each other; it can be directly connected, or indirectly connected through an intermediate medium, it can be the internal communication of two components or the interaction of two components relationship.
  • the remote control support 100 of the embodiment of the present application includes a base assembly 10, a shaft assembly 20, and a clip assembly 30 that are connected in sequence.
  • the shaft assembly 20 can rotate relative to the base assembly 10, and the clip assembly 30 can rotate relative to the shaft.
  • the assembly 20 rotates around at least one rotating shaft.
  • the base assembly 10, the rotating shaft assembly 20, and the clip assembly 30 in the remote control stand 100 of the embodiment of the present application can all rotate relatively, and the user can adjust the relative position of the clip assembly 30 and the base assembly 10 through the rotating shaft assembly 20, for example, in
  • the user can unfold the clip assembly 30 and the base assembly 10 according to actual needs (for example, the state of the remote control bracket 100 in FIG. 2), and make The clip assembly 30 rotates to a suitable position to clamp the display device; when the user does not need to use the display device, the user can fold the clip assembly 30 and the base assembly 10 (for example, the state of the remote control bracket 100 in FIG.
  • the clip assembly 30 rotates to a position compact with the base assembly 10 to facilitate the user's carrying.
  • the process of unfolding and folding the clip assembly 30 and the base assembly 10 does not require the user to frequently assemble and disassemble the entire remote control stand 100, which is beneficial to improve the convenience of the user in using the remote control stand 100.
  • the remote control 300 includes a remote control body 200 and a remote control support 100.
  • the remote control body 200 can be used to remotely control the drone.
  • the remote control stand 100 is detachably connected to the remote control body 200.
  • the user can install a display device (such as a display screen, a mobile phone, a tablet, etc.) on the remote control stand 100 Above, in this way, the user can observe the flight situation of the drone and the picture taken by the drone's camera through the display device.
  • a display device such as a display screen, a mobile phone, a tablet, etc.
  • the remote control support 100 includes a base assembly 10, a shaft assembly 20 and a clip assembly 30 connected in sequence.
  • the rotating shaft assembly 20 can rotate about a rotating shaft 242 relative to the base assembly 10.
  • the shaft assembly 20 can also rotate about at least one shaft relative to the clip assembly 30, that is, the shaft assembly 20 can rotate about the shaft 222 relative to the clip assembly 30, or the shaft assembly 20 can rotate around the shaft 232 relative to the clip assembly 30, or
  • the rotating shaft assembly 30 can rotate about the rotating shaft 222 relative to the clip assembly 30 and can rotate about the rotating shaft 232 relative to the clip assembly 30.
  • the base assembly 10 includes a base shell 11, a base inner shell 12, and a limiting member 13.
  • the limiting member 13 is arranged in the base inner shell 12, and the base inner shell 12 is arranged in the base shell 11 and can When moving in the base shell 11, the limiting member 13 can limit the range of the base inner shell 12 moving in the base shell 11.
  • the base shell 11 includes an upper body 110 and a lower body 111.
  • the upper housing 110 and the lower housing 111 are detachably connected. After the upper housing 110 and the lower housing 111 are connected, a receiving cavity 112 is formed between the upper housing 110 and the lower housing 111.
  • the receiving cavity 112 can be used for Accommodate other components (such as the base inner shell 12).
  • the base shell 11 includes a first side 113 and a second side 114 opposite to each other.
  • the opening 1120 of the receiving cavity 112 is located on the first side 113, and the receiving cavity 112 can communicate with the outside through the opening 1120.
  • a connecting body 115 is formed on the surface of the upper body 110 of the housing away from the lower body 111 of the housing.
  • the connecting body 115 is closer to the second side 114 than the first side 113.
  • the base assembly 10 can be connected to other components (such as the shaft assembly 20) through the connecting body 115. connection.
  • the surface of the upper body 110 of the housing facing the lower body 111 is provided with a protrusion 116, and the protrusion 116 is closer to the first side 113 than the second side 114.
  • the surface of the lower body 111 of the housing is provided with a coupling portion 117 and a guide rail 118.
  • the coupling portion 117 is disposed on the side wall of the lower body 111 of the housing, and the coupling portion 117 can be used for coupling with other components (such as the stopper 13).
  • the number of the coupling parts 117 may be multiple, for example, the number of the coupling parts 117 may be two, the two coupling parts 117 may be respectively provided on the side walls on opposite sides of the housing lower body 111, and the two coupling parts 117 may Together, they serve as a joint position when the base shell 11 is combined with other components (for example, the limiting member 13).
  • the number of coupling parts 117 can also be four, or the number of coupling positions is two, the coupling position close to the first side 113 of the base shell 11 is the first coupling position 1171, and the coupling position close to the second side 114 of the base shell 11
  • the binding site of is the second binding site 1172.
  • the number of the bonding portions 117 (or bonding sites) can also be other, and no examples are given here.
  • each coupling portion 117 is provided with a coupling hole 1170, and the coupling portion 117 is coupled with other components (such as the stopper 13) through the coupling hole 1170.
  • the rail 118 is located in the receiving cavity 112.
  • the rail 118 includes a rail body 1180 and a rail protrusion 1181.
  • the rail body 1180 is disposed on the bottom surface of the lower housing body 111, in other words, the rail body 1180 is disposed on the surface of the lower housing body 111 facing the upper body 110 of the housing.
  • the rail body 1180 is formed by two parallel and spaced rail sub-bodies 1182. One end of the rail sub-body 1182 extends to the opening 1120 (or the first side 113) of the receiving cavity 112, and the other end of the rail sub-body 1182 faces the second The direction of the side 114 extends.
  • the rail protrusion 1181 is disposed on the rail body 1180 and is close to the opening 1120 (or the first side 113) of the receiving cavity 112.
  • the number of the guide rail protrusions 1181 may be multiple.
  • the number of the guide rail protrusions 1181 is two, the two guide rail protrusions 1181 are respectively fixed on the opposite surfaces of the two guide rail sub-bodies 1182.
  • the number of guide rail projections 1181 is four, every two guide rail projections 1181 are fixed on the surface of a guide rail sub-body 1182, and the two guide rail projections 1181 are arranged on the same surface of the guide rail sub-body 1182 at intervals, and The two guide rail protrusions 1181 are both closer to the first side 113 relative to the second side 114.
  • the thickness of the rail protrusion 1181 closer to the first side 113 of the two rail protrusions 1181 is greater than the thickness of the other rail protrusion 1181.
  • the number of the guide rails 118 can be multiple, for example, the number of the guide rails 118 can be two, and the two guide rails 118 are respectively arranged at positions close to the side walls on opposite sides of the lower housing 111.
  • the base inner shell 12 can move to the outside of the receiving cavity 112 or be housed in the receiving cavity 112 along the guide rail 118.
  • the inner shell 12 of the base is provided with a receiving groove 120, a rail 122 and a guide groove 121.
  • the accommodating groove 120 and the rail 122 may be respectively opened on opposite sides of the base inner shell 12, and the guide groove 121 may penetrate through the opposite sides of the base inner shell 12.
  • the accommodating slot 120 can be used for accommodating the limiting member 13, the accessory 15 (such as a memory card, a light reducing mirror, etc.), and a soft pad 14 (the soft pad 14 can be used as a protective pad for the accessory 15 ).
  • the side wall of the base inner shell 12 is provided with a through hole 123.
  • the through hole 123 faces the side wall of the base shell 11 where the coupling portion 117 (or coupling hole 1170) is provided.
  • the number of through holes 123 can be two.
  • the position of each through hole 123 is aligned with the coupling hole 1170 at the second coupling position 1172; when the base inner shell 13 When moving in the direction of the first side 113 and making the through hole 123 approach the position of the first side 113, the position of each through hole 123 is aligned with the coupling hole 1170 at the first coupling site 1171.
  • the rail 122 can be used to combine with the guide rail 118 to enable the base inner shell 12 and the base outer shell 11 to move relatively.
  • the number of rails 122 is the same as the number of guide rails 118. In this embodiment, the number of guide rails 118 is two, and the number of rails 122 is also two.
  • each rail 122 corresponds to a rail 118, and the width of each rail 122 is greater than the width of each rail 118 so that each rail 118 can be accommodated in a corresponding rail 122 Inside.
  • the side wall of the rail 122 forms a raised portion 1220.
  • the raised portion 1220 faces the surface of the guide rail 118, and the raised portion 1220 is closer to the second side 114 than the first side 113, so that The width of the track 122 of the second side 114 is narrowed.
  • the base inner shell 12 moves relative to the base shell 11, and when the raised portion 1220 of the base inner shell 12 gradually approaches the opening of the receiving cavity 112
  • the guide rail protrusion 1181 of the guide rail 118 and the bulge 1220 gradually approach and touch, so that the friction between the guide rail 118 and the rail 122 becomes larger.
  • the user senses that the change in the friction force causes the inner shell 12 of the base to interact with each other.
  • the resistance between the base shell 11 increases, so that it is known that the base inner shell 12 and the base shell 11 move closer to the extreme position, and the pulling of the base inner shell 12 is slowed down.
  • the guide groove 121 can be used to combine with the boss 116 to prevent the base inner shell 12 from being separated from the base shell 11.
  • the base inner shell 12 includes an engaging portion 124 and a limiting portion 125.
  • the engaging portion 124 and the limiting portion 125 are both located in the accommodating groove 120, and the numbers of the engaging portion 124 and the limiting portion 125 are the same as the number of the through holes 123.
  • the number of through holes 123 is two, that is, the number of engaging portions 124 is two, the number of limiting portions 125 is two, and each engaging portion 124 is associated with each limiting portion.
  • the parts 125 are all arranged close to a corresponding through hole 123.
  • the engaging portion 124 is provided with a through groove 1240, and the extending direction of the through groove 1240 and the extending direction of the axis of the through hole 123 may be perpendicular or non-orthogonal to each other.
  • the through groove 1240 can be used to combine with other components (such as the stopper 13).
  • the limiting portion 125 is spaced from the engaging portion 124.
  • the limiting portion 125 is located on the side of the engaging portion 124 away from the through hole 123.
  • the limiting portion 125 can be used to limit the movement of other components (such as the limiting member 13).
  • the limiting member 13 includes an elastic body 130 and a combined body 131 connected to each other.
  • the elastic body 130 is disposed in the accommodating groove 120, and the combined body 131 can extend out of the base inner shell 12 through the through hole 123 .
  • the elastic body 130 includes a first elastic piece 132, a second elastic piece 133, and a third elastic piece 134 connected in sequence, and the first elastic piece 132 and the third elastic piece 134 are respectively located at two ends of the second elastic piece 133.
  • the first elastic piece 132 and the third elastic piece 134 may be planar, and the second elastic piece 133 may be curved.
  • the elastic body 130 may be in a compressed state, that is, the first elastic piece 132 can move or approach toward the third elastic piece 134 through the second elastic piece 133 to make the elastic body 130 in a compressed state; the elastic body 130 may be in a stretched state, that is, The first elastic piece 132 can move in a direction away from the third elastic piece 134 through the second elastic piece 133 so that the elastic body 130 is in a stretched state.
  • the connecting body 131 is connected to the end of the third elastic piece 134 away from the second elastic piece 133, and the connecting body 131 is located on the surface of the third elastic piece 134 opposite to the first elastic piece 132.
  • the combined body 131 is spherical or hemispherical, and the diameter of the combined body 131 is smaller than the diameter of the through hole 123.
  • the number of the stopper 13 is the same as the number of the through hole 123.
  • the number of the through hole 123 is two, and the number of the stopper 13 is also two.
  • Each stopper 13 corresponds to One through hole 123, one engaging portion 124 and one limiting portion 125 are combined together.
  • the first elastic piece 132 When the limiting member 13 is installed on the inner shell 12 of the base, the first elastic piece 132 is combined with the through groove 1240, in other words, the first elastic piece 132 penetrates through the through groove 1240 or is clamped in the through groove 1240.
  • the second elastic piece 133 is located between the engaging portion 124 and the limiting portion 125, and the second elastic piece 133 may touch or not touch at least one of the engaging portion 124 and the limiting portion 125.
  • the third elastic piece 134 may or may not touch the side wall of the containing groove 120, and the third elastic piece 134 extends the coupling body 131 into the through hole 123.
  • the limiting member 13 When the limiting member 13 is installed on the inner shell 12 of the base, the limiting member 13 can move with the inner shell 12 of the base, and during the movement of the inner shell 12 of the base, the limiting member 13 can be in the third state and the fourth state. Switch.
  • the third state can be a compressed state
  • the fourth state can be a low pressure state, that is to say, no matter in the third state or the fourth state, the limit member 13 is in the compressed state, wherein the limit member 13
  • the pressure receiving degree when in the third state is greater than the pressure receiving degree when the limiting member 13 is in the fourth state.
  • the limiting member 13 can limit the movement of the base inner shell 12, or in other words, the limiting member 13 can maintain the position of the base inner shell 12 relative to the base shell 11.
  • the limiting member 13 when the base inner shell 12 is completely contained in the receiving cavity 112, the limiting member 13 is closer to the second side 114 relative to the first side 113, and the coupling body 131 extends out of the base inner shell 12 through the through hole 123 and is clamped in the second side 114 In the coupling hole 1170 at the second coupling position 1172, at this time, the limiting member 13 is in the fourth state.
  • the two limiting members 13 restrict the inner base
  • the movement of the shell 12 relative to the base shell 11 makes it difficult for the base inner shell 12 to move relative to the base shell 11 under non-artificial forces such as gravity, which can prevent the cushion 14 and accessories 15 located in the accommodating groove 120 from falling off come out.
  • the limiting member 13 changes from the fourth state to the third state.
  • the coupling body 131 moves from the second coupling position 1172
  • the coupling hole 1170 is detached, and the coupling body 131 drives the third elastic piece 134 to move in the direction of the first elastic piece 132 under the squeezing force of the side wall of the receiving cavity 112, and the side wall of the engaging portion 124 abuts against the second elastic piece 133
  • the combination body 131 is prevented from being completely separated from the through hole 123.
  • the coupling body 131 of each limiting member 13 is respectively clamped in the coupling hole 1170 at the first coupling position 1171
  • the two stoppers 13 restrict the movement of the base inner shell 12 relative to the base outer shell 11.
  • the user can freely take out the accessory 15 in the accommodating groove 120 or put the accessory 15 into the accommodating groove 120 without artificially maintaining the relative position of the base inner shell 12 and the base outer shell 11 to avoid the base inner shell. 12 slides relative to the base shell 11.
  • the user can completely house the base inner shell 12 in the receiving cavity 112. At this time, the user can push the base inner shell 12 from the first side 113 toward the second side 114. , The limiting member 13 is transformed from the fourth state to the third state.
  • the coupling body 131 is separated from the coupling hole 1170 at the first coupling site 1171, and the coupling body 131 is pressed by the side wall of the receiving cavity 112
  • the third elastic piece 134 is driven to move in the direction of the first elastic piece 132, and the side wall of the limiting portion 125 abuts against the second elastic piece 133 to prevent the combined body 131 from completely detaching from the through hole 123, and finally the combined body of the two limiting members 13 131 is coupled with the coupling hole 1170 at the first coupling position 1171 of the base shell 11.
  • the rotating shaft assembly 20 includes a rotating shaft housing 21, a first rotating shaft structure 22, a second rotating shaft structure 23, and a third rotating shaft structure 24.
  • the second rotating shaft structure 23 and the third rotating shaft structure 24 are both partially received in the rotating shaft housing In the body 21, the first rotating shaft structure 22 is arranged outside the rotating shaft housing 21.
  • the rotating shaft assembly 20 can rotate relative to the clip assembly 30 through the first rotating shaft structure 22 and the second rotating shaft structure 23 respectively, and the rotating shaft assembly 20 can rotate relative to the base assembly 10 through the third rotating shaft structure 24.
  • the rotating shaft housing 21 includes a rotating shaft upper shell 210 and a rotating shaft lower shell 211, and the rotating shaft upper shell 210 and the rotating shaft lower shell 211 are detachably connected. After the upper shaft 210 and the lower shaft 211 are connected, an accommodation space 214 is formed between the upper shaft 210 and the lower shaft 211, and the accommodation space 214 can be used to accommodate the second shaft structure 23 and the third shaft structure 24.
  • a plurality of connecting positions 217 are provided on the side of the upper shell 210 of the rotating shaft, and the connecting positions 217 are located in the accommodating space 214. The connecting position 217 can be used to connect with the rotating shaft structure (the second rotating shaft structure 23 and the third rotating shaft structure 24).
  • the shaft housing 21 includes protrusions 212 and protrusions 213 arranged opposite to each other.
  • the number of protrusions 212 can be two.
  • the two protrusions 212 are spaced apart, and a first receiving groove 215 is formed between the two protrusions 212.
  • the first receiving groove 215 can be used for receiving the first rotating shaft structure 22 and the second rotating shaft structure 23.
  • the protrusion 212 defines a first opening 218, and the first opening 218 communicates with the receiving space 214 and the first receiving groove 215.
  • the number of the protrusion 213 may be one, and two accommodating grooves 216 are formed on both sides of the protrusion 213, and the second accommodating grooves 216 can be used to accommodate the third rotating shaft structure 24.
  • the protrusion 213 defines a second opening 219, and the second opening 219 communicates with the receiving space 214 and the second receiving groove 216.
  • the first rotating shaft structure 22 includes a first fixed body 220 and a first rotating shaft 221 that are rotatably connected, and both the first fixed body 220 and the first rotating shaft 221 are located in the first receiving groove 215.
  • the second rotating shaft structure 23 includes a second fixed body 230 and a second rotating shaft 231 that are rotatably connected.
  • the second fixed body 230 is accommodated in the accommodating space 214, one end of the second fixed body 230 is fixed on the connecting position 217, and the other end of the second fixed body 230 is exposed from the first opening 218.
  • the second rotating shaft 231 is disposed at an end of the second fixed body 230 away from the connecting position 217, and the second rotating shaft 231 is located in the first receiving groove 215.
  • the second rotating shaft 231 is connected to the first fixed body 220 to drive the first fixed body 220 (or the first rotating shaft structure 22) to rotate relative to the second fixed body 230.
  • the axis 222 of the first rotation shaft 221 and the axis 232 of the second rotation shaft 231 intersect or cross, for example, perpendicularly intersect.
  • the third rotating shaft structure 24 includes a third fixed body 240 and a third rotating shaft 241 rotatably connected.
  • the third fixed body 240 is accommodated in the accommodating space 214, one end of the third fixed body 240 is fixed on the connecting position 217, and the other end of the third fixed body 240 is exposed from the second opening 219.
  • the third rotating shaft 241 is disposed at one end of the third fixed body 240 away from the connecting position 217, the third rotating shaft 241 is located in the second receiving groove 216, and the third rotating shaft 241 is combined with the connecting body 115 to realize the rotating shaft assembly 20 relative to the base assembly 10 Rotation, that is, the rotating shaft assembly 20 can rotate about the third rotating shaft 241 relative to the base assembly 10.
  • the axis 242 of the third rotating shaft 241 is parallel to the axis 232 of the second rotating shaft 231.
  • the clip assembly 30 includes a clip body 31 and a clamping portion 32.
  • the clamping portions 32 are respectively located at both ends of the clip main body 31.
  • the clamping portion 32 and the clip main body 31 jointly enclose a clamping space 35.
  • the display device (not shown) can be accommodated in the clamping space 35 through the clamping portion 32 .
  • the side of the clip body 31 opposite to the clamping space 35 can be connected to the first rotation shaft 221 of the first rotation shaft structure 22 to realize the rotation of the clip assembly 30 relative to the rotation shaft assembly 20 around the first rotation axis 221 and the clip assembly 30 relative to the rotation axis
  • the assembly 20 rotates around the second rotating shaft 231.
  • the clip assembly 30 and the base assembly 10 can be rotated to the first state and the second state through the rotating shaft assembly 20.
  • the base assembly 10 In the first state, the base assembly 10 is housed in the clamping space 35 (for example, the state where the remote control stand 100 is in FIG. 3), so that when the user does not need to use the remote control stand 100, the clip assembly 30 and the base assembly 10 are attached to each other to make the remote control stand 100 close up as much as possible, so that the remote control stand 100 has good portability.
  • the base assembly 10 is located outside the clamping space 35 (for example, the state where the remote control stand 100 is in FIG. 2), so that when the user needs to use the remote control stand 100, the clip assembly 30 and the base assembly 10 are mutually Separate, so that the remote control bracket 100 can be unfolded, the user can install the display device in the clamping space 35, and the user can rotate the clip assembly 30 according to the actual use, so that the relative position of the clip assembly 30 and the base assembly 10 is more It is beneficial for the user to watch the content of the display device and does not hinder the user from operating the remote control body 200 (see FIG. 1).
  • the clip body 31 is provided with a receiving hole 311 and a receiving groove 310, and the receiving hole 311 and the receiving groove 310 are connected.
  • the clamping portion 32 includes a front clamping body 320 and a rear clamping body 321.
  • the rear clip body 321 is fixed to one end of the clip body 31.
  • the front clip body 320 extends from the clip body 31 and extends into the receiving groove 310.
  • the front clip body 320 can move relative to the rear clip body 321 to change the size of the clamping space 35.
  • the front clamp body 320 includes a front clamp cover 322 and a connecting frame 323 connected to each other.
  • the front clamp cover 322 is fixed at one end of the connecting frame 323.
  • the front clamp cover 322 is located outside the receiving groove 310.
  • the connecting frame 323 can move and move in the receiving groove 310.
  • the front clamping cover 322 is driven to move to change the size of the clamping space 35.
  • the clip assembly 30 further includes a driving member 33 and a control structure 34.
  • the connecting frame 323 includes a connecting frame body 324, an abutting portion 325 and a connecting portion 326.
  • the abutting portion 325 is provided on the side of the connecting frame body 324, and the abutting portion 325 can be used to cooperate with the control structure 34 so that the control structure 34 can limit the position of the connecting frame body 324 (or the front clamp body 320) relative to the clip body 31.
  • the connecting portion 326 is provided at an end of the connecting frame body 324 opposite to the front clamp cover 322, and the connecting portion 326 can be used to cooperate with the driving member 33.
  • the driving member 33 is accommodated in the receiving groove 310 and combined with the connecting portion 326, and the driving member 33 can drive the connecting frame body 324 (or the front clamp body 320) to move in the receiving groove 310.
  • the control structure 34 is partially received in the receiving groove 310, and the control structure 34 is exposed outside the clip body 31 through the receiving hole 311.
  • the clip body 31 further includes a column 312, which is located in the receiving groove 310 and is arranged at a position close to the receiving hole 311.
  • the control structure 34 includes a button 342, a connecting rod 340 and an elastic member 341.
  • the button 342 is exposed outside the clip body 31 through the receiving hole 311.
  • the connecting rod 340 includes a driving portion 343, a rotating portion 344, and a braking portion 345 connected in sequence.
  • the driving portion 343 is combined with the elastic member 341, and the elastic member 341 is located on the side of the driving portion 343 opposite to the receiving hole 311.
  • the braking portion 345 and the abutting portion 325 are in contact with each other, and restrict the connecting frame body 324 (or the front clamp body 320) from moving in the receiving groove 310, wherein the braking portion 345 and the abutting portion 325 can be mutually connected by a rack structure.
  • the rotating part 344 is sleeved on the cylinder 312, the rotating part 344 can rotate around the cylinder 312, and the rotating part 344 can drive the driving part 343 and the braking part 345 to move during the rotation.
  • the driving member 33 and the control structure 34 can cooperate with each other to drive the front clamp body 320 to move to change the size of the clamping space 35.
  • the button 342 when the user presses the button 342 from the outside of the clip body 31 toward the inside of the accommodating groove 310, the button 342 generates a force on the driving part 343 so that the driving part 343 moves in the direction of the elastic member 341 and presses the elastic member 341;
  • the braking part 345 is driven by the rotating part 344 to move, so that the braking part 345 moves away from the abutting part 325; after the braking part 345 and the abutting part 325 are separated from each other, the connecting frame body 324 ( Or the front clamp body 320) drives the connecting frame body 324 (or the front clamp body 320) to move outside the receiving groove 310 under the action of the driving member 33, and the relative distance between the front clamp cover 322 and the rear clamp body 321 gradually increases, so that The range or size of the clamping space 35
  • the user can release the button 342, and the elastic member 341 can recover its original length under the action of losing the pressing force of the user, and make the driving portion 343 reverse (or move from the elastic member 341 toward The direction of the button 342) moves and the braking portion 345 is moved by the rotating portion 344, so that the braking portion 345 moves in the direction of the abutting portion 325; after the braking portion 345 and the abutting portion 325 are in contact, the driving portion 343 and the button 342 conflicts, and the button 342 defines the driving portion 343 to move toward the receiving hole 311, so that the braking portion 345 can limit the movement of the connecting frame body 324 (or the front clamp body 320), and the connecting frame body 324 (or the front clamp body 320) )
  • the relative position with the clip body 31 remains unchanged, or in other words, the range (or size) of the clamping space 35 remains unchanged.
  • the user can force the front clamp cover 322 to move toward the receiving groove 310.
  • the abutting part 325 of the connecting frame body 324 pushes up the braking part 345, and the connecting part 326 of the connecting frame body 324 presses the driving member 33.
  • the control structure 34 can again restrict the movement of the front clamping body 320 through the braking portion 345.
  • the position of the clip assembly 30 that contacts the display device may be provided with a silicone pad 36.
  • the silicone pad 36 may be provided on the front clip cover 322 facing the rear clip
  • the silicone pad 36 may also be provided on the surface of the rear clip body 321 facing the front clip cover 322
  • the silicone pad 36 may also be provided on the surface of the clip body 31 facing the clamping space 35.
  • the base assembly 10, the shaft assembly 20, and the clip assembly 30 can all rotate relatively, and the user can adjust the relative positions of the clip assembly 30 and the base assembly 10 through the shaft assembly 20
  • the user can unfold the clip assembly 30 and the base assembly 10 according to actual needs, and rotate the clip assembly 30 to a suitable position to clamp Display device; when the user does not need to use the display device, the user can fold the clip assembly 30 and the base assembly 10, and rotate the clip assembly 30 to a compact position with the base assembly 10 to facilitate the user's carrying.
  • the process of unfolding and folding the clip assembly 30 and the base assembly 10 does not require the user to frequently assemble and disassemble the entire remote control stand 100, which is beneficial to improve the convenience of the user in using the remote control stand 100.
  • first and second are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined with “first” and “second” may explicitly or implicitly include at least one of the features. In the description of the present application, "a plurality of” means at least two, such as two, three, etc., unless specifically defined otherwise.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Casings For Electric Apparatus (AREA)

Abstract

一种遥控器支架(100),包括依次连接的底座组件(10)、转轴组件(20)和夹子组件(30),转轴组件(20)能够相对底座组件(10)发生转动,夹子组件(30)能够相对转轴组件(20)绕至少一个转轴转动。遥控器支架(100)操作方便,用户能够通过转轴组件(20)调整夹子组件(30)与底座组件(10)的相对位置,不需要频繁地组装与拆卸整个遥控器支架(100)。还提供了一种遥控器(300)。

Description

遥控器支架及遥控器 技术领域
本申请涉及无人机设备技术领域,特别涉及一种遥控器支架及遥控器。
背景技术
在航拍领域中,用户通常将显示设备安装在遥控器支架上,从而能够通过显示设备看到航拍拍摄的图像画面。然而,相关技术中的遥控器支架使用不方便,例如,在用户需要遥控器支架时,用户要将遥控器支架的各个部件进行组装;在用户使用完遥控器支架后,用户又需要将遥控器支架的各个部件进行拆卸,遥控器支架的组装和拆卸给使用造成很大不便。
发明内容
为解决上述技术问题,本申请的实施方式提供了一种遥控器支架及遥控器。
本申请的实施方式的遥控器支架包括依次连接的底座组件、转轴组件和夹子组件,所述转轴组件能够相对所述底座组件发生转动,所述夹子组件能够相对所述转轴组件绕至少一个转轴转动。
本申请实施方式的遥控器包括遥控器支架及遥控器本体,所述遥控器本体与所述遥控器支架能够拆卸地连接。
本申请实施方式的遥控器支架及遥控器中,底座组件、转轴组件和夹子组件三者均能够相对转动,用户能够通过转轴组件调整夹子组件与底座组件的相对位置,例如,在用户需要将显示设备安装在遥控器支架上时,用户能够根据实际需求将夹子组件与底座组件展开,并使夹子组件转动至合适位置以夹持显示设备;在用户不需要使用显示设备时,用户能够将夹子组件与底座组件收拢,并使夹子组件转动至与底座组件紧凑的位置以利于用户的携带。如此,夹子组件与底座组件的展开与收拢的过程并不需要用户频繁地组装与拆卸整个遥控器支架,从而有利于提高用户使用遥控器支架的便利性。
本申请的实施方式的附加方面和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,或通过本申请的实施方式的实践了解到。
附图说明
本申请的上述和/或附加的方面和优点从结合下面附图对实施方式的描述中将变得 明显和容易理解,其中:
图1是本申请实施方式的遥控器的立体示意图。
图2是图1的遥控器中的遥控器支架的立体示意图。
图3是图1的遥控器中的遥控器支架处于另一姿态的立体示意图。
图4是图2的遥控器支架中的底座组件的立体示意图。
图5是图4的遥控器支架的底座组件沿V-V线的剖面示意图。
图6是图5的遥控器支架的底座组件的VI处的放大示意图。
图7是图4的遥控器支架的底座组件的部分分解示意图。
图8是本申请实施方式的遥控器支架的底座组件中的限位件安装在底座内壳上的放大示意图。
图9是图4的遥控器支架的转轴组件的部分分解示意图。
图10是图4的遥控器支架的夹子组件的立体示意图。
图11是图10的遥控器支架的夹子组件沿XI-XI线的剖面示意图。
图12是图11的遥控器支架的夹子组件的XII处的放大示意图。
图13是图4的遥控器支架的夹子组件的部分分解示意图。
具体实施方式
下面详细描述本申请的实施方式,所述实施方式的例子在附图中示出,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方式是例子性的,仅用于解释本申请,而不能理解为对本申请的限制。
在本申请的描述中,需要理解的是,术语“中心”、“长度”、“宽度”、“厚度”、“上”、“下”、“左”、“右”、“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申请和简化描述,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申请的限制。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一个或者更多个所述特征。在本申请的描述中,“多个”的含义是两个或两个以上,除非另有明确具体的限定。
在本申请的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接或可以相互通讯;可以是直接相连, 也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请中的具体含义。
下文的公开提供了许多不同的实施方式或例子用来实现本申请的不同结构。为了简化本申请的公开,下文中对特定例子的部件和设置进行描述。当然,它们仅仅为例子,并且目的不在于限制本申请。此外,本申请可以在不同例子中重复参考数字和/或参考字母,这种重复是为了简化和清楚的目的,其本身不指示所讨论各种实施方式和/或设置之间的关系。此外,本申请提供了的各种特定的工艺和材料的例子,但是本领域普通技术人员可以意识到其他工艺的应用和/或其他材料的使用。
请参阅图1及图2,本申请实施方式的遥控器支架100包括依次连接的底座组件10、转轴组件20和夹子组件30,转轴组件20能够相对底座组件10发生转动,夹子组件30能够相对转轴组件20绕至少一个转轴转动。
本申请实施方式的遥控器支架100中的底座组件10、转轴组件20和夹子组件30三者均能够相对转动,用户能够通过转轴组件20调整夹子组件30与底座组件10的相对位置,例如,在用户需要将显示设备(图未示)安装在遥控器支架100上时,用户能够根据实际需求将夹子组件30与底座组件10展开(例如图2中遥控器支架100所处的状态),并使夹子组件30转动至合适位置以夹持显示设备;在用户不需要使用显示设备时,用户能够将夹子组件30与底座组件10收拢(例如图3中遥控器支架100所处的状态),并使夹子组件30转动至与底座组件10紧凑的位置以利于用户的携带。如此,夹子组件30与底座组件10的展开与收拢的过程并不需要用户频繁地组装与拆卸整个遥控器支架100,从而有利于提高用户使用遥控器支架100的便利性。
请参阅图1,本申请实施方式的遥控器300包括遥控器本体200与遥控器支架100。遥控器本体200可用于远程控制无人机。遥控器支架100与遥控器本体200能够拆卸地连接,当遥控器支架100安装在遥控器本体200上时,用户可将显示设备(例如显示屏、手机、平板等等)安装在遥控器支架100上,如此,用户能够通过显示设备观察无人机的飞行情况及无人机的摄像头所拍摄的画面。
请参阅图2,遥控器支架100包括依次连接的底座组件10、转轴组件20和夹子组件30。转轴组件20能够相对底座组件10绕一个转轴242转动。转轴组件20还能够相对夹子组件30绕至少一个转轴发生转动,也即是说,转轴组件20能够相对夹子组件30绕转轴222转动,或者,转轴组件20能够相对夹子组件30绕转轴232转动,或者,转轴组件30既能够相对夹子组件30绕转轴222转动,又能相对夹子组件30绕转轴232转动。
请参阅图4和图5,底座组件10包括底座外壳11、底座内壳12及限位件13,限位件13设置在底座内壳12内,底座内壳12设置在底座外壳11内且能够在底座外壳11内移动,限位件13能够限定底座内壳12在底座外壳11内移动的范围。
请结合图7,底座外壳11包括外壳上本体110及外壳下本体111。外壳上本体110与外壳下本体111能够拆卸地连接,在外壳上本体110与外壳下本体111连接后,外壳上本体110与外壳下本体111之间形成有收容腔112,收容腔112能够用于容纳其他部件(例如底座内壳12)。其中,底座外壳11包括相背的第一侧113与第二侧114,收容腔112的开口1120位于第一侧113,收容腔112能够通过开口1120与外界连通。
外壳上本体110的远离外壳下本体111的表面形成有连接体115,连接体115相对第一侧113更靠近第二侧114,底座组件10可通过连接体115与其他组件(例如转轴组件20)连接。外壳上本体110的朝向外壳下本体111的表面设置有凸柱116,凸柱116相对第二侧114更靠近第一侧113。
请结合图6及图7,外壳下本体111的表面设置有结合部117与导轨118。结合部117设置在外壳下本体111的侧壁上,结合部117可用于与其他部件(例如限位件13)结合。结合部117的数量可以为多个,例如,结合部117的数量可以为两个,两个结合部117可以分别设置在外壳下本体111的相对两侧的侧壁上,两个结合部117可共同作为底座外壳11与其他部件(例如限位件13)相结合时的结合位。结合部117的数量也可以是四个,或者说,结合位的数量为两个,靠近底座外壳11的第一侧113的结合位为第一结合位1171,靠近底座外壳11的第二侧114的结合位为第二结合位1172。当然,结合部117(或结合位)的数量也可以是其他,在此不一一举例。
其中,结合部117与其他部件(例如限位件13)可以采用卡合、锁合、螺合等连接方式结合,当然,结合部117与其他部件(例如限位件13)也可以采用其他方式进行结合,在此不一一列举。本实施方式中,每个结合部117开设有结合孔1170,结合部117通过结合孔1170与其他部件(例如限位件13)结合。
请继续参阅图6及图7,导轨118位于收容腔112内。导轨118包括导轨本体1180及导轨凸块1181。导轨本体1180设置在外壳下本体111的底面上,或者说,导轨本体1180设置在外壳下本体111的朝向外壳上本体110的表面上。导轨本体1180由两条平行且间隔设置的导轨子本体1182形成,导轨子本体1182的一端延伸至收容腔112的开口1120处(或第一侧113),导轨子本体1182的另一端朝第二侧114的方向延伸。导轨凸块1181设置在导轨本体1180上且靠近收容腔112的开口1120处(或第一侧113)。
其中,导轨凸块1181的数量可以为多个,当导轨凸块1181的数量为两个时,两个导轨凸块1181分别固定在两个导轨子本体1182的相背两侧的表面上。当导轨凸块 1181的数量为四个时,每两个导轨凸块1181固定在一个导轨子本体1182的表面上,该两个导轨凸块1181间隔设置在该导轨子本体1182的同一表面,并且该两个导轨凸块1181均相对第二侧114更靠近第一侧113。此外,在其他实施方式中,该两个导轨凸块1181中的更靠近第一侧113的导轨凸块1181的的厚度大于另一个导轨凸块1181。
当然,导轨118的数量可以为多个,例如,导轨118的数量可以为两个,两个导轨118分别设置在靠近外壳下本体111的相对两侧的侧壁的位置。
底座内壳12能够沿导轨118移动至收容腔112外或收容在收容腔112内。底座内壳12开设有容置槽120、轨道122及导槽121。容置槽120与轨道122可分别开设在底座内壳12的相背两侧,导槽121可贯穿底座内壳12的相背两侧。容置槽120可用于容置限位件13、配件15(例如内存卡、减光镜等)及软垫14(软垫14可作为配件15的防护垫)。
底座内壳12的侧壁开设有通孔123,当底座内壳12收容在收容腔112内时,通孔123朝向底座外壳11的设置有结合部117(或结合孔1170)的侧壁。通孔123的数量可以为两个,当底座内壳12完全收容在收容腔112内时,每一个通孔123的位置与第二结合位1172处的结合孔1170对准;当底座内壳13朝第一侧113的方向移动并使通孔123靠近第一侧113的位置时,每一个通孔123的位置与第一结合位1171处的结合孔1170对准。
轨道122可用于与导轨118结合以使底座内壳12与底座外壳11能够相对移动。轨道122的数量与导轨118的数量一致。本实施方式中,导轨118的数量为两个,轨道122的数量也为两个。在底座内壳12收容在收容腔112内时,每个轨道122对应一个导轨118,并且每个轨道122的宽度大于每个导轨118的宽度以使每个导轨118能够收容在对应的一个轨道122内。
轨道122的侧壁形成隆起部1220,当底座内壳12完全收容在收容腔112内时,隆起部1220朝向导轨118的表面,隆起部1220相对第一侧113更靠近第二侧114从而使得靠近第二侧114的轨道122的宽度变窄。如此,当用户自第二侧114朝第一侧113的方向用力拉底座内壳12时,底座内壳12相对底座外壳11移动,当底座内壳12的隆起部1220逐渐靠近收容腔112的开口1120时,导轨118的的导轨凸块1181与隆起部1220逐渐靠近并相触,使得导轨118与轨道122之间的摩擦力变大,用户通过感知因摩擦力的变化而导致底座内壳12与底座外壳11之间阻力的增大,从而知晓底座内壳12与底座外壳11相对移动靠近极限位置而减缓继续拉动底座内壳12。
导槽121可用于与凸柱116结合以防止底座内壳12脱离底座外壳11。通过设置凸柱116与导槽121结构,使得用户在拉动底座内壳12相对底座外壳11移动时,即使 用户不经意间用力过度地拉动底座内壳12,凸柱116也能够挡住底座内壳12的继续移动,从而能够避免底座内壳12完全脱离底座外壳11。
请结合图8,底座内壳12包括卡合部124及限位部125。卡合部124与限位部125均位于容置槽120内,卡合部124与限位部125的数量均与通孔123的数量一致。本实施方式中,通孔123的数量为两个,也即是说,卡合部124的数量为两个,限位部125的数量为两个,每个卡合部124与每个限位部125均靠近对应的一个通孔123设置。
卡合部124开设有通槽1240,通槽1240延伸的方向与通孔123的轴线的延伸方向可以相互垂直或非正交。通槽1240可用于与其他部件(例如限位件13)结合。限位部125与卡合部124间隔,限位部125位于卡合部124的远离通孔123的一侧,限位部125可用于限定其他部件(例如限位件13)的移动。
请参阅图7及图8,限位件13包括相连接的弹性体130及结合体131,弹性体130设置在容置槽120内,结合体131可通过通孔123伸出底座内壳12外。弹性体130包括依次连接的第一弹片132、第二弹片133及第三弹片134,第一弹片132与第三弹片134分别位于第二弹片133的两端。第一弹片132与第三弹片134可以呈平面状,第二弹片133可以呈曲面状。弹性体130可处于压缩状态,即,第一弹片132能够通过第二弹片133朝第三弹片134的方向移动或靠近以使弹性体130处于压缩状态;弹性体130可处于拉伸状态,即,第一弹片132能够通过第二弹片133朝远离第三弹片134的方向移动以使弹性体130处于拉伸状态。
结合体131与第三弹片134的远离第二弹片133的一端连接,结合体131位于第三弹片134的与第一弹片132相背的表面。结合体131呈球形或半球形,结合体131的直径小于通孔123的直径。
其中,限位件13的数量与通孔123的数量一致,本实施方式中,通孔123的数量为两个,则限位件13的数量也为两个,每个限位件13与对应的一个通孔123、一个卡合部124及一个限位部125共同结合。
当限位件13安装在底座内壳12时,第一弹片132与通槽1240结合,或者说,第一弹片132穿设通槽1240或卡设在通槽1240内。第二弹片133位于卡合部124与限位部125之间,第二弹片133可以与卡合部124、限位部125中的至少一个相触或不相触。第三弹片134可与容置槽120的侧壁相触或不相触,第三弹片134将结合体131伸入通孔123内。
当限位件13安装在底座内壳12后,限位件13能够跟随底座内壳12移动,并且在底座内壳12移动的过程中,限位件13可以在第三状态与第四状态进行切换。第三状态可以为压缩状态,第四状态可以为微压状态,也即是说,无论在第三状态下还是 在第四状态下,限位件13都处于压缩状态,其中,限位件13处于第三状态时的受压力度大于限位件13处于第四状态时的受压力度。
在底座内壳12相对底座外壳11移动时,限位件13能够限定底座内壳12的移动,或者说,限位件13能够保持底座内壳12相对底座外壳11移动的位置。
例如,当底座内壳12完全收容在收容腔112内时,限位件13相对第一侧113更靠近第二侧114,结合体131通过通孔123伸出底座内壳12并卡设在第二结合位1172处的结合孔1170中,此时,限位件13处于第四状态,在这种情况下,在用户没有用力推拉底座内壳12时,两个限位件13限制了底座内壳12相对底座外壳11的移动,从而使得底座内壳12不容易在重力等非人为的作用力下相对底座外壳11发生移动,能够避免位于容置槽120内的软垫14及配件15掉落出来。
当用户自第二侧114朝第一侧113的方向用力拉动底座内壳12时,限位件13从第四状态转变为第三状态,此时,结合体131从第二结合位1172处的结合孔1170脱离出来,结合体131在收容腔112的侧壁的挤压作用力下带动第三弹片134朝第一弹片132的方向移动,卡合部124的侧壁与第二弹片133相抵以避免结合体131完全脱离通孔123。当底座内壳12移动至两个限位件13与底座外壳11的第一结合位1171结合时,每个限位件13的结合体131分别卡设在第一结合位1171处的结合孔1170中,在这种情况下,在用户没有用力推拉底座内壳12时,两个限位件13限制了底座内壳12相对底座外壳11的移动。此时,用户可自由地拿出容置槽120内的配件15或将配件15放入容置槽120中,而不用人为地保持底座内壳12与底座外壳11的相对位置以避免底座内壳12相对底座外壳11发生滑动。
在用户取出配件15或放入配件15后,用户可将底座内壳12完全收容在收容腔112内,此时,用户可自第一侧113朝第二侧114的方向用力推动底座内壳12,使得限位件13从第四状态转变为第三状态,此时,结合体131脱离第一结合位1171处的结合孔1170,结合体131在收容腔112的侧壁的挤压作用力下带动第三弹片134朝第一弹片132的方向移动,限位部125的侧壁与第二弹片133相抵以避免结合体131完全脱离通孔123,并最终使得两个限位件13的结合体131与底座外壳11的第一结合位1171处的结合孔1170结合。
请参阅图9,转轴组件20包括转轴壳体21、第一转轴结构22、第二转轴结构23及第三转轴结构24,第二转轴结构23与第三转轴结构24均部分地收容在转轴壳体21内,第一转轴结构22设置在转轴壳体21外。转轴组件20能够分别通过第一转轴结构22与第二转轴结构23相对夹子组件30转动,转轴组件20能够通过第三转轴结构24相对底座组件10转动。
转轴壳体21包括转轴上壳210与转轴下壳211,转轴上壳210与转轴下壳211能够拆卸地连接。在转轴上壳210与转轴下壳211连接后,转轴上壳210与转轴下壳211之间形成容纳空间214,容纳空间214可用于容置第二转轴结构23与第三转轴结构24。转轴上壳210的侧面设置由多个连接位217,连接位217位于容纳空间214内。连接位217可用于与转轴结构(第二转轴结构23与第三转轴结构24)连接。
转轴壳体21包括相背设置的凸起212与凸块213,凸起212的数量可以为两个,两个凸起212间隔设置,并且两个凸起212之间形成第一容纳槽215,第一容纳槽215可用于容纳第一转轴结构22与第二转轴结构23。凸起212开设有第一开孔218,第一开孔218连通容纳空间214与第一容纳槽215。凸块213的数量可以为一个,凸块213的两侧各形成一个第二容纳槽216,第二容纳槽216可用于容纳第三转轴结构24。凸块213开设有第二开孔219,第二开孔219连通容纳空间214与第二容纳槽216。
第一转轴结构22包括转动连接的第一定体220及第一转轴221,第一定体220及第一转轴221均位于第一容纳槽215内。
第二转轴结构23包括转动连接的第二定体230及第二转轴231。第二定体230容置在容纳空间214内,第二定体230的一端固定在连接位217上,第二定体230的另一端从第一开孔218外露。第二转轴231设置在第二定体230的远离连接位217的一端,第二转轴231位于第一容纳槽215内。第二转轴231与第一定体220连接,以带动第一定体220(或第一转轴结构22)相对第二定体230转动。其中,第一转轴221的轴线222与第二转轴231的轴线232相交或交叉,例如垂直相交。
第三转轴结构24包括转动连接的第三定体240及第三转轴241。第三定体240容置在容纳空间214内,第三定体240的一端固定在连接位217上,第三定体240的另一端从第二开孔219外露。第三转轴241设置在第三定体240的远离连接位217的一端,第三转轴241位于第二容纳槽216内,第三转轴241通过与连接体115结合从而实现转轴组件20相对底座组件10转动,也即是说,转轴组件20能够相对底座组件10绕第三转轴241转动。其中,第三转轴241的轴线242与第二转轴231的轴线232平行。
请结合图10,夹子组件30包括夹子主体31及夹持部32。夹持部32分别位于夹子主体31的两端,夹持部32和夹子主体31共同围成夹持空间35,显示设备(图未示)能够通过夹持部32容置在夹持空间35内。夹子主体31的与夹持空间35相背的一侧可与第一转轴结构22的第一转轴221连接,以实现夹子组件30相对转轴组件20绕第一转轴221转动,以及夹子组件30相对转轴组件20绕第二转轴231转动。
其中,请结合图2,当夹子组件30相对转轴组件20绕第一转轴221的轴线222 转动时,夹子组件30(或夹子主体31)所在的平面37与转轴组件20所在的平面25的夹角大小保持不变,并且夹子组件30(或夹子主体31)所在的平面37与底座组件10所在的平面16的夹角大小保持不变。当夹子组件30相对转轴组件20绕第二转轴231的轴线232转动时,夹子组件30(或夹子主体31)所在的平面37与转轴组件20所在的平面25的夹角大小相应发生改变,并且夹子组件30(或夹子主体31)所在的平面37与底座组件10所在的平面16的夹角大小相应发生改变。
夹子组件30与底座组件10能够通过转轴组件20转动至第一状态与第二状态。在第一状态下,底座组件10收容在夹持空间35内(例如图3中遥控器支架100所处的状态),如此,在用户不需要使用遥控器支架100时,夹子组件30与底座组件10相互贴合以使遥控器支架100尽可能地收拢起来,使得遥控器支架100具有良好的便携性。
在第二状态下,底座组件10位于夹持空间35外(例如图2中遥控器支架100所处的状态),如此,在用户需要使用遥控器支架100时,夹子组件30与底座组件10相互分离,以使遥控器支架100展开起来,用户可将显示设备安装在夹持空间35内,并且用户可以根据实际使用情况转动夹子组件30,以使夹子组件30与底座组件10的相对位置更有利于用户观看显示设备的内容以及不妨碍用户操控遥控器本体200(参见图1)。
请参阅图11及图12,夹子主体31开设有容纳孔311与容纳槽310,容纳孔311与容纳槽310连通。请结合图10,夹持部32包括前夹体320及后夹体321。后夹体321固定在夹子主体31的一端,前夹体320自夹子主体31外延伸并伸入容纳槽310内,前夹体320能够相对后夹体321移动以改变夹持空间35的大小。前夹体320包括相连接的前夹盖322及连接架323,前夹盖322固定在连接架323的一端,前夹盖322位于容纳槽310外,连接架323能够在容纳槽310内移动并带动前夹盖322移动从而改变夹持空间35的大小。
请结合图13,夹子组件30还包括驱动件33及控制结构34。连接架323包括连接架本体324、抵触部325及连接部326。抵触部325设置在连接架本体324的侧面,抵触部325可用于与控制结构34配合,使得控制结构34能够限定连接架本体324(或前夹体320)相对夹子主体31移动的位置。连接部326设置在连接架本体324的与前夹盖322相背的一端,连接部326可用于与驱动件33配合。驱动件33容置在容纳槽310内且与连接部326结合,驱动件33能够驱动连接架本体324(或前夹体320)在容纳槽310内移动。
控制结构34部分地收容在容纳槽310内,并且控制结构34通过容纳孔311外露 于夹子主体31外。夹子主体31还包括柱体312,柱体312位于在容纳槽310内且设置在靠近容纳孔311的位置。控制结构34包括按键342、连杆340及弹性件341。按键342通过容纳孔311外露于夹子主体31外。连杆340包括依次连接的驱动部343、转动部344及制动部345。驱动部343与弹性件341结合,弹性件341位于驱动部343的与容纳孔311相背的一侧。制动部345与抵触部325相互接触,并限制了连接架本体324(或前夹体320)在容纳槽310内发生移动,其中,制动部345与抵触部325可以采用齿条结构进行相互配合。转动部344套设在柱体312上,转动部344能够绕柱体312转动,转动部344在转动的过程中能够带动驱动部343及制动部345运动。
驱动件33与控制结构34能够相互配合动作以能够驱动前夹体320移动以改变夹持空间35的大小。具体地,当用户自夹子主体31外朝容纳槽310内部的方向按压按键342时,按键342对驱动部343产生作用力使得驱动部343朝弹性件341的方向移动并挤压弹性件341;驱动部343在移动的过程中通过转动部344带动制动部345移动,使得制动部345朝远离抵触部325的方向移动;在制动部345与抵触部325相互分离后,连接架本体324(或前夹体320)在驱动件33的作用下驱动连接架本体324(或前夹体320)朝容纳槽310外移动,前夹盖322与后夹体321的相对距离逐渐增大,从而使得夹持空间35的范围或大小变大以容纳较大尺寸的显示设备(图未示)。
当夹持空间35的范围或大小合适时,用户可松开按键342,弹性件341能够在失去用户按压力的作用下恢复原来的长度,并使得驱动部343反向(或自弹性件341朝按键342的方向)移动并通过转动部344带动制动部345移动,使得制动部345朝抵触部325的方向移动;在制动部345与抵触部325相触后,由于驱动部343与按键342抵触,并且按键342限定了驱动部343朝容纳孔311外移动,从而使得制动部345能够限定连接架本体324(或前夹体320)的移动,连接架本体324(或前夹体320)与夹子主体31的相对位置保持不变,或者说,使得夹持空间35的范围(或大小)保持不变。
当用户更换更小尺寸的显示设备或不需要使用显示设备时,用户可用力推动前夹盖322朝容纳槽310的方向移动,在前夹盖322(或前夹体320)移动的过程中,连接架本体324的抵触部325将制动部345顶起,连接架本体324的连接部326挤压驱动件33。当夹持空间35的范围合适或前夹盖322与夹子主体31相抵时,控制结构34能够通过制动部345再次限定前夹体320的移动。
请结合图13,在一些实施方式中,夹子组件30中与显示设备(图未示)相接触的位置可以设置有硅胶垫36,例如,硅胶垫36可以设置在前夹盖322的朝向后夹体321的表面,硅胶垫36也可以设置在后夹体321的朝向前夹盖322的表面,硅胶垫36也 可以设置在夹子主体31的朝向夹持空间35的表面。如此,通过设置硅胶垫36,有利于增大夹子组件30与显示设备之间的摩擦力,使得显示设备不容易从夹子组件30上脱落。
本申请实施方式的遥控器300及遥控器支架100中,底座组件10、转轴组件20和夹子组件30三者均能够相对转动,用户能够通过转轴组件20调整夹子组件30与底座组件10的相对位置,例如,在用户需要将显示设备(图未示)安装在遥控器支架100上时,用户能够根据实际需求将夹子组件30与底座组件10展开,并使夹子组件30转动至合适位置以夹持显示设备;在用户不需要使用显示设备时,用户能够将夹子组件30与底座组件10收拢,并使夹子组件30转动至与底座组件10紧凑的位置以利于用户的携带。如此,夹子组件30与底座组件10的展开与收拢的过程并不需要用户频繁地组装与拆卸整个遥控器支架100,从而有利于提高用户使用遥控器支架100的便利性。
在本说明书的描述中,参考术语“某些实施方式”、“一个实施方式”、“一些实施方式”、“示意性实施方式”、“例子”、“具体例子”、或“一些例子”等的描述意指结合所述实施方式或例子描述的具体特征、结构、材料或者特点包含于本申请的至少一个实施方式或例子中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施方式或例子。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施方式或例子中以合适的方式结合。
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所述特征。在本申请的描述中,“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。
尽管上面已经示出和描述了本申请的实施方式,可以理解的是,上述实施方式是例子性的,不能理解为对本申请的限制,本领域的普通技术人员在本申请的范围内可以对上述实施方式进行变化、修改、替换和变型,本申请的范围由权利要求及其等同物限定。

Claims (33)

  1. 一种遥控器支架,其特征在于,所述遥控器支架包括依次连接的底座组件、转轴组件和夹子组件,所述转轴组件能够相对所述底座组件发生转动,所述夹子组件能够相对所述转轴组件绕至少一个转轴转动。
  2. 根据权利要求1所述的遥控器支架,其特征在于,所述夹子组件包括夹持空间,所述夹子组件与所述底座组件能够通过所述转轴组件转动至第一状态与第二状态,在所述第一状态下,所述底座组件收容在所述夹持空间内,在所述第二状态下,所述底座组件位于所述夹持空间外。
  3. 根据权利要求1所述的遥控器支架,其特征在于,所述夹子组件能够相对所述转轴组件绕两个不同的转轴转动。
  4. 根据权利要求3所述的遥控器支架,其特征在于,两个所述转轴包括第一转轴,在所述夹子组件相对所述转轴组件绕所述第一转轴转动时,所述夹子组件所在的平面与所述转轴组件所在的平面的夹角大小保持不变。
  5. 根据权利要求4所述的遥控器支架,其特征在于,两个所述转轴包括第二转轴,在所述夹子组件相对所述转轴组件绕所述第二转轴转动时,所述夹子组件所在的平面与所述转轴组件所在的平面的夹角大小对应发生改变。
  6. 根据权利要求5所述的遥控器支架,其特征在于,所述第一转轴所在的直线与所述第二转轴所在的直线相交或交叉。
  7. 根据权利要求5或6所述的遥控器支架,其特征在于,所述转轴组件能够相对所述底座组件绕第三转轴转动,所述第三转轴与所述第二转轴平行。
  8. 根据权利要求1所述的遥控器支架,其特征在于,所述底座组件包括底座外壳及底座内壳,所述底座外壳内形成收容腔,所述底座内壳能够在所述底座外壳内移动,所述底座内壳能够移动至所述收容腔外或收容在所述收容腔内。
  9. 根据权利要求8所述的遥控器支架,其特征在于,所述底座组件还包括限位件,所述限位件设置在所述底座内壳上并跟随所述底座内壳移动;
    所述底座外壳包括结合部,所述底座内壳在所述收容腔内移动至所述限位件与所述结合部结合时,所述限位件能够限定所述底座内壳的移动。
  10. 根据权利要求9所述的遥控器支架,其特征在于,所述限位件包括第三状态及第四状态,所述底座内壳在所述收容腔内移动时,所述限位件处于所述第三状态,所述限位件与所述结合部结合时,所述限位件处于所述第四状态。
  11. 根据权利要求10所述的遥控器支架,其特征在于,所述限位件为弹性限位件,在所述第三状态与所述第四状态下,所述限位件均处于受压状态。
  12. 根据权利要求11所述的遥控器支架,其特征在于,所述限位件在所述第三状态下的受压力度大于在所述第四状态下的受压力度。
  13. 根据权利要求9所述的遥控器支架,其特征在于,所述底座内壳开设有通孔,所述限位件位于所述底座内壳内并凸出所述通孔外;
    所述结合部开设有结合孔,在所述限位件与所述结合部结合时,所述限位件的凸出所述通孔外的部分卡设在所述结合孔内。
  14. 根据权利要求13所述的遥控器支架,其特征在于,所述底座内壳开设有容置槽,所述容置槽与所述通孔连通;
    所述限位件包括弹性体及结合体,所述结合体设置在所述弹性体的表面上,所述弹性体收容在所述容置槽内,所述结合体凸出所述通孔外。
  15. 根据权利要求14所述的遥控器支架,其特征在于,所述底座内壳包括卡合部,所述弹性体的一端卡设在所述卡合部上,所述弹性体的另一端与所述结合体固定。
  16. 根据权利要求14所述的遥控器支架,其特征在于,所述卡合部开设有通槽;
    所述弹性体包括依次连接的第一弹片、第二弹片及第三弹片,所述第一弹片与所述通槽结合,所述第三弹片与所述结合体固定;
    所述底座内壳还包括限位部,所述限位部与所述卡合部间隔,所述底座内壳在所述收容腔内移动时,所述卡合部及所述限位部能够共同限定所述限位件在所述容置槽内移动的范围。
  17. 根据权利要求8所述的遥控器支架,其特征在于,所述底座外壳包括导轨,所述导轨位于所述收容腔内,所述底座内壳的朝向所述导轨的表面开设有与所述导轨对应轨道,所述底座内壳能够沿所述导轨来回移动。
  18. 根据权利要求17所述的遥控器支架,其特征在于,所述导轨包括导轨本体及导轨凸块,所述导轨本体固定在所述收容腔的底面,所述导轨凸块固定在所述导轨本体的朝向所述轨道的表面,所述导轨凸块位于所述导轨本体的靠近所述收容腔的开口的一端。
  19. 根据权利要求17所述的遥控器支架,其特征在于,所述轨道的表面形成隆起部,所述隆起部朝所述导轨的侧面的方向凸出。
  20. 根据权利要求1所述的遥控器支架,其特征在于,所述转轴组件包括:
    第一转轴结构,所述转轴组件能够通过所述第一转轴结构相对所述夹子组件转动;
    第二转轴结构,所述转轴组件能够通过所述第二转轴结构相对所述夹子组件转动,所述第二转轴结构与所述第一转轴结构转动连接;及
    第三转轴结构,所述转轴组件能够通过所述第三转轴结构相对所述底座组件转动, 所述第三转轴结构均与所述第一转轴结构、所述第二转轴结构间隔设置。
  21. 根据权利要求20所述的遥控器支架,其特征在于,所述转轴组件还包括转轴壳体,所述第一转轴结构设置在所述转轴壳体外,所述第二转轴结构与所述第三转轴结构均部分地收容在所述转轴壳体内,。
  22. 根据权利要求21所述的遥控器支架,其特征在于,所述第一转轴结构包括转动连接的第一定体及第一转轴,所述第一定体与所述第一转轴设置在所述转轴壳体外。
  23. 根据权利要求21所述的遥控器支架,其特征在于,所述第二转轴结构包括转动连接的第二定体及第二转轴,所述第二定体设置在所述转轴壳体上,所述第二转轴转动与所述第一转轴结构连接,在所述第二转轴相对所述第二定体转动时,所述第二转轴能够带动所述第一转轴结构转动。
  24. 根据权利要求21所述的遥控器支架,其特征在于,所述第三转轴结构包括转动连接的第三定体及第三转轴,所述第三定体设置在所述转轴壳体内,所述第三转轴设置在所述转轴壳体外。
  25. 根据权利要求1所述的遥控器支架,其特征在于,所述夹子组件包括夹子主体和夹持部,所述夹持部分别位于所述夹子主体的两端,所述夹持部和所述夹子主体共同围成夹持空间。
  26. 根据权利要求25所述的遥控器支架,其特征在于,所述夹持部包括前夹体和后夹体,所述后夹体固定在所述夹子主体上,所述前夹体能够相对所述后夹体移动以改变所述夹持空间的大小。
  27. 根据权利要求26所述的遥控器支架,其特征在于,所述夹子主体开设有容纳槽;
    所述前夹体包括相连接的前夹盖及连接架,所述前夹盖位于所述容纳槽外,所述连接架收容在所述容纳槽内,并且所述连接架能够在所述容纳槽内移动并带动所述前夹盖移动以改变所述夹持空间的大小。
  28. 根据权利要求27所述的遥控器支架,其特征在于,所述连接架包括连接部;
    所述夹子组件还包括驱动件,所述驱动件设置在所述容纳槽内,所述驱动件与所述连接部结合,所述驱动件能够驱动所述连接架移动并带动所述前夹盖移动以扩大所述夹持空间的大小。
  29. 根据权利要求28所述的遥控器支架,其特征在于,所述驱动件为弹性驱动件,在所述驱动件驱动所述连接架移动并带动所述前夹盖移动以扩大所述夹持空间后,所述驱动件的受压力度减少。
  30. 根据权利要求27所述的遥控器支架,其特征在于,所述夹子组件还包括控制 结构,所述控制结构用于控制所述连接架停留在所述容纳槽内的位置。
  31. 根据权利要求30所述的遥控器支架,其特征在于,所述控制结构包括制动部,所述连接架包括抵触部,所述抵触部与所述制动部对应设置,所述制动部与所述抵触部能够结合或分离,在所述制动部与所述抵触部结合时,所述控制结构限定了所述连接架的移动,在所述制动部与所述抵触部分离时,所述连接架能够移动。
  32. 根据权利要求31所述的遥控器支架,其特征在于,所述控制结构还包括弹性件,所述弹性件用于驱动所述制动部与所述抵触部结合或分离,所述弹性件在所述制动部与所述抵触部结合时的受压力度小于在所述制动部与所述抵触部分离时的受压力度。
  33. 一种遥控器,其特征在于,包括:
    权利要求1至32任意一项所述的遥控器支架;及
    遥控器本体,所述遥控器本体与所述遥控器支架能够拆卸地连接。
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