CN-224218456-U - Monitoring device for network data security
Abstract
The utility model belongs to the technical field of safety monitoring equipment, in particular to a monitoring device for network data safety, which comprises a monitoring device body, the top of monitoring device body is fixed with two L type pipes, and the top intercommunication of two L type pipes is fixed with the air inlet cover. According to the utility model, the air outside can be blown into the shell of the monitoring device body through the fan, so that heat generated in the shell can be conveniently and rapidly discharged, the semiconductor refrigerating sheet can cool the air before entering, so that the heat dissipation effect on the inside of the shell of the monitoring device body can be further enhanced, part of air blown out by the fan can be sprayed out through the air blowing nozzle, and the air blown out by the air blowing nozzle can eliminate static electricity through the cooperation of the ion generator, so that the possibility that impurities such as dust can adhere to the surface of the lens of the monitoring device body under the action of air flow can be reduced, and the influence on the definition of the lens of the monitoring device body after dust adhesion is avoided.
Inventors
- WANG NANNAN
- GUO HAIQUAN
- SHAO QI
- ZHANG HE
- LIU XU
- WU YIXUAN
- WANG YUE
Assignees
- 中国人民解放军31401部队
Dates
- Publication Date
- 20260508
- Application Date
- 20250530
Claims (6)
- 1. A monitoring device for network data security comprises a monitoring device body (1), and is characterized in that two L-shaped pipes (2) are fixed at the top of the monitoring device body (1), an air inlet cover (3) is fixedly connected with the top of the two L-shaped pipes (2), a fan (4) is fixedly arranged in the air inlet cover (3), a filtering component (5) is arranged at an air inlet of the air inlet cover (3), an ion generator (6) is fixedly arranged in a through hole formed in the top of the left L-shaped pipe (2), a radiating seat (7) is arranged in a through hole formed in the top of the right L-shaped pipe (2), a semiconductor refrigerating sheet (8) is fixedly arranged at the bottom of the radiating seat (7), four mounting plates (9) are fixedly arranged on the surface of the monitoring device body (1), two annular pipes (10) are fixedly connected with each other on the four annular pipes (10), the other ends of the annular pipes (11) are fixedly connected with a shell of the monitoring device body (1), an upper annular pipe (10) is fixedly connected with an annular spray head (12) of the left annular pipe (2), and the lower annular pipe (10) is fixedly connected with the left annular pipe (2) and fixedly connected with the upper annular pipe (2).
- 2. A monitoring device for network data security according to claim 1, wherein the filter assembly (5) comprises a shroud (501) fixed at the inlet of the inlet hood (3), and a filter screen (502) and a moisture-proof structure layer (503) are fixed inside the shroud (501).
- 3. A monitoring device for network data security according to claim 2, wherein the moisture barrier structure layer (503) comprises a water-proof air-permeable membrane layer (50301) and a cotton cloth layer (50302) secured inside the enclosure (501).
- 4. The monitoring device for network data security according to claim 1, wherein the inside of the two L-shaped pipes (2) is fixed with an inclined plate (13) at equal distance for decelerating the incoming air flow.
- 5. The monitoring device for network data security according to claim 1, wherein an exhaust pipe (14) is fixedly connected to an air outlet at the top of the monitoring device body (1), and a dust screen (15) is fixedly arranged in the exhaust pipe (14).
- 6. The monitoring device for network data security according to claim 1, wherein the top of the monitoring device body (1) is fixed with a mounting seat (16), and four mounting holes (17) are formed in the top of the mounting seat (16).
Description
Monitoring device for network data security Technical Field The utility model relates to the technical field of safety monitoring equipment, in particular to a monitoring device for network data safety. Background The construction and development of computer networks greatly widen the information field of view, greatly improve the information processing and spreading efficiency in offices and lives, and most of computer network control devices in machine rooms, computer rooms or external environments are provided with monitoring devices for monitoring the use dynamics of related facilities of computers, so as to prevent illegal persons from stealing or damaging the computers, and provide clues for the security or hardware security pursuit of the network facilities, and play a role in warning. The monitoring camera is subjected to long-time work, the inside of the monitoring camera can generate heat, in order to emit heat generated in the working process of the monitoring camera, a radiating hole is formed in the surface of the monitoring camera to radiate heat, and the radiating mode is single and cannot release the heat well, so that the radiating efficiency of the monitoring camera is poor, and therefore, a monitoring device for network data security is provided to solve the problem. Disclosure of utility model (One) solving the technical problems Aiming at the defects of the prior art, the utility model provides a monitoring device for network data security, which solves the problems in the background art. (II) technical scheme The utility model adopts the following technical scheme for realizing the purposes: The utility model provides a monitoring device for network data safety, includes the monitoring device body, the top of monitoring device body is fixed with two L type pipes, and the top intercommunication of two L type pipes is fixed with the air inlet cover, the inside of air inlet cover is fixed with the fan, the air intake department of air inlet cover is provided with filter assembly, and the through-hole inside that left side L type pipe top was seted up is fixed with ionizer, and the through-hole inside that right side L type pipe top was seted up has the radiating seat, the bottom of radiating seat is fixed with the semiconductor refrigeration piece, the surface mounting of monitoring device body has four mounting panels, is fixed with two annular pipes on four mounting panels, and the intercommunication is fixed with four violently pipes on the annular pipe of top, the other end of violently managing all is fixed with the casing intercommunication of monitoring device body, is annular array intercommunication and is fixed with the shower nozzle on the annular pipe of below, and the play tuber pipe and the top annular pipe intercommunication of right side L type pipe are fixed. Further, the filter component comprises a coaming fixed at the air inlet of the air inlet cover, and a filter screen and a dampproof structure layer are fixed in the coaming. Further, the dampproof structure layer comprises a waterproof breathable film layer and a cotton cloth layer which are fixed inside the coaming. Further, inclined plates for decelerating the incoming air flow are fixed at equal intervals inside the two L-shaped pipes. Further, an exhaust pipe is fixedly connected to the air outlet hole at the top of the monitoring device body, and a dust screen is fixedly arranged in the exhaust pipe. Further, the top of monitoring device body is fixed with the mount pad, four mounting holes have been seted up at the top of mount pad. (III) beneficial effects Compared with the prior art, the utility model provides a monitoring device for network data security, which has the following beneficial effects: According to the utility model, the air outside can be blown into the shell of the monitoring device body through the fan, so that heat generated in the shell can be conveniently and rapidly discharged, the semiconductor refrigerating sheet can cool the air before entering, so that the heat dissipation effect on the inside of the shell of the monitoring device body can be further enhanced, part of air blown out by the fan can be sprayed out through the air blowing nozzle, and the air blown out by the air blowing nozzle can eliminate static electricity through the cooperation of the ion generator, so that the possibility that impurities such as dust can adhere to the surface of the lens of the monitoring device body under the action of air flow can be reduced, and the influence on the definition of the lens of the monitoring device body after dust adhesion is avoided. Drawings FIG. 1 is a schematic view of a first view of the overall structure of the present utility model; FIG. 2 is a schematic view of a second perspective of the overall structure of the present utility model; FIG. 3 is a schematic view of the structure of the air intake cover of the present utility model. The monitoring device comprises a monitor