Intelligent system integration platform

By designing an assembled and replaced intelligent system integration platform, the problem of functional modules in the existing technology cannot be freely assembled, and the flexibility and cost reduction of system upgrades are achieved.

CN222916303UActive Publication Date: 2025-05-27SHANDONG TONGFANG DECHENG TECH
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Patent Information

Application Number
CN202421569313.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-04
Publication Date
2025-05-27
Estimated Expiration
2034-07-04

AI Technical Summary

Technical Problem

The functional modules of the existing building intelligent system integration platform cannot be freely assembled, resulting in the need to replace the overall platform when upgrading the system, which increases equipment and labor costs.

Method used

An intelligent system integration platform is designed, adopting an assembled and replaced assembly structure. Through components such as shell, box, solid module, etc., a freely adjustable grid area is formed to realize the flexible assembly and replacement of functional modules.

Benefits of technology

System upgrades can be achieved without replacing the overall integrated platform, extending the service life of the platform and reducing equipment and labor costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an intelligent system integration platform, and belongs to the technical field of building intelligent systems. According to the structure, a notch part is formed in the top of the outer side wall of a grid-shaped area, a second hole penetrates through a blocking rod, a rotating shaft is arranged at the top of a partition piece, the rotating shaft penetrates through the second hole and is fixedly connected with the blocking rod, a square hole is located in the upper portion of the side end of a solid module, a third hole is formed in the solid module, and a replaceable control assembly is installed at the third hole. A fixed control assembly is installed at the first hole, the entity module is embedded in the grid-shaped area, the blocking rod blocks the top of the entity module, and the notch part coincides with the square hole. According to the integrated platform, an assembling structure capable of being assembled and replaced is designed for functional modules of an intelligent system, adjustment and replacement can be conducted according to requirements, and therefore the whole integrated platform does not need to be replaced when the system is upgraded, the service life of the platform is prolonged, and cost is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of building intelligent systems, in particular to an intelligent system integration platform. Background Art

[0002] The building intelligent system is a control system for comprehensive operation monitoring, alarm / fault management, and equipment repair / maintenance management of mechanical and electrical equipment in the building. The system is centered on real-time database and historical database, and uses computer, network, communication, automatic control and other technologies to incorporate the status, alarm, data and other parameters of the main equipment such as fire protection, security, building automation, and communication in the building into a unified management platform. It can realize the compilation of linkage plans and linkage control of subsystems. It can comprehensively and effectively monitor and manage all intelligent equipment in the building, enrich the comprehensive use functions of the building, improve management efficiency, and then ensure that all relevant equipment in the building complex is in an efficient, energy-saving, and optimal operating state, providing a safe, comfortable, convenient, and efficient working environment for the staff in the building. The human-computer interaction module of the building intelligent system is generally integrated on a terminal-type physical platform; at present, the ordinary integrated platform has poor scalability, and its functional modules cannot be freely assembled. Therefore, when the system is upgraded, it is often necessary to replace the integrated platform as a whole, which brings higher equipment and labor costs. Summary of the invention

[0003] The utility model aims to provide an intelligent system integration platform in view of the technical defects of the prior art, so as to solve the technical problem that the common integration platform cannot freely assemble the functional modules.

[0004] In order to achieve the above technical objectives, the utility model adopts the following technical solutions:

[0005] An intelligent system integration platform comprises a shell, a box, a first hole, a groove, a separator, an L-shaped piece, a grid area, a notch, a lever, a second hole, a solid module, a square hole, a third hole, a replaceable control component, and a fixed control component; the box is fixedly arranged on the shell, a groove is provided in the shell at a position beside the box, the first hole is arranged on the box, a separator is fixedly installed in the groove, an L-shaped piece is installed on the inner side of the groove and on the separator, the L-shaped piece divides the space between the separator and the shell into a plurality of grid areas, a notch is provided on the top of the outer wall of the grid area, the second hole passes through the lever, a rotating shaft is provided on the top of the separator, the rotating shaft passes through the second hole and is fixed with the lever, the square hole is located at the upper side end of the solid module, a third hole is provided on the solid module, a replaceable control component is installed at the third hole, a fixed control component is installed at the first hole, the solid module is embedded in the grid area, the lever is blocked at the top of the solid module, and the notch and the square hole overlap.

[0006] Preferably, a fourth hole is provided at the bottom of the grid-shaped area, and a plug rod is provided at the bottom of the solid module, and the plug rod is inserted into the fourth hole.

[0007] Preferably, an end cover is installed at the upper end of the housing through a hinge, and a lock is provided between the end cover and the housing.

[0008] Preferably, handles are fixedly connected to the outer walls on the left and right sides of the housing.

[0009] Preferably, a battery box is fixedly connected to the rear side of the housing, and a bracket is rotatably connected to the rear side of the battery box.

[0010] Preferably, heat dissipation holes are provided on the housing, the box body, and the solid module and are mutually communicated, and a heat dissipation fan is installed in the box body.

[0011] In the structure of the present utility model, the housing is an external structure, which plays an installation and support role; the box body and its first hole are used to install and fix the control components; the groove is used to accommodate the solid module; the partition and the L-shaped piece are used to form a plurality of arrayed grid-shaped areas in the groove; the grid-shaped area is used to stably fit the solid module therein; the notch on the housing and the square hole of the solid module are kept coincident so as to pick out the solid module when disassembling it; the blocking rod can rotate on the partition so as to block the top of the solid module after the solid module is installed to prevent it from falling off; the second hole on the blocking rod facilitates the connection between the blocking rod and the rotating shaft; the solid module and the third hole are used to install the replaceable control components.

[0012] The present utility model discloses an intelligent system integration platform. This integration platform designs an assembled and replaceable assembly structure for the functional modules of the intelligent system, which can be adjusted and replaced according to needs, so that the system does not need to replace the whole integration platform when upgrading, prolongs the service life of the platform, and reduces the cost. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 is the overall view of the present utility model;

[0014] Figure 2 is the first overall view of the solid module;

[0015] Figure 3 is the second overall view of the solid module;

[0016] Figure 4 is the overall view of the housing;

[0017] Figure 5 is the first overall view of the blocking rod;

[0018] Figure 6 is the second overall view of the blocking rod;

[0019] Figure 7 It is an assembly drawing when the replaceable control component is installed on the physical module;

[0020] in:

[0021] 1. Shell 2. Box 3. First hole 4. Groove

[0022] 5. Separator 6. L-shaped sheet 7. Grid area 8. Notch

[0023] 9. gear lever 10. second hole 11. solid module 12. square hole

[0024] 13. Third hole 14. Replaceable control component 15. Fixed control component. DETAILED DESCRIPTION

[0025] The specific implementation methods of the present invention will be described in detail below. In order to avoid too many unnecessary details, the well-known structures or functions will not be described in detail in the following examples. The approximate language used in the following examples can be used for quantitative expression, indicating that the quantity can be allowed to change without changing the basic function. Unless otherwise defined, the technical and scientific terms used in the following examples have the same meanings as those generally understood by technicians in the field to which the present invention belongs.

[0026] Example 1

[0027] An intelligent system integration platform, see Figures 1 to 7 , including a shell 1, a box body 2, a first hole 3, a groove 4, a separator 5, an L-shaped piece 6, a grid area 7, a notch 8, a lever 9, a second hole 10, a solid module 11, a square hole 12, a third hole 13, a replaceable control component 14, and a fixed control component 15; the box body 2 is fixedly arranged on the shell body 1, and a groove 4 is provided in the shell body 1 at a position beside the box body 2, the first hole 3 is arranged on the box body 2, a separator 5 is fixedly installed in the groove 4, and an L-shaped piece 6 is installed on the inner side of the groove 4 and on the separator 5, and the L-shaped piece 6 divides the space between the separator 5 and the shell body 1 The space is divided into a plurality of grid areas 7, a notch 8 is provided at the top of the outer wall of the grid area 7, a second hole 10 passes through the gear lever 9, a rotating shaft is provided at the top of the partition plate 5, the rotating shaft passes through the second hole 10 and is fixed to the gear lever 9, a square hole 12 is located at the upper side end of the solid module 11, a third hole 13 is provided on the solid module 11, a replaceable control component 14 is installed at the third hole 13, a fixed control component 15 is installed at the first hole 3, the solid module 11 is embedded in the grid area 7, the gear lever 9 is blocked at the top of the solid module 11, and the notch 8 and the square hole 12 overlap.

[0028] Among them, the shell 1 is an external structure, which has the function of installation and support; the box body 2 and its first hole 3 are used to install and fix the control component 15; the groove 4 is used to accommodate the entity module 11; the partition plate 5 and the L-shaped plate 6 are used to form a plurality of array-like grid areas 7 in the groove 4; the grid area 7 is used to make the entity module 11 more stably embedded therein; the notch 8 on the shell 1 and the square hole 12 of the entity module 11 remain overlapped so that the entity module 11 can be removed when it is removed; the shift lever 9 can rotate on the partition plate 5 so that it can block the top of the entity module 11 after the entity module 11 is installed to prevent it from falling off; the second hole 10 on the shift lever 9 facilitates the connection between the shift lever 9 and the rotating shaft; the entity module 11 and the third hole 13 are used to install a replaceable control component 14.

[0029] Example 2

[0030] An intelligent system integration platform, see Figures 1 to 7 , including a shell 1, a box body 2, a first hole 3, a groove 4, a separator 5, an L-shaped piece 6, a grid area 7, a notch 8, a lever 9, a second hole 10, a solid module 11, a square hole 12, a third hole 13, a replaceable control component 14, and a fixed control component 15; the box body 2 is fixedly arranged on the shell body 1, and a groove 4 is provided in the shell body 1 at a position beside the box body 2, the first hole 3 is arranged on the box body 2, a separator 5 is fixedly installed in the groove 4, and an L-shaped piece 6 is installed on the inner side of the groove 4 and on the separator 5, and the L-shaped piece 6 divides the space between the separator 5 and the shell body 1 The space is divided into a plurality of grid-shaped areas 7, a notch 8 is provided at the top of the outer wall of the grid-shaped area 7, a second hole 10 passes through the lever 9, a rotating shaft is provided at the top of the separator 5, the rotating shaft passes through the second hole 10 and is fixed with the lever 9, a square hole 12 is located at the upper part of the side end of the solid module 11, a third hole 13 is provided on the solid module 11, a replaceable control component 14 is installed at the third hole 13, a fixed control component 15 is installed at the first hole 3, the solid module 11 is embedded in the grid-shaped area 7, the lever 9 is blocked at the top of the solid module 11, and the notch 8 and the square hole 12 overlap. A fourth hole is provided at the bottom of the grid-shaped area 7, and a plug rod is provided at the bottom of the solid module 11, and the plug rod is inserted into the fourth hole. An end cover is installed at the upper end of the shell 1 through a hinge, and a lock is provided between the end cover and the shell 1. Handles are fixedly connected to the outer walls on both sides of the shell 1. A battery box is fixedly connected to the rear side of the shell 1, and a bracket is rotatably connected to the rear side of the battery box. Heat dissipation holes that are interpenetrating with each other are arranged on the shell 1 , the box body 2 , and the entity module 11 , and a heat dissipation fan is installed in the box body 2 .

[0031] The above has described the embodiments of the present utility model in detail, but the above content is only the preferred embodiments of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the scope of the application of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. An intelligent system integration platform, characterized in that: The invention comprises a shell (1), a box (2), a first hole (3), a groove (4), a separator (5), an L-shaped sheet (6), a grid area (7), a notch (8), a lever (9), a second hole (10), a solid module (11), a square hole (12), a third hole (13), a replaceable control component (14), and a fixed control component (15); the box (2) is fixedly arranged on the shell (1), a groove (4) is provided in the shell (1) and located beside the box (2), the first hole (3) is arranged on the box (2), a separator (5) is fixedly installed in the groove (4), an L-shaped sheet (6) is installed on the inner side of the groove (4) and on the separator (5), and the L-shaped sheet (6) connects the separator (5) and the shell. The space between the two parts (1) is divided into a plurality of grid-like areas (7), a notch (8) is provided at the top of the outer wall of the grid-like area (7), a second hole (10) passes through the shift rod (9), a rotating shaft is provided at the top of the partition plate (5), the rotating shaft passes through the second hole (10) and is fixed to the shift rod (9), a square hole (12) is located at the upper side end of the solid module (11), a third hole (13) is provided on the solid module (11), a replaceable control component (14) is installed at the third hole (13), a fixed control component (15) is installed at the first hole (3), the solid module (11) is embedded in the grid-like area (7), the shift rod (9) is blocked at the top of the solid module (11), and the notch (8) and the square hole (12) overlap.

2. The intelligent system integration platform according to claim 1, characterized in that: A fourth hole is provided at the bottom of the grid-shaped area (7), and an insertion rod is provided at the bottom of the solid module (11), the insertion rod being inserted into the fourth hole.

3. The intelligent system integration platform according to claim 1, characterized in that: An end cover is mounted on the upper end of the shell (1) via a hinge, and a lock is provided between the end cover and the shell (1).

4. The intelligent system integration platform according to claim 1, characterized in that: Handles are fixedly connected to the outer walls on both the left and right sides of the shell (1).

5. The intelligent system integration platform according to claim 1, characterized in that: A battery box is fixedly connected to the rear side of the shell (1), and a bracket is rotatably connected to the rear side of the battery box.

6. The intelligent system integration platform according to claim 1, characterized in that: Heat dissipation holes that are interpenetrating with each other are arranged on the shell (1), the box body (2) and the entity module (11), and a heat dissipation fan is installed in the box body (2).