Differential transformer type magnetic sensor and image forming apparatus

US9453816B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9453816-B2
Application numberUS-201314050724-A
CountryUS
Kind codeB2
Filing dateOct 10, 2013
Priority dateOct 15, 2012
Publication dateSep 27, 2016
Grant dateSep 27, 2016

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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.

A differential transformer type magnetic sensor includes a board, a drive coil, a first differential coil, and a second differential coil. The drive coil includes a planar coil in which a dimension of a first direction is smaller than that of a second direction, and is disposed on the board. The first differential coil includes a planar coil having the same shape as the drive coil, and is disposed on the board. The second differential coil includes a planar coil having the same shape as the drive coil, and is disposed on the board. The first differential coil and the second differential coil are electrically connected so that a direction of induced current flowing along the first differential coil and a direction of induced current flowing along the second differential coil are opposite to each other.

First claim

Opening claim text (preview).

What is claimed is: 1. A differential transformer type magnetic sensor comprising: a board; a drive coil that includes a polygonal planar coil in which a dimension of a first direction which is one of longitudinal and transverse dimensions is smaller than that of a second direction which is the other of the longitudinal and transverse dimensions, and that is disposed on the board; a first differential coil that includes a planar coil along which induced current flows due to magnetic flux generated as drive current flows along the drive coil and which has the same shape as the drive coil, and that is disposed on the board; and a second differential coil that includes a planar coil along which induced current flows due to magnetic flux generated as drive current flows along the drive coil and which has the same shape as the drive coil, and that is disposed on the board, wherein the first differential coil and the second differential coil are electrically connected so that a direction of the induced current flowing along the first differential coil and a direction of the induced current flowing along the second differential coil are opposite to each other; when viewed from a thickness direction of the board, an array region of the drive coil, an array region of the first differential coil, and an array region of the second differential coil overlap; the board includes a first surface and a second surface located on the opposite side of the first surface; the drive coil includes a first drive coil that is disposed on the first surface and a second drive coil that is wound in the opposite direction of the first drive coil when viewed from a side of the first surface and is disposed on the second surface; the first differential coil is wound in the same direction as the first drive coil, and the first differential coil and the first drive coil are disposed on the first surface so that a wire rod constituting the first differential coil and a wire rod constituting the first drive coil are alternately disposed; the second differential coil is wound in the opposite direction of the second drive coil, and the second differential coil and the second drive coil are disposed on the second surface so that a wire rod constituting the second differential coil and a wire rod constituting the second drive coil are alternately disposed; the differential transformer type magnetic sensor includes: a first connecting member that is formed by penetrating the board and electrically connects one end of the first drive coil and one end of the second drive coil; a second connecting member that is formed by penetrating the board and electrically connects one end of the first differential coil and one end of the second differential coil; a third connecting member that is formed by penetrating the board; and connection patterns that are disposed on the first surface and are used as a part of the second drive coil or a part of the second differential coil; and the connection patterns grade-separate the wire rod constituting the second differential coil and the wire rod constituting the second drive coil by connecting the wire rod constituting the second drive coil or the wire rod constituting the second differential coil using the third connecting member. 2. The differential transformer type magnetic sensor according to claim 1 , wherein the first drive coil, the second drive coil, the first differential coil, and the second differential coil have a rectangular shape in which a direction of a short side thereof is the first direction, and a direction of a long side thereof is the second direction. 3. The differential transformer type magnetic sensor according to claim 2 , wherein the connection patterns extend in the first direction and are disposed on the first surface. 4. A image forming apparatus equipped with a differential transformer type magnetic sensor providing an output corresponding to a height of toner contained in a development part, the differential transformer type magnetic sensor comprising: a board; a drive coil that includes a planar coil in which a dimension of a first direction which is one of longitudinal and transverse dimensions is smaller than that of a second direction which is the other of the longitudinal and transverse dimensions, and that is disposed on the board; a first differential coil that includes a planar coil along which induced current flows due to magnetic flux generated as drive current flows along the drive coil and which has the same shape as the drive coil, and that is disposed on the board; and a second differential coil that includes a planar coil along which induced current flows due to magnetic flux generated as drive current flows along the drive coil and which has the same shape as the drive coil, and that is disposed on the board, wherein the first differential coil and the second differential coil are electrically connected so that a direction of the induced current flowing along the first differential coil and a direction of the induced current flowing along the second differential coil are opposite to each other; the differential transformer type magnetic sensor is disposed on a development part with the first direction set to be along a height direction of toner contained in a development part and with the second direction set to be perpendicular to the height direction; the board includes a first surface and a second surface located on the opposite side of the first surface; the drive coil includes a first drive coil that is disposed on the first surface and a second drive coil that is wound in the opposite direction of the first drive coil when viewed from a side of the first surface and is disposed on the second surface; the first differential coil is wound in the same direction as the first drive coil, and the first differential coil and the first drive coil are disposed on the first surface so that a wire rod constituting the first differential coil and a wire rod constituting the first drive coil are alternately disposed; the second differential coil is wound in the opposite direction of the second drive coil, and the second differential coil and the second drive coil are disposed on the second surface so that a wire rod constituting the second differential coil and a wire rod constituting the second drive coil are alternately disposed; when viewed from a thickness direction of the board, an array region of the first drive coil, an array region of the first differential coil, an array region of the second drive coil, and an array region of the second differential coil overlap; the differential transformer type magnetic sensor includes: a first connecting member that is formed by penetrating the board and electrically connects one end of the first drive coil and one end of the second drive coil; a second connecting member that is formed by penetrating the board and electrically connects one end of the first differential coil and one end of the second differential coil; a third connecting member that is formed by penetrating the board; and connection patterns that are disposed on the first surface and are used as a part of the second drive coil or a part of the second differential coil; and the connection patterns grade-separate the wire rod constituting the second differential coil and the wire rod constituting the second drive coil by connecting the wire rod constituting the second drive coil or the wire rod constituting the second differential coil using the third connecting member. 5. The image forming apparatus according to claim 4 , wherein the first drive coil, the second drive coil, the first differential coil, and the second differential coil have a rectangular shape in which a direction of a short side thereof is the first direction, and a dire

Assignees

Inventors

Classifications

  • the level being measured by electro-magnetic means · CPC title

  • Physics · mapped topic

  • G01R33/04Primary

    using the flux-gate principle · CPC title

  • G01N27/74Primary

    of fluids (G01N24/00 takes precedence) · CPC title

  • Physics · mapped topic

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Frequently asked questions

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What does patent US9453816B2 cover?
A differential transformer type magnetic sensor includes a board, a drive coil, a first differential coil, and a second differential coil. The drive coil includes a planar coil in which a dimension of a first direction is smaller than that of a second direction, and is disposed on the board. The first differential coil includes a planar coil having the same shape as the drive coil, and is dispo…
Who is the assignee on this patent?
Kyocera Document Solutions Inc
What technology area does this patent fall under?
Primary CPC classification G01R33/04. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Sep 27 2016 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).