Continuous burning equipment for PCB (Printed Circuit Board)
By introducing components such as a main programming module, slave programming modules, programming channels, and relays into the programming device, efficient and rapid automated testing of multiple programs on the PCB board is achieved, solving the problem of cumbersome programming steps in existing equipment and realizing the stability and efficiency of continuous programming and testing.
Patent Information
- Application Number
- CN202423217099.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-12-25
AI Technical Summary
Existing programming equipment involves cumbersome and discontinuous steps when programming multiple programs onto a PCB board, making continuous programming impossible and failing to complete functional testing in one go.
The programmer employs a master programming module and a slave programming module, combined with multiple programming channels and relays, and is controlled by an industrial computer to achieve continuous programming of multiple programs on the PCB board. It is also equipped with a power supply module, a Bluetooth programming module, a display, and sockets to improve stability and testing efficiency.
It enables efficient and rapid continuous programming and functional testing of multiple programs on PCB boards, improving the stability of the programming process and the efficiency of testing.
Smart Images

Figure CN223770627U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of PCB board programming equipment, specifically relating to a continuous programming device for PCB boards. Background Technology
[0002] PCBs can be classified into single-sided boards, double-sided boards, four-layer boards, six-layer boards, and other multi-layer boards according to the number of circuit board layers. In the production process of PCBs, it is usually necessary to burn many programs into the chips on the PCB. However, the current burning equipment is cumbersome and discontinuous when burning multiple programs into the PCB, and cannot complete continuous burning. Furthermore, it cannot complete all functional tests on the PCB after burning multiple programs in one go. Utility Model Content
[0003] The purpose of this invention is to provide a continuous programming device for PCB boards. The programmer in the device can simultaneously support both master module programming and slave module programming, and can continuously complete the programming of multiple programs on the PCB board.
[0004] To achieve the above-mentioned objectives, the technical solution adopted by this utility model is as follows:
[0005] A continuous programming device for PCB boards includes a programming platform for programming the PCB board; the programming platform includes a programmer and multiple relays; the programmer includes a master programming module, a slave programming module, and multiple programming channels; one end of each programming channel is connected to the master programming module or the slave programming module; a first connection terminal of each relay is connected to the other end of several programming channels; a second connection terminal of each relay is connected to the PCB board.
[0006] This utility model discloses a continuous programming device for PCB boards. By using a programmer that includes a main programming module and a slave programming module, it can simultaneously complete the programming of the main module and the slave module of the PCB board. The programmer is also equipped with multiple programming channels and multiple relays that can work together to efficiently and quickly complete the continuous programming of multiple programs on the PCB board.
[0007] Preferably, the programming platform further includes an industrial computer; the industrial computer includes a first interface and a second interface; the industrial computer is connected to the programmer through the first interface; the industrial computer is connected to the relay through the second interface.
[0008] This utility model discloses a continuous programming device for PCB boards. By configuring an industrial control computer to include a first interface and a second interface, the industrial control computer can connect to the programmer through the first interface and to a relay through the second interface, thereby enabling the industrial control computer to control the programmer and the relay.
[0009] Preferably, the programming platform further includes a power supply module; the industrial computer further includes a third interface; the industrial computer is connected to one end of the power supply module through the third interface; and the other end of the power supply module is connected to the third connection terminal of the relay.
[0010] This utility model discloses a continuous programming device for PCB boards. By setting the industrial control computer to include a third interface and connecting the industrial control computer to the power supply module through the third interface, the power supply module can supply power to the relays under the control of the industrial control computer.
[0011] Preferably, the programming platform further includes a Bluetooth programming module; the industrial computer further includes a fourth interface; the industrial computer is connected to one end of the Bluetooth programming module through the fourth interface; the other end of the Bluetooth programming module is connected to the fourth connection terminal of the relay.
[0012] This utility model discloses a continuous programming device for PCB boards. By setting up a Bluetooth programming module, and connecting the Bluetooth programming module to the fourth interface of an industrial control computer and a relay, the Bluetooth programming module can program Bluetooth-related programs into the PCB board under the control of the industrial control computer.
[0013] Preferably, the programming platform further includes a display; the industrial computer further includes a fifth interface; the industrial computer is connected to the display through the fifth interface.
[0014] This utility model discloses a continuous PCB programming device, which includes a display and an industrial control computer that controls the display via a fifth interface, enabling the display to show the PCB programming status.
[0015] Preferably, the programming platform further includes multiple sockets; the second connection terminal of each relay is connected to the PCB board through several of the sockets.
[0016] This utility model discloses a continuous programming device for PCB boards, which ensures a stable connection between the PCB board and the programming platform by setting a socket.
[0017] Preferably, each of the programming channels is equipped with a mode switcher.
[0018] This utility model discloses a continuous programming device for PCB boards. By setting a mode switch in the programming channel, the programming process can meet the signal transmission requirements of multiple protocols.
[0019] Preferably, the plurality of programming channels includes a first programming channel, a second programming channel, a third programming channel, and a fourth programming channel; the plurality of relays includes a first relay and a second relay; the first programming channel and the second programming channel are both connected to the first relay; the third programming channel and the fourth programming channel are both connected to the second relay.
[0020] This utility model discloses a continuous PCB programming device. By setting four programming channels and two relays, with each relay connecting to the same number of channels, the stability of the PCB programming process can be guaranteed.
[0021] Preferably, the plurality of sockets includes a first socket, a second socket, a third socket, and a fourth socket; the PCB board includes a first test interface, a second test interface, a third test interface, and a fourth test interface; the first relay is connected to the first socket and the first test interface; the first relay is connected to the second socket and the second test interface; the second relay is connected to the third socket and the third test interface; and the second relay is connected to the fourth socket and the fourth test interface.
[0022] This utility model discloses a continuous programming device for PCB boards. By setting four sockets corresponding to the four test interfaces of the PCB board, and each test interface is connected to a relay through a socket, the testing efficiency and wiring stability of the PCB board can be improved.
[0023] Preferably, the continuous programming device further includes a PLC control unit, a serial port output control unit, a sensor alarm unit, and an online switching unit.
[0024] This utility model discloses a continuous PCB programming device. By setting up a PLC control unit, a serial port output control unit, a sensor alarm unit, and an online switching unit, it enables users to perform PLC control, serial port output control, and online switching control on the programming platform, and also enables the programming platform to have a sensor alarm function.
[0025] Beneficial effects:
[0026] This utility model discloses a continuous programming device for PCB boards. By using a programmer that includes a main programming module and a slave programming module, it can simultaneously complete the programming of the main module and the slave module of the PCB board. The programmer is also equipped with multiple programming channels and multiple relays that can work together to efficiently and quickly complete the continuous programming of multiple programs on the PCB board. Attached Figure Description
[0027] Figure 1 The diagram shown is a circuit schematic of the programming platform of a continuous programming device for PCB boards according to an embodiment.
[0028] Figure 2 The diagram shows the external structure of the programming platform of a continuous programming device for PCB boards according to an embodiment.
[0029] Figure 3 As shown Figure 2 Top view;
[0030] Figure 4 As shown Figure 3 Internal structure diagram.
[0031] Figure Labels
[0032] 10. Monitor; 20. Industrial PC; 21. Fifth Interface; 22. First Interface; 23. Third Interface; 24. Fourth Interface; 25. Second Interface; 30. Programmer; 31. First Programming Channel; 32. Second Programming Channel; 33. Third Programming Channel; 34. Fourth Programming Channel; 41. Power Supply Module; 42. Bluetooth Programming Module; 51. First Relay; 52. Second Relay; 61. First Socket; 62. Second Socket; 63. Third Socket; 64. Fourth Socket; 70. PCB Board; 100. Programming Platform; 101. PLC Control Unit. Detailed Implementation
[0033] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the specific implementation methods of this utility model will be described below with reference to the accompanying drawings. Obviously, the drawings described below are merely some embodiments of this utility model. For those skilled in the art, other drawings and other implementation methods can be obtained based on these drawings without any creative effort.
[0034] The technical solution of this utility model will be described in detail below with specific embodiments.
[0035] Example 1
[0036] like Figures 1-4 As shown, a continuous programming device for a PCB board in this embodiment includes a programming platform 100 for programming the PCB board; the programming platform 100 includes a programmer 30 and a plurality of relays; the programmer 30 includes a master programming module, a slave programming module, and a plurality of programming channels; one end of each programming channel is connected to the master programming module or the slave programming module; the first connection end of each relay is connected to the other end of a plurality of programming channels; the second connection end of each relay is connected to the PCB board 70.
[0037] The main programming module of this invention can program the main program onto the PCB board, and the slave programming module can program all other programs except the main program onto the PCB board. In other words, this invention can complete the programming of all programs onto the PCB board through the main programming module and the slave programming module.
[0038] Preferably, the programming platform 100 further includes an industrial control computer 20; the industrial control computer 20 includes a first interface 22 and a second interface 25; the industrial control computer 20 is connected to the programmer 30 through the first interface 22; the industrial control computer 20 is connected to the relay through the second interface 25.
[0039] Preferably, the programming platform 100 further includes a power supply module 41; the industrial computer 20 further includes a third interface 23; the industrial computer 20 is connected to one end of the power supply module 41 through the third interface 23; the other end of the power supply module 41 is connected to the third connection terminal of the relay.
[0040] Preferably, the programming platform 100 further includes a Bluetooth programming module 42; the industrial computer 20 further includes a fourth interface 24; the industrial computer 20 is connected to one end of the Bluetooth programming module 42 through the fourth interface 24; the other end of the Bluetooth programming module 42 is connected to the fourth connection terminal of the relay.
[0041] Preferably, the programming platform 100 further includes a display 10; the industrial computer 20 further includes a fifth interface 21; the industrial computer 20 is connected to the display 10 through the fifth interface 21.
[0042] Preferably, the programming platform 100 further includes multiple sockets; the second connection terminal of each relay is connected to the PCB board 70 through several of the sockets.
[0043] Preferably, each of the programming channels is equipped with a mode switcher.
[0044] Preferably, the continuous programming device further includes a PLC control unit 101, a serial port output control unit, a sensor alarm unit, and an online switching unit.
[0045] Specifically, the continuous programming device for PCB boards in this embodiment can simultaneously complete the programming of the main module and the programming of the slave module of the PCB board by using a programmer 30 including a main programming module and a slave programming module. The programmer 30 is also provided with multiple programming channels and multiple relays that can work together to efficiently and quickly complete the continuous programming of multiple programs on the PCB board.
[0046] Specifically, in this embodiment, a continuous programming device for PCB boards is configured to include an industrial control computer 20 with a first interface 22 and a second interface 25. This allows the industrial control computer 20 to connect to the programmer 30 via the first interface 22 and to the relay via the second interface 25, thereby enabling the industrial control computer 20 to control the programmer 30 and the relay.
[0047] Specifically, in this embodiment, a continuous programming device for PCB boards is configured to include a third interface 23, and the industrial control computer 20 is connected to the power supply module 41 through the third interface 23, so that the power supply module 41 can supply power to the relay under the control of the industrial control computer 20.
[0048] Specifically, in this embodiment, a continuous programming device for a PCB board is provided with a Bluetooth programming module 42, which is connected to the fourth interface 24 of the industrial control computer 20 and a relay, so that the Bluetooth programming module 42 can program Bluetooth-related programs into the PCB board 70 under the control of the industrial control computer 20.
[0049] Specifically, in this embodiment, a continuous PCB programming device is provided with a display 10, and an industrial control computer 20 controls the display 10 through a fifth interface 21, so that the display 10 can display the PCB programming status.
[0050] Specifically, in this embodiment, a continuous programming device for a PCB board can ensure a stable connection between the PCB board and the programming platform 100 by setting a socket.
[0051] Specifically, in this embodiment, a continuous programming device for PCB boards enables the programming process to be compatible with the signal transmission requirements of multiple protocols by setting a mode switch in the programming channel.
[0052] Specifically, the continuous programming device for PCB boards in this embodiment, by setting up a PLC control unit 101, a serial port output control unit, a sensor alarm unit, and an online switching unit, enables users to control the programming platform 100 via touch screen, serial port output, and online switching, and also enables the programming platform 100 to have a sensor alarm function.
[0053] Specifically, in this embodiment, the sensing alarm unit is a grating sensing alarm safety device, and the online switching unit can switch the programming platform 100 to stand-alone mode or online mode.
[0054] Specifically, in this embodiment, a continuous PCB programming device fixes the lower mold frame of the PCB board onto the programming platform 100 and fixes the upper mold plate of the PCB board with screws when programming the PCB board. This fixing method facilitates the replacement of the PCB board 70.
[0055] Specifically, all the sockets in this embodiment are 19-pin aviation sockets, which can improve the contact stability of the PCB board and ensure that the PCB board will not loosen during testing. The 19-pin aviation socket is existing technology and will not be described in detail here.
[0056] Example 2
[0057] This embodiment provides another implementation of the continuous programming device for PCB boards according to Embodiment 1.
[0058] In this embodiment, the plurality of programming channels include a first programming channel 31, a second programming channel 32, a third programming channel 33, and a fourth programming channel 34; the plurality of relays include a first relay 51 and a second relay 52; the first programming channel 31 and the second programming channel 32 are both connected to the first relay 51; the third programming channel 33 and the fourth programming channel 34 are both connected to the second relay 52.
[0059] In this embodiment, the plurality of sockets includes a first socket 61, a second socket 62, a third socket 63, and a fourth socket 64; the PCB board includes a first test interface, a second test interface, a third test interface, and a fourth test interface; the first relay 51 is connected to the first test interface via the first socket 61; the first relay 51 is connected to the second test interface via the second socket 62; the second relay 52 is connected to the third test interface via the third socket 63; and the second relay 52 is connected to the fourth test interface via the fourth socket 64.
[0060] Specifically, the continuous programming device for PCB boards in this embodiment ensures the stability of the PCB programming process by setting four programming channels and two relays, with each relay connecting to the same number of channels.
[0061] Specifically, the continuous programming device for PCB boards in this embodiment improves the testing efficiency and wiring stability of the PCB board by setting four sockets corresponding to the four test interfaces of the PCB board, and each test interface is connected to a relay through a socket.
[0062] Specifically, in this embodiment, the first interface 22 of the industrial control computer 20 is a network port, the second interface 25 is a COM1 port, the third interface 23 is a COM2 port, the fourth interface 24 is a USB port, and the fifth interface 21 is a VGA interface.
[0063] Specifically, the programmer 30 in this embodiment is a P800 programmer 30, which is existing technology and will not be described in detail here.
[0064] Specifically, in this embodiment, both the first relay 51 and the second relay 52 are 32-channel relays.
[0065] Specifically, in this embodiment, the power supply module 41 is a programmable power supply.
[0066] Furthermore, in this embodiment, the industrial computer 20 is connected to the monitor 10 via a VGA interface, the industrial computer 20 is connected to the P800 programmer 30 via a network port, the industrial computer 20 is connected to the programmable power supply via a COM1 port, the industrial computer 20 is connected to the Bluetooth programming module 42 via a USB port, and the industrial computer 20 is connected to the second relay 52 via a COM2 port.
[0067] Furthermore, in this embodiment, the first programming channel 31 of the P800 programmer 30 is connected to the first relay 51, the second programming channel 32 of the P800 programmer 30 is connected to the first relay 51, the third programming channel 33 of the P800 programmer 30 is connected to the second relay 52, and the fourth programming channel 34 of the P800 programmer 30 is connected to the second relay 52.
[0068] Furthermore, in this embodiment, the programmable power supply is connected to the second relay 52, and the Bluetooth programming module 42 is connected to the second relay 52.
[0069] The embodiments of the continuous programming device for PCB boards provided by this utility model have been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of this utility model. The descriptions of the embodiments above are only for the purpose of helping to understand the core ideas of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made to this utility model without departing from the principles of this utility model, and these improvements and modifications also fall within the protection scope of the claims of this utility model.
Claims
1. A continuous burning device of a PCB board, characterized in that, The application relates to a burning platform (100) for burning PCB (70), which comprises a burner (30), a plurality of relays, wherein the burner (30) comprises a master burning module, a slave burning module and a plurality of burning channels; one end of each burning channel is connected with the master burning module or the slave burning module; the first connection end of each relay is connected with the other end of several burning channels; and the second connection end of each relay is connected with the PCB (70).
2. The continuous burn-in apparatus according to claim 1, wherein The burning platform (100) further comprises an industrial computer (20), wherein the industrial computer (20) comprises a first interface (22) and a second interface (25); the industrial computer (20) is connected with the burner (30) through the first interface (22); and the industrial computer (20) is connected with the relays through the second interface (25).
3. The continuous burn-in apparatus according to claim 2, wherein The burning platform (100) further comprises a power supply module (41); the industrial computer (20) further comprises a third interface (23); the industrial computer (20) is connected with one end of the power supply module (41) through the third interface (23); and the other end of the power supply module (41) is connected with the third connection end of the relays.
4. The continuous burn-in apparatus according to claim 2, wherein The burning platform (100) further comprises a Bluetooth burning module (42); the industrial computer (20) further comprises a fourth interface (24); the industrial computer (20) is connected with one end of the Bluetooth burning module (42) through the fourth interface (24); and the other end of the Bluetooth burning module (42) is connected with the fourth connection end of the relays.
5. The continuous burn-in apparatus of claim 2, wherein The burning platform (100) further comprises a display (10); the industrial computer (20) further comprises a fifth interface (21); and the industrial computer (20) is connected with the display (10) through the fifth interface (21).
6. The continuous burn-in apparatus of claim 1, wherein The burning platform (100) further comprises a plurality of sockets; the second connection end of each relay is connected with the PCB (70) through several sockets.
7. The continuous burn-in apparatus of claim 1, wherein Each burning channel is provided with a mode switcher.
8. The continuous burn-in apparatus of claim 6, wherein The plurality of burning channels comprise a first burning channel (31), a second burning channel (32), a third burning channel (33) and a fourth burning channel (34); the plurality of relays comprise a first relay (51) and a second relay (52); the first burning channel (31) and the second burning channel (32) are connected with the first relay (51); and the third burning channel (33) and the fourth burning channel (34) are connected with the second relay (52).
9. The continuous burn-in apparatus of claim 8, wherein The plurality of sockets comprises a first socket (61), a second socket (62), a third socket (63), and a fourth socket (64); the PCB board (70) comprises a first test interface, a second test interface, a third test interface, and a fourth test interface; the first relay (51) is connected through the first socket (61) and the first test interface; the first relay (51) is connected through the second socket (62) and the second test interface; the second relay (52) is connected through the third socket (63) and the third test interface; and the second relay (52) is connected through the fourth socket (64) and the fourth test interface.
10. The continuous burning apparatus according to any one of claims 1 to 9, characterized by The continuous burning equipment further comprises a PLC control unit (101), a serial port output control unit, an induction alarm unit, and an online switching unit.