Chip burner device
By designing a chip programmer device that supports both built-in and external programming sockets, the problem of having to import them separately into existing equipment has been solved, resulting in reduced equipment and management costs, and improved equipment versatility and production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WUHAN WUXIN TECH CO LTD
- Filing Date
- 2025-02-28
- Publication Date
- 2026-04-17
AI Technical Summary
Existing chip programmers require separate built-in and external programming sockets, which increases equipment and management costs and fails to meet the need for multi-functionality.
A chip programmer device was designed that supports both built-in and external programming sockets. It achieves rapid adaptation through detachable installation and fixing mechanisms, reducing equipment costs and management complexity.
It enables a single device to simultaneously meet the needs of both built-in and external programming sockets, reducing equipment costs and management complexity, improving the versatility and flexibility of the device, and ensuring signal transmission stability and production consistency.
Smart Images

Figure CN224137710U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of chip programming equipment technology, specifically a chip programmer device. Background Technology
[0002] With the development of electronic technology, the increasing intelligence of devices, and the Internet of Things, the demand for chips has exploded. The number of chip manufacturers has also increased rapidly, leading to more diversified chip programming requirements. Existing chip programmers only support either built-in or external programming sockets, failing to meet the need for a single, universally applicable solution. Therefore, a production line must implement separate chip programmer devices with built-in and external programming sockets, significantly increasing equipment and management costs. To address this, we propose a new chip programmer device. Utility Model Content
[0003] The purpose of this utility model is to provide a chip programmer device that supports both chip programming with a built-in programmer socket and chip programming with an external programmer socket. This solves the problem that existing production lines need to separately introduce chip programmer equipment with a built-in programmer socket and chip programmer equipment with an external programmer socket, which increases equipment and management costs.
[0004] To achieve the above objectives, the present invention provides the following technical solution: a chip programmer device, comprising a programmer body, a mounting base on the programmer body, and a connector on the mounting base.
[0005] It also includes an external programming socket, which is detachably mounted on the mounting base of the programmer body, and a connector is installed on the back of the external programming socket for connection with the connector.
[0006] It also includes a built-in programming socket, which is detachably mounted on the mounting base of the programmer body, and a second connector connected to the connector is mounted on the back of the built-in programming socket.
[0007] Preferably, the mounting base includes a groove formed on the programmer body, and a boss is provided between the grooves, with the connector disposed in the groove; this layout not only effectively saves space, but also uses the groove to protect the connector, reduce interference from external factors on the connector, and ensure the stability of signal transmission.
[0008] The external programming socket is detachably installed on the grooves and bosses of the programmer body; the internal programming socket is also detachably installed on the grooves and bosses of the programmer body. This detachable installation of the internal and external programming sockets allows the programmer to quickly adapt to different chip programming needs by changing the type of programming socket, greatly improving the programmer's versatility and flexibility, and effectively reducing the cost for users to purchase multiple programming devices to adapt to various chips.
[0009] Preferably, the programmer body is provided with a fixing mechanism one, the external programming socket is provided with a fixing mechanism two, and the internal programming socket is provided with a fixing mechanism three.
[0010] The second fixing mechanism matches the first fixing mechanism and fixes the external programming socket to the groove and protrusion of the programmer body.
[0011] The fixing mechanism three matches the fixing mechanism one and fixes the built-in burning socket to the groove and protrusion of the burning device body.
[0012] Preferably, the fixing mechanism includes a positioning hole and a fixing hole formed on the programmer body and located at the edge of the groove.
[0013] The second fixing mechanism includes a third positioning hole and a first through hole, which are formed on the external programming socket and match the first positioning hole and the first fixing hole. The first positioning hole and the third positioning hole are used for positioning by inserting a positioning element, and the first fixing hole and the first through hole are used for fixing by fasteners. During installation, the first positioning hole and the third positioning hole are precisely positioned by inserting a positioning element to ensure the accuracy of the installation position of the external programming socket. The first fixing hole and the first through hole are fixed by fasteners to firmly fix the external programming socket to the groove and the boss of the programmer body, preventing the connection from loosening due to vibration or other factors during the programming process, which would affect the programming effect.
[0014] The fixing mechanism three includes a positioning hole four and a through hole two, which are formed on the built-in programming socket and match the positioning hole one and the fixing hole one. The positioning hole one and the positioning hole four are positioned by inserting a positioning element, and the fixing hole one and the through hole two are fixed by fasteners. The fixing mechanism three enables the built-in programming socket to be stably installed on the programmer body.
[0015] Preferably, the programmer body is provided with a fixing mechanism four, which is used to install the programmer body on automated equipment.
[0016] Preferably, the fixing mechanism four includes a positioning hole two opened at the edge of the programmer body, and fixing holes two opened at the four corners of the programmer body.
[0017] The second positioning hole is installed on the positioning component of the automated equipment, and the second fixing hole is fixed to the automated equipment by fasteners.
[0018] Preferably, the programmer body is provided with a plurality of side-by-side mounting bases, which are used to connect multiple external or internal programming sockets at the same time, or to connect a portion of the external programming sockets and another portion of the internal programming sockets.
[0019] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0020] 1. The programmer body of this utility model is compatible with both external and internal programmers. By providing a chip programming solution that supports both internal and external programming sockets, the production line only needs to introduce one type of chip programmer equipment to meet the needs of both internal and external programming sockets. This satisfies the requirement of one machine for all uses, greatly reduces the cost of programmer equipment and its use and management costs, and solves the problem that existing production lines need to separately introduce chip programmer equipment with internal and external programming sockets, which increases the cost of equipment and management.
[0021] 2. This utility model achieves quick disassembly and assembly between the programmer body and the external programming socket through the cooperation of fixing mechanism one and fixing mechanism two; quick disassembly and assembly between the programmer body and the internal programming socket through the cooperation of fixing mechanism one and fixing mechanism three; and quick disassembly and assembly between the programmer body and the automated equipment through fixing mechanism four. Each fixing mechanism includes a positioning hole and a fixing hole. The positioning hole is used to position the component through a positioning pin or positioning post, and the fixing hole is used to fix it through screws. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the main structure of the programmer of this utility model.
[0023] Figure 2 This is a plan view of the programmer body of this utility model.
[0024] Figure 3 This is a schematic diagram showing the installation of the programmer body and the external programming socket of this utility model.
[0025] Figure 4 This is a plan view of the programmer body and the external programming socket of this utility model.
[0026] Figure 5 This is a schematic diagram showing the installation of the programmer body and the built-in programming socket of this utility model.
[0027] Figure 6 This is a schematic diagram showing the installation of the programmer body, the built-in programmer socket, and the external programmer socket of this utility model.
[0028] In the diagram: 1. Programmer body; 2. Groove; 3. Boss; 4. Connector; 5. Positioning hole one; 6. Fixing hole one; 7. Positioning hole two; 8. Fixing hole two; 9. External programming socket; 10. Internal programming socket. Detailed Implementation
[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0030] like Figure 1 and 2 As shown, a chip programmer device includes a programmer body 1, a mounting base is provided on the programmer body 1, and a connector 4 is provided on the mounting base.
[0031] like Figure 3 and 4 As shown, it also includes an external programming socket 9, which is detachably mounted on the programmer body 1. A connector 1 that connects to the connector 4 is mounted on the back of the external programming socket 9.
[0032] like Figure 5 and 6 As shown, it also includes a built-in burner socket 10, which is detachably mounted on the burner body 1. A connector 2 that connects to the connector 4 is mounted on the back of the built-in burner socket 10.
[0033] Connector 4 is matched with both connector 1 and connector 2. When an external programming socket 9 is installed on the programmer body 1, connector 4 is connected to connector 1. When an internal programming socket 10 is installed on the programmer body 1, connector 4 is connected to connector 2.
[0034] Connector 4 can be any one of the following: a male-female connector, a spring-loaded pin connector, or a ribbon cable connector. A male-female connector consists of a male and a female part. The male part typically contains a probe, while the female part has a pin sleeve. Connection is achieved by inserting the probe into the pin sleeve. A spring-loaded pin connector contains a spring pin, which typically has good elasticity and conductivity. A spring-loaded pin generally consists of a pin tube, a spring, and a pin head, and can adapt to different insertion and extraction forces and positional deviations to a certain extent. A ribbon cable connector connects the programmer and the programming socket via a ribbon cable. The ribbon cable typically consists of multiple wires wrapped with an insulating layer, and has corresponding interfaces at both ends.
[0035] like Figure 1 and 2As shown, the mounting base includes a groove 2 formed on the programmer body 1, and a boss 3 is provided between the grooves 2. The connector 4 is disposed in the groove 2. This layout not only effectively saves space, but also uses the groove 2 to protect the connector 4, reduce the interference of external factors on the connector 4, and ensure the stability of signal transmission.
[0036] The external programming socket 9 is detachably mounted on the groove 2 and boss 3 of the programmer body 1; the internal programming socket 10 is also detachably mounted on the groove 2 and boss 3 of the programmer body 1. The detachable mounting of the internal programming socket 10 and the external programming socket 9 allows the programmer to quickly adapt to the programming needs of different chips by changing the type of programming socket, greatly improving the versatility and flexibility of the programmer and effectively reducing the cost for users to purchase multiple programming devices to adapt to various chips.
[0037] The programmer body 1 is provided with a fixing mechanism 1, the external programming socket 9 is provided with a fixing mechanism 2, and the internal programming socket 10 is provided with a fixing mechanism 3; the fixing mechanism 1 includes a positioning hole 5 and a fixing hole 6 opened on the programmer body 1 and located at the edge of the groove 2.
[0038] Fixing mechanism two matches fixing mechanism one and fixes the external programming socket 9 on the groove 2 and boss 3 of the programmer body 1. Fixing mechanism two includes positioning hole three and through hole one, which are opened on the external programming socket 9 and match positioning hole one 5 and fixing hole one 6. Positioning hole one 5 and positioning hole three are used for positioning by inserting positioning parts, and fixing hole one 6 and through hole one are used for fixing by fasteners. During installation, positioning hole one 5 and positioning hole three are precisely positioned by inserting positioning parts to ensure the accuracy of the installation position of external programming socket 9, while fixing hole one 6 and through hole one are fixed by fasteners to firmly fix external programming socket 9 on the groove 2 and boss 3 of programmer body 1, preventing the connection from loosening due to vibration and other factors during the programming process, which would affect the programming effect.
[0039] Fixing mechanism three matches fixing mechanism one and fixes the built-in programming socket 10 onto the groove 2 and boss 3 of the programmer body 1. Fixing mechanism three includes positioning hole four and through hole two, which are formed on the built-in programming socket 10 and match positioning hole one 5 and fixing hole one 6. Positioning hole one 5 and positioning hole four are positioned by inserting positioning elements, and fixing hole one 6 and through hole two are fixed by fasteners. Fixing mechanism three enables stable installation of the built-in programming socket 10 on the programmer body 1.
[0040] The programmer body 1 is provided with a fixing mechanism four, which is used to install the programmer body 1 on automated equipment. The fixing mechanism four includes positioning holes 7 opened at the edge of the programmer body 1 and fixing holes 8 opened at the four corners of the programmer body 1. By installing the positioning holes 7 on the positioning parts of the automated equipment and then fixing the fixing holes 8 on the automated equipment with fasteners, the programmer body 1 can be accurately installed on the automated equipment, realizing the automated operation of the chip programming process, greatly improving programming efficiency, reducing errors that may be caused by manual operation, and effectively improving production consistency and product quality.
[0041] like Figure 6 As shown, the programmer body 1 is provided with several parallel mounting bases. The parallel mounting bases on the programmer body 1 are used to connect multiple external programming bases 9 or internal programming bases 10 at the same time, or to connect a part of the external programming bases 9 and another part of the internal programming bases 10.
[0042] like Figure 3 and 4 As shown, the programmer body 1 has four side-by-side mounting brackets, which can also be configured in other numbers or arrangements. Four external programming sockets 9, four internal programming sockets 10, two internal programming sockets 10, and two external programming sockets 9 can be connected simultaneously. The internal programming sockets 10 and external programming sockets 9 can be freely combined as needed. This design greatly enhances the programmer's expandability. These side-by-side mounting brackets can simultaneously connect multiple external programming sockets 9 or internal programming sockets 10, enabling simultaneous programming of multiple chips and significantly improving programming efficiency. Alternatively, some external programming sockets 9 can be connected while others are connected to internal programming sockets 10, meeting diverse programming needs in different production scenarios and further enhancing the programmer's flexibility and practicality in practical applications.
[0043] Installation process: When the programmer is installed in the automated equipment, it is installed onto the corresponding positioning pin of the automated equipment through positioning hole 27, and then fixed with screws through fixing hole 28.
[0044] The external programming socket 9 has three positioning holes and one through hole on the front. The external programming socket 9 is installed on the boss 3 and the groove 2. It is positioned by the positioning pin installed in the positioning hole 5 and the positioning hole 3 on the front of the external programming socket 9. The external programming socket 9 is fixed from the through hole 1 on the front of the external programming socket 9 to the fixing hole 6 using screws. The external dedicated programming signal is used for programming.
[0045] The built-in programming socket 10 has a positioning hole four and a through hole two on the front and a connector 4 on the back. The built-in programming socket 10 is installed on the boss 3 and the groove 2. It is positioned by the positioning pin installed in the positioning hole one 5 and the positioning hole four on the front of the built-in programming socket 10, and connected to the connector 4 on the front of the programmer. It is fixed to the fixing hole one 6 from the through hole two on the front of the built-in programming socket 10 with screws. The programmer of this invention is used to program the signal.
[0046] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A chip burner device comprising a burner body (1), characterized in that: The programmer body (1) is provided with a mounting base, and the mounting base is provided with a connector (4). It also includes an external programming socket (9), which is detachably mounted on the mounting base of the programmer body (1), and a connector 1 connected to the connector (4) is mounted on the back of the external programming socket (9). It also includes a built-in burner socket (10), which is detachably mounted on the mounting base of the burner body (1), and a connector 2 connected to the connector (4) is mounted on the back of the built-in burner socket (10).
2. The chip burner device of claim 1, wherein: The mounting base includes a groove (2) formed on the programmer body (1), a boss (3) is provided between the grooves (2), and the connector (4) is disposed in the groove (2); The external burner socket (9) is detachably installed on the groove (2) and boss (3) of the burner body (1); the internal burner socket (10) is detachably installed on the groove (2) and boss (3) of the burner body (1).
3. The chip burner device of claim 2, wherein: The programmer body (1) is provided with a fixing mechanism one, the external programming socket (9) is provided with a fixing mechanism two, and the internal programming socket (10) is provided with a fixing mechanism three; The second fixing mechanism matches the first fixing mechanism and fixes the external programming socket (9) on the groove (2) and boss (3) of the programmer body (1); The fixing mechanism three matches the fixing mechanism one and fixes the built-in burning socket (10) on the groove (2) and boss (3) of the burning device body (1).
4. The chip burner device of claim 3, wherein: The fixing mechanism includes a positioning hole (5) and a fixing hole (6) opened on the burner body (1) and located at the edge of the groove (2); The second fixing mechanism includes a third positioning hole and a first through hole, which are provided on the external burning socket (9) and match the first positioning hole (5) and the first fixing hole (6). The first positioning hole (5) and the third positioning hole are used for positioning by inserting a positioning component. The first fixing hole (6) and the first through hole are used for fixing by fasteners. The fixing mechanism three includes a positioning hole four and a through hole two that are opened on the built-in burning socket (10) and match the positioning hole one (5) and the fixing hole one (6). The positioning hole one (5) and the positioning hole four are positioned by inserting a positioning member, and the fixing hole one (6) and the through hole two are fixed by fasteners.
5. The chip burner device of claim 1, wherein: The programmer body (1) is provided with a fixing mechanism four, which is used to install the programmer body (1) on an automated device.
6. The chip burner device of claim 5, wherein: The fixing mechanism four includes positioning hole two (7) opened at the edge of the burner body (1) and fixing hole two (8) opened at the four corners of the burner body (1). The second positioning hole (7) is installed on the positioning component of the automated equipment, and the second fixing hole (8) is fixed to the automated equipment by fasteners.
7. The chip burner device of claim 1, wherein: The burner body (1) is provided with several parallel mounting seats, which are used to simultaneously connect multiple external burner seats (9) or built-in burner seats (10), or to connect a part of external burner seats (9) and another part of built-in burner seats (10).