The present application is based on and claims priority of Japanese patent applications No. 2004-176786 filed on Jun. 15, 2004 and No. 2005-030691 filed on Feb. 7, 2005, the entire contents of which are hereby incorporated by reference.
1. Field of the Invention
The present invention relates to an electronic device with a built-in disk device, and more particularly, to an electronic device allowing for the routing of a flexible flat cable which electrically connects a substrate provided for a movable section in the disk device and a disk device control substrate.
2. Description of the Related Art
In response to a variety of needs of users in recent years, use of disk devices is not limited to DVD players and CD players, etc., but extends over a wide range of applications, for example, disk devices are incorporated in television receivers and these electronic devices, etc., are becoming smaller and slimmer year after year.
A disk device is provided with a pickup section which moves to and fro in the radius direction of a disk medium to read and/or write a signal from/to the disk medium and the pickup section and a control substrate, etc., are electrically connected via a wire such as a flexible flat cable to transmit a signal from the pickup section to the control substrate, etc. The flexible flat cable moves following reciprocating motion of the pickup section, but as described above, since the electronic device is becoming smaller and slimmer, when the flexible flat cable moves inside the device, it is likely to touch other parts, etc., inside the device, which leads to problems of blocking the movement of the pickup section and damaging the flexible flat cable itself.
Conventional technologies related to the above described routing of a flexible flat cable connected to a movable section are disclosed in Japanese Patent Laid-Open No. 2001-283497, Japanese Patent Laid-Open No. 2002-324389 and Japanese Patent Laid-Open No. 2003-100036, etc.
In view of the above described problems, it is an object of the present invention to provide an electronic device with a built-in disk device including the disk device and a disk device control substrate arranged side by side, capable of reducing problems caused when a flexible flat cable connected to a pickup section which is a movable section touches other members inside the device and reducing a load on a connection of the flexible flat cable.
The electronic device with a built-in disk device according to a first aspect of the invention is an electronic device comprising a disk device which reads and/or writes a signal from/to a disk medium and a disk device control substrate which controls and drives the disk device and controls a signal input/output to/from the disk device, said disk device and said disk device control substrate being arranged side by side, and a flexible flat cable which electrically connects a pickup section which moves to and fro in the radius direction of the disk medium to read and/or write a signal from the disk medium loaded in the disk device and the disk device control substrate, characterized in that a slack portion provided for the flexible flat cable between the pickup section and the disk device control substrate to absorb the distance of reciprocating motion of the pickup section is provided with two or more bending sections.
According to the above described structure, the movement of the slack portion of the flexible flat cable caused by movement of the side of the flexible flat cable connected to the pickup section following the reciprocating motion of the pickup section is absorbed by bending operations of the two or more bending sections provided for the slack portion.
The electronic device with a built-in disk device according to a second aspect of the invention is an electronic device comprising a disk device which reads and/or writes a signal from/to a disk medium and a disk device control substrate which controls and drives the disk device and controls a signal input/output to/from the disk device, said disk device and said disk device control substrate being arranged side by side, and a flexible flat cable which electrically connects a pickup section which moves to and fro in the radius direction of the disk medium to read and/or write a signal from the disk medium loaded in the disk device and the disk device control substrate, characterized in that a slack portion is provided for the flexible flat cable between the pickup section and the disk device control substrate to absorb the distance of reciprocating motion of the pickup section and a stopping/retaining section for retaining the shape of the slack portion of the flexible flat cable is provided at a connection point between the disk device control substrate and the flexible flat cable.
According to the above described structure, the movement of the slack portion of the flexible flat cable caused by the movement of the flexible flat cable (side connected to the pickup section) following the reciprocating motion of the pickup section is absorbed by the stopping/retaining section.
The electronic device with a built-in disk device according to a third aspect of the invention is the electronic device with a built-in disk device according to the first or second aspect of the invention, characterized in that the slack portion of the flexible flat cable is provided with bending sections and the bending sections have opposite curving directions so that the flexible-flat cable becomes substantially a sigmoid curve.
The electronic device with a built-in disk device according to a fourth aspect of the invention is the electronic device with a built-in disk device according to the first or second aspect of the invention, characterized in that the slack portion of the flexible flat cable is provided with bending sections and the bending sections have the same curving direction so that the flexible flat cable becomes substantially spiral.
The electronic device with a built-in disk device according to a fifth aspect of the invention is the electronic device with a built-in disk device according to any one of the first to fourth aspects of the invention, characterized in that the stopping/retaining section which retains the shape of the slack portion of the flexible flat cable is formed using an L-figured stopper.
The electronic device with a built-in disk device according to a sixth aspect of the invention is the electronic device with a built-in disk device according to any one of the first to fourth aspects of the invention, characterized in that the stopping/retaining section which retains the shape of the slack portion of the flexible flat cable is formed so as to allow the flexible flat cable to pass through a slit provided on a side of a frame which forms an outer frame of the disk device.
The electronic device with a built-in disk device according to a seventh aspect of the invention is the electronic device with a built-in disk device according to any one of the first to fourth aspects of the invention, characterized in that the stopping/retaining section which retains the shape of the slack portion of the flexible flat cable is formed using a hook provided on a side of a frame which forms an outer frame of the disk device.
The electronic device with a built-in disk device according to an eighth aspect of the invention is the electronic device with a built-in disk device according to any one of the second to fifth aspects of the invention, the flexible flat cable retained by the stopping/retaining section being disposed between an inner wall surface of a cabinet which constitutes a housing of the electronic device with a built-in disk device and an end of a frame side piece which forms an outer frame of the disk device, characterized in that convex parts which exceed in height at least the thickness of the flexible flat cable are formed at parts of the stopping/retaining section facing the end of the frame side piece which forms the outer frame of the disk device.
According to the above described structure, the convex parts which exceed in height at least the thickness of the flexible flat cable are formed at parts of the stopping/retaining section facing the end of the frame side piece which forms the outer frame of the disk device. Therefore, even in the case where a load is applied to the housing from the outside of the electronic device, the cabinet making up the housing is bent in an inward direction of the device, the inner wall surface side of the cabinet touches the stopping/retaining section and the stopping/retaining section is thereby bent in the direction in which the stopping/retaining section touches the end of the frame side piece, the convex parts formed in the stopping/retaining section contact the end of the frame side piece, which prevents the flexible flat cable from being caught between the stopping/retaining section and the end of the frame side piece.
The electronic device with a built-in disk device according to a ninth aspect of the invention is the electronic device with a built-in disk device according to any one of the second to fifth aspects of the invention, with the flexible flat cable retained by the stopping/retaining section disposed between an inner wall surface of a cabinet which constitutes a housing of the electronic device with a built-in disk device and an end of a frame side piece which forms an outer frame of the disk device, characterized in that convex parts which exceed in height at least the thickness of the flexible flat cable are formed at parts facing the stopping/retaining section at an end of the frame side piece which forms the outer frame of the disk device.
According to the above described structure, convex parts which exceed in height at least the thickness of the flexible flat cable are formed at parts facing the stopping/retaining section at an end of the frame side piece which forms the outer frame of the disk device. Therefore, even in the case where a load is applied to the housing from the outside of the electronic device, the cabinet making up the housing is bent in an inward direction of the device, the inner wall surface side of the cabinet touches the stopping/retaining section and the stopping/retaining section is thereby bent in the direction in which the stopping/retaining section touches the end of the frame side piece, the convex parts formed at the end of the frame side piece contact the stopping/retaining section, which prevents the flexible flat cable from being caught between the stopping/retaining section and the end of the frame side piece.
The electronic device with a built-in disk device according to a tenth aspect of the invention is the electronic device with a built-in disk device according to any one of the second to fifth aspects of the invention, the flexible flat cable retained by the stopping/retaining section being disposed between an inner wall surface of a cabinet which constitutes a housing of the electronic device with a built-in disk device and an end of a frame side piece which forms an outer frame of the disk device, characterized in that convex parts which exceed in height at least the thickness of the flexible flat cable are formed on the side of the stopping/retaining section facing the inner wall surface of the cabinet.
According to the above described structure, convex parts which exceed in height at least the thickness of the flexible flat cable are formed on the side of the stopping/retaining section facing the inner wall surface of the cabinet. Therefore, even in the case where a load is applied to the housing from the outside of the electronic device, the cabinet making up the housing is bent in an inward direction of the device, the inner wall surface side of the cabinet is thereby bent in the direction in which the inner wall surface side of the cabinet touches the stopping/retaining section, the convex parts formed in the stopping/retaining section contact the inner wall surface side of the cabinet, which prevents the flexible flat cable from being caught between the stopping/retaining section and the inner wall surface side of the cabinet.
The electronic device with a built-in disk device according to an eleventh aspect of the invention is the electronic device with a built-in disk device according to any one of the first to seventh aspects of the invention, the flexible flat cable being disposed between an inner wall surface of a cabinet which constitutes a housing of the electronic device with a built-in disk device and an end of a frame side piece which forms an outer frame of the disk device, characterized in that convex parts which exceed in height at least the thickness of the flexible flat cable disposed between the inner wall surface of the cabinet and the end of the frame side piece or the thickness of the flexible flat cable and the stopping/retaining section are formed at the end of the frame side piece which forms the outer frame of the disk device.
According to the above described structure, convex parts which exceed in height at least the thickness of the flexible flat cable disposed between the inner wall surface of the cabinet and the end of the frame side piece or the thickness of the flexible flat cable and the stopping/retaining section are formed at the end of the frame side piece which forms the outer frame of the disk device. Therefore, even in the case where a load is applied to the housing from the outside of the electronic device, the cabinet making up the housing is bent in an inward direction of the device, the inner wall surface side of the cabinet is thereby bent in the direction in which the inner wall surface side of the cabinet touches the stopping/retaining section, the convex parts formed at the end of the frame side piece contact the inner wall surface side of the cabinet, which prevents the flexible flat cable from being caught between the stopping/retaining section and the end of the frame side piece or between the stopping/retaining section and the inner wall surface side of the cabinet.
The electronic device with a built-in disk device according to a twelfth aspect of the invention is the electronic device with a built-in disk device according to any one of the first to seventh aspects of the invention, the flexible flat cable being disposed between an inner wall surface of a cabinet which constitutes a housing of the electronic device with a built-in disk device and an end of a frame side piece which forms an outer frame of the disk device, characterized in that convex parts which exceed in height at least the thickness of the flexible flat cable disposed between the inner wall surface of the cabinet and the end of the frame side piece or the thickness of the flexible flat cable and the stopping/retaining section are formed at parts of the inner wall surface of the cabinet facing the end of the frame side piece which forms the outer frame of the disk device.
According to the above described structure, convex parts which exceed in height at least the thickness of the flexible flat cable disposed between the inner wall surface of the cabinet and the end of the frame side piece or the thickness of the flexible flat cable and the stopping/retaining section are formed at parts of the inner wall surface of the cabinet facing the end of the frame side piece which forms the outer frame of the disk device. Therefore, even in the case where a load is applied to the housing from the outside of the electronic device, the cabinet making up the housing is bent in an inward direction of the device, the inner wall surface side of the cabinet is thereby bent in the direction in which the inner wall surface side of the cabinet touches the stopping/retaining section, the convex parts formed on the inner wall surface of the cabinet contact the end of the frame side piece, which prevents the flexible flat cable from being caught between the stopping/retaining section and the end of the frame side piece or between the stopping/retaining section and the inner wall surface side of the cabinet.
According to the electronic device with a built-in disk device according to a first aspect of the invention comprising a disk device which reads and/or writes a signal from/to a disk medium and a disk device control substrate which controls and drives the disk device and controls a signal input/output to/from the disk device, said disk device and said disk device control substrate being arranged side by side, and a flexible flat cable which electrically connects a pickup section which moves to and fro in the radius direction of the disk medium to read and/or write a signal from the disk medium loaded in the disk device and the disk device control substrate, characterized in that a slack portion provided for the flexible flat cable between the pickup section and the disk device control substrate to absorb the distance of reciprocating motion of the pickup section is provided with two or more bending sections, the movement of the slack portion of the flexible flat cable caused by reciprocating motion of the pickup section is absorbed by bending operations of the two or more bending sections provided for the flexible flat cable, and therefore the movement of the slack portion of the flexible flat cable is hardly transmitted to the connection between the disk device control substrate and the flexible flat cable. This prevents a load from applying to the connection between the disk device control substrate and flexible flat cable.
According to the electronic device with a built-in disk device according to a second aspect of the invention comprising a disk device which reads and/or writes a signal from/to a disk medium and a disk device control substrate which controls and drives the disk device and controls a signal input/output to/from the disk device, said disk device and said disk device control substrate being arranged side by side, and a flexible flat cable which electrically connects a pickup section which moves to and fro in the radius direction of the disk medium to read and/or write a signal from the disk medium loaded in the disk device and the disk device control substrate, characterized in that a slack portion is provided for the flexible flat cable between the pickup section and the disk device control substrate to absorb the distance of reciprocating motion of the pickup section and a stopping/retaining section for retaining the shape of the slack portion of the flexible flat cable is provided at a connection point between the disk device control substrate and the flexible flat cable, the movement of the slack portion of the flexible flat cable produced following the reciprocating motion of the pickup section is absorbed by the stopping/retaining section, preventing a load from applying to the connection between the disk device control substrate and the flexible flat cable.
According to the electronic device with a built-in disk device according to an eighth aspect of the invention, which is the electronic device with a built-in disk device according to any one of the second to fifth aspects of the invention, the flexible flat cable retained by the stopping/retaining section being disposed between an inner wall surface of a cabinet which constitutes a housing of the electronic device with a built-in disk device and an end of a frame side piece which forms an outer frame of the disk device, characterized in that convex parts which exceed in height at least the thickness of the flexible flat cable are formed at parts of the stopping/retaining section facing the end of the frame side piece which forms the outer frame of the disk device, even in the case where a load is applied to the housing from the outside of the electronic device, the cabinet making up the housing is bent in an inward direction of the device, the inner wall surface side of the cabinet touches the stopping/retaining section and the stopping/retaining section is thereby bent in the direction in which the stopping/retaining section touches the end of the frame side piece, the convex parts formed in the stopping/retaining section contact the end of the frame side piece, which prevents the flexible flat cable from being caught between the stopping/retaining section and the end of the frame side piece. This can prevent problems of causing an adverse influence on the operation of the pickup section by the flexible flat cable being caught between the stopping/retaining section and the end of the frame side piece, imposing a load on each member connected to the flexible flat cable and damaging the flexible flat cable itself.
With reference now to the attached drawings, embodiments of the present invention will be explained below. The following embodiments are only examples when implementing the present invention and not intended to limit the present invention to within the scope thereof.
As shown in
The disk device 11 is provided with the pickup section 11a, etc., which moves to and fro in the radius direction of an optical disk medium 20 to read and/or write a signal from/to the optical disk medium 20 and the disk device control substrate 12 is a substrate which controls a drive motor, etc., provided for the disk device 11 or controls a signal input/output to/from the pickup section 11a. An LCD module is provided with a liquid crystal panel 13 which is a display device, a liquid crystal panel drive circuit which controls and drives the liquid crystal panel, a backlight which is a light source and an inverter circuit which controls and drives the backlight, and the main control substrate 14 controls the LCD module and processes/controls, etc. a video/speech signal. The main control substrate 14 and disk device control substrate 12 are shown in a simplified form in the figure, but they have a structure including various electric/electronic parts mounted on a printed circuit board on which a circuit pattern is printed.
According to the LCD 10 of the present invention, as shown in
As shown in
It is also possible to form a stopper such as a hook in the part of the disk device 11 where the side 11b almost contacts the FFC 73 (vicinity of the bending section 73b in
As shown in
Another structure of the stopping/retaining section which retains the shape of the FFC 93 may be formed by providing a hook 100 as shown in
As shown in FIGS. 11(a) and (b), the stopper 170 corresponds to the stopper 40 shown in Embodiment 1 with convex parts 171 formed at parts thereof through drawing. As shown in
As shown in
As shown in
As shown in
As shown in
When a load F is applied to the back cabinet 17b, the back cabinet 17b is bent in an inward direction of the device and the protrusion formed on the inner wall surface side of the back cabinet 17b contacts the stopper, if the protrusion contacts the stopper at a position other than the position where the FFC 23 is located (e.g., part indicated by N in
In this embodiment, the convex parts 151 are formed only on the side facing the inner wall surface side of the back cabinet 17b, but in addition to this, it is also possible to form convex parts (convex parts 171 in Embodiment 4) on the side facing the frame side piece 11 bottom convex parts (convex parts 131 in Embodiment 5) at the top end of the frame side piece 11b of the disk device (this would not be required when the stopper 150 is formed of a highly resistant member, which eliminates the necessity for taking into consideration a situation in which the stopper 150 is bent (that is, a situation in which the FFC 23 is caught between the stopper 150 and frame side piece 11b)).
As shown in
As shown in
This embodiment assumes that the convex parts 161 are formed at the top end of the frame side piece 162 of the disk device, but it is also possible to form convex parts 161 on the inner wall surface side of the back cabinet 17b to produce similar effects.
The above described embodiments have been explained using an LCD as a specific example of the electronic device, but the present invention is not limited to this and the present invention is also applicable to a DVD reproducing/recording device, CD reproducing/recording device, MD reproducing/recording device, LD reproducing/recording device, etc., and a composite machine combining these devices and a display device, etc., in which a disk device and disk device control substrate are arranged side by side.
Number | Date | Country | Kind |
---|---|---|---|
2004-176786 | Jun 2004 | JP | national |
2005-030691 | Feb 2005 | JP | national |