Shock absorption base for 51 single-chip microcomputer
By designing a damping device with damping rods and return springs, as well as a motor-driven fan blade system, the instability and low heat dissipation efficiency of microcontrollers caused by the vibration of the cooling fan were solved, achieving stable vibration reduction and efficient heat dissipation.
Patent Information
- Application Number
- CN202423129465.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-18
AI Technical Summary
The microcontroller suffers from instability and low heat dissipation efficiency due to the vibration of the cooling fan during use.
A shock-absorbing base for 51 microcontrollers, including a shock-absorbing device and a heat dissipation system, was designed. The vibration energy is converted into internal energy through a damping rod and a return spring, and the heat is filtered and dissipated by a fan blade driven by a motor.
It achieves stable vibration reduction and efficient heat dissipation for the microcontroller, reduces the impact of vibration on the microcontroller, and improves heat dissipation efficiency by filtering the air.
Smart Images

Figure CN223739940U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of shock-absorbing pedestals, specifically a kind of shock-absorbing pedestals for 51 single-chip microcomputer, belong to single-chip microcomputer technical field. BACKGROUND
[0002] 51 single-chip microcomputer is the general-purpose 8-bit microprocessor with INTEL8031 as core, including ATMEL, PHILIPS and 2STC etc.
[0003] Common single-chip microcomputer is usually fixedly installed on external platform when using, to ensure the stability of single-chip microcomputer in working process, usually install external heat dissipation device and connect with single-chip microcomputer, since heat dissipation device needs to use fan to dissipate heat in the process of using, fan will inevitably vibrate in the process of heat dissipation, vibration will be transmitted to single-chip microcomputer, in long-term use process, vibration will affect the stability of single-chip microcomputer, while common single-chip microcomputer can only dissipate heat from front after installation, due to poor air permeability of back of plate, heat will be stored, affect the heat dissipation efficiency of single-chip microcomputer.
[0004] Therefore, a kind of shock-absorbing pedestals for 51 single-chip microcomputer is proposed. INVENTION CONTENTS
[0005] The utility model proposes a kind of shock-absorbing pedestals for 51 single-chip microcomputer, to realize the purpose of stable shock absorption to single-chip microcomputer in the use process of single-chip microcomputer, simultaneously make single-chip microcomputer can be stably cooled in the process of using.
[0006] The utility model is realized by the following technical scheme: a kind of shock-absorbing pedestals for 51 single-chip microcomputer, including plate body, the back of the plate body is provided with shock-absorbing device, the shock-absorbing device includes the bottom plate being arranged below plate body, the bottom plate is connected with the installation platform of outside, the upper surface of the bottom plate is fixed with bearing plate, the upper surface of the bearing plate is hinged with fixed rod, the outer surface of the fixed rod is sleeved with moving sleeve, the other end of the moving sleeve is hinged with connecting block, the connecting block is connected with the slot of plate body itself by bolt.
[0007] The upper surface of the bottom plate is fixed with track plate, the inner wall of the track plate is slidably connected with track block, the side surface of the track block is hinged with rotating plate, the other end of the rotating plate is hinged with moving sleeve, rotating plate is driven to rotate by the movement of moving sleeve, the rotation of rotating plate drives track block to move.
[0008] The inner side of the track block is provided with a damping rod, the other end of the damping rod is fixed with the track plate, kinetic energy is transmitted to the damping rod through the movement of the track block, the damping rod can convert kinetic energy into internal energy, and the influence caused by vibration is reduced.
[0009] The front surface of the plate body is provided with electronic components, including a digital display panel, a dot matrix module and a single-chip microcomputer core, and the operation of the single-chip microcomputer is completed through cooperation between the electronic components.
[0010] The upper surface of the bearing plate is provided with a box body, the outer side of the box body is provided with a filter opening, the upper surface of the box body is provided with a filter plate, the inside of the box body is provided with a motor, the motor is fixed with the bearing plate, the output end of the motor is provided with a fan blade, the fan blade is driven to rotate by the motor, the rotation of the fan blade drives the air in the box body to leave the filter plate, external air enters the inside of the box body through the filter opening, the air blown out of the box body is filtered, and the influence of dust on the plate body is reduced.
[0011] The outer surface of the fixed rod is fixed with a fixed ring, the outer surface of the moving sleeve is fixed with a moving ring, the outer surface of the fixed rod is sleeved with a reset spring, one end of the reset spring is fixed with the fixed ring, and the other end of the reset spring is fixed with the moving ring.
[0012] The size of the box body is smaller than the size of the bearing plate, and the height of the box body is smaller than the minimum distance from the plate body to the bottom plate.
[0013] The utility model provides a kind of shock-absorbing pedestal for 51 single-chip microcomputer, it has the beneficial effects as follows:
[0014] 1, the shock-absorbing pedestal for 51 single-chip microcomputer, when using, the kinetic energy generated by the vibration of plate body is converted into elastic potential energy of reset spring by fixed rod and moving sleeve cooperation reset spring, and reset spring simultaneously shifts elastic potential energy to track block, so that track block moves in track plate, kinetic energy is transmitted to damping rod by the movement of track block, damping rod can convert kinetic energy into internal energy, reduce the influence caused by vibration, realize the purpose of stable shock absorption of single-chip microcomputer in the use process of single-chip microcomputer.
[0015] 2, the shock-absorbing pedestal for 51 single-chip microcomputer, by being provided with box body and being installed fan blade in the inside of box body, when using, fan blade is driven to rotate by motor, the rotation of fan blade drives the air in the box body to leave filter plate, and the bottom surface of plate body is cooled, simultaneously, external air enters the inside of box body through filter opening, the air blown out of box body is filtered, the influence of dust on plate body is reduced, so that single-chip microcomputer can be stably cooled. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1The utility model discloses a three-dimensional structure schematic diagram.
[0017] Figure 2 The utility model discloses a fixed rod's side view.
[0018] Figure 3 The utility model discloses a box body's internal structure schematic diagram.
[0019] Figure 4 The utility model discloses a shock absorber's structure schematic diagram.
[0020] Mark explanation
[0021] 1, board body;
[0022] 2, shock absorber;201, bottom plate;202, bearing plate;203, fixed rod;204, moving sleeve;205, connecting block;206, track plate;207, track block;208, damping rod;209, fixed ring;210, moving ring;211, reset spring;
[0023] 3, digital display board;4, dot matrix module;5, single-chip microcomputer core;6, box body;7, filter plate;8, motor;9, fan blade. Specific implementation
[0024] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work are within the protection scope of the present application.
[0025] Please refer to Figures 1-4 The utility model discloses a kind of shock-absorbing pedestals for 51 single-chip microcomputer, including board body 1, the back of board body 1 is provided with shock absorber 2, shock absorber 2 includes the bottom plate 201 being arranged below board body 1, bottom plate 201 is connected with the installation platform of outside, the upper surface of bottom plate 201 is fixed with bearing plate 202, the upper surface of bearing plate 202 is hinged with fixed rod 203, the outer surface of fixed rod 203 is sleeved with moving sleeve 204, another end of moving sleeve 204 is hinged with connecting block 205, connecting block 205 is connected with the slot of being opened in board body 1 itself by bolt.
[0026] Please refer to Figure 1 、 Figure 3 And Figure 4The upper surface of the bottom plate 201 is fixed with a track plate 206, the inner wall of the track plate 206 is slidably connected with a track block 207, the side surface of the track block 207 is hingedly connected with a rotating plate, the other end of the rotating plate is hingedly connected with a moving sleeve 204, the moving sleeve 204 drives the rotating plate to rotate, the rotating plate drives the track block 207 to move, the inner side surface of the track block 207 is provided with a damping rod 208, the other end of the damping rod 208 is fixed with the track plate 206, the kinetic energy is transmitted to the damping rod 208 through the movement of the track block 207, the damping rod 208 can convert the kinetic energy into internal energy, and the influence caused by vibration is reduced.
[0027] Please refer to Figure 1 、 Figure 2 and Figure 3 , the front surface of the plate body 1 is provided with electronic components, including a digital display panel 3, a dot matrix module 4 and a single-chip microcomputer core 5, the operation of the single-chip microcomputer is completed through cooperation between the electronic components, the upper surface of the bearing plate 202 is provided with a box body 6, the outer side surface of the box body 6 is provided with a filter opening, the upper surface of the box body 6 is provided with a filter plate 7, the inside of the box body 6 is provided with a motor 8, the motor 8 is fixed with the bearing plate 202, the output end of the motor 8 is provided with a fan blade 9, the motor 8 drives the fan blade 9 to rotate, the rotation of the fan blade 9 drives the air in the box body 6 to leave the filter plate 7, and the external air enters the inside of the box body 6 through the filter opening, so that the air blown out of the box body 6 is filtered, and the influence of dust on the plate body 1 is reduced.
[0028] Please refer to Figure 2 、 Figure 3 and Figure 4 , the outer surface of the fixed rod 203 is fixed with a fixed ring 209, the outer surface of the moving sleeve 204 is fixed with a moving ring 210, the outer surface of the fixed rod 203 is sleeved with a reset spring 211, one end of the reset spring 211 is fixed with the fixed ring 209, the other end of the reset spring 211 is fixed with the moving ring 210, the size of the box body 6 is smaller than the size of the bearing plate 202, and the height of the box body 6 is smaller than the minimum distance from the plate body 1 to the bottom plate 201.
[0029] In use, the fixed rod 203 and the moving sleeve 204 cooperate with the reset spring 211 to convert the kinetic energy generated by vibration of the plate body 1 into elastic potential energy of the reset spring 211, and the reset spring 211 transfers the elastic potential energy to the track block 207, so that the track block 207 moves in the track plate 206, the track block 207 transmits the kinetic energy to the damping rod 208 through the movement of the track block 207, the damping rod 208 can convert the kinetic energy into internal energy, the influence caused by vibration is reduced, and the purpose of stabilizing and damping the single-chip microcomputer in the use process of the single-chip microcomputer is achieved.
[0030] By setting the box body 6 and installing the fan blade 9 in the inside of the box body 6, in use, the fan blade 9 is driven to rotate by the motor 8, the rotation of the fan blade 9 drives the air in the box body 6 to leave from the filter plate 7, the bottom surface of the plate body 1 is cooled, meanwhile, the outside air enters into the inside of the box body 6 through the filter port, the air blown by the box body 6 is filtered, the influence of dust on the plate body 1 is reduced, and the single-chip microcomputer can be stably cooled.
[0031] The basic principle and main features of the present application and the advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A shock absorbing base for 51 single-chip microcomputer, comprising a plate body (1), characterized in that: The back surface of the plate body (1) is provided with a damping device (2), the damping device (2) comprises a bottom plate (201) arranged below the plate body (1), the bottom plate (201) is connected with the mounting platform of the outside world, the upper surface of the bottom plate (201) is fixedly connected with a bearing plate (202), the upper surface of the bearing plate (202) is hingedly connected with a fixed rod (203), the outer surface of the fixed rod (203) is sleeved with a moving sleeve (204), the other end of the moving sleeve (204) is hingedly connected with a connecting block (205), and the connecting block (205) is connected with the slot of the plate body (1) through bolts.
2. The shock absorbing base for 51 single-chip microcomputer according to claim 1, characterized in that: The upper surface of the bottom plate (201) is fixedly connected with a track plate (206), the inner wall of the track plate (206) is slidably connected with a track block (207), the side surface of the track block (207) is hingedly connected with a rotating plate, and the other end of the rotating plate is hingedly connected with the moving sleeve (204).
3. The shock absorbing base for 51 single-chip microcomputer according to claim 2, characterized in that: The inner side surface of the track block (207) is provided with a damping rod (208), and the other end of the damping rod (208) is fixedly connected with the track plate (206).
4. The shock absorbing base for 51 single-chip microcomputer according to claim 1, characterized in that: The front surface of the plate body (1) is provided with electronic components, including a digital display panel (3), a dot matrix module (4) and a single-chip microcomputer core (5).
5. The shock absorbing base for 51 single-chip microcomputer according to claim 1, characterized in that: The upper surface of the bearing plate (202) is provided with a box body (6), the outer side surface of the box body (6) is provided with a filter opening, the upper surface of the box body (6) is provided with a filter plate (7), the inside of the box body (6) is provided with a motor (8), the motor (8) is fixedly connected with the bearing plate (202), and the output end of the motor (8) is provided with a fan blade (9).
6. The shock absorbing base for 51 single-chip microcomputer according to claim 1, characterized in that: The outer surface of the fixed rod (203) is fixedly connected with a fixed ring (209), the outer surface of the moving sleeve (204) is fixedly connected with a moving ring (210), the outer surface of the fixed rod (203) is sleeved with a reset spring (211), one end of the reset spring (211) is fixedly connected with the fixed ring (209), and the other end of the reset spring (211) is fixedly connected with the moving ring (210).
7. The shock absorbing base for 51 single-chip microcomputer according to claim 5, characterized in that: The size of the box body (6) is smaller than that of the bearing plate (202), and the height of the box body (6) is smaller than the minimum distance from the plate body (1) to the bottom plate (201).