CN209911896U - Mobile monitoring device's quick-witted case - Google Patents

Mobile monitoring device's quick-witted case Download PDF

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Publication number
CN209911896U
CN209911896U CN201921082444.9U CN201921082444U CN209911896U CN 209911896 U CN209911896 U CN 209911896U CN 201921082444 U CN201921082444 U CN 201921082444U CN 209911896 U CN209911896 U CN 209911896U
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area
monitoring device
main body
bearing area
carrying
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CN201921082444.9U
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Chinese (zh)
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陈浩
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Hangzhou Hikvision Digital Technology Co Ltd
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Hangzhou Hikvision Digital Technology Co Ltd
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Abstract

The application discloses remove monitoring device's quick-witted case. This machine case includes: the battery pack comprises a main body and a cover which are connected through a hinge, wherein a roller and a telescopic pull rod are arranged outside the main body, the inner space of the main body is divided into a monitoring device bearing area, a support bearing area and a circuit module bearing area, the support bearing area is positioned on the first side of a long shaft of the main body, the monitoring device bearing area and the circuit module bearing area are positioned on the second side of the long shaft of the main body, and a battery module bearing area is arranged between the monitoring device bearing area and the bottom of the main body. According to the case, the inner space of the case is reasonably divided into different areas, so that the inner space of the case can be fully utilized.

Description

Mobile monitoring device's quick-witted case
Technical Field
The application relates to the field of mobile video monitoring, in particular to a case of a mobile monitoring device.
Background
The mobile video monitoring system usually collects mobile video images at the front end in a dynamic manner, is closely combined with the traditional security industry at the rear end, and can receive pictures in a mobile manner, for example, a mobile phone or a computer can monitor remote real-time dynamic pictures. This provides simpler, more convenient, more timely monitoring solutions for enterprises and families, and thus mobile video monitoring is more and more widely applied.
To protect the mobile video surveillance system, it is typically mounted in a chassis. In the prior art, the inner space of the case is poorly distinguished, so that the inner space of the case cannot be fully utilized.
SUMMERY OF THE UTILITY MODEL
In order to solve the above problem, the utility model provides a mobile monitoring device's quick-witted case. According to the case, the inner space of the case is reasonably divided into different areas, so that the inner space of the case can be fully utilized.
According to the utility model discloses a remove monitoring device's quick-witted case, include: the battery pack comprises a main body and a cover which are connected through a hinge, wherein a roller and a telescopic pull rod are arranged outside the main body, the inner space of the main body is divided into a monitoring device bearing area, a support bearing area and a circuit module bearing area, the support bearing area is positioned on the first side of a long shaft of the main body, the monitoring device bearing area and the circuit module bearing area are positioned on the second side of the long shaft of the main body, and a battery module bearing area is further arranged between the monitoring device bearing area and the bottom of the main body.
In one embodiment, the monitor device bearing region is proximate to the hinge and the stand bearing region is distal to the hinge.
In one embodiment, the monitoring device bearing region, the bracket bearing region and the circuit module bearing region are separated by a rigid plate, and a buffer layer is disposed on an inner surface of the monitoring device bearing region.
In one embodiment, there is also a charging module carrying area between the cradle carrying area and the bottom of the body.
In one embodiment, the battery module carrying region is adjacent to the circuit module carrying region,
the charging module bearing area is adjacent to the charging module bearing area and the circuit module bearing area.
In one embodiment, the depth of the rack bearing area is stepped in the depth direction of the chassis, wherein a bottom raised portion of the rack bearing area corresponds to the charging module bearing area.
In one embodiment, at least two batteries are arranged in the battery module bearing area, charging modules with the number matched with that of the batteries are arranged in the charging module bearing area, a circuit board is arranged in the circuit module bearing area, and the charging modules are electrically connected with the circuit board.
In one embodiment, the chassis further includes a first cover covering the monitoring device carrying area, a second cover covering the rack carrying area, and a third cover covering the circuit module carrying area.
In one embodiment, a panel carrier is disposed on an inner surface of the cover, the panel carrier including a back plate coupled to the cover and a rigid frame coupled to the back plate, a gap between the back plate and the rigid frame forming a panel receiving space.
In one embodiment, the pallet carrier further comprises a blocking member mounted at the opening of the pallet receiving gap.
Compared with the prior art, the beneficial effects of the utility model are as follows: the internal space of the case is reasonably divided into different areas according to the monitoring device, the bracket and the circuit module, so that the internal space of the case can be placed in the corresponding areas according to the respective size characteristics of the bracket, the monitoring device and the circuit module, and the effect of effectively utilizing the internal space of the main body is achieved. In addition, a battery module bearing area is arranged at the bottom of the bearing area of the monitoring device, so that a battery can be arranged in the case to provide a standby power supply for the monitoring device, and the standby time of the monitoring device is prolonged. In addition, the battery module bearing area is positioned at the bottom of the monitoring device bearing area, so that the monitoring device can be prevented from being damaged due to the fact that the battery accidentally extrudes the monitoring device.
Drawings
The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the application and together with the description serve to explain the application and not to limit the application. In the drawings:
fig. 1 is an overall schematic diagram of a chassis of a mobile monitoring device according to an embodiment of the present invention.
Fig. 2 is a schematic plan view of the inside of the cabinet main body.
Fig. 3 schematically shows the internal structure of the chassis main body in a perspective view.
Fig. 4 schematically shows a bottom structure of the chassis main body in a perspective view.
Fig. 5 schematically illustrates another aspect of a chassis body in a perspective view.
Fig. 6 is a schematic view of a chassis cover.
Detailed Description
In order to make the objects, technical solutions and advantages of the present application more apparent, the technical solutions of the present application will be described in detail and completely with reference to the following specific embodiments of the present application and the accompanying drawings. It should be apparent that the described embodiments are only some of the embodiments of the present application, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present application.
Fig. 1 schematically shows a case 1 of a mobile monitoring apparatus (hereinafter, referred to as a case 1) according to an embodiment of the present invention. As shown in fig. 1, the cabinet 1 includes a main body 100 and a cover 200 connected by a hinge 10. In this way, the main body 100 and the cover 200 are releasably snapped together to form a cavity in which various components of the mobile monitoring apparatus are placed, so as to rapidly and safely transport the mobile monitoring apparatus to a destination.
Preferably, a roller 101 and a telescopic link 102 are provided at the outside of the main body 100. In addition, a handle 103 and the like may be provided on the main body 100. Thus, the user can carry the cabinet 1 conveniently. In the fastened state of the cabinet 1, the main body 100 and the cover 200 are tightly coupled together by the snaps 105 to improve the protection.
In order to fully utilize the space in the cabinet 1, the internal space of the cabinet 1 is reasonably divided into functions, for example, the internal space of the main body 100, and a component accommodating space is also provided in the cover 200, which will be described in detail below.
As shown in fig. 2, the inner space of the main body 100 is divided into three main portions, a monitoring device carrying region 110, a support carrying region 130 and a circuit module carrying region 150. The carrier receiving area 130 is located on a first side of the long axis 170 of the main body 100, and the monitoring device receiving area 110 and the circuit module receiving area 150 are located on a second side of the long axis 170 of the main body 100. A battery module carrying region 111 (shown in fig. 4) is also provided between the monitoring device carrying region 110 and the bottom of the main body 100.
The monitor device receiving area 110 is used for receiving a monitor device, the support receiving area 130 is used for receiving a support of the monitor device, and the circuit module receiving area 150 is provided with a circuit board 151 therein. A plurality of modules are integrated on the circuit board 151 to realize various functions. In one embodiment, these modules may include, but are not limited to, a GPS module, a USB interface, an indicator light, a debug interface, a switch, a memory card slot, a fan, an audio interface, an external power interface, etc., and will not be described herein. A display screen may be provided outside the cabinet 1 to indicate various information, which will not be described herein.
Generally, the length of the bracket is long and the length of the monitoring device and the circuit module is small, so that the division of the internal space of the main body 100 according to fig. 2 conforms to the respective dimensional characteristics of the bracket, the monitoring device and the circuit module, thereby contributing to effective utilization of the internal space of the main body 100.
More importantly, by providing the battery module carrying area 111, a battery can be provided in the chassis 1 to provide a backup power supply for the monitoring device, thereby prolonging the standby time of the monitoring device. In one embodiment, at least two batteries are disposed in the battery module receiving region 111 to extend the standby time of the monitoring device as much as possible. In addition, the battery module bearing region 111 is arranged at the bottom of the monitoring device bearing region 110, so that damage to the monitoring device caused by accidental pressing of the battery on the monitoring device can be avoided.
A charging module carrying region 131 is disposed between the bracket carrying region 130 and the bottom of the main body 100, and the charging module carrying region 131 is adjacent to the circuit module carrying region 150 and the battery module carrying region 111 to facilitate electrical connection. In use, the charging module is electrically connected to the circuit board 151 and the corresponding battery to charge the battery. Charging modules are arranged in the charging module bearing area 131, and the number of the charging modules is matched with the number of the batteries.
In the depth direction of the chassis 1, the depth of the rack carrying area 130 is stepped, wherein the bottom raised portion 139 of the rack carrying area 130 corresponds to the charging module carrying area 111. The depth of the recessed portion 140 of the rack bearing zone 130 is the original depth of the rack bearing zone 130. In other words, the height of the charging module bearing region 131 is less than the depth of the cradle bearing region 130. The stepped depth of the stent bearing area 130 corresponds to the overall shape of the stent, so that the stent can be more firmly clamped in the stent bearing area 130.
As shown in fig. 1, the monitoring device bearing region 110 is close to the hinge 10, and the stand bearing region 130 is far from the hinge 10. The inventor finds that when the monitoring device is transported by using the case 1, the part close to the hinge 10 has smaller vibration, and the part far away from the hinge 10 has larger vibration, so that the monitoring device and the battery are arranged closer to the hinge 10, the vibration impact on the monitoring device and the battery can be reduced, and the monitoring device can be protected. This is very important for monitoring devices with delicate components.
Preferably, the monitoring device carrier region 110, the support carrier region 130, and the circuit module carrier region 150 are separated by a rigid plate 160. For example, steel plates or hard plastic profiles may be used. More preferably, a buffer layer is disposed on an inner surface of the monitoring device bearing region 110. For example, the cushioning layer may be foam. Therefore, even if the monitoring device is impacted by vibration, the buffer layer can buffer the vibration so as to reduce the probability of damage to the monitoring device.
As shown in fig. 5, the chassis 1 further includes a first cover 114 covering the monitoring device carrying area 110, a second cover 135 covering the rack carrying area 130, and a third cover 155 covering the circuit module carrying area 150. The first cover 114, the second cover 135 and the third cover 155 protect the covered devices and are more beautiful as a whole.
Fig. 6 shows the structure of the cover 200. The cover 200 may include a body 211 and a bent portion 212 formed at an edge of the body 211. The bent portion 212 may be coupled to the main body 100 to achieve the fastening of the chassis 1.
As shown in fig. 6, a panel carrier 201 is provided on an inner surface of the body 211 of the cover 200. The panel carrier 201 includes a back plate 202 connected to a body 211 and a rigid frame 203 connected to the back plate 202, and a gap between the back plate 202 and the rigid frame 203 forms a panel receiving space 204. For example, a tablet computer is typically used to control the mobile monitoring device, in which case the tablet computer may be placed within the board receiving space 204. Preferably, the panel carrier 201 further includes a blocking member 205 installed at the opening of the panel receiving gap 204. Thus, after the tablet computer is placed in the board receiving space 204, the blocking member 205 can be used to block the opening of the board receiving space 204, so as to prevent the tablet computer from falling out of the board receiving space 204.
The above description is only an example of the present application and is not intended to limit the present application. Various modifications and changes may occur to those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included in the scope of the claims of the present application.

Claims (10)

1. A case for a mobile monitoring device, comprising:
the body and the lid are connected by a hinge,
the outside of the main body is provided with a roller and a telescopic pull rod,
the inner space of the main body is divided into a monitoring device bearing area, a support bearing area and a circuit module bearing area, the support bearing area is positioned at the first side of the long axis of the main body, the monitoring device bearing area and the circuit module bearing area are positioned at the second side of the long axis of the main body,
a battery module bearing area is also arranged between the monitoring device bearing area and the bottom of the main body.
2. A cabinet according to claim 1, wherein the monitor carrying area is proximate the hinge and the stand carrying area is distal the hinge.
3. A cabinet according to claim 1 or 2, wherein the monitoring device carrying area, the rack carrying area and the circuit module carrying area are separated by a rigid plate,
and a buffer layer is arranged on the inner surface of the bearing region of the monitoring device.
4. A cabinet according to claim 1 or 2, further having a charging module carrying area between the rack carrying area and the bottom of the main body.
5. A chassis according to claim 4, wherein the battery module carrying area is adjacent to the circuit module carrying area,
the charging module bearing area is adjacent to the charging module bearing area and the circuit module bearing area.
6. A cabinet according to claim 5, wherein the depth of the rack carrying area is stepped in the depth direction of the cabinet, wherein a bottom elevated portion of the rack carrying area corresponds to the charging module carrying area.
7. A cabinet according to claim 6, wherein at least two batteries are disposed in the battery module carrying region, charging modules are disposed in the charging module carrying region in a number matching the number of the batteries, a circuit board is disposed in the circuit module carrying region,
the charging module is electrically connected with the circuit board.
8. A chassis according to claim 6, further comprising a first cover covering the monitor carrying area, a second cover covering the rack carrying area, and a third cover covering the circuit module carrying area.
9. A cabinet according to claim 1, wherein a panel carrier is provided on an inner surface of the cover,
the panel bearing frame comprises a back plate connected with the cover and a rigid frame body connected with the back plate, and a gap between the back plate and the rigid frame body forms a panel accommodating space.
10. The chassis of claim 9, wherein the panel carrier further comprises a stop mounted at an opening of the panel receiving gap.
CN201921082444.9U 2019-07-11 2019-07-11 Mobile monitoring device's quick-witted case Active CN209911896U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921082444.9U CN209911896U (en) 2019-07-11 2019-07-11 Mobile monitoring device's quick-witted case

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921082444.9U CN209911896U (en) 2019-07-11 2019-07-11 Mobile monitoring device's quick-witted case

Publications (1)

Publication Number Publication Date
CN209911896U true CN209911896U (en) 2020-01-07

Family

ID=69050805

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921082444.9U Active CN209911896U (en) 2019-07-11 2019-07-11 Mobile monitoring device's quick-witted case

Country Status (1)

Country Link
CN (1) CN209911896U (en)

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