CN205232682U - Electronic components high accuracy loading attachment - Google Patents
Electronic components high accuracy loading attachment Download PDFInfo
- Publication number
- CN205232682U CN205232682U CN201521001438.8U CN201521001438U CN205232682U CN 205232682 U CN205232682 U CN 205232682U CN 201521001438 U CN201521001438 U CN 201521001438U CN 205232682 U CN205232682 U CN 205232682U
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- base
- nut
- electronic components
- high accuracy
- fixed block
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Abstract
The utility model relates to a, especially, relate to an electronic components high accuracy loading attachment. The to -be -solved technical problem of the utility model is to provide an one kind makes electronic components put the on -line into production and carry out the over -and -under type material loading adding need not put man -hour to the specific height position of material loading is controlled easily, work efficiency's the electronic components high accuracy loading attachment that the precision is high can be improved. In order to solve the technical problem, the utility model provides a such electronic components high accuracy loading attachment. The utility model overcomes present electronic components loading attachment precision is low, and electronic components is put and is put the on -line into production and carry out the over -and -under type material loading adding the man hours requirement to the specific height position of heavy handled material loading.
Description
Technical field
The utility model relates to one, particularly relates to a kind of electronic devices and components high accuracy feeding device.
Background technology
Electronic devices and components are parts of the small-sized machine of electronic component and electricity, instrument, and itself is often made up of some parts, can be general in like product; Some part of the industry such as normal finger electrical equipment, radio, instrument, as the general name of the sub-devices such as electric capacity, transistor, hairspring, clockwork spring.Common are diode etc.
Electronic devices and components comprise: resistance, capacitor, potentiometer, electron tube, radiator, electromechanical compo, connector, semi-conductor discrete device, electro-acoustic element, Laser Devices, electron display device, photoelectric device, transducer, power supply, switch, small and special electric machine, electronic transformer, relay, printed circuit board, integrated circuit, all kinds of circuit, piezoelectricity, crystal, quartz, ceramic magnet material, base material substrate used for printed circuit, electric function technique proprietary material, electronic pastes (band) goods, electron chemistry material and component etc.
Electronic devices and components have the CQC certification of China in quality above the world, UL and the CUL certification of the U.S., and the certification both at home and abroad such as VDE and TUV of Germany and the CE of European Union, ensures the qualified of components and parts.
Existing electronic devices and components feeding device precision is low, electronic devices and components are placed on production line and carry out elevation type material loading adding man-hour requirement, and be difficult to control the concrete high and low position of material loading, reduce operating efficiency, therefore needing research and development one badly makes electronic devices and components carry out elevation type material loading adding not need man-hour to be placed on production line, and easily control the concrete high and low position of material loading, the electronic devices and components high accuracy feeding device that the precision that can increase work efficiency is high.
Utility model content
(1) technical problem that will solve
The utility model is low in order to overcome existing electronic devices and components feeding device precision, electronic devices and components are placed on production line and carry out elevation type material loading adding man-hour requirement, and be difficult to control the concrete high and low position of material loading, reduce the shortcoming of operating efficiency, the technical problems to be solved in the utility model is to provide one makes electronic devices and components carry out elevation type material loading adding not need man-hour to be placed on production line, and easily control the concrete high and low position of material loading, the electronic devices and components high accuracy feeding device that the precision that can increase work efficiency is high.
(2) technical scheme
In order to solve the problems of the technologies described above, the utility model provides so a kind of electronic devices and components high accuracy feeding device, includes left connection leg, right connection leg, base, nut, step, guide post, lower fixed block, guide plate, upper fixed block, screw mandrel, top chock, servomotor, perpendicular support, base plate, hopper, cylinder and side plate, the two ends, left and right of base bottom are respectively equipped with left connection leg and right connection leg, the right side of base top is provided with perpendicular support, the left surface of perpendicular support is provided with servomotor from top to bottom successively, top chock, upper fixed block, lower fixed block and step, guide post is provided with between upper fixed block and lower fixed block, screw mandrel is provided with between top chock and step, screw mandrel is connected with servomotor, screw mandrel is provided with nut, screw mandrel and nut screw connection, the left surface of nut is connected with guide plate, guide plate has pilot hole, and guide post is through pilot hole, the left surface of nut is connected with side plate, the left side of side plate bottom is connected with base plate, the left of side plate is provided with cylinder, the left side of cylinder is provided with push rod, the left of push rod is provided with hopper, the top of base plate is located at by hopper, and the push rod of cylinder and right flank respectively with hopper and side plate rotary type be connected, hopper and base plate be also rotary type be connected.
Preferably, also include controller, controller is located on the right flank of perpendicular support, and servomotor is all connected with controller with cylinder.
Preferably, also include screw and magnet piece, magnet piece is located at the below of base, and screw is located on base, and bolt portion passes base and magnet piece is attracting.
Operation principle: originally nut is positioned at lowermost end, electronic devices and components are added in feed box, servomotor rotates forward, drive screw mandrel rotates forward, thus drive nut to move up, when nut rises to certain altitude, cylinder extends, the electronic devices and components in hopper are made to be transported on the assembly line of corresponding electronic products, after conveying, cylinders retract, nut continues to rise, when often arriving certain height, cylinder extends, the electronic devices and components of hopper are made to be transported on the assembly line of corresponding electronic products, after output, cylinders retract, until nut rises to top, after electronic devices and components all in hopper are all exported, servomotor reverses, drive screw mandrel reverses, nut is made to drop to lowermost end, and so forth, material loading accurately can be carried out to electronic devices and components.
Because also include controller, controller is located on the right flank of perpendicular support, and servomotor is all connected with controller with cylinder, so the automation that can realize the whole course of work completes.
Because also include screw and magnet piece, magnet piece is located at the below of base, and screw is located on base, and bolt portion passes base and magnet piece is attracting, so whole device can be fixed better, and for convenience detach.
(3) beneficial effect
It is low that the utility model overcomes existing electronic devices and components feeding device precision, electronic devices and components are placed on production line and carry out elevation type material loading adding man-hour requirement, and be difficult to control the concrete high and low position of material loading, reduce the shortcoming of operating efficiency, reach and make electronic devices and components carry out elevation type material loading adding not need man-hour to be placed on production line, and easily control the concrete high and low position of material loading, the effect that the precision that can increase work efficiency is high.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Fig. 2 is structural representation of the present utility model.
Fig. 3 is structural representation of the present utility model.
The left connection leg of being labeled as in accompanying drawing: 1-, 2-magnet piece, the right connection leg of 3-, 4-base, 5-screw, 6-nut, 7-step, 8-guide post, fixed block under 9-, 10-guide plate, 11-pilot hole, the upper fixed block of 12-, 13-screw mandrel, 14-top chock, 15-servomotor, 16-erects support, 17-controller, 18-base plate, 19-hopper, 20-cylinder, 21-side plate.
Embodiment
Below in conjunction with drawings and Examples, the utility model is further described.
embodiment 1
A kind of electronic devices and components high accuracy feeding device, as Figure 1-3, left connection leg 1, right connection leg 3, base 4, nut 6, step 7, guide post 8, lower fixed block 9, guide plate 10, upper fixed block 12, screw mandrel 13, top chock 14, servomotor 15, perpendicular support 16, base plate 18, hopper 19, cylinder 20 and side plate 21 is included, two ends, left and right bottom base 4 are respectively equipped with left connection leg 1 and right connection leg 3, the right side at base 4 top is provided with perpendicular support 16, the left surface of perpendicular support 16 is provided with servomotor 15 from top to bottom successively, top chock 14, upper fixed block 12, lower fixed block 9 and step 7, guide post 8 is provided with between upper fixed block 12 and lower fixed block 9, screw mandrel 13 is provided with between top chock 14 and step 7, screw mandrel 13 is connected with servomotor 15, screw mandrel 13 is provided with nut 6, screw mandrel 13 coordinates with nut 6, the left surface of nut 6 is connected with guide plate 10, guide plate 10 has pilot hole 11, and guide post 8 is through pilot hole 11, the left surface of nut 6 is connected with side plate 21, the left side of side plate 21 bottom is connected with base plate 18, the left of side plate 21 is provided with cylinder 20, the left side of cylinder 20 is provided with push rod, the left of push rod is provided with hopper 19, the top of base plate 18 is located at by hopper 19, and the push rod of cylinder 20 and right flank respectively with hopper 19 and side plate 21 rotary type be connected, hopper 19 and base plate 18 be also rotary type be connected.
Also include controller 17, controller 17 is located on the right flank of perpendicular support 16, and servomotor 15 is all connected with controller 17 with cylinder 20.
Also include screw 5 and magnet piece 2, magnet piece 2 is located at the below of base 4, and screw 5 is located on base 4, and screw 5 partially passes through base 4 and magnet piece 2 is attracting.
Operation principle: originally nut 6 is positioned at lowermost end, electronic devices and components are added in feed box 19, servomotor 15 rotates forward, screw mandrel 13 is driven to rotate forward, thus drive nut 6 to move up, when nut 6 rises to certain altitude, cylinder 20 extends, the electronic devices and components in hopper 19 are made to be transported on the assembly line of corresponding electronic products, after conveying, cylinder 20 is retracted, nut 6 continues to rise, when often arriving certain height, cylinder 20 extends, the electronic devices and components of hopper 19 are made to be transported on the assembly line of corresponding electronic products, after output, cylinder 20 is retracted, until nut 6 rises to top, after electronic devices and components all in hopper 19 are all exported, servomotor 15 reverses, screw mandrel 13 is driven to reverse, nut 6 is made to drop to lowermost end, and so forth, material loading accurately can be carried out to electronic devices and components.
Because also include controller 17, controller 17 is located on the right flank of perpendicular support 16, and servomotor 15 is all connected with controller 17 with cylinder 20, so the automation that can realize the whole course of work completes.
Because also include screw 5 and magnet piece 2, magnet piece 2 is located at the below of base 4, and screw 5 is located on base 4, and screw 5 partially passes through base 4 and magnet piece 2 is attracting, so whole device can be fixed better, and for convenience detach.
The above embodiment only have expressed preferred implementation of the present utility model, and it describes comparatively concrete and detailed, but therefore can not be interpreted as the restriction to the utility model the scope of the claims.It should be pointed out that for the person of ordinary skill of the art, without departing from the inventive concept of the premise, can also make some distortion, improvement and substitute, these all belong to protection range of the present utility model.Therefore, the protection range of the utility model patent should be as the criterion with claims.
Claims (3)
1. an electronic devices and components high accuracy feeding device, it is characterized in that, include left connection leg (1), right connection leg (3), base (4), nut (6), step (7), guide post (8), lower fixed block (9), guide plate (10), upper fixed block (12), screw mandrel (13), top chock (14), servomotor (15), perpendicular support (16), base plate (18), hopper (19), cylinder (20) and side plate (21), the two ends, left and right of base (4) bottom are respectively equipped with left connection leg (1) and right connection leg (3), the right side at base (4) top is provided with perpendicular support (16), the left surface of perpendicular support (16) is provided with servomotor (15) from top to bottom successively, top chock (14), upper fixed block (12), lower fixed block (9) and step (7), guide post (8) is provided with between upper fixed block (12) and lower fixed block (9), screw mandrel (13) is provided with between top chock (14) and step (7), screw mandrel (13) is connected with servomotor (15), screw mandrel (13) is provided with nut (6), screw mandrel (13) coordinates with nut (6), the left surface of nut (6) is connected with guide plate (10), guide plate (10) has pilot hole (11), and guide post (8) is through pilot hole (11), the left surface of nut (6) is connected with side plate (21), the left side of side plate (21) bottom is connected with base plate (18), the left of side plate (21) is provided with cylinder (20), the left side of cylinder (20) is provided with push rod, the left of push rod is provided with hopper (19), the top of base plate (18) is located at by hopper (19), and the push rod of cylinder (20) and right flank are connected with hopper (19) and side plate (21) rotary type ground respectively, hopper (19) and base plate (18) be also rotary type be connected.
2. a kind of electronic devices and components high accuracy feeding device according to claim 1, it is characterized in that, also include controller (17), controller (17) is located on the right flank of perpendicular support (16), and servomotor (15) is all connected with controller (17) with cylinder (20).
3. a kind of electronic devices and components high accuracy feeding device according to claim 1, it is characterized in that, also include screw (5) and magnet piece (2), magnet piece (2) is located at the below of base (4), screw (5) is located on base (4), and screw (5) partially passes through base (4) and magnet piece (2) is attracting.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201521001438.8U CN205232682U (en) | 2015-12-07 | 2015-12-07 | Electronic components high accuracy loading attachment |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201521001438.8U CN205232682U (en) | 2015-12-07 | 2015-12-07 | Electronic components high accuracy loading attachment |
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CN205232682U true CN205232682U (en) | 2016-05-11 |
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CN201521001438.8U Expired - Fee Related CN205232682U (en) | 2015-12-07 | 2015-12-07 | Electronic components high accuracy loading attachment |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107063592A (en) * | 2016-12-29 | 2017-08-18 | 铜陵龙嘉机电有限公司 | One kind automation capacitor protector side wall and end face resistance to compression test sieve route selection |
CN107063594A (en) * | 2016-12-29 | 2017-08-18 | 铜陵龙嘉机电有限公司 | Capacitor protector side wall and end face resistance to compression detecting system |
-
2015
- 2015-12-07 CN CN201521001438.8U patent/CN205232682U/en not_active Expired - Fee Related
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107063592A (en) * | 2016-12-29 | 2017-08-18 | 铜陵龙嘉机电有限公司 | One kind automation capacitor protector side wall and end face resistance to compression test sieve route selection |
CN107063594A (en) * | 2016-12-29 | 2017-08-18 | 铜陵龙嘉机电有限公司 | Capacitor protector side wall and end face resistance to compression detecting system |
CN107063592B (en) * | 2016-12-29 | 2018-12-07 | 铜陵龙嘉机电有限公司 | A kind of automation capacitor protector body sidewall and end face resistance to compression test sieve route selection |
CN107063594B (en) * | 2016-12-29 | 2018-12-07 | 铜陵龙嘉机电有限公司 | Capacitor protector body sidewall and end face resistance to compression detection system |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20160511 Termination date: 20191207 |