The present invention relates to electronic devices, such as cell phones, including a bone conduction vibrator for transmitting audio to an ear of a call recipient by bone conduction.
Various electronic devices have been proposed which include a bone conduction vibrator. For example, in a cell phone, a receiver configured by a bone conduction vibrator is disposed at an upper end of a main body while a transmitter configured by a microphone is disposed at a lower end of the main body, such that a call is established with the receiver pressed against an ear and the transmitter brought close to the mouth.
In a cell phone with a screen panel for image display disposed on a surface of a main body, it is conceivable to configure a receiver in such a way that a bone conduction vibrator is attached to a rear surface of the screen panel.
With such a cell phone, a surface of the screen panel is pressed against an ear, such that a call is established by way of bone conduction.
In such a cell phone, however, a frame-shaped cover panel is fixedly arranged on the surface of the main body to cover the outer periphery of the screen panel. Thus, the cover panel suppresses the vibration of the screen panel, causing lowering of bone conduction performance of the bone conduction vibrator.
It is thus desired to inhibit lowering of bone conduction performance in electronic devices that have a bone conduction vibrator incorporated therein and a cover panel arranged to cover the outer periphery of a screen panel.
An electronic device according to the present invention includes: a main body; a screen panel disposed on a surface of the main body and configured to display an image; a frame-shaped cover panel disposed on the surface of the main body to cover an outer periphery of the screen panel; a bone conduction vibrator incorporated in the main body and attached to a rear surface of the screen panel, the bone conduction vibrator being configured to transmit audio by bone conduction; and an adhesive layer fixedly attaching the cover panel at a rear surface thereof to an outer peripheral portion of a surface of the screen panel. The adhesive layer extends along the outer peripheral portion of the surface of the screen panel and has a missing portion in which an area to be located in the vicinity of the bone conduction vibrator is missing. The missing portion in the adhesive layer provides a gap between the surface of the screen panel and the rear surface of the cover panel.
An embodiment of the present invention in the form of a cell phone is specifically described below with reference to the drawings.
As illustrated in
The front cover panel 3 and the back cover panel 31 are made of a synthetic resin.
As illustrated in
Touch operation is performed, in response to an image displayed on a surface of the screen panel 2, at display positions of the image, such that operation signals corresponding to the image are generated.
The main body 1 includes a front side main body chassis 11 and a back side main body chassis 12 that are made of a synthetic resin and are joined together with a waterproof gasket 13. The waterproof gasket 13 is for protecting the internal space of the main body 1 from water.
The screen panel 2 is fixedly attached at the back side thereof to a surface of the front side main body chassis 11 by a double-coated adhesive tape 62.
As illustrated in
The second panel member 5 has an inner peripheral portion 51 that extends further from an inner peripheral edge 41 of the first panel member 4 toward a central portion of the screen panel 2. An upright wall 52 is provided on a surface of the inner peripheral portion 51 at a portion opposing the inner peripheral edge 41 of the first panel member 4. The upright wall 52 is higher than the surface 50 on which the inner peripheral portion 40 of the first panel member 4 is fixedly bonded.
The appearance of the cell phone can be improved by treating the surface of the inner peripheral portion 51 of the second panel member 5 with metal plating.
A bone conduction vibrator 7 for transmitting receiving call audio by bone conduction is fixedly attached to a rear surface of the screen panel 2 by using a double-coated adhesive tape 63, so as to configure a receiver. The bone conduction vibrator 7 is configured by, for example, a piezoelectric device.
As illustrated in
As illustrated in
As illustrated in
As illustrated in
The gap G is set to a dimension, for example, on an order of 0.2 mm, that allows for preventing the surface of the screen panel 2 to be vibrated upon driving of the bone conduction vibrator 7 from contacting the rear surface of the front cover panel 3.
Further, as illustrated in
This suppresses smearing of the surface of the screen panel 2.
In the above-described cell phone, vibration occurs along the screen panel 2 when the bone conduction vibrator 7 is driven in response to receiving call signals. Then, the surface of the screen panel 2 is pressed against an ear, so as to allow the vibration of the screen panel 2 to be transmitted to the ear, rendering call audio audible.
With the above-described cell phone, in the area in the vicinity of the bone conduction vibrator 7, the cover panel 3 is not fixedly attached to the outer periphery of the screen panel 2, and the gap G is provided. This configuration allows for free vibration of the screen panel 2 within the gap G upon driving of the bone conduction vibrator 7. Thus, full bone conduction performance of the bone conduction vibrator 7 is achieved.
In fixedly attaching the first panel member 4 to the second panel member 5 by using the adhesive 60 in an assembly process, since the upright wall 52 is provided on the surface of the inner peripheral portion 51 of the second panel member 5, the upright wall 52 prevents the adhesive 60 from flowing out toward the inner peripheral portion 51 of the second panel member 5.
Moreover, since the anti-soil coating 21 is not provided in the outer peripheral area Y of the surface of the screen panel 2, the adhesive strength of the double-coated adhesive tape 6 is increased along the outer peripheral area, and the cover panel 3 is rigidly secured by the double-coated adhesive tape 6.
It should be appreciated that the structures of the portions of the present invention are not limited to the foregoing embodiment, and various modifications are apparent to those skilled in the art without departing from the spirit of the present invention as defined in the claims. For example, instead of the configuration in which the front cover panel 3 is fixedly attached to the screen panel 2 by the double-coated adhesive tape 6, the front cover panel 3 may be fixedly attached to the screen panel 2 by using an adhesive layer such as an adhesive.
The present invention is implementable not only with cell phones but also with various electronic devices including bone conduction vibrators.
Number | Date | Country | Kind |
---|---|---|---|
2012-275662 | Dec 2012 | JP | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/JP2013/083631 | 12/16/2013 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2014/098031 | 6/26/2014 | WO | A |
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2001-320790 | Nov 2001 | JP |
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Entry |
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International search report dated Jan. 21, 2014 issued for corresponding Internation application No. PCT/JP2013/083631. |
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Office Action dated Apr. 21, 2015 issued in counterpart Japanese application No. 2014-152577. |
Number | Date | Country | |
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20150023528 A1 | Jan 2015 | US |