Broadband camera with assembly type MIFI structure

By designing a modular MIFI structure, the problem of unstable wireless signals for broadband cameras was solved, enabling stable network connections in remote areas and flexible switching between wired and wireless networks, thus improving signal transmission performance.

CN223758319UActive Publication Date: 2026-01-02SHENZHEN JOOAN TECH CO LTD
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Patent Information

Application Number
CN202520103330.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2026-01-02
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

Broadband cameras often experience intermittent wireless signals in corners or distant environments, affecting signal stability and leading to unstable signal transmission.

Method used

The design incorporates a prefabricated MIFI structure for broadband cameras. MIFI devices are stably installed using components such as limiting posts, protective plates, return springs, and mounting accessories. The camera can switch between wireless and wired network connections and convert 4G mobile network signals into WiFi signals using the MIFI device.

Benefits of technology

It improves the stability and transmission effect of wireless signals, ensures the stability of network connections in remote or temporary areas, and supports flexible switching of wired networks, facilitating maintenance and replacement.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a broadband camera with an assembly type MIFI structure, which is provided with a camera body convenient for shooting, and the inner surface of the camera body is provided with an assembly part; comprising a limiting column, the limiting column is installed on the rear side of the outer surface of the camera body, the outer surface of the limiting column is connected with a protection plate in a penetrating mode, the protection plate slides on the inner surface of the camera body in a limited mode, a first reset spring is connected between the camera body and the protection plate, and meanwhile the inner surface of an assembly part is connected with MIFI equipment in a nested mode. The broadband camera with the assembly type MIFI structure is provided with the assembly part for assembling the camera body, the MIFI equipment is built in through the assembly part, wireless network connection is formed, network signals are provided for the broadband camera in a remote area or a temporarily-built area, and favorable conditions are provided for disassembly and assembly of the MIFI equipment through cooperation of a clamping part and a second extrusion block.
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Description

TECHNICAL FIELD

[0001] The utility model relates to wideband camera technical field, concretely is a kind of wideband camera with assembly type MIFI structure. BACKGROUND

[0002] Wideband camera is a kind of camera combined traditional camera and network technology, can be connected to internet by wired network or wireless network, realizes remote monitoring, with higher pixel and resolution;In use process, wideband camera is easily caused signal connection unstable when wireless connection, causes signal loss, and leads to picture unable transmission or recording, influence monitoring effect.

[0003] In order to overcome the above-mentioned defects, prior art (application number CN201921428836.6, application date is August 29, 2019 Chinese patent application) a kind of wireless transmission camera, camera is fixed using fixing device, the angle adjustment of camera is realized by connecting device, protection shell is used to provide protection for camera main body, finally through control circuit to the intelligent control of camera;Wherein, by setting wireless communication module of control circuit, user is connected on camera by mobile phone or computer remote and carries out the transmission and control of data to camera.In the whole installation process of camera, without pulling and setting a large number of lines, installation control is simple, cost is low and easy to overhaul when fault;Although prior art can complete wireless signal transmission, in corner or remote environment, it is easy to cause wireless signal intermittent or loss, and affect signal stability, not convenient to improve wireless signal transmission effect.

[0004] In view of the above problems, it is urgent to make innovative design on the basis of original wideband camera. UTILITY MODEL CONTENT

[0005] The utility model aims at providing a kind of wideband camera with assembly type MIFI structure to solve the problem that in corner or remote environment, it is easy to cause wireless signal intermittent or loss, and affect signal stability, not convenient to improve wireless signal transmission effect in the above background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a broadband camera with a prefabricated MIFI structure, comprising a camera body for easy shooting, and an assembly mounted on the inner surface of the camera body; including: a limiting post, installed on the rear side of the outer surface of the camera body, with a protective plate penetrating the outer surface of the limiting post and limiting the protective plate to slide on the inner surface of the camera body, and a return spring connected between the camera body and the protective plate; a MIFI device nested on the inner surface of the assembly, and an SD card slot nested on the inner surface of the MIFI device; a circuit connection port, installed on the left front side of the outer surface of the MIFI device, with a push plate penetrating the outer surface of the circuit connection port, and a circuit connector connected to the outer surface of the circuit connection port, and the circuit connector mounted on the front end of the outer surface of the assembly.

[0007] Preferably, the limiting post and the assembly form an integrated structure with the camera body, and the camera body forms a limiting sliding structure with the protective plate through the limiting post, and the protective plate forms an elastic sliding structure with the camera body through the return spring. At the same time, the assembly forms a built-in structure with the MIFI device.

[0008] The above structure facilitates stable control of MIFI device assembly during use, enabling the assembly and use of MIFI devices and allowing for the replacement of wireless and wired networks as needed.

[0009] Preferably, a push plate is slidably connected to the front side of the inner surface of the assembly, and a guide post is connected through the outer surface of the push plate. The guide post is installed on the left and right sides of the inner surface of the assembly, and a second reset spring is nested on the outer surface of the guide post. The second reset spring is nested between the assembly and the push plate. The push plate forms an elastic limiting sliding structure with the assembly through the guide post and the second reset spring, and the rear side of the outer surface of the push plate is in contact with the front side of the outer surface of the MIFI device.

[0010] The above structure allows for effective control of MIFI devices during assembly and facilitates their replacement, thus improving performance.

[0011] Preferably, the circuit connection port is embedded in the outer surface of the MIFI device, and the MIFI device forms a through structure with the push plate through the circuit connection port. The circuit connection port and the circuit connector form a docking structure, and the circuit connector and the assembly form an integrated structure.

[0012] The above structure effectively controls the assembly stability of MIFI devices during use, and, in conjunction with the push plate, facilitates disassembly and ejection for later use, as well as circuit connections, allowing for adjustment of the connection based on the voltage of the MIFI device.

[0013] Preferably, the sliding connection of the assembly piece is provided with a clamping piece, the outer surface of the clamping piece is clamped and connected with the MIFI device, the reset spring three is connected between the clamping piece and the assembly piece, the lower surface of the clamping piece is provided with the extrusion block one, the outer surface of the extrusion block one is obliquely connected with the extrusion block two, the outer surface side of the extrusion block two is provided with the push rod, the reset spring four is connected between the push rod and the assembly piece in front and back sides, the outer surface rear side of the push rod is provided with the push block, and the push block and the push rod are limited to slide on the inner surface rear side of the assembly piece; the assembly piece, the clamping piece and the MIFI device form an elastic clamping structure through the reset spring three, the clamping piece, the extrusion block one and the extrusion block two form an extrusion unlocking structure, the extrusion block two, the push rod and the push block form an integrated structure, and the push rod and the assembly piece form an elastic sliding structure through the reset spring four.

[0014] Through the above structure, the clamping piece is stably controlled to form positioning clamping on the MIFI device in use, and when the MIFI device needs to be disassembled, replaced or repaired, the MIFI device is popped out and taken out for replacement or repair by cooperating with the use of the extrusion block two and the extrusion block one.

[0015] Preferably, the inner surface of the assembly piece is nested with a network cable connection module, the outer surface of the network cable connection module is provided with a signal interface on the right front side, the outer surface of the signal interface is nested with a signal connector, the network cable connection module is nested with a network cable plug on the left rear side of the outer surface, and the network cable plug penetrates through the inner surface left rear side of the protective plate.

[0016] Through the above structure, the replacement of the MIFI device and the network cable connection module is stably controlled in use, and the network cable connection module is connected with a line.

[0017] Compared with the prior art, the beneficial effects of the utility model are:

[0018] 1. The broadband camera with the assembly type MIFI structure is provided with the assembly piece of the camera body assembly, the MIFI device is connected to the 4G mobile network through the assembly piece, the received mobile network signal is converted into a WiFi signal, a wireless network connection is formed, network signals are provided for the broadband camera in a more remote or temporary area, and the disassembly of the MIFI device is facilitated through the cooperation of the clamping piece and the extrusion block two.

[0019] 2. The broadband camera with the assembled MIFI structure is provided with the clamping piece facilitating clamping assembly, the stability of the MIFI equipment after assembly is improved through the cooperation of the reset spring three, the MIFI equipment is protected through the protective plate with the grid shape, the push plate with elastic adjustment can push out the MIFI equipment during later disassembly or maintenance, the net line plug is loaded through the net line connection module through the setting of the assembling piece, the network wired connection of the camera body is controlled, and the MIFI equipment and the net line connection module are used according to the use condition. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is a camera body three-dimensional structure schematic diagram of the utility model;

[0021] Figure 2 It is a camera body half cutaway three-dimensional structure schematic diagram of the utility model;

[0022] Figure 3 It is a protective plate three-dimensional structure schematic diagram of the utility model;

[0023] Figure 4 It is a circuit connecting piece three-dimensional structure schematic diagram of the utility model;

[0024] Figure 5 It is a clamping piece three-dimensional structure schematic diagram of the utility model;

[0025] Figure 6 It is a clamping piece bottom view three-dimensional structure schematic diagram of the utility model;

[0026] Figure 7 It is a net line connection module partial cutaway three-dimensional structure schematic diagram of the utility model.

[0027] In the drawing: 1, camera body; 2, assembling piece; 3, limiting column; 4, protective plate; 5, reset spring one; 6, MIFI equipment; 7, SD card slot; 8, push plate; 9, guide column; 10, reset spring two; 11, circuit connecting port; 12, circuit connecting piece; 13, clamping piece; 14, reset spring three; 15, extrusion block one; 16, extrusion block two; 17, push rod; 18, reset spring four; 19, push block; 20, net line connection module; 21, signal interface; 22, signal connecting piece; 23, net line plug. DETAILED DESCRIPTION

[0028] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0029] Please refer to Figures 1-7 The utility model provides a kind of technical scheme with the broadband camera of assembly type MIFI structure, is provided with the camera body 1 of being convenient for shooting, and the inner surface of camera body 1 is equipped with assembly part 2;Including: limiting post 3, is installed in the rear side of the outer surface of camera body 1, and the outer surface of limiting post 3 is connected with protective plate 4, and protective plate 4 is limited to slide in the inner surface of camera body 1, and camera body 1 and protective plate 4 are connected with reset spring one 5, while the inner surface of assembly part 2 is nested with MIFI equipment 6, and the inner surface of MIFI equipment 6 is nested with SD card slot 7;Circuit connection mouth 11, is installed in the left front side of the outer surface of MIFI equipment 6, and the outer surface of circuit connection mouth 11 is connected with push plate 8, and the outer surface of circuit connection mouth 11 is connected with circuit connecting piece 12, and circuit connecting piece 12 is installed in the outer surface front end of assembly part 2;Limiting post 3 and assembly part 2 and camera body 1 constitute integrated structure, and camera body 1 is formed by limiting post 3 and protective plate 4 and constitutes limit sliding structure, and protective plate 4 is formed by reset spring one 5 and camera body 1 and constitutes elastic sliding structure, while assembly part 2 and MIFI equipment 6 constitute built-in structure;The inner surface front side of assembly part 2 is slidably connected with push plate 8, and the outer surface of push plate 8 is connected with guide column 9, and guide column 9 is installed in the inner surface left and right sides of assembly part 2, and the outer surface of guide column 9 is nested with reset spring two 10, and reset spring two 10 is nested between assembly part 2 and push plate 8;Push plate 8 is formed by guide column 9 and reset spring two 10 and assembly part 2 and constitutes elastic limit sliding structure, and the outer surface rear side of push plate 8 is attached with the outer surface front side of MIFI equipment 6;Circuit connection mouth 11 and MIFI equipment 6 outer surface embedded type installation are set, and MIFI equipment 6 is formed by circuit connection mouth 11 and push plate 8 and constitutes through structure, and circuit connection mouth 11 and circuit connecting piece 12 constitute docking structure, while circuit connecting piece 12 and assembly part 2 constitute integrated structure.

[0030] In use, the protective plate 4 assembled by the camera body 1 is pushed upwards, and the protective plate 4 is controlled to extrude the reset spring 5 to form contraction, and cooperates with the limiting column 3 penetrating the protective plate 4, controls the stability of the use of the protective plate 4, is used for the protection of the MIFI equipment 6 later, and forms limited heat dissipation, so as to control the MIFI equipment 6 with the SD card slot stably nested in the assembly part 2, and when the MIFI equipment 6 moves into the assembly part 2, the push plate 8 assembled by the assembly part 2 is extruded, the reset spring 10 connected with the push plate 8 is controlled to form contraction, and cooperates with the penetration of the push plate 8 and the guide column 9, controls the stability of the push plate 8 when moving, so that when the MIFI equipment 6 contacts the push plate 8, the circuit connection port 11 installed by the MIFI equipment 6 penetrates through the through hole provided by the push plate 8, and the circuit connection port 11 is connected to the circuit connection part 12 installed by the assembly part 2, effectively controls the stability of the power supply of the MIFI equipment 6, prevents the voltage of the MIFI equipment 6 from being unstable, and when the MIFI equipment 6 is disassembled or taken out for maintenance later, the elastic connection between the push plate 8 and the reset spring 10 is controlled, the MIFI equipment 6 is pushed out for use, and when the MIFI equipment 6 is used, the MIFI equipment 6 is connected to the 4G mobile network, and the received mobile network signal is converted into a WiFi signal to form a wireless network connection, which is used for controlling the wireless network connection of the broadband camera later.

[0031] The assembly part 2 is slidably connected with the clamping part 13, the outer surface of the clamping part 13 is clamped and connected with the MIFI equipment 6, the reset spring 14 is connected between the clamping part 13 and the assembly part 2, the lower surface of the clamping part 13 is provided with the extrusion block 15, the outer surface of the extrusion block 15 is obliquely connected with the extrusion block 16, the outer surface of the extrusion block 16 is provided with the push rod 17 on the side surface, the reset spring 18 is connected between the push rod 17 and the assembly part 2 in front and back, the outer surface of the push rod 17 is provided with the push block 19 on the back side, and the push block 19 and the push rod 17 are limited to slide on the inner surface of the assembly part 2 on the back side; the assembly part 2, the clamping part 13 and the MIFI equipment 6 form an elastic clamping structure through the reset spring 14, the clamping part 13 forms an extrusion unlocking structure with the extrusion block 15 and the extrusion block 16, the extrusion block 16 forms an integrated structure with the push rod 17 and the push block 19, and the push rod 17 forms an elastic sliding structure with the assembly part 2 through the reset spring 18.

[0032] When the MIFI device 6 is assembled to the assembling piece 2, the MIFI device 6 is elastically clamped and positioned by the clamping piece 13 with the reset spring three 14, and the elastic sliding protection plate 4 plays a synchronous limiting effect, and when the MIFI device 6 is disassembled, the push block 19 is formed to slide in the assembling piece 2, the push block 19 drives the push rod 17 to extrude the reset spring four 18 to form contraction, and the extrusion block two 16 installed at the top of the push rod 17 extrudes the extrusion block one 15 installed on the clamping piece 13, controls the clamping piece 13 to disengage the MIFI device 6, and the MIFI device 6 is elastically taken out by the elastic pushing of the push plate 8, and the MIFI device 6 is replaced or repaired.

[0033] The inner surface of the assembling piece 2 is nested with the network cable connecting module 20, the outer surface of the network cable connecting module 20 is provided with the signal interface 21 at the front right side, the outer surface of the signal interface 21 is nested with the signal connecting piece 22, the left rear side of the outer surface of the network cable connecting module 20 is nested with the network cable plug 23, and the network cable plug 23 penetrates through the left rear side of the inner surface of the protection plate 4; the assembling piece 2 and the network cable connecting module 20 form a nested structure, the network cable connecting module 20 forms a docking structure with the signal interface 21 and the signal connecting piece 22, and the network cable connecting module 20 and the network cable plug 23 form a plug-in structure, and the network cable plug 23 and the protection plate 4 form a penetration structure.

[0034] When the camera body 1 needs to be connected, the network cable connecting module 20 is assembled and positioned and clamped, the signal interface 21 assembled with the network cable connecting module 20 is connected with the signal connecting piece 22 assembled with the assembling piece 2, the network cable plug 23 assembled with the network cable connecting module 20 effectively forms a wired connection, forms a wired network control use, and the network cable plug 23 penetrates the protection plate 4, avoiding affecting the protection effect of the protection plate 4.

[0035] The contents not described in detail in the specification belong to the prior art known to those skilled in the art.

[0036] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A broadband camera with an assembled MIFI structure, which is provided with a camera body (1) facilitating shooting, and an assembly part (2) is installed on the inner surface of the camera body (1); characterized in that including: a limiting column (3) is installed on the outer surface of the rear side of the camera body (1), the outer surface of the limiting column (3) is connected with a protective plate (4) penetratingly, the protective plate (4) is limited to slide on the inner surface of the camera body (1), a reset spring one (5) is connected between the camera body (1) and the protective plate (4), the inner surface of the assembly part (2) is nested with a MIFI device (6), and the inner surface of the MIFI device (6) is nested with an SD card slot (7); a circuit connection port (11) is installed on the outer surface of the left front side of the MIFI device (6), the outer surface of the circuit connection port (11) is penetratingly connected with a push plate (8), the outer surface of the circuit connection port (11) is connected with a circuit connecting part (12), and the circuit connecting part (12) is installed on the outer surface of the front end of the assembly part (2).

2. The broadband camera with the assembled MIFI structure according to claim 1, characterized in that: The limiting column (3) and the assembly part (2) constitute an integrated structure with the camera body (1), the camera body (1) constitutes a limiting sliding structure with the protective plate (4) through the limiting column (3), the protective plate (4) constitutes an elastic sliding structure with the camera body (1) through the reset spring one (5), and the assembly part (2) constitutes an embedded structure with the MIFI device (6).

3. The wideband camera with the assembled MIFI structure according to claim 1, characterized in that: The inner surface of the front side of the assembly part (2) is slidingly connected with the push plate (8), the outer surface of the push plate (8) is penetratingly connected with a guide column (9), the guide column (9) is installed on the inner surface of the left and right sides of the assembly part (2), the outer surface of the guide column (9) is nested with a reset spring two (10), and the reset spring two (10) is nested between the assembly part (2) and the push plate (8); the push plate (8) constitutes an elastic limiting sliding structure with the assembly part (2) through the guide column (9) and the reset spring two (10), and the outer surface of the rear side of the push plate (8) is attached to the outer surface of the front side of the MIFI device (6).

4. The wideband camera with the assembled MIFI structure according to claim 1, characterized in that: The circuit connection port (11) is embeddedly installed on the outer surface of the MIFI device (6), the MIFI device (6) constitutes a penetrating structure with the push plate (8) through the circuit connection port (11), the circuit connection port (11) constitutes a docking structure with the circuit connecting part (12), and the circuit connecting part (12) constitutes an integrated structure with the assembly part (2).

5. The broadband camera with the assembled MIFI structure according to claim 1, characterized in that: The sliding connection of the assembly piece (2) has a clamping piece (13), and the outer surface of the clamping piece (13) is clamped and connected with the MIFI device (6), and the reset spring three (14) is connected between the clamping piece (13) and the assembly piece (2), while the lower surface of the clamping piece (13) is installed with the extrusion block one (15), and the outer surface of the extrusion block one (15) is connected with the extrusion block two (16) in a slope, and the outer surface of the extrusion block two (16) is installed with the push rod (17) on the side, while the front and back sides between the push rod (17) and the assembly piece (2) are connected with the reset spring four (18), and the outer surface of the push rod (17) is installed with the push block (19) on the back side, and the push block (19) and the push rod (17) are limited to slide on the inner surface of the assembly piece (2) on the back side; The assembly piece (2) and the MIFI device (6) constitute an elastic clamping structure through the reset spring three (14) and the clamping piece (13), and the clamping piece (13) constitutes an extrusion unlocking structure through the extrusion block one (15) and the extrusion block two (16), and the extrusion block two (16) and the push rod (17) and the push block (19) constitute an integrated structure, while the push rod (17) and the assembly piece (2) constitute an elastic sliding structure through the reset spring four (18).

6. The wideband camera with the assembled MIFI structure according to claim 1, characterized in that: The inner surface of the assembly piece (2) is nested and connected with the network cable connection module (20), and the outer surface of the network cable connection module (20) is installed with the signal interface (21) on the right front side, and the outer surface of the signal interface (21) is nested and connected with the signal connecting piece (22), while the outer surface of the network cable connection module (20) is nested and connected with the network cable plug (23) on the left rear side, and the network cable plug (23) penetrates through the inner surface of the protection plate (4) on the left rear side; The assembly piece (2) and the network cable connection module (20) constitute a nested structure, and the network cable connection module (20) constitutes a butt joint structure through the signal interface (21) and the signal connecting piece (22), and the network cable connection module (20) and the network cable plug (23) constitute a plug structure, while the network cable plug (23) and the protection plate (4) constitute a penetrating structure.

Citation Information

Patent Citations

  • Wireless transmission camera

    CN210351327U