CN209785899U - Support automatic feeding device of direct-insertion type LED lamp die bonding equipment - Google Patents

Support automatic feeding device of direct-insertion type LED lamp die bonding equipment Download PDF

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Publication number
CN209785899U
CN209785899U CN201920308643.0U CN201920308643U CN209785899U CN 209785899 U CN209785899 U CN 209785899U CN 201920308643 U CN201920308643 U CN 201920308643U CN 209785899 U CN209785899 U CN 209785899U
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CN
China
Prior art keywords
support
plate
driving
bracket
led lamp
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Active
Application number
CN201920308643.0U
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Chinese (zh)
Inventor
兰晶华
文海建
刘世明
蔡振
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Shenzhen Xinyexin Led Co Ltd
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Shenzhen Xinyexin Led Co Ltd
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Priority to CN201920308643.0U priority Critical patent/CN209785899U/en
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Abstract

The utility model discloses a support automatic feeding device of a direct-insert LED lamp die bonding device, which comprises a support Y-axis pushing mechanism, a support placing rack and a support X-axis pushing mechanism, wherein the support X-axis pushing mechanism comprises a driving cylinder, a telescopic push rod arranged on the output end of the driving cylinder and a push plate connected with the end part of the telescopic push rod, and a magnet is arranged on the push plate; the support Y-axis pushing mechanism comprises a support conveying rail arranged below the push plate, a translation driving assembly arranged on the outer side edge of the support conveying rail, a driving block connected to the translation driving assembly, and a pushing block connected to the driving block and embedded into the support conveying rail; a strip-shaped through hole for the support to fall into is formed above the support conveying track in an open mode. The utility model provides a support automatic feeding of solid brilliant equipment of formula LED lamp cut straightly realizes the automatic quick pay-off process of support, and each mechanism's cooperation is inseparable, and the action is accurate smooth and easy, improves support pay-off efficiency, does benefit to the normal clear of solid brilliant process.

Description

Support automatic feeding device of direct-insertion type LED lamp die bonding equipment
Technical Field
The utility model relates to a solid brilliant equipment of LED lamp especially relates to a support automatic feeding of solid brilliant equipment of formula LED lamp cut straightly.
background
With continuous development and market application of LED products, the market demand and the productivity of LEDs are continuously improved, and most equipment manufacturers research and develop LED lamp die bonding equipment in order to improve the productivity of LEDs and reduce the number of workers for large-scale manual production of LEDs in the early stage.
The die bonding is an important process in the production of the LED lamp, and the die bonding process determines the luminous performance of the LED lamp. In the die bonding, the wafer is fixed in a designated position of the support by conductive adhesive or insulating adhesive, and therefore, the support needs to be loaded to a specific position before die bonding.
In the existing die bonding equipment for the LED lamp, due to the unreasonable structural design, in the process of loading the bracket, the action is not smooth, the phenomenon of blocking easily occurs, the feeding speed is seriously influenced, and the whole die bonding process is greatly influenced.
SUMMERY OF THE UTILITY MODEL
Not enough to the aforesaid, the utility model aims to provide a support automatic feeding of solid brilliant equipment of formula LED lamp cut straightly realizes the automatic quick pay-off process of support, and structural design is reasonable, and each mechanism's cooperation is inseparable, and the action is accurate smooth and easy, improves support pay-off efficiency, does benefit to the normal clear of solid brilliant process.
The utility model discloses a reach the technical scheme that above-mentioned purpose adopted and be:
An automatic support feeding device of a direct-insertion type LED lamp die bonding device is characterized by comprising a support Y-axis pushing mechanism, a support placing frame arranged on one side edge of the support Y-axis pushing mechanism and a support X-axis pushing mechanism arranged on the other side edge of the support Y-axis pushing mechanism, wherein the support X-axis pushing mechanism comprises a driving air cylinder, a plurality of telescopic push rods arranged on the output end of the driving air cylinder and a push plate connected to the end parts of the telescopic push rods, and a magnet is arranged on the side surface, close to a support placing frame, of the push plate; the Y-axis pushing mechanism of the support comprises a support conveying rail arranged below the push plate, a translation driving component arranged on the outer side edge of the support conveying rail, a driving block connected to the translation driving component, and a push block connected to the driving block and embedded into the support conveying rail; a strip-shaped through hole for the support to fall into is formed above the support conveying track in an open mode.
As a further improvement, the support placing rack is provided with two support hanging rods extending to one side of the strip-shaped via hole on one side, and the push plate is positioned between the two support hanging rods.
As a further improvement of the present invention, the rack conveying track is mainly formed by combining a first side plate close to the driving cylinder and a second side plate close to the rack placing rack, the bar-shaped via hole is formed between the first side plate and the second side plate, and the push block is embedded into the rack conveying track from the outside of the second side plate; a position-giving opening for the telescopic push rod and the push plate to move back and forth is formed on the first side plate.
As a further improvement of the utility model, the width of the position-giving opening is smaller than the length of the bracket.
As a further improvement of the present invention, the height of the first side plate is higher than the height of the second side plate.
As a further improvement, the translation driving assembly comprises a driving wheel respectively arranged at two ends of the outer side of the second side plate, a driving belt surrounding the periphery of the driving wheel, and a driving motor connected to one of the driving wheels, and the driving block is connected to the driving belt.
As a further improvement, a translation slide rail extending along the length direction of the support conveying track is arranged on the outer side edge of the second side plate, and the driving block is arranged on the translation slide rail through a slide block.
The utility model has the advantages that: through the matched design of the Y-axis pushing mechanism and the X-axis pushing mechanism of the support, the automatic and quick feeding process of the support is realized, the structural design is reasonable, the matching of the mechanisms is tight, the action is accurate and smooth, the feeding efficiency of the support is improved, and the normal operation of a die bonding process is facilitated.
The above is an overview of the technical solution of the present invention, and the present invention is further explained with reference to the accompanying drawings and the detailed description.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Detailed Description
To further illustrate the technical means and effects of the present invention adopted to achieve the intended purpose, the following detailed description of the embodiments of the present invention is provided in conjunction with the accompanying drawings and preferred embodiments.
Referring to fig. 1, an embodiment of the present invention provides an automatic feeding device for a support of a direct-insert LED lamp die bonder, including a support Y-axis pushing mechanism 1, a support placing rack 2 disposed on one side of the support Y-axis pushing mechanism 1, and a support X-axis pushing mechanism 3 disposed on the other side of the support Y-axis pushing mechanism 1. Specifically, the support X-axis pushing mechanism 3 includes a driving cylinder 31, a plurality of telescopic push rods 32 disposed on the output end of the driving cylinder 31, and a push plate 33 connected to the end of the telescopic push rods 32, and a magnet 34 is disposed on the side of the push plate 33 close to the support placing frame 2. The driving cylinder 31 provides power to drive the telescopic push rod 32 to do telescopic motion so as to drive the push plate 33 to move back and forth.
Meanwhile, specifically, the support Y-axis pushing mechanism 1 includes a support conveying rail 11 disposed below the pushing plate 33, a translation driving component 12 disposed on an outer side edge of the support conveying rail 11, a driving block 13 connected to the translation driving component 12, and a pushing block 14 connected to the driving block 13 and embedded in the support conveying rail 11; a bar-shaped through hole 111 into which the rack is dropped is formed to open above the rack transport rail 11.
Meanwhile, two support hanging rods 21 extending to one side above the strip-shaped via holes 111 are arranged on one side edge of the support placing frame 2, the support 10 is hung on the two support hanging rods 21, and the push plate 33 is located between the two support hanging rods 21.
In the embodiment, the rack conveying rail 11 is mainly formed by combining a first side plate 112 close to the driving cylinder 31 and a second side plate 113 close to the rack placing rack 2, and specifically, the height of the first side plate 112 is higher than that of the second side plate 113. The strip-shaped through hole 111 is formed between the first side plate 112 and the second side plate 113, and the push block 14 is embedded into the bracket conveying track 11 from the outer side of the second side plate 113; an abdicating hole 1121 for the telescopic pushing rod 32 and the pushing plate 33 to move back and forth is formed on the first side plate 112.
In this embodiment, the width of the seat-letting opening 1121 is smaller than the length of the bracket 10. When the magnet 34 attracts the bracket 10 and the push plate 33 drives the bracket 10 to move above the bar-shaped via hole 111, the push plate 33 continues to move, the bracket 10 is separated from the bracket hanging rod 21, because the width of the position-giving opening 1121 is smaller than the length of the bracket 10, when the bracket 10 touches the first side plate 112, the first side plate 112 applies an acting force to the bracket 10, the bracket 10 is separated from the magnet 34, and the bracket 10 drops into the bar-shaped via hole 111.
In this embodiment, the translational driving assembly 12 includes a driving wheel 121 disposed at two ends of an outer side of the second side plate 113, a conveying belt 122 surrounding the driving wheel 121, and a driving motor connected to one of the driving wheels 121, and the driving block 13 is connected to the conveying belt 122. The driving motor provides power to drive the conveyor belt 122 to move left and right, so as to drive the driving block 13 to move left and right, so as to drive the push block 14 to move left and right in the support conveying track 11, and the push block 14 is convenient to push the support 10 falling into the strip-shaped via hole 111 out to a next station for a next procedure.
In order to improve the stability of the driving block 13 moving left and right, a translation sliding rail 114 extending along the length direction of the rack conveying rail 11 is disposed on the outer side edge of the second side plate 113, and the driving block 13 is disposed on the translation sliding rail 114 through a sliding block 115.
The automatic feeding device for the bracket is applied to the direct-insertion type LED lamp die bonding equipment and used for feeding operation of the bracket, and particularly the direct-insertion type LED lamp bracket.
The working principle of the embodiment is as follows: the driving cylinder 31 drives the telescopic push rod 32 to do telescopic motion so as to drive the push plate 33 to move forwards, and when the push plate 33 moves to the side edge of the bracket 10, the magnet 34 attracts the bracket 10; then, the push plate 33 is driven by the driving cylinder 31 to move backwards in the opposite direction; when the push plate 33 drives the support 10 to move above the bar-shaped via holes 111, the push plate 33 continues to move backwards, the support 10 is separated from the support hanging rod 21, when the support 10 touches the first side plate 112, the first side plate 112 applies an acting force to the support 10, the support 10 is separated from the magnet 34, and the support 10 drops into the bar-shaped via holes 111. Then, the translation driving assembly 12 drives the driving block 13 to move rightwards so as to drive the pushing block 14 to move rightwards in the strip-shaped via hole 111 of the support conveying track 11, and then the pushing block 14 pushes the support 10 falling into the strip-shaped via hole 111 out to the next station for the die bonding process.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the technical scope of the present invention, so that other structures obtained by adopting the same or similar technical features as the above embodiments of the present invention are all within the protection scope of the present invention.

Claims (7)

1. An automatic support feeding device of a direct-insertion type LED lamp die bonding device is characterized by comprising a support Y-axis pushing mechanism, a support placing frame arranged on one side edge of the support Y-axis pushing mechanism and a support X-axis pushing mechanism arranged on the other side edge of the support Y-axis pushing mechanism, wherein the support X-axis pushing mechanism comprises a driving air cylinder, a plurality of telescopic push rods arranged on the output end of the driving air cylinder and a push plate connected to the end parts of the telescopic push rods, and a magnet is arranged on the side surface, close to a support placing frame, of the push plate; the Y-axis pushing mechanism of the support comprises a support conveying rail arranged below the push plate, a translation driving component arranged on the outer side edge of the support conveying rail, a driving block connected to the translation driving component, and a push block connected to the driving block and embedded into the support conveying rail; a strip-shaped through hole for the support to fall into is formed above the support conveying track in an open mode.
2. The automatic support feeding device of the direct-insert LED lamp die bonding equipment according to claim 1, wherein two support hanging rods extending to one side above the strip-shaped through hole are arranged on one side edge of the support placing frame, and the push plate is located between the two support hanging rods.
3. The automatic bracket feeding device of the in-line LED lamp die bonding equipment according to claim 1, wherein the bracket conveying track is mainly formed by combining a first side plate close to the driving cylinder and a second side plate close to the bracket placing frame, the strip-shaped through hole is formed between the first side plate and the second side plate, and the pushing block is embedded into the bracket conveying track from the outer side of the second side plate; a position-giving opening for the telescopic push rod and the push plate to move back and forth is formed on the first side plate.
4. The automatic feeding device for the bracket of the direct-insert LED lamp die bonding equipment as claimed in claim 3, wherein the width of the relief opening is smaller than the length of the bracket.
5. The automatic feeding device for the bracket of the direct-insert LED lamp die bonding equipment as claimed in claim 3, wherein the height of the first side plate is higher than that of the second side plate.
6. The automatic feeding device for the bracket of the direct-insert LED lamp die bonding equipment according to claim 3, wherein the translation driving assembly comprises driving wheels respectively arranged at two ends of the outer side edge of the second side plate, a conveying belt arranged around the periphery of the driving wheels, and a driving motor connected to one of the driving wheels, and the driving block is connected to the conveying belt.
7. The automatic feeding device for the bracket of the direct-insert LED lamp die bonding equipment as claimed in claim 3, wherein a translation slide rail extending along the length direction of the bracket conveying rail is arranged on the outer side edge of the second side plate, and the driving block is arranged on the translation slide rail through a slide block.
CN201920308643.0U 2019-03-12 2019-03-12 Support automatic feeding device of direct-insertion type LED lamp die bonding equipment Active CN209785899U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920308643.0U CN209785899U (en) 2019-03-12 2019-03-12 Support automatic feeding device of direct-insertion type LED lamp die bonding equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920308643.0U CN209785899U (en) 2019-03-12 2019-03-12 Support automatic feeding device of direct-insertion type LED lamp die bonding equipment

Publications (1)

Publication Number Publication Date
CN209785899U true CN209785899U (en) 2019-12-13

Family

ID=68797381

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920308643.0U Active CN209785899U (en) 2019-03-12 2019-03-12 Support automatic feeding device of direct-insertion type LED lamp die bonding equipment

Country Status (1)

Country Link
CN (1) CN209785899U (en)

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