CN209949786U - Material guiding device - Google Patents

Material guiding device Download PDF

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Publication number
CN209949786U
CN209949786U CN201920476744.9U CN201920476744U CN209949786U CN 209949786 U CN209949786 U CN 209949786U CN 201920476744 U CN201920476744 U CN 201920476744U CN 209949786 U CN209949786 U CN 209949786U
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China
Prior art keywords
guide
piece
conflict
guide rail
material guiding
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CN201920476744.9U
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Chinese (zh)
Inventor
刘旭东
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Nuobei Electromechanical Equipment Jiangmen Co ltd
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Guangdong Yantian Intelligent Mechanical And Electrical Co Ltd
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Priority to CN201920476744.9U priority Critical patent/CN209949786U/en
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Abstract

The utility model belongs to the technical field of the plug-in components machine technique and specifically relates to indicate a guide device, include the support frame and install in the stock guide of support frame, the stock guide is including a plurality of guide rails that are used for guiding the moving direction in material area, all installs the conflict response mechanism that is used for contradicting and responds to the material area in the guide rail in every guide rail, be provided with preceding guide and back guide in the guide rail, conflict response mechanism is located between preceding guide and the back guide. The utility model has the advantages of simple structure, guide rail, preceding guide spare and back guide spare guide the material area, conflict response mechanism contradicts and responds to the material area of removal, guarantees that the material area can smoothly and steadily remove, avoids the material area of removal to appear swaing, beat or the phenomenon of upset and influence the normal work of equipment.

Description

Material guiding device
Technical Field
The utility model belongs to the technical field of the plug-in components machine technique and specifically relates to indicate a guide device.
Background
When the component inserter inserts components into the PCB, the feeding and shearing device shears and feeds the components on the material belt, and the component is inserted into the set position of the PCB by the component inserter head, so that the work of inserting the components is completed. In the process of shearing and feeding the material belt by the feeding shearing device, the material guide part is required to guide the moving material belt, but the moving material belt is easy to deviate, jump or overturn and the like, so that the moving of the material belt is inconvenient, and the feeding shearing device is inconvenient to accurately shear and feed the material belt.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, an object of the utility model is to provide a guide device, its simple structure, guide rail, preceding guide spare and back guide spare guide the material area, and conflict response mechanism is contradicted and is responded to the material area that removes, guarantees that the material area can smoothly and steadily remove, and the phenomenon of avoiding the material area of removal to appear swaying, beating or upset and the normal work that influences equipment.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a guide device, its includes the support frame and installs in the baffle box of support frame, the baffle box is including a plurality of guide rails that are used for guiding the moving direction in material area, all installs the conflict response mechanism that is used for conflicting and responds to the material area in the guide rail in every guide rail, be provided with preceding guide spare and back guide spare in the guide rail, conflict response mechanism is located between preceding guide spare and the back guide spare.
Further, conflict response mechanism includes the inductor, rotates piece, middle guide spare and rotates the conflict subassembly that sets up in the guide rail, it is used for the drive conflict subassembly to rotate the piece, the one end of conflict subassembly is used for conflicting the material area in middle guide spare, the inductor is used for responding to the other end of conflict subassembly, middle guide spare is provided with the groove of dodging that is used for supplying the one end of conflict subassembly to pass.
Furthermore, the conflict subassembly includes conflict piece, pivot and response piece, the pivot is rotated and is set up in the guide rail, the conflict piece is installed in the one end of pivot, the response piece is installed in the other end of pivot, the conflict piece is used for conflicting the material area in middle guide piece, the response piece is used for triggering the inductor, the groove of dodging is used for supplying the one end of conflict piece to pass, the conflict piece is located the guide rail, the response piece is located the below of guide rail.
Further, the conflict subassembly is still including installing the fixed cover in the diapire of guide rail, the pivot rotates and sets up in fixed cover, fixed cover is located between conflict piece and the response piece.
Furthermore, the rotating part is a torsion spring, the torsion spring is sleeved outside the fixing sleeve, one end of the torsion spring is connected with the abutting part, and the other end of the torsion spring is connected with the fixing sleeve.
Furthermore, the middle material guiding piece comprises a connecting part connected with one side of the material guiding rail and a material guiding part connected with the connecting part, the material guiding part is arc-shaped, a gap is formed between the material guiding part and one side of the material guiding rail, and the avoiding groove is formed in the material guiding part.
Furthermore, the front guide part is positioned at the feeding end of the guide rail, the front guide part comprises a guide curved surface and a guide plate connected to the guide curved surface, and the guide plate is used for guiding the material belt to a position between the middle guide part and the abutting part.
Furthermore, a support rod for supporting the material belt is arranged at the feed end of the material guide disc; the support frame is provided with a storage seat, and the storage seat is located the below of guide plate.
Furthermore, the guide rails are divided into a left guide rail group and a right guide rail group, and the left guide rail group and the right guide rail group are arranged in a mirror symmetry mode.
Furthermore, the guide rail comprises a straight feeding section, an inclined guide section and a straight discharging section, the middle guide piece is arranged at the corner of the straight feeding section and the inclined guide section, and the rear guide piece is arranged at the corner of the inclined guide section and the straight discharging section.
The utility model has the advantages that: when the plug-in machine works, the feeding and shearing devices shear components on component tapes and convey the sheared components to a set position, in the process, the tape moves along the material guide rails of the material guide disc, the plurality of feeding and shearing devices respectively shear and feed the material tapes guided by the plurality of material guide rails, and each material guide rail is matched with one feeding and shearing device, so that the material guide disc synchronously guides the plurality of material tapes; when the material guide plate guides the moving material belt, the material belt penetrates through the material guide rails, the front end of the material belt is connected with the feeding shearing device, the material belt is guided to the conflict induction mechanism by the front material guide piece, the conflict induction mechanism conflicts the material belt in the material guide rails, the material belt is guided to the feeding shearing device by the rear material guide piece, when the material guide plate guides the moving material belt, the feeding shearing device enables the material belt moving in the material guide rails to sequentially pass through the front material guide piece, the conflict induction mechanism and the rear material guide piece, in the process of moving the material belt, the front material guide piece enables the material belt to enter the material guide roller, the conflict induction mechanism conflicts the material belt, the material belt can normally move, the material belt is prevented from swinging, jumping or overturning in the moving process, the stability of the material belt in the moving process is guaranteed, and the rear material guide piece can stably output the material guide rails. When the material area that removes breaks away from conflict response mechanism, the material area that the demonstration is located in the guide rail is unusual or the material area breaks away from the guide rail, and conflict response mechanism feeds back information to outside alarm system for outside alarm system reports to the police, so that the operator corrects the material area in the guide rail, guarantees that the material area can normally and stably remove along the guide rail, and then improves the stability that pay-off shearing mechanism sheared and pay-off the material area. This guiding device's simple structure, guide rail, preceding guide spare and back guide spare guide the material area, conflict response mechanism contradicts and responds to the material area that removes, guarantees that the material area can smoothly and move steadily, avoids the material area that removes to appear rocking, beat or the phenomenon of upset and influence the normal work of equipment.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic structural view of the material guiding rail, the conflict sensing mechanism, the front material guiding member and the rear material guiding member of the present invention.
Fig. 3 is a schematic structural view of the front guide member and the collision sensing mechanism of the present invention.
Fig. 4 is an exploded schematic view of the collision sensing mechanism after the middle material guiding member is hidden.
Description of reference numerals:
1. a support frame; 2. a material guide plate; 21. a material guide rail; 22. a straight feeding section; 23. an inclined material guiding section; 24. a straight discharging section; 3. a touch sensing mechanism; 31. an inductor; 32. a rotating member; 33. a middle material guiding member; 331. an avoidance groove; 332. a connecting portion; 333. a material guide part; 34. a contact member; 35. a rotating shaft; 36. an induction sheet; 37. fixing a sleeve; 371. a sleeve; 372. a limiting part; 373. mounting holes; 374. an external thread; 375. a nut; 4. a front leader; 41. a material guiding curved surface; 42. a material guide plate; 5. a rear material guide member; 6. a support bar; 7. a material storage seat.
Detailed Description
In order to facilitate understanding of those skilled in the art, the present invention will be further described with reference to the following examples and drawings, which are not intended to limit the present invention.
As shown in fig. 1 to 4, the utility model provides a pair of guide device, it includes support frame 1 and installs in the baffle disc 2 of support frame 1, baffle disc 2 is including a plurality of guide rails 21 that are used for guiding the moving direction in material area, all installs the conflict response mechanism 3 that is used for conflicting and responds to the material area in the guide rail 21 in every guide rail 21, be provided with preceding guide 4 and back guide 5 in the guide rail 21, conflict response mechanism 3 is located between preceding guide 4 and the back guide 5. In this embodiment, the tape is described by taking a component tape as an example, and the touch sensing mechanism 3 is connected to an external alarm system.
When the plug-in machine works, the feeding and shearing devices shear components on the component material belts and convey the sheared components to a set position, in the process, the material belts move along the material guide rails 21 of the material guide disc 2, the plurality of feeding and shearing devices respectively shear and feed the material belts guided by the plurality of material guide rails 21, and each material guide rail 21 is matched with one feeding and shearing device for use, so that the material guide disc 2 synchronously guides the plurality of material belts; at the beginning, each material guiding rail 21 guides a strip of material to move, the strip of material passes through the material guiding rail 21 and the front end of the strip of material is connected with the feeding and shearing device, the front material guiding member 4 guides the strip of material to the touch sensing mechanism 3, the touch sensing mechanism 3 touches the strip of material in the material guiding rail 21, and then the strip of material is guided to the feeding and shearing device by the rear material guiding member 5, when the material guide disc 2 guides the moving material belt, the feeding and shearing device leads the material belt moving in the material guide rail 21 to sequentially pass through the front material guide part 4, the touch induction mechanism 3 and the rear material guide part 5, in the moving process of the material belt, the front material guiding part 4 is convenient for the material belt to enter the material guiding roller, the touch sensing mechanism 3 touches the material belt, the material belt can move normally, the material belt is prevented from swinging, jumping or overturning in the moving process, so as to ensure the stability of the material belt in the moving process, and the rear material guiding member 5 can ensure that the material belt can smoothly output the material guiding rail 21. When the material area that removes breaks away from conflict response mechanism 3, the material area that proves to be located in guide rail 21 is unusual or the material area breaks away from guide rail 21, and conflict response mechanism 3 feeds back information to outside alarm system for outside alarm system reports to the police, so that the operator corrects the material area in guide rail 21, guarantees that the material area can normally and stably remove along guide rail 21, and then improves the stability that pay-off shearing mechanism sheared and the pay-off to the material area. This guiding device's simple structure, guide rail 21, preceding guide 4 and back guide 5 guide the material area, contradict response mechanism 3 and contradict and respond to the material area of removal, guarantee that the material area can smoothly and move steadily, avoid the material area of removal appear sway, beat or the phenomenon of upset and influence the normal work of equipment.
In this embodiment, conflict response mechanism 3 includes inductor 31, rotates piece 32, middle guide 33 and rotates the conflict subassembly that sets up in guide rail 21, it is used for the drive conflict subassembly to rotate piece 32, the one end of conflict subassembly is used for conflicting the material area in middle guide 33, inductor 31 is used for responding to the other end of conflict subassembly, middle guide 33 is provided with the groove 331 of dodging that is used for supplying the one end of conflicting the subassembly to pass.
When the rotating member 32 drives the abutting assembly to abut the moving material belt against the intermediate material guiding member 33, the material belt in the material guiding rail 21 is proved to be in a normal moving state; when the material area breaks away from conflict subassembly, rotate piece 32 drive conflict subassembly and rotate for conflict subassembly's one end is rotated to dodging in the groove 331, conflict subassembly's the other end rotates to inductor 31, inductor 31 senses the other end of conflict subassembly, prove that the material area in the guide rail 21 breaks away from conflict subassembly, the material area that removes this moment is in unusual state, inductor 31 is to outside alarm system feedback information, make outside alarm system send the signal of reporting to the police, so that the operator corrects this material area.
In this embodiment, the abutting component includes an abutting component 34, a rotating shaft 35 and a sensing piece 36, the rotating shaft 35 is rotatably disposed on the material guiding rail 21, the abutting component 34 is installed at one end of the rotating shaft 35, the sensing piece 36 is installed at the other end of the rotating shaft 35, the abutting component 34 is used for abutting the material belt against the middle material guiding component 33, the sensing piece 36 is used for triggering the sensor 31, the avoiding groove 331 is used for allowing one end of the abutting component 34 to pass through, the abutting component 34 is located in the material guiding rail 21, and the sensing piece 36 is located below the material guiding rail 21; preferably, the contact member 34 is mounted to one end of the rotating shaft 35 via a screw, and the sensing piece 36 is mounted to the other end of the rotating shaft 35 via a screw. This structural design of conflict subassembly, the modularization of conflict subassembly has been realized on the one hand, be convenient for carry out the dismouting to the conflict subassembly, maintain, the cost of maintaining is reduced, on the other hand rotates 32 drive conflict subassemblies when rotating, conflict 34 and response piece 36 rotate around 35 in step, when guaranteeing that the material area breaks away from conflict 34 and middle stock guide 33 (the one end of conflict 34 inserts and dodges groove 331), response piece 36 can in time be sensed to inductor 31, and then make outside alarm system send the signal of reporting to the police.
In this embodiment, the abutting assembly further includes a fixing sleeve 37 installed on the bottom wall of the guide rail 21, the rotating shaft 35 is rotatably disposed in the fixing sleeve 37, and the fixing sleeve 37 is located between the abutting element 34 and the sensing piece 36. The fixing sleeve 37 facilitates the installation of the rotating shaft 35, the interference piece 34 and the sensing piece 36.
In this embodiment, the rotating member 32 is a torsion spring, the torsion spring is sleeved outside the fixing sleeve 37, one end of the torsion spring is connected with the abutting member 34, and the other end of the torsion spring is connected with the fixing sleeve 37. The torsion spring has a simple structure, low cost, convenient maintenance and good torsion, when the material belt is separated from the abutting part 34 and the middle material guiding part 33, one end of the abutting part 34 is driven by the torsion spring to be inserted into the avoiding groove 331, and the rotating abutting part 34 rotates together with the rotating shaft 35 and the sensing piece 36; when the material strip needs to be corrected (the material strip is placed between the abutting part 34 and the middle material guiding part 33), only one end of the abutting part 34 needs to be pulled to rotate away from the middle material guiding part 33, at the moment, the abutting part 34 compresses the torsion spring, the material strip is placed between the abutting part 34 and the middle material guiding part 33, then the abutting part 34 is released, and the abutting part 34 rotates under the restoring (stretching) effect of the torsion spring and abuts against the material strip to the middle material guiding part 33.
Preferably, the fixing sleeve 37 includes a sleeve 371 and a limiting portion 372 arranged in the middle of the sleeve 371, the rotating shaft 35 penetrates through the sleeve 371, the torsion spring is sleeved at one end of the sleeve 371, the torsion spring is located above the limiting portion 372, the limiting portion 372 is provided with a mounting hole 373, and the other end of the torsion spring is inserted into the mounting hole 373, so that the torsion spring is conveniently mounted, and the stability of the torsion spring is improved; the other end of sleeve 371 is provided with external screw thread 374, external screw thread 374 threaded connection has nut 375, spacing portion 372 is used for contradicting the interior diapire of guide rail 21, nut 375 is used for contradicting the outer diapire of guide rail 21, cooperates through spacing portion 372 and nut 375 with fix sleeve 371 at baffle disc 2.
In this embodiment, the middle material guiding member 33 is a resilient piece, so that the middle material guiding member 33 has certain elasticity; the middle material guiding member 33 includes a connecting portion 332 connected to one side of the material guiding rail 21 and a material guiding portion 333 connected to the connecting portion 332, the material guiding portion 333 is arc-shaped, a gap is provided between the material guiding portion 333 and one side of the material guiding rail 21, and the avoiding groove 331 is disposed in the material guiding portion 333. Such structural design makes to have buffer distance between guide portion 333 and guide rail 21, has further improved the elasticity of guide portion 333, and when conflict piece 34 contradicts the material area in guide portion 333, guide portion 333 cushions the material area, avoids producing hard impact, collision between guide portion 333, material area and the conflict piece 34, plays the effect of protection to the material area, in addition, when the material area breaks away from when propping to 34, the one end of conflict piece 34 inserts in this clearance via dodging groove 331.
In this embodiment, the front guiding member 4 is located at the feeding end of the guiding rail 21, the front guiding member 4 includes a guiding curved surface 41 and a guiding plate 42 connected to the guiding curved surface 41, and the guiding plate 42 is used for guiding the material strap between the middle guiding member 33 and the abutting member 34. The material belt moves along the material guiding curved surface 41, so that the material belt is convenient to move, the material belt is also convenient to be guided to the material guiding plate 42, and the material belt is in a normal moving state under the action of the material guiding curved surface 41 and the material guiding plate 42.
In this embodiment, the support rod 6 for supporting the material belt is arranged at the feeding end of the material guide disc 2, and the support rod 6 supports the material belt about to enter the material guide rail 21, so as to ensure that the material belt can smoothly and stably move into the material guide rail 21; the support frame 1 is provided with the storage seat 7, the storage seat 7 is located the below of baffle disc 2, and the storage seat 7 is on the one hand to store the material area, and on the other hand is to deposit in advance the material area that does not get into guide rail 21.
In this embodiment, the plurality of material guide rails 21 are divided into a left material guide rail group and a right material guide rail group, and the left material guide rail group and the right material guide rail group are arranged in a mirror symmetry manner, so that the material guide plate 2 has a compact structure, and is convenient for synchronously guiding a plurality of material belts. Preferably, the left guide rail set has twenty guide rails 21, and the right guide rail set has twenty guide rails 21.
In this embodiment, the material guiding rail 21 includes a straight feeding section 22, an oblique material guiding section 23 and a straight discharging section 24, the middle material guiding member 33 is installed at a corner of the straight feeding section 22 and the oblique material guiding section 23, and the rear material guiding member 5 is installed at a corner of the oblique material guiding section 23 and the straight discharging section 24, so as to facilitate the material belt to turn and move in the material guiding rail 21. Preferably, the length of the inclined guide section 23 of the left guide rail 21 group is gradually shortened from outside to inside, the length of the straight discharge section 24 of the left guide rail 21 group is gradually lengthened from outside to inside, and the width of the discharge end of the guide disc 2 is smaller than that of the feed end of the guide disc 2, so that the structures of the guide rails 21 are further compact, the structures of the feeding shearing devices are further compact, and the occupied areas of the feeding shearing devices are reduced.
Preferably, the straight feeding section 22 is connected with the oblique material guiding section 23 through a first circular arc section, and the oblique material guiding section 23 is connected with the straight discharging section 24 through a second circular arc section, so that the moving of the material belt is more stable and smooth.
Preferably, the structure of the rear material guiding member 5 is substantially the same as that of the middle material guiding member 33, so that a gap is formed between the rear material guiding member 5 and the other side of the material guiding rail 21, and further, the rear material guiding member 5 has certain elasticity when guiding the material belt to move, and can buffer the material belt, so as to facilitate the material belt to move and discharge.
All the technical features in the embodiment can be freely combined according to actual needs.
The above-mentioned embodiment is the utility model discloses the implementation scheme of preferred, in addition, the utility model discloses can also realize by other modes, any obvious replacement is all within the protection scope of the utility model under the prerequisite that does not deviate from this technical scheme design.

Claims (10)

1. A material guiding device is characterized in that: including the support frame and install in the baffle box of support frame, the baffle box is including a plurality of guide rails that are used for guiding the moving direction in material area, all installs the conflict response mechanism that is used for conflicting and responds to the material area in the guide rail in every guide rail, be provided with preceding guide member and back guide member in the guide rail, conflict response mechanism is located between preceding guide member and the back guide member.
2. A material guiding device as defined in claim 1, wherein: conflict response mechanism includes the inductor, rotates piece, middle guide spare and rotates the conflict subassembly that sets up in the guide rail, it is used for driving conflict subassembly and rotates to rotate, the one end of conflict subassembly is used for contradicting the material area in middle guide spare, the inductor is used for responding to the other end of conflict subassembly, middle guide spare is provided with the groove of dodging that is used for supplying the one end of conflict subassembly to pass.
3. A material guiding device as defined in claim 2, wherein: the conflict subassembly includes conflict piece, pivot and response piece, the pivot is rotated and is set up in the guide rail, conflict piece is installed in the one end of pivot, the response piece is installed in the other end of pivot, the conflict piece is used for conflicting the material area in middle guide piece, the response piece is used for triggering the inductor, the one end that dodges the groove and be used for supplying the conflict piece passes, the conflict piece is located the guide rail, the response piece is located the below of guide rail.
4. A material guiding device as defined in claim 3, wherein: the conflict subassembly is still including installing the fixed cover in the diapire of guide rail, the pivot rotates and sets up in fixed cover, fixed cover is located between conflict piece and the response piece.
5. A material guiding device as defined in claim 4, wherein: the rotating piece is a torsion spring, the torsion spring is sleeved outside the fixing sleeve, one end of the torsion spring is connected with the abutting piece, and the other end of the torsion spring is connected with the fixing sleeve.
6. A material guiding device as defined in claim 2, wherein: the middle material guiding piece comprises a connecting part connected with one side of the material guiding rail and a material guiding part connected with the connecting part, the material guiding part is arc-shaped, a gap is formed between the material guiding part and one side of the material guiding rail, and the avoiding groove is formed in the material guiding part.
7. A material guiding device as defined in claim 3, wherein: the front guide part is positioned at the feeding end of the guide rail and comprises a guide curved surface and a guide plate connected to the guide curved surface, and the guide plate is used for guiding the material belt to a position between the middle guide part and the abutting part.
8. A material guiding device as defined in claim 1, wherein: a support rod for supporting the material belt is arranged at the feed end of the material guide disc; the support frame is provided with a storage seat, and the storage seat is located the below of guide plate.
9. A material guiding device as defined in claim 1, wherein: the plurality of guide rails are divided into a left guide rail group and a right guide rail group, and the left guide rail group and the right guide rail group are arranged in a mirror symmetry mode.
10. A material guiding device as defined in claim 2, wherein: the material guide rail comprises a straight feeding section, an oblique material guide section and a straight discharging section, the middle material guide piece is arranged at the corner of the straight feeding section and the oblique material guide section, and the rear material guide piece is arranged at the corner of the oblique material guide section and the straight discharging section.
CN201920476744.9U 2019-04-09 2019-04-09 Material guiding device Active CN209949786U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920476744.9U CN209949786U (en) 2019-04-09 2019-04-09 Material guiding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920476744.9U CN209949786U (en) 2019-04-09 2019-04-09 Material guiding device

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CN209949786U true CN209949786U (en) 2020-01-14

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110035645A (en) * 2019-04-09 2019-07-19 广东岩田智慧机电有限公司 A kind of material guide device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110035645A (en) * 2019-04-09 2019-07-19 广东岩田智慧机电有限公司 A kind of material guide device
CN110035645B (en) * 2019-04-09 2024-02-13 广东岩田智慧机电有限公司 Material guiding device

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Effective date of registration: 20240402

Address after: 529000 buildings 1 and 5, No.16 Bao'an Road, Tangxia Town, Pengjiang district, Jiangmen City, Guangdong Province

Patentee after: Nuobei electromechanical equipment (Jiangmen) Co.,Ltd.

Country or region after: China

Address before: 523000, 2nd Floor, Building B, No. 6 Kunming Road, Yaole Village, Liaobu Town, Dongguan City, Guangdong Province

Patentee before: Guangdong Yantian Intelligent Mechanical and Electrical Co.,Ltd.

Country or region before: China