CN218920859U - Integrated intelligent module for electric appliance - Google Patents

Integrated intelligent module for electric appliance Download PDF

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Publication number
CN218920859U
CN218920859U CN202223391125.0U CN202223391125U CN218920859U CN 218920859 U CN218920859 U CN 218920859U CN 202223391125 U CN202223391125 U CN 202223391125U CN 218920859 U CN218920859 U CN 218920859U
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China
Prior art keywords
cover plate
protective cover
circuit board
printed circuit
data
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CN202223391125.0U
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Chinese (zh)
Inventor
邵中合
牛志远
温齐伟
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Guangdong Hongyao Smart Power Co ltd
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Guangdong Hongyao Smart Power Co ltd
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Priority to CN202223391125.0U priority Critical patent/CN218920859U/en
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Abstract

The utility model discloses an integrated intelligent module for an electric appliance, which comprises: the device comprises a printed circuit board, a protective cover plate, an application processor, a data input interface and a data output interface, wherein the application processor, the data input interface and the data output interface are integrated on the printed circuit board; the protection cover plate is arranged above the printed circuit board and is connected with the printed circuit board through the bolt assembly, the heat dissipation assembly dissipates heat to the application processor, the data input interface and the data output interface are respectively connected with the detection part and the functional part of the electrical equipment through the data wires, the data wires are provided with plug connectors, the plug connectors are used for connecting the data input interface and the data output interface, the protection cover plate is provided with a buckle assembly, and the buckle assembly is in matched clamping connection with the plug connectors. The utility model can ensure the stable installation of the integrated intelligent module and the effective heat dissipation, and can ensure the connection stability of each data line so as to improve the stability of data and command transmission.

Description

Integrated intelligent module for electric appliance
Technical Field
The utility model relates to the technical field of integrated intelligent modules, in particular to an integrated intelligent module for an electric appliance.
Background
Along with development of the technology level, the intelligent household electrical appliance formed by combining the electrical equipment and the intelligent module becomes a mainstream product in the market today, and for intelligent application of the electrical equipment, the intelligent module is required to be integrated in the electrical equipment in a matching way so as to realize analysis and processing of collected data, and the operation state of the electrical equipment is controlled and regulated as a command basis.
The integrated intelligent module needs to meet the processing and analysis work of the acquired data, control and adjustment of the electrical equipment and the signal and data transmission work with the intelligent mobile equipment. For the current integrated intelligent module, it is difficult to ensure the heat dissipation effect of the integrated intelligent module, and it is difficult to ensure that the intelligent module can be stably installed in electrical equipment. When the integrated intelligent module is installed, the stability of data transmission and data penetrating-out and command penetrating-out is difficult to ensure, so that the connection stability of the integrated intelligent module and each data line is required to be ensured.
Disclosure of Invention
Aiming at the defects in the prior art, the utility model aims to provide the integrated intelligent module for the electric appliance, which can ensure the stable installation of the integrated intelligent module and simultaneously effectively dissipate heat, and can ensure the connection stability of each data line so as to improve the stability of data and command transmission.
The technical scheme adopted by the utility model for achieving the purpose is as follows: an integrated intelligent module for an electric appliance comprises a printed circuit board and a protective cover plate, an application processor, a data input interface and a data output interface which are integrated on the printed circuit board, and a heat dissipation assembly which is fixedly arranged on the protective cover plate; the protective cover plate is arranged on the upper side of the printed circuit board and is fixedly combined with the printed circuit board through the bolt component; the heat dissipation assembly comprises a heat dissipation base plate and a heat conduction pipe, the heat dissipation base plate is fixedly connected to the lower surface of the protective cover plate and is arranged in a pasting mode with the application processor, and the heat conduction pipe is connected to the periphery of the heat dissipation base plate and penetrates through the protective cover plate to be arranged above the protective cover plate; the data input interface is in signal connection with the detection component of the electrical equipment through a data line, and the data output interface is in signal connection with the functional component of the electrical equipment through a data line; the data lines are respectively matched with plug connectors matched with the data input interface or the data output interface, the protective cover plate is matched with the buckle assembly, and the buckle assembly is matched and clamped with the plug connectors.
In some implementations, in order to ensure that the integrated intelligent module for the electrical appliance can be in signal connection with the intelligent mobile device of the user, the intelligent mobile device receives relevant data and performs corresponding control, and the following technical scheme is provided.
The Bluetooth module and the WiFi module are integrated on the printed circuit board, signal antennas are arranged on the Bluetooth module and the WiFi module in a matched mode, an antenna through hole is formed in the protective cover plate, and the signal antennas penetrate through the antenna through hole to be arranged.
In some of these implementations, in order to ensure efficient power supply to the printed circuit board and the components integrated thereon, and at the same time facilitate wiring of the power supply lines to the printed circuit board, the following technical scheme is provided. The printed circuit board is integrated with a power supply interface, a power supply through hole is formed in the protective cover plate, and the power supply interface penetrates through the power supply through hole.
In some implementations, in order to ensure that the bolt assembly can be stably fixed to the protective cover plate and the printed circuit board and ensure that the formed whole body can be stably installed in the electrical equipment, the following technical scheme related to the bolt assembly is provided.
The bolt assembly comprises an elastic rubber column, a supporting pad column, a first bolt column and a second bolt column, wherein the elastic rubber column is fixedly connected to the corner of the lower surface of the protective cover plate, a first through hole is formed in the elastic rubber column, the supporting pad column is fixedly connected to the corner of the printed circuit board, a thread groove is formed in the top of the supporting pad column, a second through hole communicated with the thread groove is formed in the supporting pad column, the elastic rubber column is abutted to the top of the supporting pad column, the first bolt penetrates through the protective cover plate from top to bottom, the first through hole and is in screwed connection with the thread groove, a third through hole is formed in the first bolt, the second bolt penetrates through the third through hole from top to bottom, the second through hole and extends out of the bottom end of the supporting pad column, and the second bolt is screwed into the electrical equipment.
In some implementations, to ensure that the buckle assembly can stably clamp the plug connector connected to the data input interface and the data output interface, the following technical scheme related to the buckle European assembly is provided.
The protective cover plate is characterized in that a sliding cavity is formed in the protective cover plate, the buckle assembly comprises a lifting seat, a movable wedge and a supporting spring, the lifting seat is slidably mounted in the sliding cavity, the movable wedge is fixedly connected with the bottom of the lifting seat and is arranged on the lower side of the protective cover plate, the supporting spring is arranged in the sliding cavity, two ends of the supporting spring are fixedly connected with the top of the sliding cavity and the lifting seat respectively, a fixed wedge acting with the movable wedge is fixedly connected to the top of the plug connector, and a sliding key arranged on the outer side of the protective cover plate is fixedly connected to the lifting seat.
The utility model has the beneficial effects that: the heat generated by the operation of the application processor can be transmitted to the heat-radiating backing plate and then transmitted to the heat-conducting pipes, and the heat-conducting pipes above the protective cover plate are combined in a mutually connected mode, so that the heat-radiating effect is improved; the first bolt post is screwed with the thread groove, so that the fixed combination of the protective cover plate and the printed circuit board is realized, the second bolt post extends out of the bottom of the printed circuit board from the top plate of the protective cover plate, the second bolt post can be stably screwed with electrical equipment, the printed circuit board, all parts on the printed circuit board and the protective cover plate are stably installed, the installation stability of the integrated intelligent module is ensured, the buckle assembly is arranged, and after the data line is connected with the data input interface and the data output interface, the plug connector can be clamped. In sum, this application can guarantee to carry out effective heat dissipation when the stable installation of integrated intelligent module, can guarantee the stability that each data line is connected and then improve data, command transmission stability.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic diagram of the split structure of the present utility model;
FIG. 3 is a schematic view of the protective cover plate and its mounting components;
FIG. 4 is a schematic diagram of a printed circuit board and its integrated components;
FIG. 5 is an enlarged detailed schematic view of portion A of FIG. 4;
FIG. 6 is a schematic diagram of a data line and a connector thereon;
FIG. 7 is a schematic view of the structure of the first bolt post and the second bolt post;
fig. 8 is a schematic structural view of the buckle assembly.
In the figure: the portable electronic device comprises a Printed Circuit Board (PCB), a protective cover Plate (PCB), a 3 application processor, a 4 data input interface, a 5 data output interface, a 6 heat dissipation cushion plate, a 7 heat conduction pipe, an 8 data wire, a 9 plug connector, a 10 guide slot, a 11 guide rail, a 12 connecting column, a 13 connecting slot, a 14 Bluetooth module, a 15WiFi module, a 16 signal antenna, a 17 antenna through hole, a 18 power supply interface, a 19 power supply through hole, a 20 elastic rubber column, a 21 support cushion column, a 22 first bolt column, a 23 second bolt column, a 24 first through hole, a 25 thread groove, a 26 second through hole, a 27 third through hole, a 28 sliding cavity, a 29 lifting seat, a 30 movable wedge, a 31 supporting spring, a 32 fixed wedge, a 33 sliding key and a 34 through groove.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-8, an integrated intelligent module for an electric appliance includes a printed circuit board 1, a protective cover plate 2, an application processor 3, a data input interface 4 and a data output interface 5 which are integrated on the printed circuit board 1, and a heat dissipation component fixedly mounted on the protective cover plate 2; the protective cover plate 2 is arranged on the upper side of the printed circuit board 1, and the protective cover plate 2 is fixedly combined with the printed circuit board 1 through a bolt assembly; the heat radiation assembly comprises a heat radiation base plate 6 and heat conduction pipes 7, wherein the heat radiation base plate 6 is fixedly connected to the lower surface of the protective cover plate 2 and is arranged in a manner of being attached to the application processor 3, and the heat conduction pipes 7 are connected to the periphery of the heat radiation base plate 6 and penetrate through the protective cover plate 2 to be arranged above the protective cover plate 2; the data input interface 4 is in signal connection with a detection component of the electrical equipment through a data line 8, and the data output interface 5 is in signal connection with a functional component of the electrical equipment through the data line 8; the data lines 8 are respectively matched with a plug 9 which is matched with the data input interface 4 or the data output interface 5, the protective cover plate 2 is matched with a buckle component, and the buckle component is matched and clamped with the plug 9.
The data input interface 4 is used for receiving the detection data transmitted by the detection component and transmitting the detection data to the application processor 3, the application processor 3 analyzes and processes the received detection data and determines a control signal according to the related data, and the data output interface 5 is used for receiving the control signal sent by the application processor 3 and transmitting the control signal to the functional component so as to control and regulate the working state of the functional component. When the integrated support module for the electric appliance is actually applied to the intelligent refrigerator, the data input interface 4 is in signal connection with detection components (including a temperature sensor, a humidity sensor, a camera, a weight sensor and the like) in the intelligent refrigerator and receives detection data thereof, and the application processor 3 analyzes and processes the received temperature data, humidity data, weight data and image data (images of stored foods) shot by the camera according to a preset processing program and determines the running state of functional components (equipment such as an air compressor and an evaporator) so as to adjust the refrigerating temperature of the intelligent refrigerator.
The protective cover 2 plays a role in effectively protecting the printed circuit board 1 and the components integrated thereon, and ensures that the relevant components can be stably mounted on the protective cover 2. The heat generated by the operation of the application processor 3 can be conducted to the heat dissipation base plate 6 and then transmitted to the heat conduction pipes 7, the heat conduction pipes 7 on the upper side of the protective cover plate 2 are connected and combined with each other, and the heat conduction pipes 7 are paved above the protective cover plate 2, so that the contact area between the heat conduction pipes 7 and the ambient air can be effectively increased, and the heat dissipation effect is further improved.
The data input interface 4 and the data output interface 5 have the same structure, the inner cavity of the data input interface 4 and the data output interface 5 are provided with guide grooves 10, the plug 9 is fixedly connected with guide rails 11 and is nested and combined with the guide grooves 10, the plug 9 can be ensured to be inserted into the interface, the data input interface 4 and the data output interface 5 are fixedly connected with connecting columns 12 electrically connected with the printed circuit board 1, the inner side end of the plug 9 is provided with connecting grooves 13, and the connecting grooves 13 are spliced and combined with the connecting columns 12 to realize electric connection.
In some implementations, in order to ensure that the integrated intelligent module for the electrical appliance can be in signal connection with the intelligent mobile device of the user, the intelligent mobile device receives relevant data and performs corresponding control, and the following technical scheme is provided.
The Bluetooth module 14 and the WiFi module 15 are further integrated on the printed circuit board 1, the Bluetooth module 14 and the WiFi module 15 are respectively provided with a signal antenna 16 in a matched mode, the protective cover plate 2 is provided with an antenna through hole 17, and the signal antenna 16 penetrates through the antenna through hole 17.
The intelligent mobile device can be connected with the application processor 3 in a Bluetooth or wifi connection mode, a user can check the monitoring data received by the detection component and processed by the application processor 3 through the intelligent mobile device, and meanwhile, the working mode of the electrical equipment can be changed through operating the intelligent mobile device, and the working state of the functional component is changed in a mode that the application processor 3 sends a control command.
The signal antenna 16 connected with the Bluetooth module 14 and the WiFi module 15 extends out of the upper side of the protective cover plate 2 through the antenna through hole 17, so that stability of signal transmission can be guaranteed.
In some of these implementations, in order to ensure an efficient power supply to the printed circuit board 1 and the components integrated thereon, while facilitating the wiring of the power supply lines to the printed circuit board 1, the following technical solutions are provided.
The printed circuit board 1 is integrated with a power supply interface 18, the protective cover plate 2 is provided with a power supply through hole 19, and the power supply interface 18 penetrates through the power supply through hole 19.
The power supply interface 18 extends to the upper side of the protective cover plate 2 from the power supply through hole 19, so that a power supply line is conveniently connected with the power supply interface 18, and further, the printed circuit board 1 and related power utilization components integrated on the printed circuit board are effectively powered.
In some of these embodiments, in order to ensure that the bolt assembly can be stably fixed to the protective cover plate 2 and the printed circuit board 1, and that the formed whole can be stably mounted in the electrical equipment, the following technical solutions are provided with respect to the bolt assembly.
The bolt assembly comprises an elastic rubber column 20, a supporting pad column 21, a first bolt column 22 and a second bolt column 23, wherein the elastic rubber column 20 is fixedly connected to the corner of the lower surface of the protective cover plate 2, a first through hole 24 is formed in the elastic rubber column 20, the supporting pad column 21 is fixedly connected to the corner of the printed circuit board 1, a threaded groove 25 is formed in the top of the supporting pad column 21, a second through hole 26 communicated with the threaded groove 25 is formed in the supporting pad column 21, the elastic rubber column 20 is abutted to the top of the supporting pad column 21, the first bolt penetrates through the protective cover plate 2 from top to bottom, the first through hole 24 is in screwed connection with the threaded groove 25, a third through hole 27 is formed in the first bolt, the second bolt penetrates through the third through hole 27 from top to bottom, the second through hole 26 extends out of the bottom of the supporting pad column 21, and the second bolt is screwed into electrical equipment.
In order to ensure the combination stability of the elastic rubber column 20 and the supporting pad column 21, a nesting groove is formed in the bottom of the elastic rubber column 20, the top end of the supporting pad column 21 is nested and inserted in the nesting groove to realize the nesting combination of the elastic rubber column 20 and the supporting pad column 21, the elastic rubber column 20 has certain elasticity, and can provide certain buffer for the combination of the heat dissipation base plate 6 and the application processor 3 and ensure the operation stability of the application processor 3.
The first bolt column 22 is screwed with the thread groove 25, so that the fixed combination of the protective cover plate 2 and the printed circuit board 1 is realized, the second bolt column 23 extends out of the bottom of the printed circuit board 1 from the top plate of the protective cover plate 2, the second bolt column 23 can be stably screwed with electrical equipment, and the printed circuit board 1, parts on the printed circuit board and the protective cover plate 2 are stably installed.
In order to ensure that the head of the first bolt column 22 is stably combined with the protective cover plate 2, an anti-backing ring is fixedly connected above the protective cover plate 2, and after the first bolt column 22 is connected, the backing ring can ensure the installation stability of the first bolt column 22.
In some of these implementations, in order to ensure that the snap assembly is able to stably snap onto the plug 9 connected to the data input interface 4, the data output interface 5, the following technical solutions are provided with respect to snap-on euro assemblies.
The protective cover plate 2 is provided with a sliding cavity 28, the buckle component comprises a lifting seat 29, a movable wedge 30 and a supporting spring 31, the lifting seat 29 is slidably mounted in the sliding cavity 28, the movable wedge 30 is fixedly connected with the bottom of the lifting seat 29 and is arranged on the lower side of the protective cover plate 2, the supporting spring 31 is arranged in the sliding cavity 28, two ends of the supporting spring 31 are fixedly connected with the top of the sliding cavity 28 and the lifting seat 29 respectively, the top of the plug 9 is fixedly connected with a fixed wedge 32 which acts with the movable wedge 30, and the lifting seat 29 is fixedly connected with a sliding key 33 which is arranged on the outer side of the protective cover plate 2.
In the process of inserting the plug 9 into the data input interface 4 and the data output interface 5, the inclined surface of the fixed wedge 32 acts with the inclined surface of the movable wedge 30, the plug combination of the plug 9 is completed while the movable wedge 30 and the lifting seat 29 are jacked up, then the fixed wedge 32 cancels the action of the movable wedge 30, the lifting seat 29 and the movable wedge 30 complete descending reset under the action of the supporting spring 31, at the moment, the straight surface of the movable wedge 30 acts with the straight surface of the fixed wedge 32 to fixedly clamp the fixed wedge 32 and the plug 9, and the plug 9 is prevented from being separated from the corresponding data input interface 4 or the data output interface 5.
When the plug 9 needs to be pulled out, the sliding key 33 is controlled to drive the lifting seat 29 and the movable wedge 30 to ascend and retract into the sliding cavity 28, so that the movable wedge 30 cancels the limiting effect on the fixed wedge 32, and the plug 9 can be pulled out freely.
In order to ensure that the sliding key 33 is fixedly connected with the lifting seat 29 and simultaneously drives the lifting seat 29 to move, a through groove 34 communicated with the sliding cavity 28 is formed in the side wall of the protective cover plate 2, and the sliding key 33 penetrates through the through groove 34 and can move up and down along the through groove 34.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present utility model may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present disclosure describes embodiments, not every embodiment is provided with a separate embodiment, and that this description is provided for clarity only, and that the disclosure is not limited to the embodiments described in detail below, and that the embodiments described in the examples may be combined as appropriate to form other embodiments that will be apparent to those skilled in the art.

Claims (5)

1. An integrated intelligent module for an appliance, comprising: the device comprises a printed circuit board (1), a protective cover plate (2), an application processor (3), a data input interface (4) and a data output interface (5) which are integrated on the printed circuit board (1), and a heat dissipation assembly fixedly arranged on the protective cover plate (2); the protective cover plate (2) is arranged on the upper side of the printed circuit board (1), and the protective cover plate (2) is fixedly combined with the printed circuit board (1) through a bolt assembly; the heat dissipation assembly comprises a heat dissipation base plate (6) and heat conduction pipes (7), wherein the heat dissipation base plate (6) is fixedly connected to the lower surface of the protection cover plate (2) and is arranged in a manner of being attached to the application processor (3), and the heat conduction pipes (7) are connected to the periphery of the heat dissipation base plate (6) and penetrate through the protection cover plate (2) to be arranged above the protection cover plate (2); the data input interface (4) is in signal connection with a detection component of the electrical equipment through a data line (8), and the data output interface (5) is in signal connection with a functional component of the electrical equipment through the data line (8); the data line (8) is provided with plug connectors (9) which are matched with the data input interface (4) or the data output interface (5), the protective cover plate (2) is provided with a buckle component in a matched mode, and the buckle component is in matched clamping connection with the plug connectors (9).
2. The integrated intelligent module for electric appliances according to claim 1, characterized in that: the Bluetooth module (14) and the WiFi module (15) are further integrated on the printed circuit board (1), the Bluetooth module (14) and the WiFi module (15) are respectively provided with a signal antenna (16) in a matched mode, the protective cover plate (2) is provided with an antenna through hole (17), and the signal antenna (16) penetrates through the antenna through hole (17) to be arranged.
3. The integrated intelligent module for electric appliances according to claim 1, characterized in that: the printed circuit board (1) is integrated with a power supply interface (18), a power supply through hole (19) is formed in the protective cover plate (2), and the power supply interface (18) penetrates through the power supply through hole (19).
4. The integrated intelligent module for electric appliances according to claim 1, characterized in that: the bolt assembly comprises an elastic rubber column (20), a supporting pad column (21), a first bolt column (22) and a second bolt column (23), wherein the elastic rubber column (20) is fixedly connected to the corner of the lower surface of the protective cover plate (2), a first through hole (24) is formed in the elastic rubber column (20), the supporting pad column (21) is fixedly connected to the corner of the printed circuit board (1), a thread groove (25) is formed in the top of the supporting pad column (21), a second through hole (26) communicated with the thread groove (25) is formed in the supporting pad column (21), the elastic rubber column (20) is in butt joint with the top of the supporting pad column (21), the first bolt penetrates through the protective cover plate (2), the first through hole (24) and is in screwed connection with the thread groove (25), a third through hole (27) is formed in the first bolt, the second bolt penetrates through the third through hole (27) from top to bottom, extends out of the bottom of the supporting pad column (21), and the second bolt is screwed into the electrical equipment.
5. The integrated intelligent module for electric appliances according to claim 1, characterized in that: the protective cover plate (2) is internally provided with a sliding cavity (28), the buckle assembly comprises a lifting seat (29), a movable wedge (30) and a supporting spring (31), the lifting seat (29) is slidably mounted in the sliding cavity (28), the movable wedge (30) is fixedly connected with the bottom of the lifting seat (29) and is arranged on the lower side of the protective cover plate (2), the supporting spring (31) is arranged in the sliding cavity (28), two ends of the supporting spring (31) are fixedly connected with the top of the sliding cavity (28) and the lifting seat (29) respectively, the top of the plug connector (9) is fixedly connected with a fixed wedge (32) which acts on the movable wedge (30), and a sliding key (33) which is arranged on the outer side of the protective cover plate (2) is fixedly connected on the lifting seat (29).
CN202223391125.0U 2022-12-18 2022-12-18 Integrated intelligent module for electric appliance Active CN218920859U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223391125.0U CN218920859U (en) 2022-12-18 2022-12-18 Integrated intelligent module for electric appliance

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223391125.0U CN218920859U (en) 2022-12-18 2022-12-18 Integrated intelligent module for electric appliance

Publications (1)

Publication Number Publication Date
CN218920859U true CN218920859U (en) 2023-04-25

Family

ID=86039939

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223391125.0U Active CN218920859U (en) 2022-12-18 2022-12-18 Integrated intelligent module for electric appliance

Country Status (1)

Country Link
CN (1) CN218920859U (en)

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