Noncontact transmitting apparatus
First Claim
1. A noncontact transmitting apparatus comprising:
- a first noncontact transmitting unit mounted on a main device; and
a second noncontact transmitting unit mounted on an attachment device, said second noncontact transmitting unit being removably attachable to said first noncontact transmitting unit, for enabling noncontact signal transfer between said main device and said attachment device, wherein each of said first and second noncontact transmitting units comprises;
a power coil wound on a first core to supply power from said main device to said attachment device by electromagnetic induction, wherein said first core of said first noncontact transmitting unit and said first core of said second noncontact transmitting unit face each other when said attachment device is attached to said main device; and
at least one signal coil wound on at least one second core for signal transfer between said main device and said attachment device by electromagnetic induction, wherein, when said attachment device is attached to said main device, said second core of said first noncontact transmitting unit and said second core of said second noncontact transmitting unit may, selectively, face each other, at a first position, for signal transmission between said signal coils by electromagnetic induction, and may be displaced from each other to a second position, inhibiting signal transmission between said signal coils by electromagnetic induction.
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Accused Products
Abstract
A noncontact transmitting apparatus includes first and second noncontact transmitting units mounted on a main device and an attachment device, respectively. The second noncontact transmitting unit is removably attachable to the first noncontact transmitting unit for enabling noncontact signal transfer between the main device and the attachment device. Each of the noncontact transmitting units includes a power coil and a signal coil. The power coil is wound on a first core to supply power from the main device to the attachment device by electromagnetic induction. The first cores of the first and second noncontact transmitting units face each other at a first position when the attachment device is loaded on the main device. The signal coil is wound on a second core for signal transfer between the main device and the attachment device by electromagnetic induction. The second cores of the first and second noncontact transmitting units face each other at a second position when the attachment device is loaded on the main device. When the attachment device is rotated about the first core by a specified angle, the signal coil of the second noncontact transmitting unit is moved from the second position. This makes it possible for the main device such as a cellular phone, and the attachment device, such as a camera, to transfer power and signals between them with a simple configuration with high reliability when the attachment device is loaded on the main device.
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Citations
16 Claims
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1. A noncontact transmitting apparatus comprising:
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a first noncontact transmitting unit mounted on a main device; and
a second noncontact transmitting unit mounted on an attachment device, said second noncontact transmitting unit being removably attachable to said first noncontact transmitting unit, for enabling noncontact signal transfer between said main device and said attachment device, wherein each of said first and second noncontact transmitting units comprises;
a power coil wound on a first core to supply power from said main device to said attachment device by electromagnetic induction, wherein said first core of said first noncontact transmitting unit and said first core of said second noncontact transmitting unit face each other when said attachment device is attached to said main device; and
at least one signal coil wound on at least one second core for signal transfer between said main device and said attachment device by electromagnetic induction, wherein, when said attachment device is attached to said main device, said second core of said first noncontact transmitting unit and said second core of said second noncontact transmitting unit may, selectively, face each other, at a first position, for signal transmission between said signal coils by electromagnetic induction, and may be displaced from each other to a second position, inhibiting signal transmission between said signal coils by electromagnetic induction. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15)
a circuit board that includes, in addition to said power coil and said signal coil, conductor patterns connected to said power coil and said signal coil, and to ground through holes;
a flexible printed circuit for transmitting signals to said conductor patterns; and
chip capacitors for feeding the antenna signal passing through said flexible printed circuit back to ground through the ground through holes.
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8. The noncontact transmitting apparatus according to claim 7, wherein each of said noncontact transmitting units further comprises:
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means for fixing in position and integrating said power coil, said signal coil, said conductor patterns, and said chip capacitors; and
a metallic film shield covering said noncontact transmitting unit, integrated by said means for fixing and integrating, to prevent the antenna signal from penetrating said noncontact transmitting unit.
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9. The noncontact transmitting apparatus according to claim 8, wherein said circuit board includes a double-layer circuit board, and wherein said conductor patterns are located on an internal layer of said double-layer circuit board.
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10. The noncontact transmitting apparatus according to claim 5, wherein each of said noncontact transmitting units further comprises means for fixing in position and integrating said power coil and said signal coil.
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11. The noncontact transmitting apparatus according to claim 10, wherein each of said noncontact transmitting units comprises a metallic film shield covering said noncontact transmitting unit to prevent the antenna signal from penetrating said noncontact transmitting unit.
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12. The noncontact transmitting apparatus according to claim 11, wherein said metallic film shield comprises holes in a facing surface.
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13. The noncontact transmitting apparatus according to claim 11, wherein said metallic film shield comprises lattice-like patterns on a facing surface.
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14. The noncontact transmitting apparatus according to claim 11, wherein said metallic film shield is covered with an insulating coating.
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15. The noncontact transmitting apparatus according to claim 1, wherein said main device consists of a cellular phone and said attachment device comprises a camera.
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16. An information system comprising:
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a main device;
an attachment device;
a first noncontact transmitting unit mounted on said main device; and
a second noncontact transmitting unit mounted on an attachment device, said second noncontact transmitting unit being removably attachable to said first noncontact transmitting unit, for enabling noncontact signal transfer between said main device and said attachment device, wherein each of said first and second noncontact transmitting units comprises;
a power coil wound on a first core to supply power from said main device to said attachment device by electromagnetic induction, wherein said first core of said first noncontact transmitting unit and said first core of said second noncontact transmitting unit face each other when said attachment device is attached to said main device; and
at least one signal coil wound on at least one second core for signal transfer between said main device and said attachment device by electromagnetic induction, wherein, when said attachment device is attached to said main device, said second core of said first noncontact transmitting unit and said second core of said second noncontact transmitting unit may, selectively, face each other, at a first position, for signal transmission between said signal coils by electromagnetic induction, and may be displaced from each other to a second position, inhibiting signal transmission between said signal coils by electromagnetic induction.
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Specification