CN215578529U - Semiconductor triode structure convenient to maintain and recycle - Google Patents

Semiconductor triode structure convenient to maintain and recycle Download PDF

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Publication number
CN215578529U
CN215578529U CN202121890317.9U CN202121890317U CN215578529U CN 215578529 U CN215578529 U CN 215578529U CN 202121890317 U CN202121890317 U CN 202121890317U CN 215578529 U CN215578529 U CN 215578529U
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fixedly connected
pin
triode structure
plate
semiconductor triode
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CN202121890317.9U
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叶林旺
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Jiangsu Weisenmei Microelectronics Co ltd
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Jiangsu Weisenmei Microelectronics Co ltd
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Abstract

The utility model discloses a semiconductor triode structure convenient for maintenance and recycling, which relates to the technical field of triodes, and comprises a body, pins and a conduction device, wherein the surface of the body is provided with two jacks, the two jacks are internally provided with communication interfaces, the tops of the pins on two sides are fixedly connected with plugs, the inner walls of the two jacks are in threaded connection with threaded rods, the semiconductor triode structure also comprises a connecting part which enables the pins and the conduction device to be conveniently connected, the surface of the body is provided with a heat dissipation part which is convenient for heat dissipation, the semiconductor triode structure also comprises a stabilizing part which is used for enhancing the structural stability of the pins and preventing accidental fracture, the connecting part comprises three connecting blocks, the semiconductor triode structure has the effects of enabling the connection of the triodes to be more convenient, facilitating the disassembly and maintenance, facilitating the recycling and solving the problem that the traditional fixing mode is single, the problem that the disassembly and the maintenance are inconvenient when in need.

Description

Semiconductor triode structure convenient to maintain and recycle
Technical Field
The utility model relates to the technical field of triodes, in particular to a semiconductor triode structure convenient to maintain and recycle.
Background
A semiconductor transistor, also called a bipolar transistor or a transistor, is a semiconductor device for controlling current, and has the function of amplifying a weak signal into an electrical signal with a large amplitude value, and is also used as a contactless switch.
Traditional semiconductor triode need encapsulate the connection to it when using, and traditional connected mode is spot welding connection, and fixed mode is single, and is very inconvenient when the maintenance is dismantled to needs, leads to the unable recycle of device, uses inconveniently.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a semiconductor triode structure convenient to maintain and recycle, which has the effects of enabling the triode to be more conveniently connected, being convenient to disassemble and maintain and being convenient to recycle, and solves the problems that the traditional fixing mode is single, and the disassembly and maintenance are inconvenient when in need.
In order to achieve the purpose, the utility model provides the following technical scheme: the utility model provides a semiconductor triode structure convenient to maintenance is recycled, includes body and pin, still includes the conduction device, two sockets, two have been seted up on the surface of body all be provided with the intercommunication interface in the socket, be located both sides the equal fixedly connected with plug in top of pin, two the equal threaded connection of inner wall of socket has the threaded rod, still includes the messenger the pin with convenient continuous adapting unit between the conduction device, the surface of body is provided with conveniently carries out radiating heat-dissipating part, still including being used for the reinforcing the structural stability of pin prevents unexpected cracked stable part.
Optionally, adapting unit includes three connecting block, and is three the equal fixed connection of connecting block is in the surface of conduction device, it is three the equal fixedly connected with spring in surface of connecting block, it is three the equal fixedly connected with of tip of spring supports the piece, it is three support the surface of piece respectively along three the inner wall sliding connection of connecting block, it is three the draw-in groove has all been seted up to the inner wall of pin, it is three support the surface of piece respectively with three the cell wall sliding connection of draw-in groove, it is three two location mouths have all been seted up to the bottom of pin, conduction device's fixed surface be connected with respectively with six the corresponding six locating levers of location mouth.
Optionally, the heat dissipating component includes a heat absorbing plate, the heat absorbing plate is fixedly connected to the surface of the body, the surface of the heat absorbing plate is fixedly connected with a hollow plate, the inner wall of the hollow plate is slidably connected with a sliding plate, mercury is arranged in the inner cavity of the hollow plate, the top surface of the sliding plate is fixedly connected with a push rod, a lever arm of the push rod is slidably connected with the inner wall of the hollow plate, and a ribbon is arranged at the top end of the push rod.
Optionally, the stabilizing part comprises a hinge rod, the surface of each pin is provided with a first sleeve block and a second sleeve block in a sleeved mode, and the first sleeve block is hinged to the second sleeve block on the pin through the hinge rod.
Optionally, the two sides of the body are fixedly connected with stabilizing plates, two stabilizing springs are fixedly connected with the bottom surfaces of the stabilizing plates, and the bottom ends of the stabilizing springs are fixedly connected with two suckers respectively.
Optionally, the surface of the two stabilizing plates is fixedly connected with stabilizer bars, the end portions of the two stabilizer bars are fixedly connected with the two sides of the body respectively, and the two stabilizer bars are arranged in a triangular mode with the body.
Compared with the prior art, the utility model has the following beneficial effects:
firstly, the pins are inserted into the body through the sockets, so that the plugs on the pins and the communication interfaces are connected, then the threaded rod is screwed, the end part of the threaded rod is displaced towards the direction close to the pins, and the surface of the pins is abutted, so that the effects of more convenient connection and quicker disassembly of the pins and the body are achieved.
The connecting block slides along the inner wall of the pin by inserting the positioning rod on the conduction device into the positioning opening at the bottom of the pin, so that the abutting block slides along the inner wall of the pin, and when the abutting block slides to the clamping groove, the abutting block is displaced along the groove wall of the clamping groove under the action of the elastic restoring force of the spring, so that the connection between the pin and the conduction device is limited, and the effects of convenience in connection between the pin and the conduction device and rapider disassembly are achieved.
When the body is used, a large amount of heat is generated, so that the heat is absorbed through the heat absorbing plate, the mercury in the hollow plate is heated and expanded, the ribbon is displaced in the horizontal direction, air circulation is accelerated, when the heat is reduced, the mercury shrinks, the ribbon can be reset in the vertical direction through the change of the mercury, and the effect of radiating the body is achieved.
The first sleeve block and the second sleeve block are respectively sleeved on the pins, and the adjacent first sleeve block and the second sleeve block are connected through the hinge rod, so that the stability of the pins is enhanced, and the effect that the pins are broken possibly due to improper use during use is avoided.
And fifthly, by arranging the suckers, when the device is installed, the suckers on the two sides are pulled to compress the stabilizing spring, and the stabilizing spring is released after the installation is finished, so that the suckers on the two sides are abutted to the surface of a fixed object, and the effects of improving the overall stability of the device and avoiding separation are achieved.
Drawings
FIG. 1 is an isometric view of a structure of the present invention;
FIG. 2 is a cross-sectional view of a front view of the present invention;
FIG. 3 is a front cross-sectional view of the structure of FIG. 2 according to the present invention;
fig. 4 is a front cross-sectional view of the structure of fig. 2 of the present invention at B.
In the figure: 1. a body; 2. a pin; 3. a conducting means; 4. a socket; 5. a communication interface; 6. a plug; 7. a threaded rod; 8. connecting blocks; 9. a spring; 10. a resisting block; 11. a card slot; 12. positioning the opening; 13. positioning a rod; 14. a heat absorbing plate; 15. a hollow slab; 16. a slide plate; 17. mercury; 18. a push rod; 19. a streamer; 20. a hinged lever; 21. sleeving a first sleeve block; 22. a second sleeve block; 23. a stabilizing plate; 24. a stabilizing spring; 25. a suction cup; 26. a stabilizer bar.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1 to 4, the present invention provides a technical solution: a semiconductor triode structure convenient for maintenance and reuse comprises a body 1 and pins 2, a conduction device 3, two sockets 4 arranged on the surface of the body 1, communication interfaces 5 arranged in the two sockets 4, plugs 6 fixedly connected to the tops of the pins 2 on two sides, threaded rods 7 in threaded connection with the inner walls of the two sockets 4, a connecting part for facilitating connection between the pins 2 and the conduction device 3, a heat dissipation part for facilitating heat dissipation arranged on the surface of the body 1, a stabilizing part for enhancing the structural stability of the pins 2 and preventing accidental fracture, wherein users insert the pins 2 into the body 1 through the sockets 4 to enable the plugs 6 on the pins 2 and the communication interfaces 5 to be connected, and then screw the threaded rods to enable the end parts of the threaded rods 7 to displace towards the direction close to the pins 2 so as to abut against the surfaces of the pins 2, convenient connection of the pin 2 and the body 1 can be achieved.
Further, the connecting part comprises three connecting blocks 8, the three connecting blocks 8 are all fixedly connected on the surface of the conducting device 3, the surfaces of the three connecting blocks 8 are all fixedly connected with springs 9, the end parts of the three springs 9 are all fixedly connected with abutting blocks 10, the surfaces of the three abutting blocks 10 are respectively connected along the inner walls of the three connecting blocks 8 in a sliding manner, the inner walls of the three pins 2 are respectively provided with clamping grooves 11, the surfaces of the three abutting blocks 10 are respectively connected with the groove walls of the three clamping grooves 11 in a sliding manner, the bottom ends of the three pins 2 are respectively provided with two positioning ports 12, the surface of the conducting device 3 is fixedly connected with six positioning rods 13 respectively corresponding to the six positioning ports 12, the connecting blocks 8 slide along the inner walls of the pins 2 by inserting the positioning rods 13 on the conducting device 3 into the positioning ports 12 at the bottoms of the pins 2, and then the abutting blocks 10 slide along the inner walls of the pins 2, when the abutting block 10 slides to the clamping groove 11, the abutting block 10 is displaced along the groove wall of the clamping groove 11 under the action of the elastic restoring force of the spring 9, so that the connection between the pin 2 and the conduction device 3 is limited and kept firm.
Further, the heat dissipation part comprises a heat absorption plate 14, the heat absorption plate 14 is fixedly connected to the surface of the body 1, a hollow plate 15 is fixedly connected to the surface of the heat absorption plate 14, a sliding plate 16 is slidably connected to the inner wall of the hollow plate 15, mercury 17 is arranged in the inner cavity of the hollow plate 15, a push rod 18 is fixedly connected to the top surface of the sliding plate 16, a lever arm of the push rod 18 is slidably connected to the inner wall of the hollow plate 15, a ribbon 19 is arranged at the top end of the push rod 18, when the body 1 is used, a large amount of heat is generated, the heat is absorbed by the heat absorption plate 14, the mercury 17 in the hollow plate 15 is heated and expanded, the sliding plate 16 is driven to slide along the inner wall of the hollow plate 15, the push rod 18 is driven to slide along the inner wall of the hollow plate 15, the ribbon 19 is displaced in the horizontal direction, air circulation is accelerated, when the heat is reduced, the mercury 17 contracts, the ribbon 19 can move back and forth in the vertical direction by the change of the mercury 17, and the body 1 can be cooled.
Further, stabilizing means includes articulated rod 20, three pin 2's surface all overlaps and is equipped with cover block one 21 and cover block two 22, three cover block one 21 all is articulated with cover block two 22 on the adjacent pin 2 through articulated rod 20, it is equipped with cover block one 21 and cover block two 22 to overlap respectively on pin 2, and be connected through articulated rod 20 between adjacent cover block one 21 and the cover block two 22, can strengthen pin 2's stability, pin 2 probably because the fracture that the misuse leads to during the avoiding use.
In order to improve the overall stability of device, furthermore, the equal fixedly connected with stabilizer plate 23 in both sides of body 1, two stabilizer spring 24 of the equal fixedly connected with in bottom surface of two stabilizer plate 23, two sucking discs 25 of bottom difference fixedly connected with of four stabilizer spring 24, setting through two sucking discs 25 can make when the installation, through the sucking disc 25 of pulling both sides, thereby compress stabilizer spring 24, relax stabilizer spring 24 after the installation is accomplished, make the sucking disc 25 of both sides all with the surperficial looks butt of fixed object, can improve the overall stability of device, avoid breaking away from.
In order to improve the stability of two stabilizer plates 23, further, the equal fixedly connected with stabilizer bar 26 in surface of two stabilizer plates 23, the tip of two stabilizer bars 26 respectively with body 1's both sides fixed connection, two stabilizer bars 26 all are the triangle setting with body 1, are the triangle setting stabilizer bar 26 through two for the device is more firm when the atress.
The working principle is as follows: this semiconductor triode structure convenient to maintenance is recycled uses, and in the user of service inserted body 1 through inserting pin 2 through socket 4 for in plug 6 and the intercommunication interface 5 on the pin 2, twist the threaded rod afterwards, make the tip of threaded rod 7 to the direction that is close to pin 2 carry out the displacement, thereby support the surface of pin 2, can reach the convenient connection of pin 2 and body 1.
Through inserting locating lever 13 on conduction device 3 in the location mouth 12 of pin 2 bottom for connecting block 8 slides along the inner wall of pin 2, and then makes to support the piece 10 and slide along the inner wall of pin 2, when supporting the piece 10 and slide to draw-in groove 11 department, under the elastic restoring force effect of spring 9 this moment, makes to support the piece 10 and carry out the displacement along the cell wall of draw-in groove 11, thereby carries on spacingly to being connected of pin 2 and conduction device 3, the holding is firm.
When body 1 uses, will produce a large amount of heats, thereby absorb the heat through absorber plate 14, and then make mercury 17 in the hollow core board 15 be heated the inflation, thereby drive slide 16 and slide along the inner wall of hollow core board 15, and then drive the push rod 18 and slide along the inner wall of hollow core board 15, thereby make ribbon 19 carry out the displacement on the horizontal direction, thereby accelerate the circulation of air, when the heat reduces, mercury 17 contracts, change through mercury 17 can make ribbon 19 move toward resetting in vertical direction, can dispel the heat to body 1.
Through being equipped with cover piece one 21 and cover piece two 22 on pin 2 respectively, and be connected through hinge bar 20 between adjacent cover piece one 21 and the cover piece two 22, can strengthen pin 2's stability, pin 2 probably because the fracture that the misuse leads to when avoiding using.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. A semiconductor triode structure convenient to maintain and reuse comprises a body (1) and pins (2) and further comprises a conduction device (3), and is characterized in that: two sockets (4) have been seted up on the surface of body (1), two all be provided with intercommunication interface (5) in socket (4), be located both sides the equal fixedly connected with plug (6) in top of pin (2), two the equal threaded connection of inner wall of socket (4) has threaded rod (7), still including making pin (2) with convenient continuous adapting unit between conduction device (3), the surface of body (1) is provided with conveniently carries out radiating heat dissipation part, still including being used for the reinforcing the structural stability of pin (2), prevents unexpected cracked stabilizing part.
2. The semiconductor triode structure for easy repair and reuse according to claim 1, wherein: adapting unit includes three connecting block (8), and is three the equal fixed connection of connecting block (8) is in the surface of conduction device (3), it is three the equal fixedly connected with spring (9) in surface of connecting block (8), it is three the equal fixedly connected with of tip of spring (9) supports piece (10), it is three the surface that supports piece (10) is respectively along three the inner wall sliding connection of connecting block (8), it is three draw-in groove (11) have all been seted up to the inner wall of pin (2), it is three the surface that supports piece (10) is respectively with three the cell wall sliding connection of draw-in groove (11), it is three two location mouth (12) have all been seted up to the bottom of pin (2), the fixed surface of conduction device (3) be connected with respectively with six the corresponding six locating levers (13) of location mouth (12).
3. The semiconductor triode structure for easy repair and reuse according to claim 2, wherein: the heat dissipation component comprises a heat absorption plate (14), the heat absorption plate (14) is fixedly connected to the surface of the body (1), a hollow plate (15) is fixedly connected to the surface of the heat absorption plate (14), a sliding plate (16) is connected to the inner wall of the hollow plate (15) in a sliding mode, mercury (17) is arranged in the inner cavity of the hollow plate (15), a push rod (18) is fixedly connected to the top surface of the sliding plate (16), a rod arm of the push rod (18) is connected with the inner wall of the hollow plate (15) in a sliding mode, and a ribbon (19) is arranged at the top end of the push rod (18).
4. The semiconductor triode structure for easy repair and reuse according to claim 3, wherein: stabilizing element includes hinge bar (20), and is three the surface of pin (2) all overlaps and is equipped with nested piece one (21) and nested piece two (22), and is three nested piece one (21) all through hinge bar (20) and adjacent nested piece two (22) on pin (2) are articulated.
5. The semiconductor triode structure for easy repair and reuse according to any one of claims 2, 3 or 4, wherein: the equal fixedly connected with steadying plate (23) in both sides of body (1), two the equal fixedly connected with two stabilizing spring (24), four in bottom surface of steadying plate (23) the bottom of stabilizing spring (24) is two sucking discs (25) of fixedly connected with respectively.
6. The semiconductor triode structure for easy repair and reuse according to claim 5, wherein: stabilizer bars (26) are fixedly connected to the surfaces of the two stabilizer plates (23), the end portions of the two stabilizer bars (26) are fixedly connected with the two sides of the body (1) respectively, and the two stabilizer bars (26) are arranged in a triangular mode with the body (1).
CN202121890317.9U 2021-08-13 2021-08-13 Semiconductor triode structure convenient to maintain and recycle Active CN215578529U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121890317.9U CN215578529U (en) 2021-08-13 2021-08-13 Semiconductor triode structure convenient to maintain and recycle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121890317.9U CN215578529U (en) 2021-08-13 2021-08-13 Semiconductor triode structure convenient to maintain and recycle

Publications (1)

Publication Number Publication Date
CN215578529U true CN215578529U (en) 2022-01-18

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Application Number Title Priority Date Filing Date
CN202121890317.9U Active CN215578529U (en) 2021-08-13 2021-08-13 Semiconductor triode structure convenient to maintain and recycle

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CN (1) CN215578529U (en)

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