CN215488898U - Computer lab intelligent monitoring equipment based on thing networking - Google Patents
Computer lab intelligent monitoring equipment based on thing networking Download PDFInfo
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- CN215488898U CN215488898U CN202022998711.6U CN202022998711U CN215488898U CN 215488898 U CN215488898 U CN 215488898U CN 202022998711 U CN202022998711 U CN 202022998711U CN 215488898 U CN215488898 U CN 215488898U
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Abstract
The utility model discloses an intelligent monitoring device of a machine room based on the Internet of things, which comprises a mounting substrate, wherein a camera capable of continuously rotating forwards and backwards and two telescopic mounting seats are respectively arranged on the mounting substrate, and the two mounting seats are respectively provided with a temperature sensor and a humidity sensor, the mounting base plate is also provided with a protective cover for protecting the camera, the temperature sensor and the humidity sensor, the camera, the temperature sensor and the humidity sensor respectively penetrate through the protective cover and extend to the outside of the protective cover, the two mounting seats are controlled by handles positioned on the two side surfaces of the mounting base plate, the camera, the temperature sensor and the humidity sensor are all intensively mounted on the mounting base plate, therefore, the installation is convenient, the protective cover can be conveniently taken down in a movable clamping connection relationship with the installation substrate, and the overhaul and the installation are convenient.
Description
Technical Field
The utility model relates to the technical field of machine room monitoring, in particular to an intelligent machine room monitoring device based on the Internet of things.
Background
The machine room monitoring is mainly used for monitoring equipment in the machine room and the environment in the machine room, so that workers can know the condition and the motion environment of the equipment in the machine room in time, the management of the machine room by the workers is facilitated, the existing machine room monitoring equipment can well monitor the machine room through the camera, the temperature sensor and the humidity sensor, but the camera, the temperature sensor, the humidity sensor and the like in the existing monitoring equipment are separately installed, the installation and the maintenance are very troublesome, and the wiring after the installation is complex, so that the utility model provides the intelligent monitoring equipment for the machine room based on the Internet of things.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide machine room intelligent monitoring equipment based on the Internet of things, and aims to solve the problems in the background technology.
In order to achieve the purpose, the utility model provides the following technical scheme: the utility model provides a computer lab intelligent monitoring equipment based on thing networking, includes mounting substrate, but install continuous going on the camera and two telescopic mount pads that rotate just in reverse on the mounting substrate respectively, and install temperature sensor and humidity transducer on two mount pads respectively, still install the safety cover that is used for protecting camera, temperature sensor and humidity transducer on the mounting substrate, and camera, temperature sensor and humidity transducer run through the safety cover respectively and extend to the outside of safety cover, two mount pads are by being located the handle control on the mounting substrate both sides face.
Preferably, the camera is installed on the base, the base is including fixed frame, it is connected with the commentaries on classics board to rotate on the fixed frame, the medial surface of commentaries on classics board runs through fixed frame and fixedly connected with tooth axle, the inside of fixed frame is equipped with intermeshing's driving gear and driven gear, and on driving gear and the driven gear respectively first half gear of fixedly connected with and second half gear, and first half gear and second half gear respectively with tooth axle looks adaptation, the motor shaft interconnect of driving gear and motor.
Preferably, the mounting base comprises a base, the base is mounted on the mounting substrate, the base is connected with a mounting plate in a sliding mode through a stabilizing rod fixedly connected with the base, and a first spring is connected between the mounting plate and the base.
Preferably, the handles are slidably connected inside sliding grooves formed in the mounting substrate, the two sliding grooves are communicated with a cavity formed in the mounting substrate, and the inner ends of the two handles are respectively in cross connection with the two mounting plates through connecting rods.
Preferably, two installing frames of fixedly connected with on the guard shield, it has the groove that runs through that corresponds each other with the installing frame to open on the downside cell wall of two spouts, the handle passes through second spring and fixed connection at the inside dead lever interconnect of cavity, and the downside of handle is opened jaggedly, fixedly connected with kelly on the lateral wall of breach.
Compared with the prior art, the utility model has the beneficial effects that: according to the utility model, through the matching among the mounting substrate, the mounting seat and the base, the camera, the temperature sensor and the humidity sensor can be firstly mounted on the mounting substrate, then the mounting substrate is mounted in the machine room, so that the mounting and wiring are convenient, the mounting substrate is also provided with the protective cover, and the lens of the camera, the temperature sensor and the probe of the humidity sensor extend to the outside of the protective cover, so that the mounting and wiring positions of the camera, the temperature sensor and the humidity sensor can be protected, the work of the camera, the temperature sensor and the humidity sensor cannot be hindered, and the protective cover can be conveniently taken down due to the movable clamping connection relationship between the protective cover and the mounting substrate, so that the overhaul and the mounting are convenient.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is an exploded view of the protective cover and mounting substrate of the present invention;
FIG. 3 is an exploded view of the camera and rotating plate of the present invention;
FIG. 4 is a schematic view of the connection of the first half gear, the second half gear and the gear shaft of the present invention;
FIG. 5 is a cross-sectional view of the present invention;
FIG. 6 is an enlarged view taken at A of FIG. 5 in accordance with the present invention;
FIG. 7 is an exploded view of FIG. 5 of the present invention;
FIG. 8 is an enlarged view taken at B of FIG. 7 in accordance with the present invention;
FIG. 9 is a schematic view of the internal structure of the cavity of the present invention;
FIG. 10 is a schematic view of the connection of the handle, linkage and mounting plate of the present invention;
FIG. 11 is an exploded view of FIG. 10 of the present invention;
fig. 12 is a schematic structural view of the handle of the present invention.
In the figure: 1. the mounting base plate, 2, the camera, 3, the mount pad, 301, the base, 302, firm pole, 303, the mounting panel, 304, first spring, 4, temperature sensor, 5, humidity transducer, 6, the safety cover, 7, the handle, 8, the base, 801, fixed frame, 802, first half gear, 803, second half gear, 804, the driving gear, 805, driven gear, 806, the motor, 807, changeing the board, 808, the tooth axle, 9, the spout, 10, the cavity, 11, the connecting rod, 12, the mounting frame, 13, the through groove, 14, the breach, 15, kelly, 16, the second spring, 17, the dead lever, 18, wireless communication module.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, 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 invention.
Referring to fig. 1-12, the present invention provides a technical solution: an intelligent monitoring device of a machine room based on the Internet of things comprises a mounting substrate 1, wherein mounting holes are formed in four corners of the mounting substrate 1, bolts can penetrate through the mounting holes to be driven into the interior of a wall, the mounting substrate 1 is mounted in the machine room, the mounting substrate 1 is to be mounted on the upper side wall of the machine room, a camera 2 and two telescopic mounting seats 3 which can continuously rotate forwards and backwards are mounted on the mounting substrate 1 respectively, the camera 2 continuously rotates forwards and backwards to shoot the interior of the whole machine room, a temperature sensor 4 and a humidity sensor 5 are mounted on the two mounting seats 3 respectively, the temperature sensor 4 can sense the temperature in the machine room, the humidity sensor 5 can sense the humidity in the machine room, and the camera 2, the temperature sensor 4 and the humidity sensor 5 are electrically connected with a wireless communication module 18 mounted on the mounting substrate 1, data can be output outwards, for example, when the temperature sensor 4 detects that the temperature exceeds a threshold (for example, the temperature exceeds 35 ℃), the temperature sensor 4 sends a signal to the wireless communication module 18, the wireless communication module 18 transmits a signal to the worker, so that the worker can take measures in time to reduce the temperature in the machine room, when the humidity sensor 5 detects that the humidity of the air exceeds a threshold (for example, the relative humidity exceeds 70%), the humidity sensor 5 sends a signal to the wireless communication module 18, the wireless communication module 18 transmits a signal to the worker, so that the worker can take measures in time to reduce the humidity in the machine room, of course, the temperature sensor 4 and the humidity sensor 5 can also continuously send detected data outwards through the wireless communication module 18, and the mounting substrate 1 is further provided with a protection component for protecting the camera 2, A protective cover 6 for the temperature sensor 4 and the humidity sensor 5, and the camera 2, the temperature sensor 4 and the humidity sensor 5 respectively penetrate the protective cover 6 and extend to the outside of the protective cover 6, the protective cover 6 can protect the main body and the wiring of the camera 2, the temperature sensor 4 and the humidity sensor 5, and the lens of the camera 2, the probe of the temperature sensor 4 and the probe of the humidity sensor 5 can penetrate the protective cover 6 and extend to the outside of the protective cover 6 (the protective cover 6 is provided with through holes corresponding to the lens of the camera 2, the temperature sensor 4 and the humidity sensor 5, and the lens of the camera 2, the temperature sensor 4 and the humidity sensor 5 can be positioned outside the protective cover 6 after the protective cover 6 is arranged on the installation substrate 1), so that the protective cover 6 can play a protective role and can not obstruct the camera 2, the temperature sensor 4 and the humidity sensor 5 from working, two mount pads 3 are controlled by handle 7 that is located 1 both sides face of mounting substrate, can control the flexible of two mount pads 3 through pulling handle 7 to can pull handle 7 in installation or dismantlement safety cover 6, make temperature sensor 4 and humidity transducer 5 installed on two mount pads 3 can not influence the installation and the dismantlement of safety cover 6 then.
The camera 2 can realize continuous positive and negative rotation, specifically, the camera 2 is mounted on a base 8, the base 8 comprises a fixed frame 801, the fixed frame 801 is fixedly connected to the mounting substrate 1, a rotating plate 807 is rotatably connected to the fixed frame 801, the rotating plate 807 is rotatably connected to a side wall of the fixed frame 801, the camera 2 is mounted on the rotating plate 807 through bolts, the rotating plate 807 rotates to drive the camera 2 to rotate, an inner side surface of the rotating plate 807 penetrates through the fixed frame 801 and is fixedly connected with a gear shaft 808, the gear shaft 808 is located inside the fixed frame 801, a driving gear 804 and a driven gear 805 which are meshed with each other are arranged inside the fixed frame 801, the driven gear 805 is rotatably connected to the mounting substrate 1, and a first half gear 802 and a second half gear 803 are fixedly connected to the driving gear 804 and the driven gear 805 respectively, the directions of the first half gear 802 and the second half gear 803 are identical, however, the rotation directions are opposite, and the first half gear 802 and the second half gear 803 are respectively adapted to the gear shaft 808, as shown in fig. 4, when the first half gear 802 is meshed with the gear shaft 808, the second half gear 803 is not in contact with the gear shaft 808, whereas when the first half gear 802 is not meshed with the gear shaft 808, the second half gear 803 is meshed with the gear shaft 808, because the rotation directions of the first half gear 802 and the second half gear 803 are opposite, the rotation directions of the gear shaft 808 are also opposite when the first half gear 802 and the second half gear 803 are respectively meshed with the gear shaft 808, and the number of teeth on the first half gear 802 and the second half gear 803 is the same as that on the gear shaft 808, so that the first half gear 802 and the second half gear 803 respectively drive the gear shaft 808 to rotate for one revolution, so that the gear shaft 808 drives the rotating plate 807 to rotate forward and backward, the driving gear 804 is connected to a motor shaft of the motor 806, and the motor 806 is installed in a motor groove formed on the mounting substrate 1.
The mounting base 3 can be made to be telescopic in the following manner, specifically, the mounting base 3 includes a base 301, the base 301 is installed on the mounting substrate 1, the shape of the base 301 is L-shaped, one side wall of the base 301 (as shown in fig. 5) is fixedly connected with the mounting substrate 1, the base 301 is slidably connected with a mounting plate 303 through a fixing rod 302 fixedly connected with the base 301, the temperature sensor 4 or the humidity sensor 5 is installed on the mounting plate 303, a first spring 304 is connected between the mounting plate 303 and the base 301, two ends of the first spring 304 are respectively fixedly connected with the mounting plate 303 and the side wall of the base 301, and the first spring 304 can push the mounting plate 303 to two ends of the mounting substrate 1, so that probes of the temperature sensor 4 and the humidity sensor 5 can be stably located outside the protective cover 6 to work.
Specifically, handle 7 sliding connection is in the inside of division has spout 9 on mounting substrate 1, and two spouts 9 all communicate with each other with the cavity 10 of division in mounting substrate 1 inside, the inner of two handles 7 is respectively through connecting rod 11 and two mounting panel 303 cross connection each other, the connected mode between two handles 7 and two mounting panels 303 is shown as 10, can overcome the elasticity of first spring 304 through connecting rod 11 drive rather than interconnect's mounting panel 303 and slide to the middle part of mounting substrate 1 when pulling two handles 7 to make temperature sensor 4 and humidity transducer 5 give the position to safety cover 6, can be smooth install or dismantle safety cover 6.
In order to more conveniently realize the disassembly and assembly of the protective cover 6, the protective cover 6 can be movably clamped with the mounting substrate 1, specifically, two mounting frames 12 are fixedly connected on the protective cover 6, through grooves 13 corresponding to the mounting frames 12 are formed in the lower side wall of the two sliding grooves 9, the mounting frames 12 can be inserted into the sliding grooves 9 through the through grooves 13, the handle 7 is connected with a fixing rod 17 fixedly connected in the cavity 10 through a second spring 16, two ends of the second spring 16 are respectively fixedly connected with the handle 7 and the fixing rod 17, a notch 14 is formed in the lower side surface of the handle 7, a clamping rod 15 is fixedly connected on the side wall of the notch 14, the temperature sensor 4 and the humidity sensor 5 give the protective cover 6 a position when the handle 7 is pulled, and the clamping rod 15 can also move to the outer side where the through grooves 13 and the sliding grooves 9 are communicated, at this moment, the protective cover 6 can be installed, when the protective cover 6 is installed, the two handles 7 are pulled outwards at the same time, the installation frame 12 on the handles is aligned to the through groove 13, the installation frame 12 is inserted into the through groove 13, when the installation frame 12 is completely inserted into the through groove 13, the handles 7 are loosened, at this moment, the handles 7 slide towards the inside of the sliding groove 9 again under the action of the first spring 304 and the second spring 16, so that the clamping rod 15 is inserted into the installation frame 12, meanwhile, probes of the temperature sensor 4 and the humidity sensor 5 can also penetrate through the protective cover 6, and at this moment, the installation of the protective cover 6 can be completed;
the second spring 16 is provided to make the clamping rod 15 clamped with the mounting frame 12 more stably.
The temperature sensor 4, the humidity sensor 5 and the wireless communication module 18 are all the prior art features, so the present invention is not described in detail, for example, the temperature sensor 4 may be of WZPT-01 model, the humidity sensor 5 may be of C15-M53R model, the wireless communication module 18 may be of GPRS module of M590E model, and the electrical components in the present application are all powered by an external power source through cables (not shown in the figure).
The working principle is as follows: when the device is installed, the camera 2, the temperature sensor 4 and the humidity sensor 5 are respectively installed on the rotating plate 807 and the two installation plates 303, then cables are connected with wires arranged on the wall in advance, then the installation base plate 1 is installed on the upper side wall in a machine room through bolts, then two thumbs are used for propping against two ends of the protection cover 6, the two thumbs and four fingers are respectively inserted into the handles 7, then the two handles 7 are simultaneously pushed outwards, then the protection cover 6 is pushed upwards through the thumbs, so that the installation frame 12 is inserted into the through groove 13, and finally the handles 7 are loosened;
when the protective cover 6 needs to be disassembled for maintenance, two thumbs respectively prop against two ends of the protective cover 6, then the two handles 7 are respectively pushed outwards by the remaining fingers until the protective cover 6 falls down, the disassembly of the protective cover 6 is completed, and then the maintenance can be performed.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
Claims (5)
1. The utility model provides a computer lab intelligent monitoring equipment based on thing networking, includes mounting substrate (1), its characterized in that: but install continuous camera (2) and two telescopic mount pads (3) that go on just reversing the rotation on mounting substrate (1) respectively, and install temperature sensor (4) and humidity transducer (5) on two mount pads (3) respectively, still install safety cover (6) that are used for protecting camera (2), temperature sensor (4) and humidity transducer (5) on mounting substrate (1), and camera (2), temperature sensor (4) and humidity transducer (5) run through safety cover (6) respectively and extend to the outside of safety cover (6), two mount pads (3) are controlled by handle (7) that are located mounting substrate (1) both sides face.
2. The machine room intelligent monitoring equipment based on the Internet of things according to claim 1, wherein: the camera (2) is installed on base (8), base (8) are including fixed frame (801), it is connected with commentaries on classics board (807) to rotate on fixed frame (801), the medial surface of commentaries on classics board (807) runs through fixed frame (801) and fixedly connected with tooth axle (808), the inside of fixed frame (801) is equipped with driving gear (804) and driven gear (805) of intermeshing, and on driving gear (804) and driven gear (805) respectively fixedly connected with first half gear (802) and second half gear (803), and first half gear (802) and second half gear (803) respectively with tooth axle (808) looks adaptation, motor shaft interconnect of driving gear (804) and motor (806).
3. The machine room intelligent monitoring equipment based on the Internet of things according to claim 1, wherein: mount pad (3) include base (301), install on mounting substrate (1) base (301), there is mounting panel (303) base (301) through the steady pole (302) sliding connection that it is fixed connection on, and is connected with first spring (304) between mounting panel (303) and base (301).
4. The machine room intelligent monitoring equipment based on the Internet of things as claimed in claim 3, wherein: the handles (7) are connected inside sliding grooves (9) formed in the mounting base plate (1) in a sliding mode, the two sliding grooves (9) are communicated with a cavity (10) formed in the mounting base plate (1), and the inner ends of the two handles (7) are connected with the two mounting plates (303) in a cross mode through connecting rods (11) respectively.
5. The machine room intelligent monitoring equipment based on the Internet of things according to claim 4, wherein: two installing frames (12) of fixedly connected with on safety cover (6), it has the groove (13) that runs through that corresponds each other with installing frame (12) to open on the downside cell wall of two spout (9), handle (7) are through second spring (16) and fixed connection dead lever (17) interconnect inside cavity (10), and the downside of handle (7) is opened jaggedly (14), fixedly connected with kelly (15) on the lateral wall of jagged (14).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022998711.6U CN215488898U (en) | 2020-12-14 | 2020-12-14 | Computer lab intelligent monitoring equipment based on thing networking |
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CN202022998711.6U CN215488898U (en) | 2020-12-14 | 2020-12-14 | Computer lab intelligent monitoring equipment based on thing networking |
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CN215488898U true CN215488898U (en) | 2022-01-11 |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CP03 | Change of name, title or address |
Address after: 201306 2nd floor, no.979 Yunhan Road, Lingang New Area, China (Shanghai) pilot Free Trade Zone, Pudong New Area, Shanghai Patentee after: Electric Housekeeper Group Co.,Ltd. Address before: No.38, Lane 555, huanqiao Road, Pudong New Area, Shanghai, 200120 Patentee before: Electric housekeeper Group Co.,Ltd. |
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CP03 | Change of name, title or address |