The present invention relates to a lighting device and a display device.
There has been known in an image display device that a chassis made of metal is disposed on a back surface side of a display panel and a recessed portion projecting toward an opposite side from the display panel is provided on a portion of a flat surface of the chassis. One example of such an image display device is described in Japanese Unexamined Patent Application Publication No. 2012-53082. In the image display device, the recessed portion is formed with pressing to increase rigidity of the chassis.
In an assembling process, a light source board on which light sources (such as LEDs) are mounted is disposed on the chassis including such a recessed portion, and a connector for power supply is inserted in the light source board. In such an insertion step, if the light source board is warped into an inner space of the recessed portion, the insertion of the connector is not completed and a connection error may be caused. If the connector is inserted with stronger force to avoid such an error, the light source board may be deformed to be warped into the inner space of the recessed portion.
The technology described herein was made in view of the above circumstances. An object is to make electric connection between a light source board and a connector more surely.
(1) A lighting device according to one embodiment of the present invention includes light sources, at least one light source board on which the light sources are mounted, a chassis including a bottom section on which the at least one light source board is arranged and including a recessed portion on the bottom section, and a connector for electric connection arranged on a portion of the at least one light source board so as to overlap the recessed portion. The at least one light source board includes a portion surrounding the connector and includes at least one projected section on at least a part of the portion, and the projected section projects further than other part of the portion in a plate surface direction of the at least one light source board.
(2) In addition to the configuration (1), in another embodiment of the present invention, the at least one light source board has an elongated shape, and the connector is disposed on an end portion of the at least one light source board and inserted in a mount surface of the at least one light source board.
(3) In addition to the configuration (2), in another embodiment of the present invention, the at least one projected section projects in a direction crossing an elongated direction of the at least one light source board.
(4) In addition to the configuration (2) or (3), in another embodiment of the present invention, the at least one light source board includes a first end portion where the connector is disposed and a second end portion that is on an opposite side from the first end portion. The second end portion includes a recessed section, and the recessed section has a shape that follows a shape of the at least one projected section.
(5) In addition to one of the configurations (2) to (4), in another embodiment of the present invention, the at least one projected section includes projected sections and the at least one light source board has two long side surfaces that have the projected sections, respectively.
(6) In addition to any one of the configurations (2) to (5), in another embodiment of the present invention, the at least one light source board includes a body section that has an elongated quadrangular shape and on which the light sources are mounted, and the at least one projected section is integrally formed with the body section.
(7) In addition to the configuration (6), in another embodiment of the present invention, the at least one light source board includes light source boards, and the light source boards are arranged such that the body sections are parallel to each other.
(8) In addition to the configuration (7), in another embodiment of the present invention, each of the light source boards includes a first end portion where the connector is disposed and a second end portion that is on an opposite side from the first end portion, and the light source boards are arranged such that the first end portion of each of the light source boards is next to each other.
(9) In addition to the configuration (7) or (8), in another embodiment of the present invention, the light source boards are arranged entirely over the bottom section.
(10) In addition to any one of the configurations (1) to (9), in another embodiment of the present invention, the chassis includes a side section extending from an outer edge of the bottom section at a predetermined angle with respect to the bottom section, and a line that is connected to the connector is arranged in a space between the at least one light source board and the side section.
(11) In addition to any one of the configurations (1) to (10), in another embodiment of the present invention, the light sources are LEDs, and the connector is a connector for power supply.
(12) In addition to any one of the configurations (1) to (11), in another embodiment of the present invention, the at least one projected section has a projected length of at least 2 mm.
(13) A display device according to another embodiment of the present invention includes the lighting device according to any one of the configurations (1) to (12) and a display panel to which light from the lighting device is supplied.
(14) In addition to the configuration (13), in another embodiment of the present invention, the display panel is a liquid crystal panel.
According to the technology described herein, connection between the connector and the light source board can be improved.
A liquid crystal display device 10 (one example of a display device) according to a first embodiment will be described with reference to
The liquid crystal panel 20 is configured to display an image. The liquid crystal panel 20 has a laterally elongated quadrangular overall shape. The liquid crystal panel 20 has a screen size of about 45 inches and is generally classified into a middle size. The liquid crystal panel 20 includes two transparent glass substrates and two polarizing plates. The glass substrates are bonded to each other while having a predetermined gap therebetween and a liquid crystal layer is sealed between the two glass substrates. The polarizing plates are bonded to outer surfaces of the glass substrates, respectively. The backlight unit 30 is configured to supply light to the liquid crystal panel 20. As illustrated in
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The backlight chassis 31 is made of metal or resin. As illustrated in
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The reflection sheet 70 has a white surface that is good in light reflectivity. As illustrated in
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Each projected section 57 projects from a side surface of a portion of the body section 56 in a plate surface direction of the LED board 55. The portion of the body section 56 surrounds the connector 90. The projected section 57 is integrally formed with the body section 56 and has a triangular shape that projects in a direction (the Y-axis direction) crossing the longitudinal direction of the body section 56. If the projected section 57 projects in the longitudinal direction of the body section 56 (the X-axis direction), the longitudinal dimension of the LED board 55 becomes greater by the dimension of the projected section 57. The projected section 57 projects in the direction crossing the longitudinal direction and therefore, an extra space is not necessary to be provided in an outer edge area of the backlight unit 30. A projected length L57 of the projected section 57 is preferably at least about 2 mm.
According to the above configuration, in the assembling process of the backlight unit 30, as illustrated in
A LED board 155 according to a second embodiment will be described with reference to
The projected section 157 includes a first projected section 157A that is integrally formed with the first long side surface 56B and a second projected section 157B that is integrally formed with the second long side surface 56C. An operator can access the projected section 157 from both sides of a first long side surface 56B side and a second long side surface 56C side. Specifically, an operator can put a finger on one of the first projected section 157A or the second projected section 157B to insert the connector 90 through a mount surface of the LED board 155 completely. An operator can easily put his/her finger on the projected section 157 regardless of a right-handed person or a left-handed person and operability can be freely improved. Furthermore, the projected section 157 is visually outstanding. Therefore, when an operator arranges the LED boards 155 on the bottom section 31A of the backlight chassis 31, the operator is less likely to arrange the LED boards 155 with wrong directions and is likely to arrange the LED boards 155 with a correct direction such that the projected section 157 overlaps the recessed portion 32.
A LED board 255 according to a third embodiment will be described with reference to
As illustrated in
The present technology described herein is not limited to the embodiments described in the above descriptions and drawings. The following embodiments may be included in the technical scope.
(1) The shape of the projected section 57 may be other shapes such as a square or a semicircular shape as long as it projects.
(2) The number, the size, and the intervals of the LEDs 52 and the LED boards 55, 155, 255 are examples and may be other numbers and other dimensions.
(3) The bottom section 31A of the backlight chassis 31 may include multiple recessed portions that are similar to the recessed portion 32.
(4) The number, the size, and the shape of the connectors 90 are examples and may be other numbers, other dimensions, and other shapes. The connectors may be connectors for electric connection that are used for other than power supply.
(5) The liquid crystal display device 10 may have a vertically elongated quadrangular shape or a non-quadrangular shape.
(6) The backlight unit 30 may be a side edge type and LED boards mounted in such a backlight unit may be included in the technical scope.
(7) The liquid crystal display device 10 may have a size other than a middle size and LED boards mounted in such a liquid crystal display device may be included in the technical scope.