Computer lab supervisory equipment for internet information safety protection
Technical Field
The invention relates to the technical field of monitoring equipment, in particular to machine room monitoring equipment for internet information security protection.
Background
With the rapid development of the internet, the network security problem is increasingly prominent, in the current social environment, the network security has become one of important considerations in various fields, and the machine room serves as a core hub of a website server and a data center, so that the important role in the network security is played, meanwhile, many of the current machine rooms are managed in an unmanned manner, and have special persons to patrol regularly, and most of the time is when the monitoring cameras monitor the machine room.
In real life, many criminals just have grabbed the unmanned management mode of computer lab, get into in the computer lab and steal the money to equipment, cover surveillance camera head with shielding objects such as general practical cloth before criminals steal, perhaps practical paint etc. spray coating shields surveillance camera head with surveillance camera head spraying to make surveillance camera head unable record criminal's criminal process, influence police to the capture of criminal.
Disclosure of Invention
Based on the technical problems in the background technology, the invention provides a machine room monitoring device for Internet information security protection
The invention provides a machine room monitoring device for internet information safety protection, which comprises a mounting base and an alarm, wherein a rotating frame is mounted at the bottom of the mounting base, a movable groove is formed in the lower end of the rotating frame, a camera main body is rotatably mounted in the movable groove, a transparent protective cover and a driving structure for driving the transparent protective cover to rotate on the rotating frame are rotatably mounted in the movable groove, the camera main body is positioned in the transparent protective cover, a stirring piece is mounted on the periphery of the transparent protective cover, and the stirring piece can extend to the outside of the movable groove;
the movable groove is internally provided with a scraping structure, the scraping structure can scrape the periphery of the transparent protective cover, and when the stirring piece rotates along with the transparent protective cover, the stirring piece can push the scraping structure to be far away from the transparent protective cover;
the transparent protective cover is provided with a light sensor which is electrically connected with the driving structure;
The rotary frame is provided with a pressing switch, the scraping structure presses the pressing switch in a normal state, and when the stirring piece rotates and is separated from the scraping structure, the scraping structure moves towards the periphery of the transparent protective cover and releases the pressing switch, and the pressing switch is electrically connected with the alarm.
Preferably, the stirring piece comprises a stirring blade, one end of the stirring blade is fixedly connected with the periphery of the transparent protective cover, and the side surface of the stirring blade is in a sawtooth shape.
Preferably, the scraping structure comprises two cleaning blocks, an approaching assembly and a propping assembly, wherein the approaching assembly is used for driving the two cleaning blocks to approach each other and prop against each other, and the propping assembly is used for driving the two cleaning blocks to prop against the periphery of the transparent protective cover.
The rotary frame is internally provided with a movable cavity which is in sliding fit with the propping block, the propping spring is positioned in the movable cavity, two ends of the propping spring are respectively fixedly connected with one side, far away from the transparent protective cover, of the propping block and the inner wall of the movable cavity, the propping block is fixedly connected with one side, close to the transparent protective cover, of the propping block, the propping block penetrates through the rotary frame and extends into the movable groove, one side, close to the transparent protective cover, of the propping block is provided with an inclined plane groove which is in sliding fit with the poking blade, and when the poking blade rotates, the end part of the poking blade can enter the inclined plane groove and prop against the inner wall of the inclined plane groove to drive the propping block to be far away from the transparent protective cover.
The two side walls of the movable groove are respectively provided with a placing groove, the number of the limiting side plates is the same as that of the cleaning blocks and the limiting side plates are arranged in the two placing grooves in a one-to-one correspondence mode, the two limiting side plates penetrate through the rotating frame to extend into the movable cavity and fixedly connected with the abutting blocks, the two limiting side plates are fixedly arranged on one sides, close to each other, of the limiting side plates, a limiting spring is fixedly arranged, telescopic holes in sliding fit with the limiting spring are formed in the cleaning blocks, two ends of the limiting spring are fixedly connected with one side, close to the limiting side plates, of the cleaning blocks, and the limiting side plates are always in a compressed state.
Preferably, an arc groove is formed in one side, close to the transparent protective cover, of the cleaning block, and the diameter of the arc groove is the same as that of the transparent protective cover.
Preferably, the splice of the cleaning blocks is provided with a V-shaped groove, and when the poking blade rotates, the poking blade can drive the two cleaning blocks to be far away from each other along the V-shaped groove.
Preferably, the adjusting rotating shaft is rotatably installed in the movable groove, the camera main body is fixedly installed on the adjusting rotating shaft, and the first motor for driving the adjusting rotating shaft to rotate on the rotating frame is installed on the rotating frame.
The driving structure comprises a second motor, a driving gear and a driven gear, wherein the second motor Ma Dagu is arranged on the rotating frame, the driving gear is fixedly arranged on an output shaft of the second motor, the driven gear is fixedly connected with the transparent protective cover, and the driven gear is meshed with the driving gear.
Preferably, a through groove is formed in one side inner wall of the movable groove, the poking blade can reach the outside of the rotating frame through the through groove, a protective strip capable of blocking the through groove is rotatably installed in the through groove, and a torsion spring is sleeved on a rotating shaft of the protective strip.
The machine room monitoring equipment for the internet information safety protection has the advantages that through the rotating frame, the camera main body, the transparent protective cover, the driving structure, the poking part, the scraping structure, the light sensor, the push switch and the alarm, when a criminal steals, the cover such as the cloth cover is used on the monitoring camera, the light intensity in the machine room is detected to be reduced by the light sensor, so that the poking part rotates to tear down or scratch off the shielding cover, the camera main body can shoot the machine room, the criminal process of the criminal is recorded, meanwhile, the push switch is loosened, the alarm reminds the on-duty personnel and the staff to give an alarm in time and process, and when the criminal uses paint and the like to spray and shield the monitoring camera, the periphery of the transparent protective cover can be scraped, so that the criminal act of the criminal in the machine room can be shot and recorded by the monitoring camera.
Drawings
Fig. 1 is a schematic diagram of the overall structure of a machine room monitoring device for internet information security protection;
Fig. 2 is a side sectional view of a machine room monitoring device for internet information security protection provided by the invention;
fig. 3 is a front cross-sectional view of a machine room monitoring device for internet information security protection according to the present invention;
fig. 4 is a schematic structural diagram of a wiping structure in a machine room monitoring device for internet information security protection.
1, A mounting base; 2, a rotating frame, 3, a camera main body, 4, a transparent protective cover, 5, a push switch, 6, a poking blade, 7, a cleaning block, 8, a propping block, 9, a propping spring, 10, a jacking block, 11, a limiting side plate, 12, a guide post, 13, a close spring, 14, a first motor, 15, a second motor, 16, a driving gear, 17, a driven gear, 18, a protective strip and 19, and an adjusting rotating shaft.
Detailed Description
Referring to fig. 1-4, the invention provides a machine room monitoring device for internet information security protection, which comprises a mounting base 1 and an alarm, wherein the mounting base 1 is fixedly mounted on a ceiling through nails, a rotating frame 2 is mounted at the bottom of the mounting base 1, the rotating frame 2 is rotatably mounted on the mounting base 1 through a damping rotating shaft, the direction of a camera can be controlled (or the rotating frame 2 is directly and fixedly mounted on the mounting base 1), a movable groove is formed at the lower end of the rotating frame 2, an adjusting rotating shaft 19 is rotatably mounted in the movable groove, a camera body 3 is fixedly mounted on the adjusting rotating shaft 19, a first motor 14 for driving the adjusting rotating shaft 19 to rotate on the rotating frame 2 is mounted on the rotating frame 2, in a practical situation, a monitoring camera is usually mounted at the corner position of the roof of the machine room, the lens of the camera body 3 is obliquely downwards arranged, a transparent protective cover 4 and a driving structure for driving the transparent protective cover 4 to rotate on the rotating frame 2 are rotatably mounted in the movable groove, the transparent protective cover 4 is positioned in the transparent protective cover 4 as shown in fig. 2 and 3, the transparent protective cover 4 protects the inside the transparent protective cover 3, the camera body 3 can be prevented from being collided with the camera body 3 in the largest range, and the camera body can be conveniently and rotatably monitored in the machine room.
The periphery of the transparent protective cover 4 is provided with a poking piece which comprises a poking blade 6; one end of the poking blade 6 is fixedly connected with the periphery of the transparent protective cover 4, the side face of the poking blade 6 is in a saw-tooth shape, the saw-tooth is a cutting edge tip, the installation position of the poking blade 6 is the middle position of the periphery of the transparent protective cover 4, when a cloth cover or a plastic cover sleeved on a monitoring camera is firmly installed, the saw-tooth on the poking blade 6 is used for poking a shielding object, so that the monitoring camera can shoot a machine room through a slit which is poked, the poking blade 6 can extend to the outside of a movable groove, a light sensor (the light sensor is an ambient light sensor which collects the brightness of an indicator lamp of equipment in the machine room) is installed on the transparent protective cover 4, when the monitoring camera is shielded, the ambient light sensor cannot collect the light of a signal lamp of equipment in the machine room), the light sensor is installed on one side of the transparent protective cover 4, which faces, the light sensor is electrically connected with a driving structure, and the driving structure comprises a second motor 15, a driving gear 16 and a driven gear 17; the second motor 15 is fixedly arranged on the rotating frame 2, the driving gear 16 is fixedly arranged on the output shaft of the second motor 15, the driven gear 17 is fixedly connected with the transparent protective cover 4, the driven gear 17 is meshed with the driving gear 16, when a criminal steals, the monitoring camera is shielded by a shielding object, so that the monitoring camera cannot shoot and record the criminal steals in a machine room, when the criminal uses the shielding object to shield the monitoring camera, the intensity of light intensity detected by the light sensor changes, the light sensor transmits signals to a processor (a host computer of a monitoring room, a control chip and the like), the second motor 15 is controlled by the processor to drive the driving gear 16 to rotate, the driving gear 16 drives the driven gear 17 to rotate, the driven gear 17 drives the protective cover 4 to rotate, the stirring blade 6 is driven to synchronously rotate when the protective cover 4 rotates, the stirring blade 6 which rotates can extend to the outside of the movable groove and contact with the outside, friction is generated between the saw teeth on the stirring blade 6 and the shielding object, the shielding object is scraped off, if the shielding object is cloth or a plastic bag, the saw teeth on the stirring blade 6 can be scraped to break the shielding object, and therefore, the monitoring camera can normally shoot crime of criminals.
The movable groove is internally provided with a wiping structure which can wipe and clean the periphery of the transparent protective cover 4, and when the poking piece rotates along with the transparent protective cover 4, the poking piece can push the wiping structure to be far away from the transparent protective cover 4, and the wiping structure comprises two cleaning blocks 7, a near component and a propping component; in practical application, because the position of the stirring blade 6 is positioned in the middle of the transparent protective cover 4, the stirring blade 6 can rotate by 360 degrees, the two cleaning blocks 7 need to be designed into two, when the stirring blade 6 rotates, the stirring blade 6 can drive the two cleaning blocks 7 to move away from each other, a gap for stirring a channel of the blade 6 is formed between the two cleaning blocks 7, when the stirring blade 7 rotates outside the rotary frame 2, the two cleaning blocks 7 are driven by the abutting component to approach the transparent protective cover 4 and abut against the periphery of the transparent protective cover 4, when the transparent protective cover 4 rotates, when a criminal shields a mode of paint and the like, a signal is received by a light sensor, when the stirring blade 6 rotates, the protective cover 6 is separated from the abutting component, the two cleaning blocks 7 are driven by the abutting component to move close to each other, and the two cleaning blocks 7 can be completely cleaned together, and the two cleaning blocks 7 are driven by the abutting component to move close to each other, the gap is formed between the two cleaning blocks 6, and the two cleaning blocks are synchronously cleaned together, when the two cleaning blocks 7 are driven by the abutting component to approach the transparent protective cover 4, the transparent protective cover 4 rotates, it is ensured that photographing of the monitoring camera is not hindered, and when the transparent protective cover 4 rotates, the cleaning block 7 scrapes the periphery of the transparent protective cover 4, so that photographing record of the monitoring camera on the condition in the machine room is ensured.
The abutting assembly comprises an abutting block 8, an abutting spring 9 and an jacking block 10, a movable cavity which is in sliding fit with the abutting block 8 is formed in the rotating frame 2, the abutting spring 9 is located in the movable cavity, two ends of the abutting spring 9 are fixedly connected with one side, far away from the transparent protective cover 4, of the abutting block 8 and the inner wall of the movable cavity respectively, the jacking block 10 is fixedly connected to one side, close to the transparent protective cover 4, of the abutting block 8, the jacking block 10 penetrates through the rotating frame 2 and extends into the movable groove, a bevel groove which is in sliding fit with the toggle blade 6 is formed in one side, close to the transparent protective cover 10, of the abutting block 10, as shown in fig. 2, of the bevel groove, when the toggle blade 6 rotates, the end of the toggle blade 6 can enter the bevel groove and abut against the inner wall of the bevel groove to drive the abutting block 10 to be far away from the transparent protective cover 4, a pressing switch 5 is mounted on the rotating frame 2, in a normal state, the pressing switch 5 is pressed by the scraping structure, when the scraping member rotates and breaks away from the scraping structure, the scraping structure moves towards the periphery of the transparent protective cover 4 and releases the pressing switch 5, the pressing switch 5 is in a state, the pressing switch 5 abuts against the electrical property of the transparent protective cover 6 is in the vicinity of the transparent protective cover 4, the alarm is in the state, the alarm is not in the state, the alarm is in the state of the alarm is kept away from the transparent protective cover 4, and the alarm is in the state of the alarm is kept away from the transparent protective cover 4, and the alarm is in the state by the alarm is in the state, and the alarm is in the alarm state is kept by the alarm state, and the alarm is in the alarm state.
The approach assembly comprises limit side plates 11 and guide posts 12, wherein the inner walls of the two sides of the movable groove are respectively provided with a placing groove, the number of the limit side plates 11 is the same as that of the cleaning blocks 7 and are arranged in a one-to-one correspondence manner, the two limit side plates 11 are respectively positioned in the two placing grooves, the two limit side plates 11 penetrate through the rotating frame 2 to extend into the movable cavity and are fixedly connected with the abutting blocks 8, the approaching springs 13 are fixedly arranged on one sides of the two limit side plates 11, which are mutually close, of the cleaning blocks 7, telescopic holes which are in sliding fit with the approaching springs 13 are formed in the cleaning blocks 7, the two ends of the approaching springs 13 are respectively fixedly connected with one side of the cleaning blocks 7, which is close to the cleaning blocks 7, and one side of the limit side plates 11, which is close to the cleaning blocks 7, the approaching springs 13 are always in a compressed state, when the poking blade 6 breaks away from a gap between the two cleaning blocks 7, the two cleaning blocks 7 are mutually close to each other under the rebound effect of the spring 13, and the movement direction of the cleaning blocks 7 is limited by the guide posts 12 when the two cleaning blocks 7 are mutually close to each other or are mutually far away.
The concatenation department of cleaning piece 7 has seted up V type groove, when stirring blade 6 rotates, stirs blade 6 and can drive two cleaning pieces 7 and keep away from each other along V type groove, when stirring blade 6 rotates, can conveniently stir blade 6 and separate two cleaning pieces 7 through V type groove.
As shown in fig. 1 and 2, a through groove is formed in an inner wall of one side of the movable groove, the poking blade 6 can pass through the outside of the through groove to reach the rotating frame 2, a protective strip 18 capable of blocking the through groove is rotatably installed in the groove, a torsion spring is sleeved on a rotating shaft of the protective strip 18, one side of the protective strip 18 faces one side of a machine room, the protective strip 18 can play a role in blocking, paint sprayed on the protective strip can not be sprayed into the movable groove, a specific part of the transparent protective cover 4 is a section without paint sprayed on, and when the protective cover rotates, shooting records can be carried out on the machine room through the transparent protective cover 4 without paint sprayed on the section.
The foregoing is only a preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art, who is within the scope of the present invention, should make equivalent substitutions or modifications according to the technical scheme of the present invention and the inventive concept thereof, and should be covered by the scope of the present invention.