WO2019052010A1 - Ensemble de connexion pour fixer un appareil photo, perche à selfie et dispositif de photographie - Google Patents

Ensemble de connexion pour fixer un appareil photo, perche à selfie et dispositif de photographie Download PDF

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Publication number
WO2019052010A1
WO2019052010A1 PCT/CN2017/112686 CN2017112686W WO2019052010A1 WO 2019052010 A1 WO2019052010 A1 WO 2019052010A1 CN 2017112686 W CN2017112686 W CN 2017112686W WO 2019052010 A1 WO2019052010 A1 WO 2019052010A1
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WO
WIPO (PCT)
Prior art keywords
camera
sliding
limiting
plunger
assembly
Prior art date
Application number
PCT/CN2017/112686
Other languages
English (en)
Chinese (zh)
Inventor
刘以奋
郭盛家
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 CN201780087314.1A priority Critical patent/CN110325906B/zh
Publication of WO2019052010A1 publication Critical patent/WO2019052010A1/fr

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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
    • F16M11/16Details concerning attachment of head-supporting legs, with or without actuation of locking members thereof
    • 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
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B17/00Details of cameras or camera bodies; Accessories therefor
    • G03B17/56Accessories

Definitions

  • the present invention relates to the field of camera mounting structures, and more particularly to a connecting assembly for fixing a camera, a self-timer lever, and a photographing device.
  • the camera can be fixed to the mounting structure by screwing and screwing, thereby preventing the camera from falling, and the camera is troublesome to install and disassemble.
  • the invention provides a connection assembly for fixing a camera, a self-timer rod and a photographing device.
  • connection assembly for fixing a camera
  • the connection assembly comprising a body, the connection assembly further comprising a sliding portion disposed on the body for slidingly engaging the camera and at least partially received by the same a limiting component in the sliding portion; wherein the limiting component is selectively capable of being in a locked state or an unlocked state; when the limiting component is switched to the locked state, the limiting component partially snaps into the Locking the camera to the sliding portion inside the camera; when the limiting assembly is switched to the unlocked state, the limiting component is released from the camera to slide the camera from the sliding Take down the department.
  • the sliding portion is a sliding protrusion
  • the sliding protrusion includes a first guiding end and a first clamping end opposite to the first guiding end, the first guiding end is configured to guide the The camera slides into the sliding projection.
  • the width of the sliding protrusion gradually increases from the first guiding end toward the first engaging end; and/or the height of the sliding protrusion is from the first guiding end to the The first card end gradually becomes larger; the camera slides from the first guiding end toward the first engaging end, and the gap between the camera and the sliding protrusion gradually becomes smaller; the camera Sliding to the first snap end, the sliding protrusion is snap-connected to the camera.
  • the sliding surface of the sliding protrusion forms an angle of 2 degrees along the sliding direction; and/or the top surface of the sliding protrusion forms an angle of 0.5 degrees with the horizontal plane.
  • the sliding portion is a sliding groove
  • the sliding groove includes a second guiding end and a second clamping end opposite to the second guiding end, the second guiding end is configured to guide the The camera slides into the sliding groove.
  • the width of the sliding groove is gradually reduced from the second guiding end to the second clamping end; and/or the depth of the sliding groove is from the second guiding end
  • the second latching end is gradually smaller; the camera slides from the second guiding end toward the second latching end, and the gap between the camera and the sliding groove is gradually reduced; the camera Sliding to the second latching end, the sliding groove is snap-connected to the camera.
  • the latching end is provided with a receiving slot
  • the limiting component comprises a limiting plunger
  • the limiting plunger is at least partially received in the receiving slot
  • the limiting component further includes a first elastic portion connected to the limiting plunger, the first elastic portion is received in the receiving groove; and the limiting component is switched to the In the locked state, the limiting plunger partially protrudes from the receiving groove and engages the camera under the elastic force of the first elastic portion; and the limiting component switches to the unlocking In the state, the limiting plunger is completely received in the accommodating groove by the elastic force of the first elastic portion to be separated from the camera.
  • connection assembly further includes an unlocking assembly that cooperates with the limit plunger; the unlocking assembly is configured to control the limit assembly to be selectively in the locked state or the unlocked state.
  • the unlocking component includes an operating portion, a second elastic portion, and the limiting plunger a pressing portion
  • the second elastic portion is connected to the operating portion at one end, and the pressing portion is connected to the other end
  • the operating portion is moved toward a direction of the limiting plunger, and the pressing portion drives
  • the limiting plunger moves in a direction away from the camera until the limiting plunger is completely received in the receiving groove;
  • the operating portion moves away from the limiting plunger, the extrusion
  • the pressing portion drives the limiting plunger to move toward the camera to the limiting plunger portion protruding from the receiving groove.
  • the pressing portion includes a first inclined surface
  • the limiting plunger includes a second inclined surface that cooperates with the first inclined surface
  • the operating portion moves toward a direction close to the limiting plunger
  • the first inclined surface drives the second inclined surface to move away from the camera, so that the limiting plunger is completely received in the receiving groove
  • the operating portion faces away from the limiting plunger
  • the direction is moved, and the first inclined surface drives the second inclined surface to move toward the camera, so that the limiting plunger portion protrudes from the receiving groove.
  • connection component further includes an electrical contact end disposed on the sliding portion; one end of the electrical contact end is electrically connected to the camera, and the other end is electrically connected to the mounting structure.
  • the electrical contact end includes a plurality of contacts for electrically connecting to the camera.
  • the present invention also provides a self-timer lever comprising: a lever body; a handle disposed at one end of the lever body; and the above-described connection assembly disposed at the other end of the lever body for carrying the camera.
  • the handle is provided with a control portion, the self-timer bar further comprising a wire, one end of the wire is electrically connected to the control portion, and the other end is electrically connected to an electrical contact end of the connection component, when When the camera is fixed to the connecting component, an electrical contact end of the connecting component is electrically connected to the camera to electrically connect the wire to the camera; or
  • the wire is housed inside the rod body, the rod body is a telescopic rod, and the wire is a spiral wire; or
  • the connecting assembly is disposed at the other end of the rod through a rotating shaft.
  • the invention also provides a photographing device comprising a camera and the above connecting component, the connecting component for fixing the camera.
  • the camera is provided with a mating portion that slidably engages with a sliding portion in the connecting assembly and a plunger hole disposed on the mating portion for engaging with a limiting component in the connecting component; when the limiting component is switched to the locked state, the limiting component partially snaps into the Locking the camera to the sliding portion in the plunger hole; when the limiting assembly is switched to the unlocked state, the limiting component is loosened from the plunger hole to move the camera Removed from the sliding portion; or,
  • a plurality of camera contacts are disposed on the mating portion, and the camera contacts are configured to electrically cooperate with the plurality of contacts in the connecting component.
  • the camera is initially assembled on the connecting component by setting the sliding portion, and the camera is further limited by setting the limiting component to limit the movement of the camera in the sliding direction. Thereby, the camera is locked on the connecting component to realize the detachable assembly of the camera and the connecting component, and the assembly and disassembly of the camera is simple and quick.
  • connection assembly according to an embodiment of the present invention
  • connection assembly is a perspective view of a connection assembly according to an embodiment of the present invention, showing a cooperation relationship between the camera and the connection assembly;
  • Figure 3 is a partial cross-sectional view showing a connecting assembly in accordance with an embodiment of the present invention.
  • FIG. 4 is a cross-sectional view showing a connecting assembly according to an embodiment of the present invention, and revealing a positional relationship between an unlocking component and a limiting component when the limiting component is in a locked state;
  • connection assembly according to an embodiment of the present invention, and revealing a positional relationship between an unlocking component and a limiting component when the limiting component is in an unlocked state;
  • FIG. 6 is a partial structural diagram of a camera according to an embodiment of the invention.
  • Figure 7 is a perspective view showing the self-timer lever in an unfolded state according to an embodiment of the present invention.
  • Figure 8 is a perspective view showing the self-timer lever in a contracted state according to an embodiment of the present invention.
  • Figure 9 is a perspective view showing the self-photographing rod in another state in a contracted state according to an embodiment of the present invention.
  • FIG. 10 is a perspective view of an image pickup apparatus according to an embodiment of the present invention, and discloses a positional relationship of each structure when the selfie stick is in an unfolded state;
  • FIG. 11 is a perspective view of an image pickup apparatus according to an embodiment of the present invention, and discloses a positional relationship of each structure when the selfie stick is in a contracted state;
  • Fig. 12 is a perspective view showing the photographing device in another direction according to an embodiment of the present invention, showing the positional relationship of each structure when the self-timer lever is in a contracted state.
  • 200 camera; 201: camera body; 201a: mating portion; 201b: electrical interface; 201c: plunger hole; 202: pan/tilt assembly; 202a: yaw axis assembly; 202b: pitch axis assembly; 202c: roll axis assembly ; 203: camera lens; 204: rotating shaft; 205: limiting member; 206: receiving member;
  • 300 Self-timer; 301: Rod; 302: Handle; 3021: Control section; 3021a: Trigger key; 3021b: Shutter key; 3021c: Video key; 3021d: Rocker; 3022: Indicator light; 303: Wire; Connection
  • first, second, third, etc. may be used to describe various information in the present invention, such information should not be limited to these terms. These terms are only used to distinguish the same type of information from each other.
  • first information may also be referred to as the second information without departing from the scope of the invention.
  • second information may also be referred to as the first information.
  • word "if” as used herein may be interpreted as "when” or "when” or "in response to determination.”
  • connection assembly 100 for fixing the camera 200, the self-timer lever 300, and the imaging device of the present invention will be described in detail below with reference to the accompanying drawings.
  • the features of the embodiments and embodiments described below may be combined with each other without conflict.
  • a connection assembly 100 can be used to fix the camera 200.
  • the connecting assembly 100 can include a body 1 , a sliding portion 2 , and a limiting assembly 3 .
  • the sliding portion 2 is disposed on the body 1 , and the sliding portion 2 is slidably engaged with the camera 200 to initially mount the camera 200 on the connecting assembly 100 .
  • the camera 200 is not limited to the camera 200 in the conventional sense, and may be other electronic devices having a camera function, such as a pan-tilt camera, a mobile phone, a tablet computer, and the like.
  • the The camera 200 takes a PTZ camera as an example.
  • the camera 200 After the camera 200 is slidably engaged with the sliding portion 2, a certain external force is applied (the direction of the external force is: when the camera 100 is assembled into the sliding portion 2, the camera 100 is slidably engaged with the sliding portion 2 When the camera 100 is given in the opposite direction, the camera 100 can still be removed from the connection assembly 100. To this end, a limiting component 3 is provided. After the camera 100 is assembled into the sliding portion 2, the camera 100 is further limited to restrict the camera 100 along the sliding direction (ie, the sliding portion 2 and the The direction in which the camera 200 is slidably engaged is slid, thereby locking the camera 100 on the connection assembly 100, preventing the camera 100 from accidentally slipping out.
  • the limiting component 3 is at least partially received in the sliding portion 2 .
  • the limiting component 3 can be selectively in a locked state or an unlocked state. 2, 4 and 5, when the limit assembly 3 is switched to the locked state (such as the state of the limit assembly 3 in FIG. 4), the limit assembly 3 partially snaps into the camera.
  • the camera 200 is locked on the sliding portion 2, and the camera 200 is further restricted by the limiting component 3 to restrict the camera 200 from moving along the sliding direction, thereby passing through the connecting component 100.
  • the camera 200 is fixed.
  • the limiting component 3 is switched to the unlocked state (such as the state of the limiting component 3 in FIG. 5)
  • the limiting component 3 is separated from the camera 200, thereby releasing the camera 200 in the sliding direction.
  • the upper limit in turn, the camera 200 can be removed from the sliding portion 2 to achieve rapid separation of the camera 200 from the connection assembly 100.
  • the camera 200 is locked on the sliding portion 2 by setting the limit member 3, and the camera 200 is restricted from continuing to slide in the sliding
  • the camera 200 is initially assembled on the connection assembly 100 by setting the sliding portion 2, and the camera 200 is further limited by setting the limit assembly 3 to restrict the camera 200 from moving in the sliding direction, thereby The camera 200 is locked on the connection assembly 100 to realize detachable assembly of the camera 200 and the connection assembly 100.
  • the assembly and disassembly of the camera 200 is simple and quick.
  • the camera 200 and the sliding portion 2 can be slidably engaged by a concave-convex fit, or can be slidably engaged by other means, and can be selected according to requirements.
  • the sliding portion 2 may be a sliding protrusion for fixing the camera 200.
  • the camera 200 includes a chute.
  • the sliding slot is slidably engaged with the sliding protrusion, so that the camera 200 is detachably assembled to the sliding protrusion, and the assembling manner is convenient and quick.
  • the sliding protrusion may include a first guiding end 21 and a first engaging end 22 opposite to the first guiding end 21 .
  • the process of assembling the camera 200 to the sliding protrusion is: the sliding slot slides from the first guiding end 21 into the first engaging end 22, thereby preliminarily fixing the camera 200 to the sliding Raised on.
  • the edge of the first guiding end 21 is curved to guide the sliding slot into the sliding protrusion to quickly align the sliding slot with the sliding protrusion.
  • the width of the sliding protrusion gradually increases from the first guiding end 21 toward the first engaging end 22, thereby ensuring that the sliding slot slides in and slides out of the sliding The smoothness of the bulge.
  • the camera 200 slides from the first guiding end 21 to the first engaging end 22, the camera 200 and the sliding protrusion The gap between them gradually becomes smaller.
  • the sliding protrusion is snap-connected with the camera 200, thereby achieving preliminary assembly of the camera 200.
  • the size of the first guiding end 21 to be slightly smaller than the size of the first engaging end 22, the sliding slot can be guided relatively quickly from the first guiding end 21. Said sliding protrusion.
  • a top surface of the first latching end 22 and a top surface of the sliding slot, a sidewall of the first latching end 22, and the side The side walls of the chute are respectively abutted to engage the sliding protrusions in the sliding slots to initially assemble the camera 200 to the connecting assembly 100.
  • the sliding protrusion further includes two sliding surfaces 23 disposed between the first guiding end 21 and the first engaging end 22, and the two sliding surfaces 23 are opposite to each other.
  • the width of the sliding protrusion refers to the distance between the two sliding surfaces 23 of the sliding protrusion.
  • the width variation of the sliding protrusions may be selected to be regular or irregular.
  • the angle between the sliding surfaces 23 of the sliding protrusions in the sliding direction is a first predetermined angle, for example, 2 degrees.
  • the first preset angle can also be set to other angle sizes, such as 1 degree, 3 degrees, 4 degrees, 5 degrees, and the like.
  • the first guiding end 21 and the first engaging end 22 are approximately equal in size.
  • the sliding convex section is approximately trapezoidal.
  • the top surface of the sliding protrusion is approximately parallel to the bottom surface thereof, and the width of the sliding protrusion gradually decreases from the top surface of the sliding protrusion to the bottom surface thereof, thereby assembling the camera 200 more firmly.
  • the two sliding surfaces 23 are arranged symmetrically.
  • the height of the sliding protrusion gradually increases from the first guiding end 21 toward the first engaging end 22, further ensuring that the sliding slot slides in and out of the sliding protrusion. Smoothness.
  • the camera 200 slides from the first guiding end 21 to the first engaging end 22, the camera 200 and the sliding protrusion The gap between them gradually becomes smaller.
  • the sliding protrusion is snap-connected with the camera 200 to implement preliminary assembly of the camera 200.
  • the size of the first guiding end 21 to be slightly smaller than the size of the first engaging end 22, the sliding slot can be guided relatively quickly from the first guiding end 21. Said sliding protrusion.
  • the height of the sliding protrusion refers to the distance between the top surface of the sliding protrusion and the horizontal plane.
  • the height variation of the sliding protrusions may be selected to be regular or irregular.
  • the angle between the top surface of the sliding protrusion and the horizontal plane is a second predetermined angle, for example, 0.5 degrees.
  • the second preset angle can also be set to other angle sizes.
  • the first guiding end 21 and the first engaging end 22 are approximately equal in size, for example, 0.2 degrees, 0.3 degrees, 0.4 degrees, etc., that is, the top surface and the bottom surface of the sliding protrusion. Almost parallel.
  • the width and height of the sliding protrusion gradually increase from the first guiding end 21 toward the first engaging end 22, thereby ensuring that the sliding slot slides in and out of the The smoothness of the sliding bulge.
  • the first guiding end 21 is sized slightly smaller than the size of the first engaging end 22, so that the sliding slot can be guided from the first guiding end 21 into the sliding protrusion relatively quickly. .
  • the length of the sliding protrusion (the length of the sliding protrusion in the sliding direction) can be set according to actual needs to meet different assembly requirements.
  • the sliding portion 2 is a sliding groove.
  • the camera 200 includes a protrusion. The protrusion is slidably engaged with the sliding groove, thereby detachably assembling the camera 200 to the body 1, and the assembling manner is convenient and quick.
  • the sliding groove may include a second guiding end and a second engaging end opposite to the second guiding end, and the second guiding end is configured to guide the camera 200 to slide into the sliding groove.
  • the process of assembling the camera 200 to the sliding groove is: the protrusion slides from the second guiding end into the second engaging end, thereby preliminarily fixing the camera 200 to the sliding groove in.
  • the width of the sliding groove gradually decreases from the second guiding end to the second engaging end, thereby ensuring that the protrusion slides in and slides out of the sliding groove Smoothness.
  • the protrusion slides from the second guiding end toward the second engaging end, and between the protrusion and the sliding groove The gap gradually becomes smaller.
  • the sliding groove is snap-connected with the protrusion to achieve preliminary assembly of the camera 200.
  • the bottom surface of the second engaging end and the bottom surface of the protrusion, the side wall of the second clamping end and the side wall of the protrusion respectively Abutting fits to engage the projection in the sliding groove to initially assemble the camera 200 to the connection assembly 100.
  • the depth of the sliding groove gradually decreases from the second guiding end to the second engaging end, further ensuring smooth sliding of the protrusion into and out of the sliding groove. sense.
  • the protrusion slides from the second guiding end toward the second engaging end, and between the protrusion and the sliding groove The gap gradually becomes smaller.
  • the sliding groove is snap-connected with the protrusion to achieve preliminary assembly of the camera 200.
  • the depth of the sliding groove refers to the distance between the bottom surface of the sliding groove and the opening of the sliding groove.
  • the length of the sliding groove (the length of the sliding groove in the sliding direction) can be set according to actual needs to meet different assembly requirements.
  • the following embodiment will further illustrate the structure of the connecting assembly 100 by taking the sliding portion 2 as a sliding protrusion as an example.
  • the sliding protrusion is provided with a receiving groove (not shown), and the limiting component 3 includes a limiting plunger 31 at least partially received in the receiving groove.
  • the limiting plunger 31 partially protrudes from the receiving slot and snaps into the camera 200, thereby locking the camera 200 in the Slide the bumps up.
  • the limiting plunger 31 is completely received in the receiving groove and separated from the camera 200, so that the camera 200 and the sliding convex Separation is achieved to achieve detachable assembly of the camera 200 and the sliding projection.
  • the receiving slot is disposed on the first latching end 22 .
  • the top surface of the chute is provided with a locking portion for locking the limiting plunger 31.
  • the locking portion is a plunger hole 201c. The sliding slot slides from the first guiding end 21 into the first engaging end 22, and the limiting plunger 31 partially engages into the plunger hole 201c to lock the camera 200 to the Slide the bumps up.
  • the limit plunger 31 can be automatically snapped into the plunger hole 201c to effect locking of the camera 200. In other examples, the limit plunger 31 partially engages the plunger hole 201c under the intervention of an external force to achieve locking of the camera 200.
  • the manner in which the limiting plunger 31 is inserted into the plunger hole 201c can be set as needed.
  • the limiting plunger 31 is an elastic member or the limiting plunger 31.
  • the first elastic portion 32 is included (the first elastic portion 32 is a part of the limiting plunger 31), and the sliding slot slides from the first guiding end 21 into the first engaging end 22, When the sliding slot slides to a specific position of the first engaging end 22, the limiting plunger 31 automatically springs into the plunger hole 201c under the action of its own elastic force, restricting the sliding slot to continue.
  • the camera 200 is locked by sliding in the sliding direction.
  • the limiting component 3 further includes a first elastic portion 32 connected to the limiting plunger 31 (the first elastic portion 32 is independent of the limiting plunger 31), the first The elastic portion 32 is received in the accommodating groove and directly or indirectly connected to the inner wall of the sliding protrusion.
  • the limiting plunger 31 partially protrudes from the receiving groove under the elastic force of the first elastic portion 32 (as shown in FIG. 4). And snap into the camera 200.
  • the limiting plunger 31 is completely received in the receiving groove by the elastic force of the first elastic portion 32 (as shown in FIG. 5 Shown) and released from the camera 200.
  • the first elastic portion 32 of the embodiment may be selected as a spring or other type of elastic member.
  • the connection assembly 100 can further include an unlocking assembly 4 that cooperates with the limiting plunger 31, by which the limiting assembly 4 can be controlled to be selectively in the locked state or Unlocked status.
  • the unlocking assembly 4 may include an operating portion 41 , a second elastic portion 42 , and a pressing portion 43 that cooperates with the limiting plunger 31 .
  • the second elastic portion 42 has one end connected to the operation portion 41 and the other end connected to the pressing portion 43.
  • the operating portion 41 protrudes from the end of the first engaging end 22 to facilitate user operation. The user operates the operation portion 41 such that the operation portion 41 moves toward the direction toward the limit plunger 31 or moves away from the limit plunger 31.
  • the operating portion 41 is a pressing portion, and the user presses the pressing portion to move the pressing portion toward the position of the limiting plunger 31 or away from the limiting plunger 31. mobile.
  • the operation portion 41 is not limited to the pressing portion, and may be selected as other types of operation portions, and the operation portion 41 may be operated by other means such that the operation portion 41 faces the limit plunger. The direction of 31 moves or moves away from the limit plunger 31.
  • the second elastic portion 42 and the pressing portion 43 are received in the sliding protrusion, and the pressing portion 43 abuts against the limiting plunger 31.
  • the pressing portion 43 drives the limit plunger 31 to move away from the camera 200 until the limit plunger 31 is completely accommodated.
  • the limiting component 3 is in an unlocked state.
  • the limiting plunger 31 is loosened by the pressing portion 43 to the plunger hole 201c of the camera 200. Thereby, the limit of the camera unit 200 in the sliding direction of the limiting component 3 is released.
  • the pressing portion 43 includes a first inclined surface (not shown), and the limiting plunger 31 includes a second inclined surface (not shown) that cooperates with the first inclined surface.
  • the operating portion 41 moves toward the position of the limiting plunger 31, and the first inclined surface drives the second inclined surface to move away from the camera 200, so that the limiting plunger 31 is completely accommodated.
  • the camera 200 is slidable relative to the connecting component 100, thereby taking the camera 200 from the connecting component 100 under.
  • the operating portion 41 moves away from the limiting plunger 31, and the first inclined surface drives the second inclined surface to move toward the camera 200, so that the limiting plunger 31 is partially convex.
  • the camera 200 is locked to the connection assembly 100 for the accommodating slot, thereby limiting the camera 100 in the sliding direction.
  • the first inclined surface is slidably engaged with the second inclined surface, and the first inclined surface is movable relative to the second inclined surface, thereby driving the second inclined surface to move toward or away from the camera 200.
  • the limiting plunger 31 is partially protruded from the receiving groove or completely received in the Describe the slot. 4 and 5, from the first engaging end 22 to the first guiding end 21, the distance of the first inclined surface from the top surface of the pressing portion 43 is gradually decreased, and the distance is The inclination direction of the second slope is opposite to the inclination direction of the first slope, so that the first slope can be slidably engaged to control the limit plunger 31 to switch to the locked state or the unlocked state.
  • the second resilient portion 42 can be selected as a spring or other type of resilient member.
  • the connection assembly 100 can also include an electrical contact end 5.
  • the electrical contact end 5 is disposed on the sliding portion 2, one end of the electrical contact end 5 is electrically connected to the camera 200, and the other end is electrically connected to the mounting structure through the electrical contact end 5 and the camera.
  • An electrical connection between the 200 enables an electrical connection between the camera 200 and the mounting structure such that the camera 200 can be controlled by the mounting structure or the camera can be transferred by the connection assembly 100 200 is fixed to the mounting structure.
  • connection assembly 100 is mounted on the mounting structure and electrically connected to the mounting structure.
  • the electrical contact end 5 of the connection assembly 100 is electrically connected to the camera 200.
  • the connection assembly 100 is mounted on the mounting structure, and the camera 200 is mounted on the connection assembly 100, so that the mounting structure and the camera 200 can be realized. Connected, easy to operate.
  • the camera 200 is mounted, the electrical connection between the mounting structure and the camera 200 can be realized, and the trouble caused by inserting the lead wire 303 into the mounting structure to insert the camera 200 can be avoided, saving time and effort.
  • the connecting component 100 can be fixedly connected or rotatably connected to the mounting structure, and can be selected according to actual needs.
  • the connecting component 100 is fixedly connected to the mounting structure.
  • the connecting component 100 can be fixed to the mounting structure by means of threading and screwing or other means.
  • the connecting assembly 100 is rotatably coupled to the mounting structure via a rotating shaft 400.
  • the angle of the connecting assembly 100 with respect to the mounting structure can be flexibly adjusted, thereby adjusting the angle of the camera 200 carried on the connecting assembly 100 with respect to the mounting structure.
  • the manner of controlling the rotation of the rotating shaft 400 can be selected according to requirements, for example, the rotating shaft 400 can be manually rotated to adjust the bearing on the connection.
  • the rotation of the rotating shaft 400 can also be controlled by an electric method.
  • an electrical interface 201b is disposed on the top surface of the sliding slot.
  • the electrical interface 201b is electrically connected to the electrical contact end 5 to electrically connect the camera 200 with the mounting structure, thereby enabling
  • the mounting structure controls the camera 200, for example, controlling the camera 200 to perform a corresponding function (photographing, recording, etc.), controlling the rotation of the camera 200, and the like, thereby satisfying the user's shooting needs.
  • the electrical contact end 5 and the electrical interface 201b can be selected as a socket and a plug connector, or can be selected as a contact fit, and the type of the electrical contact end 5 and the electrical interface 201b can be The actual situation is chosen.
  • the electrical contact end 5 may include a plurality of contacts disposed on the sliding protrusion for electrically connecting with the camera 200
  • the electrical interface 201b may include a chute disposed on the chute A plurality of contacts on the top surface for electrically connecting to the connection assembly 100.
  • the electrical contact end 5 and the electrical interface 201b cooperate with each other to achieve electrical connection between the camera 200 and the connection assembly 100, and the process of electrical connection is simple and quick.
  • the number of contacts provided on the sliding protrusion is the same as the number of contacts provided on the top surface of the sliding slot (for example, four) and correspondingly matched, thereby achieving electrical connection between the mounting structure and the camera 200. .
  • the mounting structure may be a respective fixing bracket, such as a bicycle bracket, a tripod, a selfie stick bracket, or the like.
  • the mounting structure can also replace a certain part of the adult body, such as the chest, and the connecting component 100 can be worn on the chest of the human body, so that the camera 200 can be worn on the chest of the human body. Before, it is convenient to use the camera 200.
  • the self-photographing rod bracket with the mounting structure will be further described as an example.
  • a second embodiment of the present invention provides a self-timer bar 300.
  • the selfie stick 300 can include a shaft 301, a handle 302 (the shaft 301 and the handle 302 form a self-timer bracket), and the connection assembly 100 described above.
  • the handle 302 is disposed at one end of the rod body 301
  • the connection assembly 100 is disposed at the other end of the rod body 301.
  • the connecting assembly 100 can be coupled to the rod
  • the body 301 is fixedly connected or rotatably connected, and may be selected according to actual needs.
  • the connecting component 100 is fixedly connected to the rod body 301.
  • the connecting component 100 can be fixed to the rod body 301 by threading and screwing or other means.
  • the connecting assembly 100 is rotatably coupled to the shaft 301 via a rotating shaft 400.
  • the angle of the connecting assembly 100 relative to the rod body 301 can be flexibly adjusted, thereby adjusting the angle of the camera 200 carried on the connecting assembly 100 with respect to the rod body 301.
  • the manner of controlling the rotation of the rotating shaft 400 can be selected according to requirements.
  • the rotating shaft 400 can be manually rotated to adjust the angle of the connecting portion 100 relative to the rod 301, thereby adjusting the bearing on the connecting component 100.
  • the rotation of the rotating shaft 400 can also be controlled by an electric method.
  • the handle 302 is provided with a control portion 3021
  • the selfie stick 300 may further include a wire 303.
  • One end of the wire 303 is electrically connected to the control portion 3021, and the other end is electrically connected to the electrical contact end 5 of the connection assembly 100, thereby achieving electrical connection between the control portion 3021 and the connection assembly 100.
  • the wire 303 may be directly electrically connected to the control portion 3021, or the wire 303 and the control portion 3021 may be electrically connected indirectly through other components.
  • the wire 303 can be directly electrically connected to the connection assembly 100, or the wire 303 and the connection assembly 100 can be electrically connected indirectly through other components.
  • connection assembly 100 when the camera 200 is fixed to the connection assembly 100, the electrical contact end 5 of the connection assembly 100 is electrically connected to the camera 200 to electrically connect the wire 303 with the camera 200. In turn, electrical connection of the selfie stick 300 to the camera 200 is achieved.
  • the wire 303 may include a communication wire 303 (not shown) for transmitting a control signal of the control portion 3021 to the camera 200, thereby controlling the camera 200 to operate by the control portion 3021.
  • a communication wire 303 (not shown) for transmitting a control signal of the control portion 3021 to the camera 200, thereby controlling the camera 200 to operate by the control portion 3021.
  • the self-timer lever 300 When the self-timer lever 300 is used to control the operation of the camera 200, the user directly controls the control unit 3021 to control the camera 200 to perform a corresponding function (photographing, recording, etc.) and to control the rotation of the camera 200 and the like.
  • the camera 200 when the electrical contact end 5 is disposed on the connection assembly 100, when the self-timer lever 300 is used, the camera 200 can be mounted on the connection assembly 100 to realize electrical connection between the selfie stick 300 and the camera 200, which is convenient and quick to operate.
  • the electrical connection between the self-timer lever 300 and the camera 200 can be realized at the same time as the camera 200 is installed, which avoids the trouble of pulling out the wire 303 in the selfie stick 300 to insert the camera 200, saving time and labor.
  • the wires 303 can also include power wires 303 (not shown).
  • the control unit 3021 takes power from the camera 200 through the power lead 303.
  • the handle 302 does not require an external power supply (power supply device other than the camera 200) to supply power to the control unit 3021, and also avoids the trouble caused by the external power supply.
  • a battery is disposed within the handle 302, and the control portion 3021 is powered by the battery.
  • the selfie stick 300 can also include a main control board (not shown) disposed within the handle 302.
  • the control unit 3021 is electrically connected to the communication wire 303 via the main control board, and the main control board transmits a control signal of the control unit 3021 to the camera 200 via the communication wire 303 to control the control unit.
  • the camera 200 performs the corresponding functions. Specifically, after the control unit 3021 is operated by the user, the main control board sends a control signal from the control unit 3021 to the camera 200 via the communication line 303, thereby controlling the camera 200 to operate.
  • control signal may be a signal that controls the operating mode of the camera 200, and controls an angle of the camera 200 relative to the connection assembly 100 (herein, the angle of the camera 200 relative to the connection assembly 100 refers to the camera)
  • the photographing angle of 200 that is, the direction of the camera lens 203, that is, the angle of the camera lens 203 with respect to the angle of the connection assembly 100, and the like.
  • the control unit 3021 is further electrically connected to the power lead 303 via the main control board, so that power can be taken from the camera 200 through the power lead 303 to the main control board, and power is supplied to the main control board. Part 3021.
  • the wire 303 is a copper wire capable of transmitting a signal.
  • the number of the wires 303 can be set according to a specific situation.
  • the communication wires 303 are one, and the power wires 303 are two.
  • the wire 303 is accommodated in the interior of the rod body 301 to realize wirelessization of the exterior of the self-timer bar 300, to prevent the wire 303 from being damaged by pulling, and prolonging the service life of the selfie stick 300.
  • the rod body 301 is a telescopic rod, so that the length of the rod body 301 can be flexibly adjusted to meet the requirements of different shooting distances.
  • the length of the rod body 301 can be adjusted manually or by electric means.
  • the wire 303 is a spiral wire that cooperates with the expansion and contraction of the telescopic rod.
  • the spiral wire may correspondingly expand and contract with the length of the rod body 301 to match the length of the rod body 301. Specifically, when the length of the rod body 301 is increased, the spiral wire is stretched. The length of the rod body 301 is adjusted to be small, and the spiral wire is compressed.
  • the control unit 3021 can be of a button, a button, a rocker, or the like.
  • the control portion 3021 may include a trigger key 3021a.
  • the trigger key 3021a is used to control an angle of the pan-tilt camera relative to the connection component or a shooting mode of the camera to achieve rapid control of the pan-tilt camera.
  • the angle of the pan-tilt camera relative to the connection assembly or the shooting mode of the camera may be set by the number of times the trigger key 3021a is pressed or the length of time the trigger key 3021a is pressed.
  • the trigger button 3021a is pressed twice, and the pan-tilt camera is back (ie, the camera is reset, wherein the camera lens 203 is facing forward when the pan-tilt camera is reset) .
  • the number of times the trigger key 3021a is pressed is three times, and the pan/tilt camera is rotated by 180° so that the camera lens 203 faces the face of the user, and the pan-tilt camera is in the self-portrait mode.
  • the trigger button 3021a is long pressed, the pan/tilt camera is locked, and the user cannot adjust the orientation of the camera lens 203 at this time.
  • control portion 3021 may further include a rocker 3021d.
  • the rocker 3021d is used to control the rotation of the camera lens 203.
  • the user can control the camera lens 203 to rotate in different directions by dialing the remote control.
  • the user can toggle the rocker 3021d to rotate in the upward, downward, left, and right directions, and correspondingly control the camera lens 203 to rotate in the upward, downward, left, and right directions, and the control of the camera lens 203 is convenient and quick.
  • control portion 3021 may further include a shutter button 3021b, a recording button 3021c, and the like.
  • the shutter button 3021b is configured to control the pan/tilt camera to perform a photographing function
  • the recording button 3021c is configured to control the pan/tilt camera to perform a recording function.
  • the control unit 3021 may further include other buttons or buttons or the like for controlling the pan/tilt camera to perform corresponding functions.
  • the shutter button 3021b, the recording button 3021c, the rocker 3021d, and the trigger button 3021a can be arranged according to the user's usage habits. 8 and 9, the shutter button 3021b, the video button 3021c, and the rocker 3021d are disposed on the front surface of the handle 302. The trigger button 3021a is disposed on the back of the handle 302 for user operation. .
  • the selfie stick can further include an indicator light 3022.
  • the indicator light 3022 is used to indicate the working state of the handle 302 or the pan/tilt camera.
  • the number of the indicator lights 3022 can be set as needed.
  • the indicator lights 3022 can be two, which are used to indicate the working state of the handle 302 and the working state of the pan-tilt camera.
  • the indicator lights 3022 may also be two or more, respectively for indicating the working status or other information of different components.
  • the indicator light 3022 is one for indicating the working state of the handle 302 and the pan/tilt camera.
  • the working state of the handle 302 and the working state of the pan-tilt camera may be judged by the illuminating color, the illuminating duration or the blinking state of the indicator light 3022, or may be passed through the illuminating color, the illuminating duration and the blinking state of the indicator light 3022.
  • the working state of the handle 302 and the working state of the pan/tilt camera can also be judged by other means.
  • the handle 302 includes a power-on state and a power-off state
  • the pan-tilt camera includes a recording state, a shooting state, and a low-power state.
  • the indicator light 3022 will not light up.
  • the indicator light 3022 is green when the handle 302 is in an energized state.
  • the indicator light 3022 is green and blinks at intervals of 5 s.
  • the indicator light 3022 is green and blinks at intervals of 1 s.
  • the indicator light 3022 flashes red.
  • the indicator light 3022 can be disposed on the front surface of the handle 302 for convenient viewing by a user.
  • the selfie stick 300 can further include an adapter portion 304.
  • the adapter portion 304 is sleeved on a side of the rod body 301 near the handle 302.
  • the adapter portion 304 is provided with a heat dissipation hole, and the heat dissipation hole communicates with the inner cavity (not shown) of the rod body 301 to dissipate heat from the wire 303 received in the inner cavity.
  • the adapter portion 304 can also be coupled to a handset support.
  • the photographing screen of the camera 200 is difficult to be recognized by the user because the camera 200 is far away from the user.
  • the photographing screen transmitted by the camera 200 can be received by the mobile phone placed on the mobile phone support frame, so that the user can view the real-time photographing screen of the camera 200 at a close distance.
  • the camera 200 and the mobile phone may be communicably connected by wireless communication such as wifi, or may be connected by wired communication. When the camera 200 and the mobile phone are connected by wire communication, the signal line connecting the camera 200 and the mobile phone is received in the inner cavity of the rod body 301 to realize wirelessization outside the rod body 301.
  • a third aspect of the invention provides a photographing apparatus.
  • the photographing device may include the camera 200 and the connection assembly 100 of the above embodiment.
  • the connection component 100 is used to fix the camera 200.
  • the camera 200 may be provided with a fitting portion 201a and a plunger hole 201c.
  • the engaging portion 201a is slidably engaged with the sliding portion 2 in the connecting assembly 100, thereby initially connecting (movably connecting) the camera 200 to the sliding portion 2.
  • the engaging portion 201a and the sliding portion 2 are slidably engaged by a concave-convex fit, and the camera 200 is initially connected to the connecting assembly 100.
  • the sliding portion 2 is a sliding protrusion
  • the engaging portion 201a is a sliding groove that cooperates with the sliding protrusion.
  • the sliding portion 2 is a sliding groove
  • the engaging portion 201a is a protrusion that is in sliding engagement with the sliding groove.
  • the plunger hole 201c is disposed on the mating portion 201a and cooperates with the limiting component 3 in the connecting component 100, so that after the camera 200 is initially connected to the connecting component 100, The cooperation of the plunger hole 201c with the limit assembly 3 locks the camera 200 on the connection assembly 100, restricting the camera 200 from sliding in the sliding direction. Specifically, when the limit assembly 3 is switched to the locked state, the limit assembly 3 is partially caught in the plunger hole 201c to lock the camera 200 to the sliding portion 2. When the limiting component 3 is switched to the unlocked state, the limiting component 3 is loosened from the plunger hole 201c to remove the camera 200 from the sliding portion 2 to implement the camera. With the detachable assembly of the connecting assembly 100, the assembly and disassembly process of the camera 200 is simple and quick.
  • the camera 200 can also be provided with an electrical interface 201b.
  • the electrical interface 201b is disposed on the mating portion 201a. When the mating portion 201a is fixed to the connection assembly 100, the electrical interface 201b is electrically connected to the electrical contact end 5 of the connection assembly 100 such that the camera 200 is electrically connected to the connection assembly 100.
  • the type of the electrical interface 201b can be set as needed.
  • the electrical interface 201b may include a plurality of contacts disposed on the mating portion 201a.
  • the plurality of contacts of the connection assembly 100 cooperate with the plurality of contacts of the camera 200 to implement electrical connection between the camera 200 and the connection assembly 100, and the implementation is simple and quick.
  • the type of camera 200 can be selected as desired.
  • the camera 200 is not limited to the camera 200 in the conventional sense, and may be other electronic devices having a camera function, such as a pan-tilt camera, a mobile phone, a tablet computer, and the like.
  • the configuration of the photographing apparatus of the present embodiment will be further described with the camera 200 selected as the pan/tilt camera.
  • the pan/tilt camera may include a camera body 201, a pan/tilt assembly 202, and a camera lens 203.
  • the pan/tilt assembly 202 is disposed on the camera body 201, and the camera lens 203 is disposed on the pan-tilt assembly 202, so that the steering of the camera lens 203 can be controlled by the pan-tilt assembly 202.
  • the camera body 201 is detachably disposed on the connection assembly 100 to facilitate replacement of the pan/tilt camera.
  • the mating portion 201a and the electrical interface 201b are both disposed on the camera body 201, and the camera body 201 is assembled to the connecting assembly 100 through the mating portion 201a.
  • the electrical connection of the camera 200 to the connection assembly 100 is achieved by the electrical interface 201b.
  • the camera body 201 can also be provided with a display screen (not shown) for displaying the current shooting picture in real time. Further, the camera body 201 may further be provided with control buttons (not shown) for controlling the operation of the pan-tilt camera, for example, shooting parameter settings, shooting mode settings, and the like.
  • the pan/tilt assembly 202 can be two-axis, three-axis, etc. to meet various needs for steering control of the camera lens 203.
  • the pan/tilt assembly 202 may include at least one of a yaw axis assembly 202a, a pitch axis assembly 202b, and a roll axis assembly 202c to at least one of a yaw axis, a pitch axis, and a roll axis
  • the angle of the camera lens 203 is controlled to meet different shooting needs.
  • the pan/tilt assembly 202 includes a yaw axis assembly 202a, a pitch axis assembly 202b, and a roll axis assembly 202c, which are available from a yaw axis, a pitch axis, and a roll axis.
  • the plurality of dimensions adjust the angle of the camera lens 203 with great flexibility.
  • the pan/tilt assembly 202 is disposed at the top of the camera body 201, and is coupled to the camera body 201 via a rotating shaft 204, so that the pan/tilt assembly 202 and the The camera body 201 is foldable.
  • folding the pan-tilt assembly 202 can reduce the volume of the pan-tilt camera and facilitate storage of the pan-tilt camera.
  • the driving manner of the rotating shaft 204 can also be selected as needed.
  • the rotating shaft 204 can be manually rotated, or the rotating shaft 204 can be rotated by electric means.
  • the pan/tilt camera may further include a limiter 205.
  • the limiting member 205 is disposed at a top of the camera body 201 and is located at a side of the rotating shaft 204.
  • the limiting member 205 is coupled to the camera body in a direction perpendicular to a rotation direction of the rotating shaft 204. The top of the 201, thereby limiting the direction of rotation of the rotating shaft 204 by the limiting member 205.
  • the pan/tilt assembly 202 may include an unfolded state (a state of the pan-tilt component 202 shown in FIG. 10) and a collapsed state (a state of the pan-tilt component 202 shown in FIG. 11).
  • the pan/tilt assembly 202 can be selectively brought into an unfolded state and a folded state by controlling the rotation of the rotating shaft 204.
  • the rotating shaft 204 can drive the The pan-tilt assembly 202 is rotated to the unfolded state, and the rotating shaft 204 is abutted against the limiting member 205, so that the pan-tilt assembly 202 is maintained in the unfolded state for convenient loading on the pan-tilt assembly 202.
  • the framing of the camera lens 203 When the pan/tilt camera needs to be stored, the pan/tilt head assembly 202 can be rotated to a folded state by the rotating shaft 204, and the pan-tilt head assembly 202 and the camera lens 203 are attached to the camera body 201.
  • the top portion reduces the volume of the pan/tilt camera to facilitate storage of the pan/tilt camera.
  • the receiving member 206 is respectively disposed on two sides of the limiting member 205 .
  • the pan/tilt assembly 202 is disposed between the two receiving members 206, and the two ends of the pan-tilt assembly 202 are rotatably coupled to the two receiving members 206, the two receiving members 206, and the
  • the limiting member 205 forms a structure that surrounds the rotating shaft 204 on three sides, and limits the rotation direction of the rotating shaft 204.
  • a gap between the two receiving members 206 away from the limiting member 205 is formed by a gap for the pan/tilt assembly 202 to rotate when the rotating shaft 204 is rotated, thereby facilitating the The pan/tilt component 202 switches between an expanded state and a collapsed state.
  • the two receiving members 206 are integrally formed with the limiting member 205 to improve the strength of the structure.
  • the two receiving members 206 and the limiting member 205 can also be disposed separately.
  • a receiving cavity may be opened at the top of the camera body 201.
  • the rotating shaft 204 drives the pan-tilt assembly 202 to rotate, and the pan-tilt assembly 202 and the camera lens 203 may be partially or completely housed in the receiving cavity, and the pan-tilt assembly 202 and the The camera lens 203 is stored to extend the life of the camera.
  • the photographing device may further include a mounting structure.
  • the connection assembly 100 is mounted on the mounting structure and electrically connected to the mounting structure.
  • the connection assembly 100 is mounted on the mounting structure, and the camera 200 is mounted on the connection assembly 100, so that the mounting structure and the camera 200 can be realized. Connected, easy to operate.
  • the electrical connection between the mounting structure and the camera 200 can be realized, and the trouble caused by inserting the lead wire 303 into the mounting structure to insert the camera 200 can be avoided, saving time and effort.
  • the connecting component 100 can be fixedly connected or rotatably connected to the mounting structure, and can be selected according to actual needs.
  • the connecting component 100 is fixedly connected to the mounting structure.
  • the connecting component 100 can be fixed to the mounting structure by means of threading and screwing or other means.
  • the connecting assembly 100 is rotatably coupled to the mounting structure via a rotating shaft 400.
  • the angle of the connecting assembly 100 with respect to the mounting structure can be flexibly adjusted, thereby adjusting the angle of the camera 200 carried on the connecting assembly 100 with respect to the mounting structure.
  • the manner of controlling the rotation of the rotating shaft 400 can be selected according to requirements.
  • the rotating shaft 400 can be manually rotated to adjust the angle of the connecting portion 100 relative to the mounting structure, thereby adjusting the bearing on the connecting component 100.
  • the rotation of the rotating shaft 400 can also be controlled by an electric method.
  • the mounting structure may be a respective fixed bracket, such as a bicycle bracket, a tripod, a selfie stick bracket, or the like.
  • the mounting structure can also replace a certain part of the adult body, such as the chest, and the connecting component 100 can be worn on the chest of the human body, so that the camera 200 can be worn on the chest of the human body.
  • the self-timer bracket the self-timer lever 300 of the second embodiment is not described herein.
  • connection assembly 100 of the first embodiment described above further explains the self-timer bar 300 of the second embodiment of the present invention and the imaging device of the third embodiment.
  • the self-timer bar 300 of the second embodiment and the camera device of the third embodiment are also used to further explain the connection assembly 100 of the first embodiment.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Studio Devices (AREA)
  • Accessories Of Cameras (AREA)

Abstract

L'invention concerne un ensemble de connexion (100) pour fixer un appareil photo (200), une perche à selfie (300) comprenant l'ensemble de connexion, et un dispositif de photographie. L'ensemble de connexion (100) comprend un corps principal (1), une partie coulissante (2) disposée sur le corps principal (1) pour permettre la réalisation d'un ajustement coulissant sur l'appareil photo (200), et un ensemble de limitation (3) qui entre au moins partiellement dans la partie coulissante (2) ; l'ensemble de limitation (3) peut sélectivement être dans un état verrouillé ou dans un état déverrouillé ; lorsque l'ensemble de limitation (3) est commuté à l'état verrouillé, l'ensemble de limitation (3) est partiellement encliqueté dans l'appareil photo (200) de telle sorte que l'appareil photo (200) est verrouillé sur la partie coulissante (2) ; lorsque l'ensemble de limitation (3) est commuté à l'état déverrouillé, l'ensemble de limitation (3) est desserré de l'appareil photo (200) de façon à retirer l'appareil photo (200) de la partie coulissante (2). Au moyen de la partie coulissante (2), l'appareil photo (200) est préalablement assemblé sur l'ensemble de connexion (100), et, au moyen de l'ensemble de limitation (3), l'appareil photo (200) est limité à un déplacement dans une direction de coulissement, de telle sorte que l'appareil photo (200) est verrouillé sur l'ensemble de connexion (100), et l'appareil photo (200) et l'ensemble de connexion (100) sont assemblés de manière amovible. L'appareil photo (200) peut être assemblé et désassemblé facilement et commodément.
PCT/CN2017/112686 2017-09-18 2017-11-23 Ensemble de connexion pour fixer un appareil photo, perche à selfie et dispositif de photographie WO2019052010A1 (fr)

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CN114721204A (zh) * 2022-06-09 2022-07-08 深圳市爱图仕影像器材有限公司 影视灯
CN116055840A (zh) * 2023-04-03 2023-05-02 深圳市百盛兴业科技有限公司 一种车辆用高清摄像系统

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CN209213411U (zh) * 2018-11-29 2019-08-06 深圳市大疆创新科技有限公司 摇杆结构及手持云台
CN109580670A (zh) * 2018-12-29 2019-04-05 同方威视技术股份有限公司 透射成像装置
CN110043775A (zh) * 2019-04-04 2019-07-23 中山大山摄影器材有限公司 用于摄影器材的电控滑动装置
WO2022036694A1 (fr) * 2020-08-21 2022-02-24 深圳市大疆创新科技有限公司 Structure de cadre intermédiaire à cardan, appareil à cardan et appareil photographique
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CN110056750A (zh) * 2019-04-25 2019-07-26 武汉明德生物科技股份有限公司 一种锁紧机构及具有该锁紧机构的背夹装置
CN110056750B (zh) * 2019-04-25 2023-11-28 武汉明德生物科技股份有限公司 一种锁紧机构及具有该锁紧机构的背夹装置
CN114721204A (zh) * 2022-06-09 2022-07-08 深圳市爱图仕影像器材有限公司 影视灯
CN116055840A (zh) * 2023-04-03 2023-05-02 深圳市百盛兴业科技有限公司 一种车辆用高清摄像系统
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