Instrument controller program burning jig

By introducing components such as copper plates, heat conduction plates, heat sink fins, turbofans and water-cooled circulation pumps into the instrument controller program burning fixture, the problem of poor heat dissipation in traditional instrument controller burning fixtures is solved, and efficient heat dissipation and a stable program burning process are achieved.

CN223390109UActive Publication Date: 2025-09-26LIANDING VIDEO TECH (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202422951899.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2025-09-26
Estimated Expiration
2034-12-02

AI Technical Summary

Technical Problem

Traditional instrument controller program burning fixtures have poor heat dissipation, resulting in heat accumulation, affecting burning efficiency and potentially damaging components.

Method used

An instrument controller program burning fixture was designed, which includes a copper plate, a heat conducting plate, heat sink fins, a turbofan, a water-cooled circulation pump, and a fan mechanism. Efficient heat dissipation is achieved through coolant circulation and air convection. The heat dissipation components and the burning components are combined to ensure effective conduction and discharge of heat.

Benefits of technology

It significantly improves the heat dissipation efficiency of the instrument controller, prevents equipment damage caused by overtemperature, and improves the efficiency and safety of program burning.

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Abstract

The utility model provides an instrument controller program burning jig, which belongs to the technical field of burning jigs, mainly aims at solving the problem that the heat dissipation effect is poor when the conventional burning jig is used for carrying out program burning on an instrument controller, and adopts the technical scheme that the instrument controller program burning jig comprises a base, a shell is arranged at the top of the base, and a burning cavity is formed in the shell; a cooling cavity communicated with the burning cavity is formed in the shell, a copper plate is arranged in the burning cavity, an instrument controller is arranged at the top of the copper plate, a heat dissipation assembly is arranged at the bottom of the copper plate, two fan mechanisms are arranged on the two sides of the burning cavity respectively, a water-cooling circulating pump is arranged at the top of the base, a console is arranged at the top of the base, and a burning assembly is arranged in the console; according to the device, through the arrangement of the heat dissipation assembly, cooling and heat dissipation are carried out on the instrument controller which is being subjected to program burning, through the arrangement of the fan mechanism, hot air in the burning cavity is exhausted, and the heat dissipation effect is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of burning fixtures, and more specifically, relates to a program burning fixture for an instrument controller. Background Art

[0002] Program burning is a key step in the production of various electronic devices and instruments. This involves loading pre-written software into the device's memory to ensure proper operation and stable performance. For instrument controllers, the realization of their functions depends on the correct burning of internal programs, which directly impacts their quality.

[0003] For example, the Chinese utility model patent with patent number 202322671724.6 provides a burning fixture. The device is equipped with a moving device, a spring ball head plunger, a positioning groove, a clamp, a moving device and other components. When in use, the printed circuit board can be moved manually or automatically through the moving device. Through the cooperation of the spring ball head plunger and the positioning groove, it can be quickly moved to the next burning position. By pressing the clamp, the printed circuit board can be coupled with the burning needle to complete the burning, which is convenient to operate.

[0004] Currently, traditional burning fixtures often have poor heat dissipation when burning programs for instrument controllers. Heat will accumulate in the device, affecting the efficiency of instrument controller program burning. When the temperature inside the device is too high, it may even cause damage to components within the instrument controller. Utility Model Content

[0005] In order to solve the above technical problems, the present invention provides an instrument controller program burning fixture to solve the technical problem in the prior art that the traditional instrument controller program burning fixture has a relatively poor heat dissipation effect when burning the program.

[0006] The purpose and effect of the instrument controller program burning fixture of the utility model are achieved by the following specific technical means:

[0007] A tool for burning program of an instrument controller comprises a base, a shell provided on the top of the base, a burning chamber defined in the shell, a cooling chamber connected to the burning chamber defined in the shell, a copper plate provided in the burning chamber, an instrument controller provided on the top of the copper plate, a heat dissipation component provided on the bottom of the copper plate, two sets of fan mechanisms provided on both sides of the burning chamber, a water-cooling circulation pump provided on the top of the base, a control console provided on the top of the base, and a burning component provided in the console.

[0008] According to a preferred embodiment, the bottom of the copper plate is connected to the outer shell by screws, a heat conducting plate is provided at the bottom of the copper plate, the heat dissipation assembly includes multiple groups of heat dissipation fins, multiple groups of heat dissipation fins are provided at the bottom of the heat conducting plate, the bottoms of the multiple groups of heat dissipation fins are all clamped in the outer shell, and multiple groups of heat dissipation holes are opened on one side of the multiple groups of heat dissipation fins.

[0009] According to a preferred embodiment, the heat dissipation assembly also includes two groups of turbofans, both groups of turbofans are arranged in the cooling chamber, two groups of third waterproof rings are respectively provided at one end of the two groups of turbofans, two groups of protective shells are provided on the top of the base, two groups of rotating motors are provided in the two groups of protective shells, the shaft ends of the two groups of rotating motors are respectively clamped in the two groups of turbofans, and two groups of protective doors are respectively provided at one end of the two groups of protective shells.

[0010] According to a preferred embodiment, two groups of one-way valves are respectively provided on both sides of the outer shell, and two groups of second waterproof rings are respectively provided on both sides of the outer shell. One side of the two groups of second waterproof rings is respectively connected to the two groups of one-way valves, and the two groups of one-way valves are connected to one side of the water-cooling circulation pump through a soft water pipe.

[0011] According to a preferred embodiment, a burning slot is provided on one side of the instrument controller, the burning assembly includes a receiving part, the receiving part is fixedly connected to the burning slot, a cylinder is provided in the console, the pneumatic rod of the cylinder is connected to two groups of connecting columns, one end of the two groups of connecting columns is provided with the same group of burning parts, the top of the burning part is connected to the receiving part, and the burning part is connected to the instrument controller via a data line.

[0012] According to a preferred embodiment, two sets of second dustproof nets are connected to both sides of the housing by screws, and the top of the housing is connected to the first dustproof net by screws.

[0013] According to a preferred embodiment, a first waterproof ring is fixedly connected to the circumference of the copper plate, four groups of fixing parts for fixing the instrument controller are provided on the top of the copper plate, and rubber pads are provided on one side of the four groups of fixing parts. An inspection door is provided at the opening of the burning chamber, and an inspection handle is provided on one side of the inspection door.

[0014] According to a preferred embodiment, four groups of legs are provided at the bottom of the console, and one side of the console is connected to the housing.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] 1. Through the setting of the heat dissipation component, when using the device, coolant is injected into the cooling chamber, and the heat of the instrument controller is more efficiently transferred to the heat dissipation fins through the cooperation of the heat conduction plate and the copper plate. The heat dissipation through-holes increase the contact area between the heat dissipation fins and the coolant. Through the cooperation of the rotating motor and the turbofan, the flow speed of the coolant in the cooling chamber is accelerated. When the flow rate of the coolant is accelerated, its convection heat transfer coefficient will increase significantly. Through the setting of the one-way valve, water hose and water-cooled circulation pump, the coolant circulates in the water hose, which solves the problem that the traditional burning fixture often has poor heat dissipation effect when burning the program of the instrument controller, and heat will accumulate in the device, affecting the efficiency of the instrument controller program burning.

[0017] 2. With the programming component, users can control the programming component through the console. The pneumatic rod of the cylinder pushes the programming component into the programming slot, connecting it to the receiving component. Data is then transmitted via the data cable connected to the programming component, allowing program programming to be performed. This simplifies operation and improves convenience. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a structural diagram of an instrument controller program burning fixture of the utility model;

[0019] Figure 2 This is an exploded view of an instrument controller program burning fixture of the utility model;

[0020] Figure 3 This is a structural diagram of the shell of an instrument controller program burning fixture of the utility model;

[0021] Figure 4 This is a schematic diagram of the structure of the disassembled heat dissipation component in an instrument controller program burning fixture of the present utility model;

[0022] Figure 5 This is a cross-sectional view of the housing and the rotating motor in an instrument controller program burning fixture of the present invention;

[0023] Figure 6 This is a structural diagram of the heat sink fins in an instrument controller program burning fixture of the utility model;

[0024] Figure 7 This is a structural diagram of a turbofan, a rotating motor and a third waterproof ring in an instrument controller program burning fixture of the utility model;

[0025] Figure 8 This is a structural diagram of a soft water pipe, a one-way valve and a water-cooling circulation pump in an instrument controller program burning fixture of the utility model;

[0026] Figure 9This is a schematic diagram of the structure of an instrument controller program burning fixture after disassembly;

[0027] Figure 10 The utility model is a structural diagram of a burning component in an instrument controller program burning fixture.

[0028] In the figure, the corresponding relationship between the component names and the drawing numbers is as follows:

[0029] 10. Base; 11. Housing; 12. Burning chamber; 120. Copper plate; 121. Instrument controller; 122. First waterproof ring; 123. Fixing piece; 124. Rubber pad; 125. Inspection door; 126. Inspection handle; 127. First dust screen; 128. Second dust screen; 129. Fan mechanism; 13. Cooling chamber; 130. Heat conducting plate; 131. Heat dissipation fins; 132. Heat dissipation holes; 133. Turbofan; 134. Rotating motor; 135. Third waterproof ring; 14. One-way valve; 15. Second waterproof ring; 16. Soft water pipe; 17. Water-cooled circulating pump; 18. Protective shell; 19. Protective door; 20. Control console; 200. Burning slot; 201. Receiver; 202. Burning component; 203. Data cable; 204. Connecting column; 205. Cylinder; 21. Support foot DETAILED DESCRIPTION

[0030] The following embodiments of the present invention are described in further detail with reference to the accompanying drawings and examples. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.

[0031] Example:

[0032] As attached Figure 1 To the attached Figure 10 As shown:

[0033] The utility model provides an instrument controller program burning fixture, including a base 10, which serves as a basic support for the device. A shell 11 is provided on the top of the base 10, and a burning chamber 12 is provided in the shell 11. A cooling chamber 13 connected to the burning chamber 12 is provided in the shell 11, and the cooling chamber 13 is used to inject and store cooling liquid. A copper plate 120 is provided in the burning chamber 12, and the copper plate 120 is used to place and fix an instrument controller 121 and separate the burning chamber 12 from the cooling chamber 13. A first waterproof ring 122 is fixedly connected to the circumference of the copper plate 120, and the first waterproof ring 122 prevents the cooling liquid in the cooling chamber 13 from seeping into the burning chamber 12, thereby avoiding damage to the instrument controller 121. The instrument controller 121 is provided on the top of the copper plate 120, and the bottom of the copper plate 120 is connected to the shell 11 by screws. The heat dissipation component at the bottom of the copper plate 120 ensures that the heat generated during the burning process can be effectively dissipated, thereby avoiding equipment damage or burning failure caused by excessive temperature.

[0034] Among them, see Figures 2 to 10 A heat conducting plate 130 is provided at the bottom of the copper plate 120. The heat dissipation assembly includes multiple groups of heat dissipation fins 131 and two groups of turbofans 133. Multiple groups of heat dissipation fins 131 are provided at the bottom of the heat conducting plate 130. The bottoms of the multiple groups of heat dissipation fins 131 are all stuck in the shell 11. Multiple groups of heat dissipation holes 132 are provided on one side of the multiple groups of heat dissipation fins 131. The copper plate 120 conducts the heat generated when the instrument controller 121 is program burned to the heat conducting plate 130, and then conducts the heat to the heat dissipation fins 131 connected thereto through the heat conducting plate 130. The heat dissipation fins 131 are irregular in shape, and multiple groups of heat dissipation holes 132 are provided on the heat dissipation fins 131, which can effectively increase the contact area with the coolant. By increasing the heat dissipation area, the heat dissipation effect can be significantly improved, thereby achieving better heat dissipation.

[0035] Two sets of turbofans 133 are both arranged in the cooling chamber 13. The blades of these turbofans 133 are in direct contact with the coolant. Two sets of protective shells 18 are provided on the top of the base 10. Two sets of rotating motors 134 are provided in the two sets of protective shells 18. The protective shells 18 effectively protect the rotating motors 134, thereby improving safety. The shaft ends of the rotating motors 134 are respectively clamped in the two sets of turbofans 133 to provide power support for the turbofans 133. A protective door 19 is provided at one end of the protective shell 18 to facilitate the inspection and maintenance of the equipment. Two sets of third waterproof rings 135 are respectively provided at one end of the two sets of turbofans 133. These third waterproof rings 135 effectively prevent the coolant in the cooling chamber 13 from directly contacting the rotating motor 134, thereby avoiding damage to the rotating motor 134. When the rotating motor 134 drives the turbofan 133 to rotate, the flow rate of the coolant in the cooling chamber 13 will increase. When the flow rate of the coolant is accelerated, its convective heat transfer coefficient will increase significantly, thereby improving the heat dissipation efficiency.

[0036] Two sets of one-way valves 14 are respectively fixed on both sides of the shell 11. The two sets of one-way valves 14 are connected to one side of the water-cooling circulation pump 17 through a soft water pipe 16 to ensure the one-way circulation of the coolant. Two sets of second waterproof rings 15 are also respectively fixed on both sides of the shell 11 to ensure that the coolant does not leak out. The water-cooling circulation pump 17 is set on the top of the base 10. The main function of the water-cooling circulation pump 17 is to pump the coolant out of the cooling chamber 13, and then return it to the cooling chamber 13 after cooling treatment. The circulating coolant effectively reduces the temperature in the burning chamber 12 to prevent the device from being damaged due to overheating, and also helps to improve the program burning efficiency of the device.

[0037] Two sets of fan mechanisms 129 are provided on both sides of the burning chamber 12. The two sets of fan mechanisms 129 are activated when the instrument controller 121 is performing program burning. The two sets of fan mechanisms 129 increase air circulation in the burning chamber 12, forming air convection, so that hot air is discharged upward, improving the heat dissipation effect. Two sets of second dustproof nets 128 are connected to both sides of the outer shell 11 by screws, and a first dustproof net 127 is connected to the top of the outer shell 11 by screws to prevent dust and debris from entering the interior of the device and ensure air circulation in the burning chamber 12.

[0038] A burning slot 200 is provided on one side of the instrument controller 121. The burning slot 200 is used to install a receiving component 201 and insert a burning component 202. The burning assembly includes a receiving component 201. The receiving component 201 is fixedly connected to the burning slot 200. The receiving component 201 is used to receive program data and transmit it to the instrument controller 121. A cylinder 205 is provided in the console 20. The pneumatic rod of the cylinder 205 is connected to two groups of connecting columns 204. These connecting columns 204 are used to fixedly connect the burning component 202 and the pneumatic rod of the cylinder 205. The same group of burning components 202 are provided at one end of the two groups of connecting columns 204. The burning component 202 is connected to the instrument controller 121 via a data line 203.

[0039] Four sets of fixing parts 123 for fixing the instrument controller 121 are provided on the top of the copper plate 120. Rubber pads 124 are provided on one side of the four sets of fixing parts 123. The rubber pads 124 can increase friction and reduce wear on the instrument controller 121 when it is fixed. An inspection door 125 is provided at the opening of the burning chamber 12. An inspection handle 126 is provided on one side of the inspection door 125. Four sets of support legs 21 are provided at the bottom of the console 20. These support legs 21 are used to support the console 20. One side of the console 20 is connected to the outer shell 11.

[0040] The specific usage and function of this embodiment are as follows: When the device is used, when the user needs to program the instrument controller 121, first inject coolant into the cooling chamber 13, then fix the copper plate 120 and the first waterproof ring 122, place the instrument controller 121 on the copper plate 120 and fix it through the fixing member 123, then connect the device to the power supply, then control the console 20 to start the burning component to burn the program into the instrument controller 121, push the pneumatic rod of the cylinder 205, insert the burning component 202 into the burning slot 200 and connect it to the receiving component 201, and transmit program data through the data line 203, which is longer than The stroke of the cylinder 205 ensures that the data cable 203 will not be torn off during the operation of the cylinder 205. When the instrument controller 121 is performing program burning, the rotating motor 134, the water-cooling circulation pump 17 and the fan mechanism 129 start working. The rotating motor 134 drives the turbofan 133 to rotate to accelerate the flow of the coolant. The water-cooling circulation pump 17 circulates the coolant in the soft water pipe 16. The fan mechanism 129 rotates continuously to accelerate the air circulation, forming air convection and conducting the hot air upward. The copper plate 120, the heat conducting plate 130 and the heat dissipating fins 131 continuously transfer the heat in the instrument controller 121 and the burning chamber 12 to the coolant, thereby improving the heat dissipation effect.

[0041] The embodiments of the present invention are provided for purposes of illustration and description and are not intended to be exhaustive or to limit the present invention to the disclosed forms. Many modifications and variations will be apparent to those skilled in the art. The embodiments are selected and described to better illustrate the principles and practical applications of the present invention and to enable those skilled in the art to understand the present invention and design various embodiments with various modifications suitable for specific applications.

Claims

1. An instrument controller program burning fixture, comprising a base (10), characterized in that: A shell (11) is provided on the top of the base (10), a burning chamber (12) is provided in the shell (11), a cooling chamber (13) connected to the burning chamber (12) is provided in the shell (11), a copper plate (120) is provided in the burning chamber (12), an instrument controller (121) is provided on the top of the copper plate (120), a heat dissipation component is provided at the bottom of the copper plate (120), two groups of fan mechanisms (129) are respectively provided on both sides of the burning chamber (12), a water-cooling circulation pump (17) is provided on the top of the base (10), a control console (20) is provided on the top of the base (10), and a burning component is provided in the control console (20).

2. The instrument controller program burning fixture according to claim 1, characterized in that: The bottom of the copper plate (120) is connected to the housing (11) by screws, a heat conducting plate (130) is provided at the bottom of the copper plate (120), the heat dissipation assembly includes multiple groups of heat dissipation fins (131), multiple groups of heat dissipation fins (131) are provided at the bottom of the heat conducting plate (130), the bottoms of the multiple groups of heat dissipation fins (131) are all clamped in the housing (11), and multiple groups of heat dissipation through holes (132) are provided on one side of the multiple groups of heat dissipation fins (131).

3. The instrument controller program burning fixture according to claim 2, characterized in that: The heat dissipation assembly further comprises two groups of turbofans (133), both of which are arranged in the cooling cavity (13), and two groups of third waterproof rings (135) are respectively arranged at one end of the two groups of turbofans (133). Two groups of protective shells (18) are arranged on the top of the base (10), and two groups of rotating motors (134) are arranged in the two groups of protective shells (18). The shaft ends of the two groups of rotating motors (134) are respectively clamped in the two groups of turbofans (133), and two groups of protective doors (19) are respectively arranged at one end of the two groups of protective shells (18).

4. The instrument controller program burning fixture according to claim 3, characterized in that: Two groups of one-way valves (14) are respectively clamped on both sides of the housing (11), and two groups of second waterproof rings (15) are respectively clamped on both sides of the housing (11). One side of the two groups of second waterproof rings (15) is connected to the two groups of one-way valves (14) respectively, and the two groups of one-way valves (14) are connected to one side of the water-cooling circulation pump (17) through a soft water pipe (16).

5. The instrument controller program burning fixture according to claim 1, characterized in that: A burning slot (200) is provided on one side of the instrument controller (121); the burning component includes a receiving component (201); the receiving component (201) is fixedly connected in the burning slot (200); a cylinder (205) is provided in the console (20); a pneumatic rod of the cylinder (205) is connected to two groups of connecting columns (204); one end of the two groups of connecting columns (204) is provided with the same group of burning components (202); the top of the burning component (202) is connected to the receiving component (201); and the burning component (202) is connected to the instrument controller (121) via a data line (203).

6. The instrument controller program burning fixture according to claim 1, characterized in that: Two sets of second dustproof nets (128) are connected to both sides of the housing (11) via screws, and a first dustproof net (127) is connected to the top of the housing (11) via screws.

7. The instrument controller program burning fixture according to claim 1, characterized in that: A first waterproof ring (122) is fixedly connected to the circumference of the copper plate (120), and four groups of fixing members (123) for fixing the instrument controller (121) are provided on the top of the copper plate (120), and a rubber pad (124) is provided on one side of each of the four groups of fixing members (123). An inspection door (125) is provided at the opening of the burning chamber (12), and an inspection handle (126) is provided on one side of the inspection door (125).

8. The instrument controller program burning fixture according to claim 1, characterized in that: Four groups of supporting legs (21) are provided at the bottom of the console (20), and one side of the console (20) is connected to the housing (11).

Citation Information

Patent Citations

  • Burning jig

    CN221081648U