Upgrading device for integrated product

By using an integrated product upgrade device and employing automated control of fixtures, mainframes, and power supply equipment, the errors and inefficiencies caused by manual upgrades are resolved. This achieves automated upgrades and verification of integrated product software, improving upgrade efficiency and security.

CN224217092UActive Publication Date: 2026-05-08SUNGIANT AUTOMOTIVE ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUNGIANT AUTOMOTIVE ELECTRONICS CO LTD
Filing Date
2025-04-24
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing methods for upgrading integrated product software rely on manual operation, which is prone to errors and inefficient.

Method used

An upgrade device for an integrated product was designed, including a fixture, a host, and a power supply. The device automatically controls the connection and disconnection of the socket with the integrated product through a control switch, and uses relays and timers to achieve automatic power supply and power cut-off. Combined with a barcode scanner, the device automatically identifies the product number, and the host automatically performs software writing and verification.

Benefits of technology

It enables automated upgrades of integrated product software, improves upgrade efficiency, prevents errors in manual operation, and ensures the accuracy and security of the upgrade process.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224217092U_ABST
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Abstract

The utility model provides an upgrading device for an integrated product. The upgrading device is used for upgrading software of the integrated product. The upgrading device comprises a jig, a host and power supply equipment, the jig comprises a jig body, a control switch and a socket. The control switch and the socket are respectively arranged on the jig body, and the control switch and the socket are arranged at an interval; the jig body is used for fixing an integrated product, the socket is used for being connected with the integrated product, and the control switch is used for controlling connection and separation of the socket and the integrated product. The power supply equipment is electrically connected with the socket and is used for supplying power to the integrated product; and the host is electrically connected with the socket and is used for upgrading the integrated product. Through cooperative work of the jig, the host and the power supply equipment, automatic writing and verification of product software are achieved, through integrated automatic control, the efficiency of the writing process is improved, and the mistake-proof and fool-proof effects are achieved.
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Description

Technical Field

[0001] This application relates to the field of integrated products, and more specifically, to an upgrade device for an integrated product. Background Technology

[0002] With the rapid development of electronic technology, an increasing number of market-oriented user products are using integrated circuit boards (referred to as integrated products). These integrated products support and connect electronic devices to realize various functions of user products. These integrated products include both product hardware and product software, and specific functions are achieved through the combination and collaboration of the product software and product hardware.

[0003] In practice, the manufacturing process of the aforementioned integrated products often involves upgrading the product software. However, the existing upgrade methods are all manual, which can lead to various problems due to upgrade errors or misoperations, resulting in low efficiency. Utility Model Content

[0004] This application provides an upgrade device for integrated products, which can automatically upgrade the software of integrated products by triggering a control switch, avoiding various problems caused by manual upgrades and improving upgrade efficiency.

[0005] This application provides an upgrade device for an integrated product, which is used to upgrade the software of the integrated product; the upgrade device includes a fixture, a host, and a power supply.

[0006] The fixture includes a fixture body, a control switch, and a socket; the control switch and the socket are respectively disposed on the fixture body, and the control switch and the socket are spaced apart; the fixture body is used to fix the integrated product, the socket is used to connect to the integrated product, and the control switch is used to control the connection or separation of the socket from the integrated product;

[0007] The power supply device is electrically connected to the socket and is used to supply power to the integrated product;

[0008] The host is communicatively connected to the socket and can upgrade the integrated product through the socket.

[0009] In a possible implementation, the fixture further includes a relay and a time delay; the relay and the time delay are respectively disposed on the fixture body;

[0010] The relay is electrically connected to the control switch and the power supply device, respectively.

[0011] The delay device is electrically connected to the relay; the delay device is configured to delay powering on the power supply device for the connected integrated product when the control switch is turned on, and to delay controlling the separation of the socket from the integrated product when the control switch is turned off.

[0012] In a possible implementation, the fixture further includes a mounting base and a support plate; both the mounting base and the support plate are connected to the fixture body, and the support plate is located on a first side of the mounting base and is movably disposed relative to the mounting base;

[0013] The socket is located on the side of the support plate facing the mounting base; the control switch is located on the second side of the mounting base, which is opposite to the first side.

[0014] The mounting base is used to place and fix the integrated product, and the support plate is used to support the socket.

[0015] In a possible implementation, the fixture further includes a first drive mechanism; the first drive mechanism is disposed on the fixture body and electrically connected to both the carrier plate and the relay; the first drive mechanism is used to control the movement of the carrier plate to connect or disconnect the socket from the integrated product.

[0016] In a possible implementation, the fixture body includes a base and a panel;

[0017] The base is frame-shaped and has an opening on one side in its height direction. The panel is disposed at the opening, and the panel and the base enclose a first cavity.

[0018] The control switch is disposed on the base, the relay and the timer are respectively disposed in the first cavity, and the mounting base and the support plate are disposed on the side of the panel opposite to the first cavity;

[0019] The panel has a first through slot extending along its height direction, the first through slot being located on one side of the panel on which the support plate is disposed; one end of the first drive mechanism is located in the first cavity, and the other end passes through the first through slot and is connected to the support plate, so that the support plate moves closer to or further away from the mounting base along the width direction of the panel.

[0020] In a possible implementation, the fixture further includes a second drive mechanism and a fixing element;

[0021] The fastener is located at least on one side of the mounting base in the horizontal direction, the fastener has a rotation axis, and the fastener is configured to rotate about the rotation axis and clamp the integrated product together with the mounting base;

[0022] The second drive mechanism is electrically connected to the relay; wherein, the panel also has a second through slot extending along its height direction, the second through slot being spaced apart from the first through slot, and each second through slot matching one of the fixing members; one end of the second drive mechanism is located in the first cavity, and the other end passes through the second through slot and is connected to the fixing member; the second drive mechanism is used to drive the fixing member to rotate.

[0023] In a possible implementation, the fixture body further includes a protective cover;

[0024] The protective cover is located on the side of the panel opposite to the first cavity, and together with the panel, forms a second cavity; wherein,

[0025] The protective cover corresponds to the first through slot along its height, and the supporting plate is at least partially accommodated within the second cavity; and / or,

[0026] The protective cover corresponds to the second through groove along the height direction, and at least a portion of the fixing member is accommodated within the second cavity.

[0027] In a possible implementation, the relay includes a first relay and a second relay, the time delay includes a first time delay and a second time delay, and the control switch includes a start switch and a reset switch; the first relay, the second relay, the first time delay, and the second time delay are all located within the first cavity; the start switch and the reset switch are spaced apart from each other on the base; wherein...

[0028] The start switch is connected to the first relay, the first relay is connected to the first drive mechanism and the second drive mechanism; the first relay is also connected to the first delay unit; the first delay unit is also connected to the second relay, and the second relay is connected to the power supply device;

[0029] The reset switch is electrically connected to the second relay and the second delay, respectively, and the second delay is also connected to the first relay.

[0030] In a possible implementation, the start switch includes a first start switch and a second start switch;

[0031] The first start switch and the second start switch are both located on the base and are spaced apart from each other. The first start switch and the second start switch are electrically connected to the first relay, and the reset switch is electrically connected to the second relay. The first start switch and the second start switch are configured to activate the relay when triggered simultaneously.

[0032] The reset switch is disposed on the base and is spaced apart from the first start switch and the second start switch.

[0033] In a possible implementation, the upgrade device also includes a barcode scanner and a support bracket;

[0034] The barcode scanner is communicatively connected to the host computer; the integrated product has a graphic code area, and the barcode scanner is used to scan the graphic code area;

[0035] The support bracket is fixed on the bearing platform, and the barcode scanner is detachably fixed on the support bracket; wherein, the bearing platform includes the fixture body or a fixable object fixed within a preset range from the fixture.

[0036] The beneficial effects of this utility model embodiment are:

[0037] The fixture serves to clamp and secure the integrated product during the upgrade process. The host computer can write and verify the integrated product on the fixture, while the power supply provides power to the entire system. Through the coordinated operation of the fixture, host computer, and power supply, the product software is automatically written and verified. Integrated automated control improves the efficiency of the writing process and achieves error prevention and foolproofing effects. Attached Figure Description

[0038] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0039] Figure 1 This is an overall structural diagram of the upgrade device for the integrated product according to an embodiment of the present utility model;

[0040] Figure 2 This is a structural logic framework diagram of the upgrade device for the integrated product according to an embodiment of the present utility model;

[0041] Figure 3 for Figure 2 Detailed structural logic framework diagram of the upgrade device for integrated products;

[0042] Figure 4 A flowchart illustrating the power-on process of the upgrade device for the integrated product according to an embodiment of this utility model;

[0043] Figure 5 This is a flowchart illustrating the power-off process of the upgrade device for the integrated product according to an embodiment of this utility model.

[0044] Icons: 1. Fixture; 11. Fixture body; 111. Base; 1101. Enclosed surface; 112. Panel; 113. Protective cover; 12. Control switch; 121. Start switch; 1211. First start switch; 1212. Second start switch; 122. Reset switch; 13. Socket; 14. Relay; 141. First relay; 142. Second relay; 15. Timer; 151. First timer; 152. Second timer; 16. Mounting base; 17. Support plate; 18. First drive mechanism; 19. Second drive mechanism; 110. Fixture; 2. Main unit; 3. Power supply; 4. Barcode scanner. Detailed Implementation

[0045] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. The components of the embodiments of this utility model described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.

[0046] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but merely to illustrate selected embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.

[0047] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.

[0048] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product of this utility model is in use. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, the terms "first," "second," and "third," etc., are only used to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0049] Furthermore, terms such as "horizontal" and "vertical" do not imply that components must be absolutely horizontal or suspended, but rather that they can be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal than "vertical," and does not mean that the structure must be completely horizontal, but can be slightly tilted.

[0050] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0051] refer to Figures 1 to 5 This application provides an upgrade device for integrated products. The upgrade device is used to upgrade the software of an integrated product (not shown in the figure), such as the software used by a battery pack battery management system component. The upgrade device includes a fixture 1, a host 2, and a power supply 3. The fixture 1 clamps and fixes the integrated product during the upgrade process. The host 2 writes and verifies the integrated product on the fixture 1. The power supply 3 supplies power to the entire electrical device. Through the coordinated operation of the fixture 1, host 2, and power supply 3, automatic writing and verification of the integrated product software is achieved. Integrated automated control improves the efficiency of the writing operation and also achieves error prevention and foolproofing effects.

[0052] Further reference Figure 1 The fixture 1 includes a fixture body 11, a control switch 12, and a socket 13. The control switch 12 and socket 13 are respectively disposed on the fixture body 11, with a gap between them. The space between the control switch 12 and socket 13 is used to fix the integrated product. The fixture body 11 is used to fix the integrated product, the socket 13 is used to connect to the integrated product, and the control switch 12 is used to control the connection and disconnection of the socket 13 from the integrated product. The fixture body 11 can be made of aluminum alloy and has an overall rectangular shape, resulting in a lightweight design and good structural strength. The control switch 12 and socket 13 are respectively disposed on the front and rear sides of the fixture body 11. The top surface of the fixture body 11 is used to fix the integrated product. The integrated product has a connector that can be plugged into the socket 13. The power supply device 3 is electrically connected to the socket 13 to supply power to the integrated product. The control switch 12 can control the socket 13 to move closer to or further away from the connector to achieve connection or disconnection.

[0053] In general, reference Figure 1and Figure 2 By loading the integrated product onto fixture 1 and pressing control switch 12, socket 13 connects to the connector of the integrated product and, after a delay, connects to power device 3 to supply power to the integrated product. Control switch 12 can automatically control the power supply 3 to power on and off, preventing hot-swapping of the integrated product while it is powered on. Then, host 2 automatically detects the CAN communication signal of the integrated product when it is powered on, and after the communication signal status is OK, it automatically loads the product software file (stored on the computer) from the nested path of host 2 into host 2. Host 2 automatically calls and writes the software into the integrated product, realizing automatic writing and verification of product software. Through integrated automated control, the efficiency of the upgrade operation process is improved.

[0054] In some embodiments, the fixture 1 further includes a relay 14 and a timer 15, which are respectively disposed on the fixture body 11. The relay 14 is connected to the control switch 12 and the power supply device 3, and the timer 15 is electrically connected to the relay 14. The timer 15 is configured to delay the power supply device 3 from powering the connected integrated product when the control switch 12 is turned on, and to delay the disconnection of the control socket 13 from the integrated product when the control switch 12 is turned off. By connecting the relay 14 and the timer 15 to the power supply device 3 (such as a DC power supply), and connecting the relay 14 to the control switch 12, when power is applied, the operator presses the control switch 12 (such as a control button), and the socket 13 first connects to the integrated product before powering on the integrated product; when power is removed, the operator similarly presses the control switch 12 to power off the integrated product first, and then the socket 13 disconnects from the integrated product, thereby preventing the phenomenon of hot-plugging the product while it is powered on.

[0055] In some embodiments, reference Figure 1The fixture 1 also includes a mounting base 16 and a support plate 17. The mounting base 16 is used to place and fix the integrated product, and the support plate 17 is used to support the socket 13. The mounting base 16 can be integrally fixed to the fixture body 11 by welding, bolting, or other methods. The support plate 17 is also set on the fixture body 11, and the support plate 17 is located on the first side of the mounting base 16 and is movable relative to the mounting base 16. After the integrated product is fixed to the mounting base 16, the connector of the integrated product is set facing the socket 13 on the support plate 17. The socket 13 is set on the side of the support plate 17 facing the mounting base 16, which facilitates the movement of the socket 13 to mate with the connector. The control switch 12 is set on the second side of the mounting base 16 opposite the first side and is spaced apart from the socket 13. By pressing the control switch 12 on the second side of the mounting base 16, the power-on and power-off operations and the mating of the socket 13 with the connector can be controlled. The overall layout of the device is relatively reasonable and can reduce the space occupied by the overall equipment. The first side of the mounting base 16 can refer to one end of the mounting base 16 in the horizontal direction, and the second side of the mounting base is in the opposite direction to the first side.

[0056] In some embodiments, the fixture 1 further includes a first drive mechanism 18. The first drive mechanism 18 can be mounted on the fixture body and electrically connected to both the support plate 17 and the relay 14. After receiving a control signal from the relay 17, the first drive mechanism 18 can control the movement of the support plate 17 to control the connection or disconnection of the socket 13 with the integrated product. The first drive mechanism 18 can use different types of drive methods. For example, it can use a cylinder to drive the support plate 17 toward or away from the mounting base 16 via linear drive, thereby realizing the docking or disconnection of the socket 13 with the connector of the integrated product. Alternatively, it can use a motor, gear, or rack to drive the support plate 17 toward or away from the mounting base 16. That is, the gear is sleeved on the output shaft of the motor and meshes with the rack, which is fixedly connected to the support plate 17. Through the rotation of the motor and the transmission connection of the gear and rack, the support plate 17 is driven toward or away from the mounting base 16, thereby realizing the docking or disconnection of the socket 13 with the connector of the integrated product.

[0057] In some embodiments, the fixture body 11 includes a base 111 and a panel 112. The base 111 is frame-shaped and has an opening at the top. The panel 112 is disposed at the opening, thereby enclosing the base 111 to form a first cavity. A control switch 12 is disposed on the base 111, which may be on a closed surface 1101 of the base 111. A relay 14 and a timer 15 are respectively disposed in the first cavity. A mounting base 16 and a support plate 17 are disposed on the side of the panel 112 opposite to the first cavity. The mounting base 16 is fixedly connected to the panel 112, and the support plate 17 can be mounted on the mounting base 16, the panel 112, or the base 111 by a first drive mechanism 18.

[0058] Furthermore, the panel 112 is provided with a first through slot extending along its height. One end (bottom end) of the first drive mechanism 18 is located within the first cavity, and its other end (top end) passes through the first through slot and connects to the support plate 17, allowing the support plate 17 to move closer to or further away from the mounting base 16 along the horizontal direction of the panel 112. By installing the relay 14, the timer 15, and the first drive mechanism 18 inside the first cavity, the upgrade device is integrated, reducing the space occupied by the upgrade device. Moreover, the relay 14 and the timer 15 are concealed, resulting in a more aesthetically pleasing overall design.

[0059] In some embodiments, the fixture 1 further includes a second drive mechanism 19 and a fixing member 110. The fixing member 110 is disposed on at least one side of the mounting base in the horizontal direction. In order to achieve symmetrical clamping of the integrated product, preferably, the fixing member 110 can be configured as two sets or an even set, respectively symmetrically arranged to clamp on both sides of the integrated product.

[0060] Furthermore, the fixing member 110 has a rotation axis whose axis extends along its height direction, and the fixing member 110 is configured to rotate about the rotation axis and together with the mounting base 16 clamp the integrated product, thereby ensuring that the integrated product is stably mounted on the fixture 1 and preventing the integrated product from shaking. In other embodiments, the rotation axis of the fixing member 110 may also extend in the horizontal direction, that is, the fixing member 110 can rotate in the height direction to clamp the integrated product.

[0061] Furthermore, the second drive mechanism 19 is electrically connected to the relay 14, which controls the second drive mechanism 19 to clamp the integrated product. The panel 112 has a second through slot extending along its height, spaced apart from the first through slot. Each second through slot corresponds to a fixing member 110. One end (bottom end) of the second drive mechanism 19 is located within the first cavity, and the other end (top end) of the second drive mechanism 19 passes through the second through slot and connects to the fixing member 110. This partially conceals the second drive mechanism 19 within the fixture 1, allowing it to be fixed to the mounting base 16 or mounted on the panel 112, saving considerable space. The second drive mechanism 19 drives the fixing member 110 to rotate, thereby clamping or releasing the integrated product.

[0062] In some embodiments, the fixture body 11 further includes a protective cover 113, which may be made of aluminum alloy, providing a strong overall weight and good structural strength. The protective cover 113 is located on the side of the panel 112 opposite to the first cavity, and together with the panel 112, forms a second cavity. The protective cover 113 can be disposed on the top surface of the first through groove, or on the top surface of the second through groove, or the top surfaces of the first and second through grooves may each be provided with a protective cover 113, that is, the protective cover 113 is correspondingly disposed to the first or second through groove along the height direction. When the protective cover 113 is disposed on the first through groove, and the support plate 17 carrying the socket 13 is at least partially accommodated in the second cavity, the protective cover 113 can cover the support plate 17 and the socket 13, preventing the socket 13 from coming into contact with the worker after being energized. When the protective cover 113 is disposed on the second through groove and at least a portion of the fastener 110 is accommodated in the second cavity, the protective cover 113 can cover the fastener 110 to prevent personnel from contacting the fastener 110.

[0063] In some embodiments, the relay 14 includes a first relay 141 and a second relay 142, the delay unit 15 includes a first delay unit 151 and a second delay unit 152, and the control switch 12 includes a start switch 121 and a reset switch 122. The first relay 141, the second relay 142, the first delay unit 151 and the second delay unit 152 are all located in the first cavity, and the start switch 121 and the reset switch 122 are both disposed on a closed surface 1101 of the base 111.

[0064] refer to Figure 3 and Figure 4 During power-on, the start switch 121 connects to the first relay 141, which in turn connects to the first drive mechanism 18 and the second drive mechanism 19. The first relay 141 controls the second drive mechanism 19 and the first drive mechanism 18 to perform preset actions. Specifically, the second drive mechanism 19 drives the fixing member 110 to rotate directly above the mounting base 16, thereby pressing the integrated product onto the mounting base. Then, the first drive mechanism 18 pushes the carrier plate 17 and the socket 13 toward the mounting base 16. When the carrier plate 17 and the socket 13 move to the set position, the socket 13 mates with the connector of the integrated product.

[0065] The first relay 141 is also connected to the first delay unit 151, which is further connected to the second relay 142, which in turn is connected to the power supply device 3. While controlling the first drive mechanism 18 and the second drive mechanism 19 via the first relay 141, the first relay 141 sends a conduction signal to the first delay unit 151. After a delay (e.g., two seconds), the delay unit sends the signal to the second relay 142, which then controls the power supply device 3 to supply power to the socket 13. This allows for power-on only after confirming the pressing and docking actions are completed, preventing live docking from occurring.

[0066] refer to Figure 3 and Figure 5 During the power-down process, the reset switch 122 is connected to the second relay 142 and the second delay unit 152, respectively. The second delay unit 152 is also connected to the first relay 141. When the reset switch 122 is activated, it simultaneously sends signals to the second relay 142 and the second delay unit 152. Upon receiving the signal, the second relay 142 immediately cuts off the power. At the same time, the second delay unit 152 sends a signal to the first relay 141 after a delay (e.g., a two-second delay). The first relay 141 responds and controls the first drive mechanism 18 and the second drive mechanism 19. That is, after the power is cut off first, the socket 13 is separated from the integrated product, and the fastener 110 is loosened from the integrated product to prevent the product from being pulled out while still powered on.

[0067] In some embodiments, the start switch 121 includes a first start switch 1211 and a second start switch 1212. Both the first start switch 1211 and the second start switch 1212 are located on the base 111 and spaced apart from each other. Both the first start switch 1211 and the second start switch 1212 are connected to a relay 14 and a timer 15. The first start switch 1211 and the second start switch 1212 are configured to activate the first relay 141 only when both are triggered simultaneously. During power-on, the operator needs to press both the first start switch 1211 and the second start switch 1212 simultaneously to prevent hand interference with the integrated product. A reset switch 122 is located on the base 111 and spaced apart from the first start switch 1211 and the second start switch 1212. The reset switch 122 is connected to the second relay 142 and the second timer 152. During power-off, the operator presses the reset switch 122, which, through the second relay 142 and the second timer 152, enables operations such as power-off, unplugging, and releasing.

[0068] In some embodiments, the upgrade device further includes a barcode scanner 4 and a support bracket (not shown). The support bracket is fixed to a support platform, which can be a fixture body 11 or a fixable object fixed within a preset range from the fixture 1, such as a workbench. The barcode scanner 4 is fixed to the support bracket and can identify the serial number corresponding to each integrated product. The scanning area of ​​the barcode scanner 4 covers the graphic code area of ​​the integrated product. The barcode scanner is used to scan the graphic code area of ​​the integrated product, which is provided with a barcode such as a QR code or barcode.

[0069] In other embodiments, the barcode scanner 4 is detachably mounted from the support bracket or placed directly on the support platform. Before product upgrades, the barcode scanner 4 scans the labels affixed to the integrated product onto the host interface. After the host 2 recognizes the QR code information on the label, it automatically loads the product software file (stored on the computer) from the host 2's nested path into the host 2. The host 2 automatically calls and writes the software into the integrated product, realizing automatic writing and verification of the product software through integrated automated control.

[0070] After the integrated product is clamped, connected, and powered on, the host computer adds CAN communication acquisition and judgment. Upon successful CAN signal connection, it automatically triggers barcode scanner 4 to scan. Barcode scanner 4 is fixed to the workstation bracket via a magnetic base and communicates with the computer and host computer 2 via a COM port (serial communication interface, used by a computer to connect external devices for data transmission). Communication signals interact to control (data transmission) the barcode scanner's automatic scanning. After a successful barcode upgrade, host computer 2 automatically returns to the scanning frame and adds a pop-up window, eliminating the need for manual selection. Host computer 2's file selection box adds path calling, automatically retrieving the corresponding upgrade file based on the product part number. Furthermore, host computer 2 adds two CAN options, allowing selection and compatibility with single-channel and dual-channel upgrades.

[0071] In some embodiments, the mounting base 16 is provided with positioning pins, the arrangement of which matches the positioning holes of the integrated product. When the integrated product is placed on the mounting base 16, the positioning pins correspond one-to-one with the positioning holes on the integrated product, thereby achieving rapid positioning and installation of the integrated product. After the integrated product is positioned and installed, operations such as clamping, docking, and powering on are performed in sequence.

[0072] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. An upgrade device for an integrated product, characterized in that, The upgrade device is used to upgrade the software of the integrated product; the upgrade device includes a fixture (1), a host (2), and a power supply device (3); The fixture (1) includes a fixture body (11), a control switch (12), and a socket (13); the control switch (12) and the socket (13) are respectively disposed on the fixture body (11), and the control switch (12) and the socket (13) are spaced apart; the fixture body (11) is used to fix the integrated product, the socket (13) is used to connect to the integrated product, and the control switch (12) is used to control the connection or separation of the socket (13) from the integrated product; The power supply device (3) is electrically connected to the socket (13) for supplying power to the integrated product; The host (2) is communicatively connected to the socket (13) and can upgrade the integrated product through the socket.

2. The upgrade device for integrated products according to claim 1, characterized in that, The fixture (1) further includes a relay (14) and a time delay (15); the relay (14) and the time delay (15) are respectively disposed on the fixture body (11); The relay (14) is electrically connected to the control switch (12) and the power supply device (3) respectively; The delay device (15) is electrically connected to the relay (14); the delay device (15) is configured to delay turning on the power supply device (3) to power the integrated product connected to it when the control switch (12) is turned on, and to delay controlling the separation of the socket (13) from the integrated product when the control switch (12) is turned off.

3. The upgrade device for integrated products according to claim 2, characterized in that, The fixture (1) further includes a mounting base (16) and a support plate (17); the mounting base (16) and the support plate (17) are both connected to the fixture body (11), and the support plate (17) is located on the first side of the mounting base (16) and is movably disposed relative to the mounting base (16); The socket (13) is disposed on the side of the support plate (17) facing the mounting base (16); the control switch (12) is disposed on the second side of the mounting base (16), the second side being opposite to the first side; The mounting base (16) is used to place and fix the integrated product, and the support plate (17) is used to support the socket (13).

4. The upgrade device for integrated products according to claim 3, characterized in that, The fixture (1) further includes a first drive mechanism (18); the first drive mechanism (18) is disposed on the fixture body and is electrically connected to the support plate (17) and the relay (14); the first drive mechanism (18) is used to control the support plate (17) to move so that the socket (13) is connected or disconnected from the integrated product.

5. The upgrade device for integrated products according to claim 4, characterized in that, The fixture body (11) includes a base (111) and a panel (112); The base (111) is frame-shaped and has an opening on one side in its height direction. The panel (112) is disposed at the opening, and the panel (112) and the base (111) enclose a first cavity. The control switch (12) is disposed on the base (111), the relay (14) and the delay device (15) are respectively disposed in the first cavity, and the mounting base (16) and the support plate (17) are disposed on the side of the panel (112) away from the first cavity; The panel (112) has a first through slot extending along its height direction, the first through slot being located on one side of the panel (112) on which the support plate (17) is disposed; one end of the first drive mechanism (18) is located in the first cavity, and the other end of it passes through the first through slot and is connected to the support plate (17).

6. The upgrade device for integrated products according to claim 5, characterized in that, The fixture (1) further includes a second drive mechanism (19) and a fixing member (110); The fastener (110) is located at least on one side of the mounting base in the horizontal direction, the fastener (110) has a rotation axis, and the fastener (110) is configured to rotate about the rotation axis and clamp the integrated product together with the mounting base (16). The second drive mechanism (19) is electrically connected to the relay (14); wherein, the panel (112) also has a second through slot extending along its height direction, the second through slot being spaced apart from the first through slot, and each second through slot being matched with a fixing member (110); one end of the second drive mechanism (19) is located in the first cavity, and the other end passes through the second through slot and is connected to the fixing member (110); the second drive mechanism (19) is used to drive the fixing member (110) to rotate.

7. The upgrade device for integrated products according to claim 6, characterized in that, The fixture body (11) also includes a protective cover (113); The protective cover (113) is located on the side of the panel (112) opposite to the first cavity, and together with the panel (112) forms a second cavity; wherein, The protective cover (113) corresponds to the first through slot along the height direction, and the supporting plate (17) is at least partially accommodated within the second cavity; and / or, The protective cover (113) corresponds to the second through groove along the height direction, and at least a portion of the fastener (110) is accommodated in the second cavity.

8. The upgrade device for integrated products according to claim 6, characterized in that, The relay (14) includes a first relay (141) and a second relay (142); the delay unit (15) includes a first delay unit (151) and a second delay unit (152); the control switch (12) includes a start switch (121) and a reset switch (122); the first relay (141), the second relay (142), the first delay unit (151), and the second delay unit (152) are all located within the first cavity; the start switch (121) and the reset switch (122) are spaced apart on the base (111); wherein, The start switch (121) is connected to the first relay (141), the first relay (141) is connected to the first drive mechanism (18) and the second drive mechanism (19); the first relay (141) is also connected to the first delay unit (151); the first delay unit (151) is also connected to the second relay (142), the second relay (142) is connected to the power supply device (3); The reset switch (122) is electrically connected to the second relay (142) and the second delay unit (152) respectively, and the second delay unit (152) is also connected to the first relay (141).

9. The upgrade device for integrated products according to claim 8, characterized in that, The start switch (121) includes a first start switch (1211) and a second start switch (1212); The first start switch (1211) and the second start switch (1212) are both located on the base (111) and are spaced apart from each other. The first start switch (1211) and the second start switch (1212) are respectively electrically connected to the first relay (141). The first start switch (1211) and the second start switch (1212) are configured to activate the relay (141) when they are triggered simultaneously. The reset switch (122) is disposed on the base (111) and is spaced apart from the first start switch (1211) and the second start switch (1212).

10. The upgrade device for integrated products according to claim 1, characterized in that, The upgrade device also includes a barcode scanner (4) and a support bracket; The barcode scanner (4) is communicatively connected to the host (2); the integrated product has a graphic code area, and the barcode scanner (4) is used to scan the graphic code area; The support bracket is fixed on the bearing platform, and the barcode scanner (4) is detachably fixed on the support bracket; wherein, the bearing platform includes the fixture body (11) or a fixable object fixed within a preset range from the fixture (1).