WO2016173266A1 - 用于安装摄像机的安装支架以及监控设备 - Google Patents

用于安装摄像机的安装支架以及监控设备 Download PDF

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Publication number
WO2016173266A1
WO2016173266A1 PCT/CN2015/097498 CN2015097498W WO2016173266A1 WO 2016173266 A1 WO2016173266 A1 WO 2016173266A1 CN 2015097498 W CN2015097498 W CN 2015097498W WO 2016173266 A1 WO2016173266 A1 WO 2016173266A1
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WIPO (PCT)
Prior art keywords
cover
mounting
mounting bracket
connecting portion
bottom wall
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Application number
PCT/CN2015/097498
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English (en)
French (fr)
Inventor
郑乐
Original Assignee
杭州海康威视数字技术股份有限公司
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Publication of WO2016173266A1 publication Critical patent/WO2016173266A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof

Definitions

  • the utility model relates to a security device, in particular to a mounting bracket for mounting a camera and a monitoring device.
  • monitors have been widely used in various industries, such as installations in railway stations and other places where people are in a mess, which can curb the occurrence of theft to a certain extent; installed in residential areas, supermarkets
  • the road junction can ensure the safety of such places; it can be installed on the production line to monitor the quality of the product; it can be used to monitor the operation of the vehicle in real time.
  • the demand for monitoring and collecting video information is also increasing.
  • the monitor includes a mounting bracket and a camera mounted on the mounting bracket.
  • Existing mounting brackets include a bottom cover and a top cover.
  • the top cover and the bottom cover are separated structures.
  • the top and bottom covers are threaded together.
  • the utility model is to overcome the prior art that the bottom cover and the top cover in the bracket for mounting the camera are separated structures, and the top cover is easy to fall during the installation process.
  • the present invention provides a mounting bracket for mounting a camera, comprising: a first cover body including a first connecting portion; and a second cover body including a second connecting portion; wherein the first The connecting portion is hinged with the second connecting portion to realize the covering or opening of the first cover body and the second cover body; when the first cover body and the second cover body are closed, the camera body is formed to receive the camera Cavity.
  • a mounting bracket includes a first cover and a second cover that are coupled to each other.
  • the first cover and the second cover are respectively provided with a first connecting portion and a second connecting portion. After the first connecting portion and the second connecting portion are movably connected, the first cover body and the second cover body are connected together, and the first cover body and the second cover body can be relatively oscillated to realize the cover of the two cover bodies. Or open it. In this way, during the entire installation process, the second cover body is not separated from the first cover body, and the second cover body is prevented from falling, thereby ensuring the safety of the installation process.
  • the first connecting portion is pivotally connected to the second connecting portion.
  • the pivoting manner defines a swinging direction in which the first cover and the second cover are closed or opened, which facilitates an operator to perform a cover operation on the first cover and the second cover.
  • the mounting bracket further includes a pressure plate fixedly mounted on the first cover; the second connection portion is located between the first connection portion and the pressure plate.
  • the pressure plate can prevent the first connecting portion and the second connecting portion from being disengaged from the pivotal state, thereby ensuring the reliability of the connection.
  • the first cover further includes a first locking portion away from the first connecting portion; the second cover further includes a second connecting portion away from the first locking portion a second locking portion that cooperates with the stop. After the first cover and the second cover are closed, the first cover and the second cover are locked together with the second locking portion by the first locking portion to prevent the first cover from being separated from the second cover.
  • the cover state protects the security of the camera mounted on the mounting bracket.
  • the mounting bracket further includes a base for mounting the first cover, the base is provided with a snap hole; the first cover includes a first bottom wall; the first A first elastic member is disposed on the first side surface of the bottom wall; and a second engaging surface of the first bottom wall is engaged with the engaging hole.
  • a large static friction force is generated between the first elastic member and the camera, so that the position of the camera after the installation and fixing is not easily offset. .
  • the snap hole includes a circular arc hole and an insertion hole communicating with the circular arc hole;
  • the snap portion includes a stud and is disposed at a top end of the stud and can pass through the The cap-shaped end portion of the insertion hole;
  • the width of the circular arc hole is smaller than the maximum outer diameter of the cap-shaped end portion, and the width of the circular arc hole is greater than or equal to the maximum outer diameter of the protruding post.
  • the mounting bracket includes a positioning mechanism for limiting a position of the first cover relative to the base, the positioning mechanism including a first positioning portion disposed on the base and disposed at a second positioning portion on the first cover body and matched with the first positioning portion.
  • the positioning mechanism limits the first cover attached to the base, thereby preventing the relative position between the first cover and the base from being offset, and ensuring the position stability of the mounting bracket.
  • the first positioning portion is a second elastic member disposed on a surface of the base facing the first bottom wall; the first bottom wall is provided with a second elastic member
  • the receiving hole is a fastener for pressing against the surface of the second elastic member.
  • the second elastic member is elastically deformed by the pressing force of the fastener, so that the fastener compresses the second elastic member to ensure the stability of the relative positions of each other.
  • the first cover includes a first bottom wall, and the first bottom wall is provided with a snap hole.
  • the screws are mounted on the mounting platform, and the first cover is hooked to the screws through the snap holes to mount the first cover to the mounting platform. In this way, the number of product components is small, reducing manufacturing costs.
  • the utility model also provides a monitoring device, which comprises a camera, and further comprises the above-mentioned mounting bracket for mounting the camera.
  • a mounting bracket includes a first cover and a second cover that are coupled to each other.
  • the first cover and the second cover are respectively provided with a first connecting portion and a second connecting portion. After the first connecting portion and the second connecting portion are movably connected, the first cover body and the second cover body are connected together and the first cover body and the second cover body can be relatively oscillated to realize the cover of the two cover bodies or turn on. In this way, during the entire installation process, the second cover body is not separated from the first cover body, and the second cover body is prevented from falling, thereby ensuring the safety of the installation process.
  • the monitoring device assembled by the first cover, the camera and the second cover is more convenient and quicker to be mounted on the mounting platform.
  • the monitoring area of the camera can be adjusted by rotating the mounting bracket and/or adjusting the relative position of the camera in the first cover and the second cover, so that the surveillance range of the camera is larger.
  • FIG. 1 is a schematic view showing the exploded structure of a product of a mounting bracket according to an embodiment of the present invention.
  • FIG. 2 is a schematic structural view of a first cover body of a mounting bracket according to an embodiment of the present invention.
  • FIG 3 is a schematic structural view of a second cover of the mounting bracket according to an embodiment of the present invention.
  • FIG. 4 is a schematic view showing a state in which a first cover body and a second cover body of the mounting bracket are connected according to an embodiment of the present invention.
  • FIG. 5 is a schematic view showing a state in which a mounting bracket mounts a spherical camera according to an embodiment of the present invention.
  • FIG. 6 is a schematic view showing a combined state of a first cover body, a second cover body, and a spherical camera of the mounting bracket according to an embodiment of the present invention.
  • FIG. 7 is a schematic structural view of an embodiment of a first cover of a mounting bracket according to an embodiment of the present invention.
  • FIG. 8 is a schematic front structural view of a base of a mounting bracket according to an embodiment of the present invention.
  • FIG. 9 is a schematic view showing a state in which a first cover body and a base of the mounting bracket are matched according to an embodiment of the present invention.
  • Figure 10 is a schematic view showing the structure of the back side of the mounting bracket of the embodiment of the present invention.
  • An embodiment of the mounting bracket of the present invention includes a first cover 11 and a second cover 12 that are connected to each other.
  • the first cover 11 includes a first connecting portion 14 and a first receiving portion 96 (shown in FIG. 4).
  • the second cover 12 includes a second connecting portion 15 and a second receiving portion 97.
  • the first connecting portion 14 and the second connecting portion 15 may be movably connected together by hinge or pivotal manner, so that the first cover body 11 and the second cover body 12 can be oscillated relative to each other and can be covered or opened to each other. .
  • the camera is placed on the first cover 11, and then the second cover 12 is swung to cover the first cover 11.
  • the first cover 11 and the second cover 12 fix the camera in the cavity formed by the first housing portion 96 and the second housing portion 97. Since the first cover 11 and the second cover 12 are connected together, the entire Separation does not occur during the loading process, and not only does the second cover 12 fall, but the second cover 12 is not lost. Thus, the first cover 11 and the second cover 12 that are connected to each other ensure the safety of the installation process and the integrity of the components of the transfer process.
  • the camera can be a spherical camera 13 (shown in Figure 5).
  • the configuration of the first cover 11 is a ball-cut housing.
  • the first cover 11 includes a first side wall 111 of a spherical shell shape and a first bottom wall 112 connected to the first side wall 111.
  • the second side surface (ie, the outer side surface) of the first bottom wall 112 is a flat surface. shape.
  • the end face of the first side wall 111 remote from the first bottom wall 112 is a ramp face 98.
  • the further the ramp surface 98 is from the first connecting portion 14, the further away it is from the first bottom wall 112.
  • the first side wall 111 and the first bottom wall 112 are formed with a first receiving portion 96. As shown in FIG.
  • the configuration of the second cover 12 is also a ball-cut housing.
  • the second cover 12 includes a second side wall 121 of a spherical shell shape and a second bottom wall 122 connected to the second side wall 121.
  • the second side surface of the second bottom wall 122 is planar.
  • the end face of the second side wall 121 remote from the second bottom wall 122 is a ramp face 98.
  • the further the ramp surface 98 is from the second connecting portion 15, the further away it is from the second bottom wall 122.
  • the second side wall 121 and the second bottom wall 122 form a second receiving portion 97.
  • first connecting portion 14 and the second connecting portion 15 are movably connected by a pivoting manner.
  • the first connecting portion is a first pivoting portion
  • the second connecting portion is a second pivoting portion.
  • the first pivoting portion is located at a position where the sloped surface 98 of the first side wall 111 is closest to the first bottom wall 112.
  • the second connecting portion 15 includes a second pivoting portion disposed on the second side wall 121.
  • the second pivoting portion is located at a position where the slope surface 98 of the second side wall 121 is closest to the second bottom wall 122.
  • the first pivoting portion may be disposed on the first bottom wall 112 of the first cover 11.
  • the first pivoting portion includes a receiving portion 141 disposed on the first bottom wall 112 and a pivoting groove 142 respectively disposed on opposite side surfaces of the receiving portion 141.
  • the second pivoting portion includes an insertion portion 151 that is insertable into the receiving portion 141 and a pivot shaft 152 that is disposed on opposite end faces of the insertion portion 151.
  • the pivot 152 may be integrally formed with the insertion portion 151 or may be separately assembled and assembled with the insertion portion 151. After the pivot 152 is inserted into the pivoting groove 142, the upper platen 16 is mounted.
  • the pressure plate 16 is mounted to the first bottom wall 112 by screws.
  • the pressure plate 16 presses the pivot 152 into the pivoting groove 142 to form a limit on the pivot 152.
  • the pressure plate 16 is provided with a notch to avoid obstruction or interference with the swing of the second cover 12.
  • the pivot 152 rotates in a space formed between the pivoting groove 142 and the pressure plate 16, and the receiving portion 141 on the first bottom wall 112 limits the position of the insertion portion 151, thereby limiting the position.
  • the second cover 12 is swung in a plane to approach or away from the first cover 11.
  • a line groove 99 is provided on the first bottom wall 112.
  • the transmission line can pass through the wire passage 99 into the cavity formed by the cover of the first cover 11 and the second cover 12 and is connected to the spherical camera 13.
  • a window 123 is disposed on the second bottom wall 122. After the spherical camera 13 is mounted to the cavity formed by the cover of the first cover 11 and the second cover 12, the lens of the spherical camera 13 can be extended to the outside through the window 123 to facilitate the lens to capture an image.
  • the process of assembling the first cover 11, the second cover 12, and the spherical camera 13 is to first place the spherical camera 13 in the receiving cavity of the first cover 11, and then actuate the second cover 12 and the first cover. 11 cover together.
  • the second cover 12 is opposed to the second cover 12 by the first locking portion provided on the first cover 11 and the second locking portion provided on the second cover 12
  • the swinging of the first cover 11 is locked and positioned to fix the first cover 11 and the second cover 12 together, thereby fixing the spherical camera 13 to the first cover 11 and the second cover 12. internal.
  • the first locking portion is away from the first connecting portion, and the first locking portion may be disposed at a position farthest from the first connecting portion on the first side wall 111, or may be on the first side wall 111.
  • a first locking portion is provided at a position between the position farthest from the first connecting portion and the first connecting portion.
  • the second locking portion is away from the second connecting portion, and the second locking portion may be disposed on the second side wall 121 at a position farthest from the second connecting portion, or may be the second connecting portion on the second side wall 121.
  • a second locking portion is provided at a position between the distal position and the second connecting portion.
  • the first locking portion is a projection 113 with a threaded hole provided on the inner side surface of the first side wall 111.
  • the second locking portion is a screw 124 disposed on an outer surface of the second side wall 121. After the second cover 12 is capped to the first cover 11, the screw 124 is screwed into the threaded hole using a screwdriver, and the first cover 11 and the second cover 12 are fixed together and the first cover 11 and the second cover 12 co-squeeze the spherical camera 13, thereby completing the mounting and fixing of the spherical camera 13.
  • the first locking portion is a snap hole disposed on the first sidewall 111.
  • the second locking portion is a claw provided on the second side wall 121. The hooked ends on the jaws can be snapped into the snap holes to secure the first cover 11 and the second cover 12 together.
  • the spherical camera 13 is subjected to the co-extrusion of the first cover 11 and the second cover 12, thereby achieving the mounting and fixing of the spherical camera 13 in the cavity formed by the first cover 11 and the second cover 12.
  • a first elastic member 114 is disposed on a first side surface (i.e., an inner side surface) of the first bottom wall 112 of the first cover 11.
  • first side surface i.e., an inner side surface
  • the first elastic member 114 holds the spherical camera 13.
  • the spherical camera 13 is subjected to the support limit of the first elastic member 114, and the relative position of the spherical camera 13 and the first cover 11 can be prevented from shifting.
  • the spherical camera 13 is subjected to the first cover 11 and the second cover 12 After being squeezed, the spherical camera 13 will press the first elastic member 114.
  • the first elastic member 114 has an elastic restoring force, a larger static friction force is generated between the first elastic member 114 and the surface of the spherical camera 13, thereby providing damping to the spherical camera 13 and preventing the spherical camera 13 from being in the first cover.
  • the position within the cavity formed by the body 11 and the second cover 12 is offset.
  • the spherical camera 13 is secured in the cavity formed by the first cover 11 and the second cover 12.
  • the stability of the installation location is a rubber member.
  • the mounting bracket can be mounted and fixed to the mounting platform in a variety of ways. Two embodiments are given below:
  • the first bottom wall 112 of the first cover 11 is provided with a snap hole for mounting and fixing the first cover 11 to a mounting platform (for example, a wall).
  • the snap hole includes a circular arc hole 115.
  • the process of mounting the first cover 11 to the mounting platform through the snap holes is to first abut the second side surface of the first bottom wall 112 against the mounting platform.
  • the screw is then inserted into the snap hole and screwed onto the mounting platform, but at this time the screw does not press the first cover 11 onto the mounting platform.
  • the screws can relatively move within the circular arc hole 115.
  • the screw is screwed again and the first cover 11 is pressed against the mounting platform to fix the first cover 11.
  • the mounting and fixing of the spherical camera 13 can be realized by the first cover 11 and the second cover 12, and the number of components is small. Easy to install and save costs.
  • two coaxial arc holes 115 are disposed on the first bottom wall 112 to facilitate the rotation of the first cover 11 and to maintain the positional stability after the mounting bracket is mounted and fixed.
  • the snap hole includes a circular arc hole 115 and an insertion hole 116 communicating with the circular arc hole 115.
  • the process of mounting the first cover 11 to the mounting platform through the snap hole is to first screw the screw onto the mounting platform, and then align the insertion hole 116 of the first cover 11 with the screw and pass the screw through the insertion hole. 116.
  • the first cover 11 is rotated such that the screw slides from the insertion hole 116 into the circular hole 115 with respect to the first cover 11, so that the first bottom wall 112 is caught in the gap between the nut and the mounting platform.
  • the screw is screwed again and the first cover 11 is pressed against the mounting platform to fix the first cover 11.
  • two coaxial arc holes 115 are disposed on the first bottom wall 112.
  • the mounting bracket further includes a base 17 for mounting the first cover 11.
  • the snap hole is provided on the base 17.
  • a mounting hole 171 is also provided on the base 17. After the base 17 is placed against the mounting platform, screws are screwed into the mounting platform through the mounting holes 171 to mount and fix the base 17 on the mounting platform.
  • the second side surface of the first bottom wall 112 is provided with a snap portion that is engaged with the snap hole on the base 17. The first cover 11 is snapped into the snap hole through the snap portion to achieve connection with the base 17, thereby completing the installation work of the mounting bracket on the mounting platform.
  • the snap hole includes a circular arc hole 115 and an insertion hole 116 communicating with the circular arc hole 115.
  • the snap portion includes a stud and a cap-like end disposed at a top end of the stud and passing through the insertion hole 116.
  • the width of the circular arc hole 115 is smaller than the maximum outer diameter of the cap-shaped end portion and greater than or equal to the maximum outer diameter of the stud.
  • the gap formed between the first bottom walls 112 is such that the connection of the first cover 11 to the base 17 is achieved.
  • the position of the mounting bracket can be adjusted by adjusting the position of the stud in the circular arc hole 115, so that the pointing of the window 123 provided on the second cover 12 can be adjusted, and the lens extending from the window 123 is directed to the area to be monitored. .
  • the position of the mounting bracket can be adjusted flexibly and quickly by the sliding fit of the stud and the snap hole.
  • the base 17 is provided with two coaxial arc holes 115.
  • the studs on the first bottom wall 112 may be replaced by screws 18 that are screwed to the second side of the first bottom wall 112. A portion of the screw 18 is screwed onto the first bottom wall 112, and a gap is formed between the nut and the first bottom wall 112. The nut can be inserted into the insertion hole 116 (as shown in FIG. 9). When the first cover 11 is rotated, the screw 18 is slid into the circular arc hole 115, and the connection between the first cover 11 and the base 17 is achieved.
  • the maximum outer diameter of the first bottom wall 112 is greater than or equal to the maximum outer diameter of the base 17.
  • the first cover 11 can block the base 17. Thereby, the beauty of the overall appearance is enhanced.
  • the mounting bracket is also provided with a positioning mechanism.
  • the positioning mechanism can limit the relative position of the first cover 11 and the base 17.
  • the positioning mechanism includes a first positioning portion disposed on the base 17 and a second positioning portion disposed on the first bottom wall 112 of the first cover 11 and mated with the first positioning portion.
  • the first positioning portion is a second elastic member 172 provided on a surface of the base 17 facing the second side surface.
  • the first bottom wall 112 is provided with a receiving hole for accommodating the second elastic member 172.
  • the second positioning portion is a fastener disposed on the first side wall 111 near the receiving hole.
  • the actuating fastener is moved in a radial direction of the first bottom wall 112 (ie, perpendicular to a direction in which the second elastic member 172 is inserted into the insertion direction of the receiving hole) such that the fastener is pressed against the second elastic member 172.
  • the surface is positioned to complete the positioning of the first cover 11. Since the second elastic member 172 itself has elastic deformation property, when the fastener presses against the second elastic member 172, the fastener will press the partial surface of the second elastic member 172 out of the recess. Thus, the relative position of the fastener to the second elastic member 172 is more stable.
  • the second elastic member 172 and the receiving hole are configured in a circular arc shape.
  • the second elastic member 172 is a rubber member.
  • the fastener is a fastening screw 19. The rubber member can be fixedly attached to the base 17 by bonding.
  • an identification protrusion 173 corresponding to the position of the second elastic member 172 is provided on the second side surface of the base 17.
  • the relative position of the fastener to the second elastic member 172 is judged by observing the relative position of the fastener and the identification protrusion 173, and the first cover 11 is accurately mounted on the base 17. fixed.
  • An embodiment of the mounting bracket of the present invention is an embodiment in which the first cover 11 is directly fixed to the mounting platform. At this time, the second cover 12 connected to the first cover 11 does not pass from the first The cover 11 is dropped to ensure the safety of the installation process. In addition, the number of components for the mounting bracket is small, the installation is quick and convenient, and the processing cost is also reduced.
  • the mounting bracket includes a base 17. The first cover 11 is hung on the base 17, and the first cover 11 can be easily removed or installed, which saves installation time and improves disassembly efficiency.
  • An embodiment of the monitoring device of the present invention includes the above-described mounting bracket and a camera mounted on the mounting bracket.
  • the camera is a spherical camera 13.
  • the spherical camera 13 is mounted in a cavity formed by the first cover 11 and the second cover 12, and the spherical camera 13 can be moved in the cavity, and the position of the mounting bracket relative to the mounting platform can also be adjusted.
  • the pointing of the lens can be adjusted by adjusting the position of the spherical camera 13 and/or the position of the mounting bracket, thereby expanding the monitoring range of the monitoring device and improving the monitoring capability of the monitoring device.

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  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Accessories Of Cameras (AREA)
  • Studio Devices (AREA)

Abstract

本实用新型提出一种用于安装摄像机的安装支架以及监控设备。安装支架包括:第一罩体,包括第一连接部;第二罩体,包括第二连接部;其中,所述第一连接部与所述第二连接部铰接以实现所述第一罩体和第二罩体的盖合或张开;所述第一罩体和第二罩体盖合时形成容纳所述摄像机的空腔。在整个安装过程中,第二罩体不会与第一罩体分离开,避免了第二罩体掉落的情况,保证了安装过程的安全性。

Description

用于安装摄像机的安装支架以及监控设备 技术领域
本实用新型涉及安防设备,特别是涉及一种用于安装摄像机的安装支架以及监控设备。
背景技术
随着电子通讯技术的飞速发展,监视器已经在各个行业上有了广泛的应用,如安装在火车站等人流杂乱的地方,能在一定程度上遏制盗窃案的发生;安装在住宅区、超市的道路口可以保证此类的地方的安全;安装在生产线上,可对产品质量进行监控;应用于交通路口可以实时监控车辆的运行情况。现在人们对监控采集视频信息的要求也不断提高。
监视器包括安装支架以及安装在安装支架上的摄像机。现有的安装支架包括底罩和顶罩。顶罩与底罩为分体结构。顶罩与底罩通过螺纹方式连接到一起。安装监视器时,先安装底罩,然后再安装顶罩。由于大部分的监视器需要安装在高处,当在徒手或者借助工具安装顶罩时,顶罩存在从高处掉落的情况。掉落的顶罩会被摔坏,甚至会威胁到路过下方的人的人身安全。
实用新型内容
本实用新型是为了克服现有技术中安装摄像机的支架中的底罩和顶罩为分体结构,安装过程中存在顶罩容易掉落的情况的出现。
针对上述问题,本实用新型提出了一种用于安装摄像机的安装支架,其包括:第一罩体,包括第一连接部;第二罩体,包括第二连接部;其中,所述第一连接部与所述第二连接部铰接以实现所述第一罩体和第二罩体的盖合或张开;所述第一罩体和第二罩体盖合时形成容纳所述摄像机的空腔。
根据本实用新型的安装支架,其包括彼此连接在一起的第一罩体和第二罩体。第一罩体和第二罩体上分别设置有第一连接部和第二连接部。第一连接部和第二连接部活动连接后,第一罩体与第二罩体就连接到一起,并且第一罩体与第二罩体可以相对地摆动以实现两个罩体的盖合或者打开。这样,在整个安装过程中,第二罩体不会与第一罩体分离开,避免了第二罩体掉落的情况,保证了安装过程的安全性。
在一个实施例中,所述第一连接部枢接于所述第二连接部。枢接方式会限定第一罩体与第二罩体盖合或张开的摆动方向,有利于操作者对第一罩体与第二罩体进行盖合操作。
在一个实施例中,所述安装支架还包括固定安装在所述第一罩体上的压板;所述第二连接部位于所述第一连接部与所述压板之间。压板可以防止第一连接部与第二连接部脱离枢接状态,保证连接的可靠性。
在一个实施例中,所述第一罩体还包括远离所述第一连接部的第一锁止部;所述第二罩体还包括远离所述第二连接部并与所述第一锁止部相配合的第二锁止部。第一罩体与第二罩体盖合后,第一罩体与第二罩体通过第一锁止部与第二锁止部锁合在一起,防止第一罩体与第二罩体脱离盖合状态,保护安装在安装支架上的摄像机的安全。
在一个实施例中,所述安装支架还包括用于安装所述第一罩体的底座,所述底座上设置有卡接孔;所述第一罩体包括第一底壁;所述第一底壁的第一侧表面上设置有第一弹性件;所述第一底壁的第二侧表面上设置有与所述卡接孔相卡合的卡接部。在安装平台上安装固定好底座,再将安装支架的第一罩体卡接到底座上。这样,安装过程得到简化,安装方便快捷。摄像机安装到第一罩体与第二罩体形成的空腔中时,第一弹性件与摄像机之间会产生较大的静摩擦力,从而使得摄像机在完成安装固定后的位置不容易发生偏移。
在一个实施例中,所述卡接孔包括圆弧孔以及与所述圆弧孔相连通的插入孔;所述卡接部包括凸柱以及设置在所述凸柱的顶端并可穿过所述插入孔的帽状端部;所述圆弧孔的宽度小于所述帽状端部的最大外径,且圆弧孔的宽度大于等于所述凸柱的最大外径。凸柱插入到插入孔并滑移到圆弧孔内以后,第一罩体就会挂接在底座上。这样的卡接方式使得拆装容易,简化安装工序。
在一个实施例中,所述安装支架包括用于限制所述第一罩体相对于所述底座的位置的定位机构,所述定位机构包括设置在所述底座上的第一定位部以及设置在所述第一罩体上并与所述第一定位部相配合的第二定位部。定位机构对挂接到底座上的第一罩体进行限位,从而防止第一罩体与底座之间相对位置发生偏移,保证安装支架的位置稳定性。
在一个实施例中,所述第一定位部是设置在所述底座朝向所述第一底壁的表面上的第二弹性件;所述第一底壁上设置有容纳所述第二弹性件的容纳孔,所述第二定位部是用于抵压到所述第二弹性件表面的紧固件。第二弹性件受到紧固件的抵压作用后会发生弹性变形,从而紧固件压紧第二弹性件,保证彼此相对位置的稳定性。
在一个实施例中,所述第一罩体包括第一底壁,所述第一底壁上设置有卡接孔。在安装平台上安装好螺钉,第一罩体通过卡接孔挂接到螺钉上以将第一罩体安装到安装平台上。这样,产品构件数量少,降低制造成本。
本实用新型还提出一种监控设备,其包括摄像机,还包括用于安装所述摄像机的上述安装支架。
根据本实用新型的安装支架,其包括彼此连接在一起的第一罩体和第二罩体。第一罩体和第二罩体上分别设置有第一连接部和第二连接部。第一连接部和第二连接部活动连接后,第一罩体与第二罩体就连接到一起并且第一罩体与第二罩体可以相对地摆动以实现两个罩体的盖合或者打开。这样,在整个安装过程中,第二罩体不会与第一罩体分离开,避免了第二罩体掉落的情况,保证了安装过程的安全性。第一罩体、摄像机和第二罩体组装成的监控设备在安装平台上的安装固定更加方便快捷。摄像机的监控区域可以通过转动安装支架和/或调整摄像机在第一罩体和第二罩体内的相对位置来进行调整,使得摄像机的监控范围更大。
附图说明
在下文中将基于实施例并参考附图来对本实用新型进行更详细的描述。
图1是本实用新型实施例的安装支架的产品爆炸结构示意图。
图2是本实用新型实施例的安装支架的第一罩体的结构示意图。
图3是本实用新型实施例的安装支架的第二罩体的结构示意图。
图4是本实用新型实施例的安装支架的第一罩体与第二罩体连接状态示意图。
图5是本实用新型实施例的安装支架安装球形摄像机的状态示意图。
图6是本实用新型实施例的安装支架的第一罩体、第二罩体和球形摄像机组合状态示意图。
图7是本实用新型实施例的安装支架的第一罩体的一种实施例结构示意图。
图8是本实用新型实施例的安装支架的底座的正面结构示意图。
图9是本实用新型实施例的安装支架的第一罩体与底座相配合状态示意图。
图10是本实用新型实施例的安装支架的背面结构示意图。
在附图中,相同的部件使用相同的附图标记。附图并未按照实际的比例绘制。
附图标记:
11、第一罩体;12、第二罩体;13、球形摄像机;14、第一连接部;15、第二连接部;16、压板;17、底座;18、螺钉;19、紧固螺钉;111、第一侧壁;112、第一底壁;113、凸出部;114、第一弹性件;115、圆弧孔;116、插入孔;121、第二侧壁;122、第二底壁;123、窗口;124、螺钉;141、容纳部;142、枢接槽;151、插入部;152、枢轴;171、安装孔;172、第二弹性件;173、标识凸起;96、第一容纳部;97、第二容纳部;98、斜坡面;99、过线槽。
具体实施方式
下面将结合附图对本实用新型作进一步说明。
本实用新型的安装支架的实施例,如图1所示,其包括互相连接在一起的第一罩体11和第二罩体12。第一罩体11包括第一连接部14和第一容纳部96(如图4所示)。第二罩体12包括第二连接部15和第二容纳部97。第一连接部14和第二连接部15可以通过铰接或者枢接方式活动连接在一起,以使得第一罩体11和第二罩体12可以相对地进行摆动并实现彼此的盖合或者张开。将摄像机放置在第一罩体11上,然后促动第二罩体12摆动以盖合到第一罩体11上。这样,完成盖合后,第一罩体11与第二罩体12就将摄像机固定在第一容纳部96与第二容纳部97形成的空腔中。由于第一罩体11与第二罩体12连接在一起,在整个安 装过程中都不会发生分离,不仅不存在第二罩体12发生掉落的情况,而且第二罩体12不会被遗失。这样,彼此连接在一起的第一罩体11和第二罩体12就保证了安装过程的安全性以及转移过程各构件的完整性。
摄像机可以是球形摄像机13(如图5所示)。如图2所示,第一罩体11的构造是截球壳体。其中,第一罩体11包括球壳形的第一侧壁111以及与第一侧壁111相连接的第一底壁112,第一底壁112的第二侧表面(即外侧表面)为平面状。第一侧壁111上远离第一底壁112的端面是斜坡面98。斜坡面98距离第一连接部14越远时,其距离第一底壁112越远。第一侧壁111与第一底壁112形成有第一容纳部96。如图3所示,第二罩体12的构造也是截球壳体。其中,第二罩体12包括球壳形的第二侧壁121以及与第二侧壁121相连接的第二底壁122,第二底壁122的第二侧表面为平面状。第二侧壁121上远离第二底壁122的端面是斜坡面98。斜坡面98距离第二连接部15越远时,其距离第二底壁122越远。第二侧壁121与第二底壁122形成第二容纳部97。在第一罩体11和第二罩体12盖合后,球形摄像机13安装固定在第一容纳部96和第二容纳部97形成的空腔中。
可选地,第一连接部14与第二连接部15通过枢接方式活动连接。其中,第一连接部为第一枢接部,第二连接部为第二枢接部。第一枢接部位于第一侧壁111的斜坡面98距离第一底壁112最近的位置处。第二连接部15包括设置在第二侧壁121上的第二枢接部。第二枢接部位于第二侧壁121的斜坡面98距离第二底壁122最近的位置处。第一枢接部与第二枢接部相枢接后,第二罩体12相对于第一罩体11可以在一个平面内摆动,这样有利于促动第二罩体12朝向第一罩体11摆动,保证第二罩体12更加容易准确地盖合在第一罩体11上。
在一个实施例中,如图2所示,第一枢接部可以设置在第一罩体11的第一底壁112上。第一枢接部包括设置在第一底壁112上的容纳部141以及分别设置在容纳部141相对的两个侧表面上的枢接槽142。如图3所示,第二枢接部包括可插入到容纳部141的插入部151以及设置在插入部151两个相对端面上的枢轴152。枢轴152可以是与插入部151加工制造成一整体,也可以是与插入部151分体制造再组装到一起。枢轴152插入到枢接槽142后,再安装上压板16。压板16通过螺钉安装到第一底壁112上。压板16会将枢轴152压在枢接槽142内,对枢轴152形成限位。压板16上设置有缺口,避免对第二罩体12的摆动造成阻碍或干涉。促动第二罩体12时,枢轴152在枢接槽142与压板16之间形成的空间中转动,而第一底壁112上的容纳部141会限制插入部151的位置,进而限制了第二罩体12的摆动范围。第二罩体12会在一个平面内摆动以靠近或者远离第一罩体11。
第一底壁112上设置有过线槽99。传输线路可以穿过该过线槽99进入第一罩体11与第二罩体12盖合后形成的空腔内并连接到球形摄像机13上。第二底壁122上设置有窗口123。在将球形摄像机13安装到第一罩体11和第二罩体12盖合形成的空腔后,球形摄像机13的镜头可以穿过该窗口123而伸出到外部,以方便镜头拍摄影像。
组装第一罩体11、第二罩体12以及球形摄像机13的过程是,首先将球形摄像机13放置在第一罩体11的容纳腔里,再促动第二罩体12与第一罩体11盖合到一起。通过第一罩体11上设置的第一锁止部与第二罩体12上设置的第二锁止部相配合来对第二罩体12相对 于第一罩体11的摆动进行锁止定位,以将第一罩体11和第二罩体12固连到一起,从而将球形摄像机13固定在第一罩体11与第二罩体12的内部。
在一个实施例中,第一锁止部远离第一连接部,可以在第一侧壁111上距离第一连接部最远的位置设置第一锁止部,也可以在第一侧壁111上距离第一连接部最远的位置与第一连接部之间的位置上设置第一锁止部。第二锁止部远离第二连接部,可以在第二侧壁121上距离第二连接部最远的位置设置第二锁止部,也可以在第二侧壁121上距离第二连接部最远的位置与第二连接部之间的位置上设置第二锁止部。
可选地,如图4所示,第一锁止部是设置在第一侧壁111的内侧表面上的带有螺纹孔的凸出部113。第二锁止部是设置在第二侧壁121外侧表面上的螺钉124。在将第二罩体12盖合到第一罩体11上以后,使用螺丝刀将螺钉124旋拧到螺纹孔内,第一罩体11和第二罩体12固连到一起且第一罩体11与第二罩体12共同挤压住球形摄像机13,从而完成对球形摄像机13的安装固定。
可选地,第一锁止部是设置在第一侧壁111上的卡扣孔。第二锁止部是设置在第二侧壁121上的卡爪。卡爪上的钩状端部可以卡入卡扣孔中,以将第一罩体11与第二罩体12固连到一起。这样,球形摄像机13会受到第一罩体11与第二罩体12的共同挤压作用,从而实现球形摄像机13在第一罩体11与第二罩体12形成的空腔内的安装固定。
如图4所示,在第一罩体11的第一底壁112的第一侧表面(即内侧表面)上设置有第一弹性件114。如图5所示,在将球形摄像机13放置到第一罩体11的容纳腔后,第一弹性件114会托住球形摄像机13。球形摄像机13会受到第一弹性件114的支撑限位作用,可以防止球形摄像机13与第一罩体11相对位置发生偏移。另外,通过第一锁止部与第二锁止部的配合将第一罩体11与第二罩体12固连到一起后,球形摄像机13受到第一罩体11和第二罩体12的挤压后,球形摄像机13会挤压第一弹性件114。这样,由于第一弹性件114具有弹性回复力,第一弹性件114与球形摄像机13的表面之间会产生更大的静摩擦力,从而为球形摄像机13提供阻尼,防止球形摄像机13在第一罩体11与第二罩体12形成的空腔内的位置发生偏移。这样,如图6所示,将第一罩体11、第二罩体12以及球形摄像机13完成组装后,保证了球形摄像机13在第一罩体11与第二罩体12形成的空腔内的安装位置的稳定性。优选地,第一弹性件114是橡胶件。
安装支架可以通过多种方式安装固定到安装平台上,以下给出两个实施例:
第一个实施例,如图7所示,第一罩体11的第一底壁112上设置有用于将第一罩体11安装固定到安装平台(例如墙体)上的卡接孔。卡接孔包括圆弧孔115。通过卡接孔将第一罩体11安装到安装平台上的过程是,首先将第一底壁112的第二侧表面贴靠到安装平台上。然后使用螺钉插入卡接孔并旋拧到安装平台上,但此时螺钉没有将第一罩体11压到安装平台上。转动第一罩体11,螺钉可以在圆弧孔115内相对地移动。当将第一罩体11的位置调整到合适位置后,再次旋拧螺钉并将第一罩体11压紧在安装平台上以将第一罩体11固定住。这样,通过第一罩体11和第二罩体12就可以实现对球形摄像机13的安装固定,零部件数量少, 方便安装,节约成本。优选地,第一底壁112上设置两个同轴的圆弧孔115,有利于转动第一罩体11以及保持安装支架完成安装固定后的位置稳定性。
可选地,卡接孔包括圆弧孔115以及与圆弧孔115相连通的插入孔116。通过卡接孔将第一罩体11安装到安装平台上的过程是,首先将螺钉旋拧到安装平台上,然后将第一罩体11的插入孔116对准螺钉并使螺钉穿过插入孔116。转动第一罩体11,使得螺钉相对第一罩体11从插入孔116滑移到圆弧孔115中,从而第一底壁112卡接到螺帽与安装平台之间的间隙里。当将第一罩体11的位置调整到合适位置后,再次旋拧螺钉并将第一罩体11压紧在安装平台上以将第一罩体11固定住。这样,不再需要托着第一罩体11进行安装操作,而是先在安装30平台上旋拧好螺钉,再将安装支架的第一罩体11悬挂到螺钉的钉帽上,然后使用工具旋拧螺钉,从而可以减少安装过程的工作量。另外,在后期进行维护时,只需旋松螺钉并将安装支架从螺钉上取下来维护即可,不需要将螺钉完全旋拧下来。安装完成维护后的安装支架时,将安装支架的第一罩体11再重新悬挂到螺钉上并拧紧螺钉即可,整个拆卸安装过程不需要将螺钉拧下来,因此提高了安装效率,避免了螺钉的丢失。优选地,第一底壁112上设置两个同轴的圆弧孔115。
第二个实施例,安装支架还包括用于安装第一罩体11的底座17。如图8所示,卡接孔设置在底座17上。底座17上还设置有安装孔171。将底座17贴靠在安装平台上以后,通过安装孔171向安装平台上旋入螺钉以将底座17安装固定在安装平台上。第一底壁112的第二侧表面上设置有与底座17上的卡接孔相卡接的卡接部。第一罩体11通过卡接部卡入到卡接孔中以实现与底座17的连接,从而完成安装支架在安装平台上的安装工作。
可选地,卡接孔包括圆弧孔115以及与圆弧孔115相连通的插入孔116。卡接部包括凸柱以及设置在凸柱的顶端并可穿过插入孔116的帽状端部。圆弧孔115的宽度小于帽状端部的最大外径并大于等于凸柱的最大外径。凸柱插入到插入孔116后,转动第一罩体11,凸柱会沿圆弧孔115的延伸方向滑移,而使得底座17上圆弧孔115的孔壁卡接到帽状端部与第一底壁112之间形成的间隙中,从而实现第一罩体11与底座17的连接。通过调整凸柱在圆弧孔115中位置就可以调整安装支架的位置,从而可以对第二罩体12上设置的窗口123的指向进行调整,将从窗口123伸出的镜头指向需要监测的区域。这样,通过凸柱与卡接孔的滑动配合,可以灵活快捷地对安装支架的位置进行调节。优选地,底座17上设置有两个同轴的圆弧孔115。
可选地,第一底壁112上的凸柱可以由旋拧到第一底壁112第二侧的螺钉18代替。螺钉18的一部分旋拧到第一底壁112上,螺帽与第一底壁112之间形成有间隙。螺帽可以插入到插入孔116中(如图9所示)。转动第一罩体11,螺钉18会滑移到圆弧孔115中,实现第一罩体11与底座17的连接。
可选地,第一底壁112的最大外径大于等于底座17的最大外径。第一罩体11与底座17完成固定后,第一罩体11可以将底座17遮挡住。从而,提升了整体外观的美感。
为了限制第一罩体11相对底座17的转动,安装支架还设置有定位机构。定位机构可以限制第一罩体11与底座17的相对位置。定位机构包括设置在底座17上的第一定位部以及设置在第一罩体11的第一底壁112上并与第一定位部相配合的第二定位部。安装支架受到外力作用时,定位机构可以防止设置在第一底壁112的凸柱在圆弧孔115中出现滑移的情况,进而避免安装支架的位置发生改变,从而保证了完成安装的安装支架的位置稳定性。
可选地,如图8所示,第一定位部是设置在底座17朝向第二侧表面的表面上的第二弹性件172。第一底壁112上设置有容纳第二弹性件172的容纳孔。第二定位部是设置在第一侧壁111上靠近容纳孔的紧固件。第一罩体11与底座17组装后,第二弹性件172就插入到第一底壁112上的容纳孔内。转动第一罩体11,在凸柱沿圆弧孔115滑移的同时,第二弹性件172也在容纳孔中滑移。将第一罩体11转动到合适位置后,停止转动。促动紧固件沿第一底壁112的径向方向(也即垂直于第二弹性件172插入到容纳孔的插入方向的方向)移动,以使得紧固件抵压到第二弹性件172的表面上以完成对第一罩体11的定位。由于第二弹性件172自身具有弹性变形性能,当紧固件抵压第二弹性件172时,紧固件会将第二弹性件172的局部表面抵压出凹陷。这样,紧固件与第二弹性件172的相对位置更加稳定。优选地,第二弹性件172与容纳孔构造为圆弧形。第二弹性件172是橡胶件。紧固件是紧固螺钉19。橡胶件可以通过粘接的方式与底座17固连在一起。
如图10所示,在底座17第二侧表面上设置有与第二弹性件172位置相对应的标识凸起173。在转动第一罩体11时,通过观察紧固件与标识凸起173的相对位置来判断紧固件与第二弹性件172的相对位置,保证第一罩体11在底座17上准确地安装固定。
本实用新型的安装支架的实施例,一种实施例是直接将第一罩体11安装固定到安装平台,此时,与第一罩体11相连接的第二罩体12不会从第一罩体11上掉落,保证了安装过程的安全性。另外,安装支架的零部件数量少,安装快捷方便,也降低了加工成本。另一实施例中,安装支架包括底座17。第一罩体11悬挂到底座17上,可以很容易地拆卸或安装第一罩体11,节省安装时间,提高拆装效率。
本实用新型的监控设备的实施例,包括上述的安装支架以及安装在安装支架上的摄像机。可选地,摄像机是球形摄像机13。球形摄像机13安装到第一罩体11与第二罩体12共同形成的空腔中,球形摄像机13可以在空腔内活动,同时安装支架相对于安装平台的位置也可以进行调整。这样,镜头的指向可以通过调整球形摄像机13的位置和/或安装支架的位置来进行调整,扩大了监控设备的监测范围,提高了监控设备的监测能力。
虽然已经参考优选实施例对本实用新型进行了描述,但在不脱离本实用新型的范围的情况下,可以对其进行各种改进并且可以用等效物替换其中的部件。尤其是,只要不存在结构冲突,各个实施例中所提到的各项技术特征均可以任意方式组合起来。本实用新型并不局限于文中公开的特定实施例,而是包括落入权利要求的范围内的所有技术方案。

Claims (10)

  1. 一种用于安装摄像机的安装支架,其特征在于,包括:
    第一罩体,包括第一连接部;
    第二罩体,包括第二连接部;
    其中,所述第一连接部与所述第二连接部铰接以实现所述第一罩体和第二罩体的盖合或张开;所述第一罩体和所述第二罩体盖合时形成容纳摄像机的空腔。
  2. 根据权利要求1所述的用于安装摄像机的安装支架,其特征在于,所述第一连接部枢接于所述第二连接部。
  3. 根据权利要求2所述的用于安装摄像机的安装支架,其特征在于,所述安装支架还包括固定安装在所述第一罩体上的压板;所述第二连接部位于所述第一连接部与所述压板之间。
  4. 根据权利要求1或2所述的用于安装摄像机的安装支架,其特征在于,所述第一罩体还包括远离所述第一连接部的第一锁止部;所述第二罩体还包括远离所述第二连接部并与所述第一锁止部相配合的第二锁止部。
  5. 根据权利要求1所述的用于安装摄像机的安装支架,其特征在于,所述安装支架还包括用于安装所述第一罩体的底座,所述底座上设置有卡接孔;所述第一罩体包括第一底壁;所述第一底壁的第一侧表面上设置有第一弹性件;所述第一底壁的第二侧表面上设置有与所述卡接孔相卡合的卡接部。
  6. 根据权利要求5所述的用于安装摄像机的安装支架,其特征在于,所述卡接孔包括圆弧孔以及与所述圆弧孔相连通的插入孔;所述卡接部包括凸柱以及设置在所述凸柱的顶端并可穿过所述插入孔的帽状端部;所述圆弧孔的宽度小于所述帽状端部的最大外径,且所述圆弧孔的宽度大于等于所述凸柱的最大外径。
  7. 根据权利要求5所述的用于安装摄像机的安装支架,其特征在于,所述安装支架包括用于限制所述第一罩体相对于所述底座的位置的定位机构,所述定位机构包括设置在所述底座上的第一定位部以及设置在所述第一罩体上并与所述第一定位部相配合的第二定位部。
  8. 根据权利要求7所述的用于安装摄像机的安装支架,其特征在于,所述第一定位部是设置在所述底座朝向所述第一底壁的表面上的第二弹性件;所述第一底壁上设置有容纳所述第二弹性件的容纳孔,所述第二定位部是用于抵压到所述第二弹性件表面的紧固件。
  9. 根据权利要求1所述的用于安装摄像机的安装支架,其特征在于,所述第一罩体包括第一底壁,所述第一底壁上设置有卡接孔。
  10. 一种监控设备,其特征在于,包括摄像机,还包括如权利要求1至9中任一权利要求所述的用于安装所述摄像机的安装支架。
PCT/CN2015/097498 2015-04-30 2015-12-15 用于安装摄像机的安装支架以及监控设备 WO2016173266A1 (zh)

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