Electronic component transportation device and method for manufacturing electronic component array

US9919880B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9919880-B2
Application numberUS-201615256821-A
CountryUS
Kind codeB2
Filing dateSep 6, 2016
Priority dateSep 10, 2015
Publication dateMar 20, 2018
Grant dateMar 20, 2018

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

An electronic component transportation device includes a rotation path and a first magnetic force generator. The rotation path extends along a transportation direction of an electronic component with a rectangular or substantially rectangular parallelepiped shape. The rotation path is inclined with respect to a horizontal direction. The rotation path includes a first surface and a second surface intersecting with each other. The first magnetic force generator is arranged at a lateral side of the rotation path.

First claim

Opening claim text (preview).

What is claimed is: 1. An electronic component transportation device comprising: a rotation path that includes a first surface and a second surface that intersect with each other, extend along a transportation direction of an electronic component having a rectangular or substantially rectangular parallelepiped shape, and are inclined with respect to a horizontal direction; and a first magnetic force generator that is at a lateral side of the rotation path. 2. The electronic component transportation device according to claim 1 , wherein an angle defined by the first surface and the second surface is neither 90° nor about 90°. 3. The electronic component transportation device according to claim 1 , wherein an angle defined by the first surface and the second surface is larger than about 90°. 4. The electronic component transportation device according to claim 1 , wherein an angle defined by the first surface and the second surface is 90°. 5. The electronic component transportation device according to claim 1 , wherein the first magnetic force generator is at a lateral side of the first surface of the rotation path; and an inclination angle of the first surface with respect to the horizontal direction is larger than an inclination angle of the second surface with respect to the horizontal direction. 6. The electronic component transportation device according to claim 1 , wherein a center line passing through an N pole and an S pole of the first magnetic force generator passes through the first surface; and L 1 >D/2 is satisfied when a minimal distance between an intersection of the center line and the first surface and an intersection of the first and second surfaces is L 1 and a larger dimension of a width and a height of the electronic component is D. 7. The electronic component transportation device according to claim 1 , further comprising a second magnetic force generator at a lateral side of the second surface in the rotation path and at a downstream side relative to the first magnetic force generator. 8. The electronic component transportation device according to claim 1 , further comprising a cover covering the rotation path. 9. A method for manufacturing an electronic component array comprising aligning lamination directions of a plurality of electronic components using the electronic component transportation device according to claim 1 . 10. The method for manufacturing the electronic component array according to claim 9 , further comprising accommodating in a tape the plurality of electronic components in which the lamination directions thereof have been aligned. 11. An electronic component transportation device comprising: a rotation path that includes a first path that includes first and second surfaces that intersect with each other, extend along a transportation direction of an electronic component, and are inclined with respect to a horizontal direction and a second path that includes third and fourth surfaces that intersect with each other, extend along the transportation direction, and are inclined with respect to the horizontal direction, and the second path is located at a side of the first path, and in which an upper end of the first surface and an upper end of the fourth surface are connected, a minimal distance between a lower end and the upper end of the first surface is smaller than a larger dimension of a width and a height of the electronic component to be transported; and a first magnetic force generator that is arranged at a lateral side of the third surface of the rotation path. 12. The electronic component transportation device according to claim 11 , wherein S 1 >S 2 is satisfied when an area of a portion of a surface of the first magnetic force generator facing the third surface, which is overlapped with the third surface in a direction perpendicular or substantially perpendicular to the third surface, is S 1 and an area of a portion of the surface of the first magnetic force generator facing the third surface, which is not overlapped with the third surface, is S 2 . 13. The electronic component transportation device according to claim 11 , wherein an angle defined by the first surface and the second surface is neither 90° nor about 90°. 14. The electronic component transportation device according to claim 11 , wherein an angle defined by the first surface and the second surface is larger than about 90°. 15. The electronic component transportation device according to claim 11 , wherein an angle defined by the first surface and the second surface is 90°. 16. The electronic component transportation device according to claim 11 , wherein the first magnetic force generator is at a lateral side of the first surface of the rotation path; and an inclination angle of the first surface with respect to the horizontal direction is larger than an inclination angle of the second surface with respect to the horizontal direction. 17. The electronic component transportation device according to claim 11 , wherein a center line passing through an N pole and an S pole of the first magnetic force generator passes through the first surface; and L 1 >D/2 is satisfied when a minimal distance between an intersection of the center line and the first surface and an intersection of the first and second surfaces is L 1 and a larger dimension of a width and a height of the electronic component is D. 18. The electronic component transportation device according to claim 11 , further comprising a second magnetic force generator at a lateral side of the second surface in the rotation path and at a downstream side relative to the first magnetic force generator. 19. The electronic component transportation device according to claim 11 , further comprising a cover covering the rotation path. 20. A method for manufacturing an electronic component array comprising aligning lamination directions of a plurality of electronic components using the electronic component transportation device according to claim 11 .

Assignees

Inventors

Classifications

  • B65G54/02Primary

    electrostatic, electric, or magnetic · CPC title

  • Electrodes · CPC title

  • Stacked capacitors (H01G4/33 takes precedence) · CPC title

  • Apparatus specially adapted for manufacturing capacitors; Processes specially adapted for manufacturing capacitors not provided for in groups H01G4/00 - H01G11/00 · CPC title

  • by turning over or inverting them (B65G47/244 takes precedence) · CPC title

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What does patent US9919880B2 cover?
An electronic component transportation device includes a rotation path and a first magnetic force generator. The rotation path extends along a transportation direction of an electronic component with a rectangular or substantially rectangular parallelepiped shape. The rotation path is inclined with respect to a horizontal direction. The rotation path includes a first surface and a second surfac…
Who is the assignee on this patent?
Murata Manufacturing Co
What technology area does this patent fall under?
Primary CPC classification B65G54/02. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Mar 20 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).