A liquid crystal display device includes a support frame having a bottom wall, and a main surrounding wall extending upwardly from and formed integrally as one piece with the bottom wall. The bottom wall and the surrounding wall cooperatively define a receiving space. The bottom wall includes a first support disposed in the receiving space. The main surrounding wall includes a second support disposed in the receiving space and spacedly above the first support. A backlight module is supported on the first support. A liquid crystal display panel is supported on the second support so that the liquid crystal display panel is positioned above the backlight module.
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18. A liquid crystal display device with a backlight module comprising:
a support frame including a bottom wall, and a main surrounding wall extending upwardly from and formed integrally as one piece with said bottom wall, said bottom wall and said surrounding wall cooperatively defining a receiving space, said bottom wall including a first support disposed in said receiving space, said main surrounding wall including a second support disposed in said receiving space and spacedly above said first support, wherein said main surrounding wall includes a left wall, a right wall, a front wall and a rear wall, said rear wall including a positioning structure to position said backlight module, said positioning structure includes a positioning groove and a positioning stud provided in said positioning groove;
a said backlight module supported on said first support, said backlight module including an optical film layer that has a projection engaged to said positioning groove and formed with a positioning hole for extension of said positioning stud therethrough;
a liquid crystal display panel supported on said second support so that said liquid crystal display panel is positioned above said backlight module; and
an upper casing that covers a periphery of said liquid crystal display panel and that is formed with an opening to expose said liquid crystal display panel;
wherein said support frame is made of a plastic material and includes two extension plates extending respectively from two opposite sides of said main surrounding wall, said liquid crystal display device further comprising a lower casing that is made of metal, that covers said support frame, and that is coupled to said upper casing, two coupling rods each disposed between said lower casing and a respective one of said extension plates, and two fasteners, each of said fasteners fixing one of said coupling rods and the respective said extension plate to said lower casing.
15. A liquid crystal display device with a backlight module comprising:
a support frame including a bottom wall, and a main surrounding wall extending upwardly from and formed integrally as one piece with said bottom wall, said bottom wall and said surrounding wall cooperatively defining a receiving space, said bottom wall including a first support disposed in said receiving space, said main surrounding wall including a second support disposed in said receiving space and spacedly above said first support, wherein said main surrounding wall includes a left wall, a right wall, a front wall and a rear wall, said rear wall including a positioning structure to position said backlight module, said positioning structure includes a positioning groove and a positioning stud provided in said positioning groove;
a said backlight module supported on said first support, said backlight module including an optical film layer that has a projection engaged to said positioning groove and formed with a positioning hole for extension of said positioning stud therethrough; and
a liquid crystal display panel supported on said second support so that said liquid crystal display panel is positioned above said backlight module;
wherein each of said first support and said second support has a horizontal support face;
wherein said backlight module includes a light guide plate having a lateral side, and a light-emitting unit disposed on said lateral side, said main surrounding wall being recessed to form a cavity that is spacedly below said second support, said light-emitting unit being disposed in said cavity; and
wherein said support frame is made by injection molding a plastic material, said light-emitting unit including a flexible circuit board, and a light-emitting diode disposed on a top side of said flexible circuit board, said liquid crystal display device further comprising a metal frame disposed in said cavity and receiving clampingly said light-emitting unit and said light guide plate.
1. A liquid crystal display device with a backlight module comprising:
a support frame including a bottom wall, and a main surrounding wall extending upwardly from and formed integrally as one piece with said bottom wall, said bottom wall and said surrounding wall cooperatively defining a receiving space, said bottom wall including a first support disposed in said receiving space, said main surrounding wall including a second support disposed in said receiving space and spacedly above said first support, wherein said main surrounding wall includes a left wall, a right wall, a front wall and a rear wall, said rear wall including a positioning structure to position said backlight module, said positioning structure includes a positioning groove and a positioning stud provided in said positioning groove;
a said backlight module supported on said first support, said backlight module including an optical film layer that has a projection engaged to said positioning groove and formed with a positioning hole for extension of said positioning stud there through; and
a liquid crystal display panel supported on said second support so that said liquid crystal display panel is positioned above said backlight module;
wherein each of said first support and said second support has a horizontal support face;
wherein said backlight module includes a light guide plate having a lateral side, and a light-emitting unit disposed on said lateral side, said main surrounding wall being recessed to form a cavity that is spacedly below said second support, said light-emitting unit being disposed in said cavity; and
wherein said light guide plate further has a top side connected to a top end of said lateral side, said light-emitting unit including a flexible circuit board, and a light-emitting diode disposed on a bottom side of said flexible circuit board and corresponding in position to said lateral side of said light guide plate, said liquid crystal display device further comprising an adhesive piece adhered to and disposed between said top side of said light guide plate and said flexible circuit board.
13. A liquid crystal display device with a backlight module comprising:
a support frame including a bottom wall, and a main surrounding wall extending upwardly from and formed integrally as one piece with said bottom wall, said bottom wall and said surrounding wall cooperatively defining a receiving space, said bottom wall including a first support disposed in said receiving space, said main surrounding wall including a second support disposed in said receiving space and spacedly above said first support, wherein said main surrounding wall includes a left wall, a right wall, a front wall and a rear wall, said rear wall including a positioning structure to position said backlight module, said positioning structure includes a positioning groove and a positioning stud provided in said positioning groove;
a said backlight module supported on said first support, said backlight module including an optical film layer that has a projection engaged to said positioning groove and formed with a positioning hole for extension of said positioning stud therethrough; and
a liquid crystal display panel supported on said second support so that said liquid crystal display panel is positioned above said backlight module;
wherein each of said first support and said second support has a horizontal support face;
wherein said backlight module includes a light guide plate having a lateral side, and a light-emitting unit disposed on said lateral side, said main surrounding wall being recessed to form a cavity that is spacedly below said second support, said light-emitting unit being disposed in said cavity; and
wherein said light guide plate further has a bottom side connected to a bottom end of said lateral side, said light-emitting unit including a flexible circuit board abutting against said first support, and a light-emitting diode disposed on a top side of said flexible circuit board and corresponding in position to said lateral side of said light guide plate, said liquid crystal display device further comprising an adhesive piece adhered to and disposed between said bottom side of said light guide plate and said flexible circuit board.
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6. The liquid crystal display device as claimed in claim 4 1, wherein said main surrounding wall further includes a third support spacedly above said second support and having a horizontal support face, said liquid crystal display device further comprising a touch control panel supported on said third support.
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This application is a continuation-in-part of U.S. patent application Ser. No. 12/952,126 filed on Nov. 22, 2010 and Ser. No. 13/237,938 filed on Sep. 21, 2011, the disclosures of each of which are incorporated herein by reference.
This application claims priority of Chinese Patent Application Nos. 201110081284.8 filed on Apr. 1, 2011; 201110116425.5 filed on May 6, 2011; and 201210079121.0 filed on Mar. 22, 2012, the disclosures of each of which are also incorporated herein by reference.
1. Field of the Invention
The disclosure relates to a display device, more particularly to a frame structure of a liquid crystal display device and an electronic equipment having the liquid crystal display device.
2. Description of the Related Art
A currently available liquid crystal display module (LCM) includes a lower metal frame that accommodates therein a plastic frame, a backlight module disposed in the lower metal frame, and a liquid crystal display panel mounted on the plastic frame and disposed above the backlight module. Through an upper metal frame that is assembled to a periphery of the lower metal frame and that abuts against a top end of the liquid crystal display panel, the liquid crystal display panel can be stably positioned on the plastic frame. At this time, the assembly of the liquid crystal display module is completed. The liquid crystal display module is then sent to a system integrator where the liquid crystal display module is assembled between upper and lower casings.
However, this kind of liquid crystal display module has a complicated structure and involves many components, so that the assembly thereof is time-consuming and the manufacturing cost associated therewith is increased.
Therefore, an object of the present disclosure is to provide a liquid crystal display device having a one-piece frame structure that can minimize the number of components so that the structure thereof is simple, the assembly time can be reduced, the manufacturing cost associated therewith can be saved, and tolerances among the components can also be reduced.
The object of the present disclosure and the solution to the problem existing in the prior art can be realized by using the below technical means. According to the present disclosure, a liquid crystal display device comprises a support frame, a backlight module, and a liquid crystal display panel.
The support frame includes a bottom wall, and a main surrounding wall extending upwardly from and formed integrally as one piece with the bottom wall. The bottom wall and the surrounding wall cooperatively define a receiving space. The bottom wall includes a first support disposed in the receiving space. The main surrounding wall includes a second support disposed in the receiving space and spacedly above the first support. The backlight module is supported on the first support. The liquid crystal display panel is supported on the second support so that the liquid crystal display panel is positioned above the backlight module.
The object of the present disclosure and the solution to the problem existing in the prior art can be realized by using the below technical means.
Each of the first support and the second support has a horizontal support face.
The backlight module includes a light guide plate having a lateral side, and a light-emitting unit disposed on the lateral side. The main surrounding wall is recessed to form a cavity that is spacedly below the second support. The light-emitting unit is disposed in the cavity.
In an embodiment, the light guide plate further has a top side connected to a top end of the lateral side. The light-emitting unit includes a flexible circuit board, and a light-emitting diode disposed on a bottom side of the flexible circuit board and corresponding in position to the lateral side of the light guide plate. The liquid crystal display device further comprises an adhesive piece adhered to and disposed between the top side of the light guide plate and the flexible circuit board.
In another embodiment, the light guide plate further has a bottom side connected to a bottom end of the lateral side. The light-emitting unit includes a flexible circuit board abutting against the first support, and a light-emitting diode disposed on a top side of the flexible circuit board and corresponding in position to the lateral side of the light guide plate. The liquid crystal display device further comprises an adhesive piece adhered to and disposed between the bottom side of the light guide plate and the flexible circuit board.
In still another embodiment, the support frame is made by injection molding a plastic material. The light-emitting unit includes a flexible circuit board, and a light-emitting diode disposed on a top side of the flexible circuit board. The liquid crystal display device further comprises a metal frame disposed in the cavity and receiving clampingly the light-emitting unit and the light guide plate.
The metal frame is fixed to the support frame, and includes a vertical plate, a lower clamping plate extending horizontally and inwardly from a bottom end of the vertical plate, and an upper clamping plate extending horizontally and inwardly from a top end of the vertical plate. The lower clamping plate abuts against the first support and engages a bottom side of the flexible circuit board. The upper clamping plate engages a top end of the light-emitting diode and a top side of the light guide plate that is connected to a top end of the lateral side of the light guide plate so that the light-emitting diode is positioned at a location corresponding to the lateral side of the light guide plate.
The support frame is formed with an accommodation groove. The liquid crystal display device further comprises a control circuit board disposed in the accommodation groove, and a flexible transmission circuit connected electrically to the liquid crystal display panel and the control circuit board.
The bottom wall has a bottom face that is recessed to form the accommodation groove. The flexible transmission circuit is configured as a circuit band made by a chip on film (COF) technology. The flexible transmission circuit is bent downward and then inward extending around the support frame to connect with the control circuit board.
The main surrounding wall includes a left wall, a right wall, a front wall and a rear wall. The rear wall includes a positioning structure to position the backlight module. The positioning structure includes a positioning groove and a positioning stud provided in the positioning groove. The backlight module includes an optical film layer that has a projection engaged to the positioning groove and formed with a positioning hole for extension of the positioning stud therethrough.
The liquid crystal display device further comprises at least one double-sided adhesive tape adhering the liquid crystal display panel to one side of the second support.
The main surrounding wall includes a retention portion projecting from the other side of the second support to retain the liquid crystal display panel thereon.
The double-sided adhesive tape includes a pull portion exposed partially from the liquid crystal display panel, and two double-sided adhesive portions adhered to two opposite sides of the pull portion. The double-sided adhesive portions are further adhered to said one side of the second support and the liquid crystal display panel, respectively.
In another embodiment, the liquid crystal display device further comprises two the double-sided adhesive tapes to adhere the liquid crystal display panel to two opposite sides of the second support.
In still another embodiment, the main surrounding wall includes two retention portions projecting respectively from two opposite sides of the second support to retain the liquid crystal display panel thereon.
The liquid crystal display device further comprises an upper casing that covers a periphery of the liquid crystal display panel and that is formed with an opening to expose the liquid crystal display panel.
The support frame further includes an auxiliary surrounding wall extending upwardly from an outer periphery of the bottom wall and surrounding the main surrounding wall. The upper casing is connected to the auxiliary surrounding wall.
The support frame is made of a plastic material and includes two extension plates extending respectively from two opposite sides of the main surrounding wall. The liquid crystal display device further comprises a lower casing that is made of metal, that covers the support frame, and that is coupled to the upper casing, two coupling rods each disposed between the lower casing and a respective one of the extension plates, and two fasteners. Each of the fasteners fixes one of the coupling rods and the respective the extension plate to the lower casing.
The upper casing includes a first coupling portion. The liquid crystal display panel further includes a glass to cover the opening. The glass includes a second coupling portion coupled to the first coupling portion.
The first coupling portion is an inner periphery of the upper casing and defines the opening. The second coupling portion is configured as an annular groove to receive engagingly the inner periphery.
The main surrounding wall further includes a third support spacedly above the second support and having a horizontal support face. The liquid crystal display device further comprises a touch control panel supported on the third support.
Another object of the present disclosure is to provide an electronic equipment having a liquid crystal display device. The liquid crystal display device has a one-piece frame structure that can minimize number of components so that the structure thereof is simple, the assembly time can be reduced, the manufacturing cost associated therewith can be saved, and tolerances among the components can also be reduced.
According to another aspect of disclosure of the present disclosure, an electronic equipment comprises a lower casing, an electronic device, and a liquid crystal display device.
The lower casing defines a mounting space. The electronic device is disposed in the mounting space. The liquid crystal display device is disposed in the mounting space and is coupled electrically to the electronic device. The liquid crystal display device includes a support frame, a backlight module, a liquid crystal display panel, and a touch control panel. The support frame includes a bottom wall, and a main surrounding wall extending upwardly from and formed integrally as one piece with the bottom wall. The bottom wall and the surrounding wall cooperatively define a receiving space. The bottom wall includes a first support disposed in the receiving space. The main surrounding wall includes a second support disposed in the receiving space and spacedly above the first support, and a third support spacedly above the second support. The backlight module is supported on the first support. The liquid crystal display panel is supported on the second support. The touch control panel is supported on the third support.
Through the aforesaid technical means, the advantages and effects of the liquid crystal display device of this disclosure reside in that, through the first and second supports of the one-piece support frame that can accommodate respectively the backlight module and the liquid crystal display panel, the number of components of the liquid crystal display device can be reduced so that the structure thereof is simple, the assembly time can be reduced, the manufacturing cost associated therewith can be saved, and tolerances among the components can also be reduced.
Other features and advantages of the present disclosure will become apparent in the following detailed description of the embodiments with reference to the accompanying drawings, of which:
The above-mentioned and other technical contents, features, and effects of this disclosure will be clearly presented from the following detailed description of ten embodiments in coordination with the reference drawings. Through description of the concrete implementation method, the technical means employed and the effectiveness to achieve the predetermined purposes of the present disclosure will be thoroughly and concretely understood. However, the enclosed drawings are used for reference and description only, and are not used for limiting the present disclosure.
Before this disclosure is described in detail, it should be noted that, in the following description, similar elements are designated by the same reference numerals.
Referring to
As shown in
A detailed structure of the liquid crystal display device 100 will be described hereinbelow.
With reference to
The support frame 1 is made by injection molding a plastic material. The main surrounding wall 12 further includes an annular projection 122 projecting upwardly from the second support 121. The liquid crystal display device 100 further comprises a positioning element 4 in the form of a frame. The positioning element 4 covers the main surrounding wall 12, and abuts against the projection 122 and the liquid crystal display panel 3. The positioning element 4 is fixed to the projection 122 and the liquid crystal display panel 3 by using adhesive or a screw fastening method. Through this, the liquid crystal display panel 3 can be stably positioned to the main surrounding wall 12. The positioning element 4 can be made of Mylar, aluminum foil, or metal. In this embodiment, the positioning element 4 is made of metal so as to provide an anti-EMI (anti-electromagnetic interference) effect.
The support frame 1 further includes an auxiliary surrounding wall 14 extending upwardly and integrally from an outer periphery of the bottom wall 11 and surrounding an outer periphery of the main surrounding wall 12. The liquid crystal display device 100 further comprises an upper casing 5 covering a periphery of the liquid crystal display panel 3. The upper casing 5 is made by injection molding a plastic material. The upper casing 5 has an upper wall 54 formed with an opening 51 for exposure of the liquid crystal display panel 3, and an outer peripheral wall 52 extending downwardly from an outer periphery of the upper wall 54. The outer peripheral wall 52 is connected to the auxiliary surrounding wall 14 by using a hook-and-groove interlocking means or a screw fastening method. Through such a connection, the upper casing 5 can be stably fixed to the support frame 1. It should be noted that the upper casing 5 of this embodiment may be configured as that shown in
Further, the liquid crystal display device further comprises an adhesive piece 61. The adhesive piece 61 is configured as a double-sided adhesive tape adhered to and disposed between the top side 222 of the light guide plate 22 and the bottom side of the flexible circuit board 241, so that the flexible circuit board 241 can be stably positioned to the top side 222 of the light guide plate 22.
Referring to
Referring to
Further, to enhance flatness of the first support 111 so that the light-emitting diode 242 cannot be slantingly disposed when assembled to the support frame 1, the metal frame 62 is fixed to the support frame 1 by, for example, a screw fastening method. The metal frame 62 has a substantially U-shaped cross section, and includes a vertical plate 621, a lower clamping plate 622 extending horizontally from a bottom end of the vertical plate 621, and an upper clamping plate 623 extending horizontally from a top end of the vertical plate 621. The lower clamping plate 622 abuts against the first support 111 and engages the bottom side of the flexible circuit board 241. The upper clamping plate 623 engages a top end of the light-emitting diode 242 and the top side 222 of the light guide plate 22. Through the upper and lower clamping plates 623, 622 that cooperatively clamp therebetween the light-emitting unit 24 and the light guide plate 22, the light-emitting diode 242 can be positioned at a location corresponding to the lateral side 221 of the light guide plate 22. Hence, light generated by the light-emitting diode 242 can be uniformly emitted to the light guide plate 22 through the lateral side 221 thereof.
Referring to
The upper casing 5 includes a first coupling portion 53. The glass 7 includes a second coupling portion 71 coupled to the first coupling portion 53. Through the interconnection of the first and second coupling portions 53, 71, the glass 7 can be fixed to the upper casing 5 so as to cover the opening 51. In this embodiment, the first coupling portion 53 is an inner periphery of the upper wall 54 and defines the opening 51. The second coupling portion 71 is configured as an annular groove that extends inwardly from an outer peripheral face 70 of the glass 7 and receiving engagingly the inner periphery or the first coupling portion 53. The connection between the first and second coupling portions 53, 71 can be accomplished using the below two methods.
In the first method, the glass 7 is cooled to shrink its volume, after which the glass 7 is brought to a working environment having a room temperature. The glass 7 is then inserted into the opening 51 of the upper casing 5 aligning the second coupling portion 71 with the first coupling portion 53. After the glass 7 is placed at room temperature for a period of time, the glass 7 will return to a room temperature condition and the volume thereof will expand. Hence, the second coupling portion 71 is coupled fixedly to the first coupling portion 53.
In the second method, the upper casing 5 is heated to expand its volume, after which the upper casing 5 is brought to a working environment having a room temperature. The glass 7 is then inserted into the opening 51 of the upper casing 5 aligning the second coupling portion 71 with the first coupling portion 53. After the upper casing 5 is placed at room temperature for a period of time, the upper casing 5 will return to a room temperature condition and the volume thereof will shrink. Hence, the second coupling portion 71 is coupled fixedly to the first coupling portion 53.
In both methods, because the second coupling portion 71 can be coupled fixedly to the first coupling portion 53, the glass 7 can be assembled fixedly and stably to the upper casing 5. Hence, the structural strength of the upper casing 5 can be enhanced. Moreover, the glass 7 can be configured to partly or fully cover the upper wall 54, so that the liquid crystal display device 130 can exhibit a frameless visual effect. It should be noted that the connection between the first and second coupling portions 53, 71 is not limited to the aforesaid disclosures.
Referring to
The two coupling rods 64 are made of metal and are connected respectively to two hinges (not shown) of the notebook computer. The hinges are disposed in a system housing (not shown) of the notebook computer, so that the liquid crystal display device 140 can rotate relative to the system housing through the hinges. Each of the coupling rods 64 is elongated, and is disposed between a base plate 632 of the lower casing 63 and a respective extension plate 15. Each fastener 65 is configured as a screw that extends through one of the extension plates 15 and the respective coupling rod 64 and that engages threadedly the base plate 632, so that each extension plate 15 and the respective coupling rod 64 are fixed to the base plate 632. By fixing the coupling rods 64 between the base plate 632 and the respective extension plates 15, the structural strength among the hinges, the support frame 1 and the lower casing 63 can be enhanced. Hence, the liquid crystal display device 140 can rotate smoothly relative to the system housing through the hinges. Further, as shown in
As shown in
The support frame 1 is formed with an accommodation groove 112. The liquid crystal display device 140 further comprises a control circuit board 66 disposed in the accommodation groove 112, and a flexible transmission circuit 67 connected electrically to the liquid crystal display panel 3 and the control circuit board 66. Through the presence of the accommodation groove 112 that accommodates the control circuit board 66, the control circuit board 66 and the flexible transmission circuit 67 can be disposed between the upper casing 5 and the lower casing 63. Either the upper casing 5 or the lower casing 63 does not need an additional structure to receive the control circuit board 66. Hence, the width of the upper wall 54 can be reduced, and the liquid crystal display device 140 can have a narrow upper frame.
Concretely speaking, the bottom wall 11 of the support frame 1 has a bottom face 113 that is recessed to form the accommodation groove 112, so that the control circuit board 66 can be received inside the bottom wall 11. The flexible transmission circuit 67 is configured as a circuit band made by a chip on film (COF) technology and transmitting a control signal generated by the control circuit board 66 to the liquid crystal display panel 3. The flexible transmission circuit 67 is bent downward and then inward extending around the support frame 1 to connect with the control circuit board 66. Through this, the flexible transmission circuit 67 can be positioned between the support frame 1 and the positioning element 4.
Referring to
In this embodiment, the rear wall 127 of the main surrounding wall 12 includes two positioning structures 128 spaced apart in a left-right direction to position the backlight module 2 so that the backlight module 2 is assembled to the support frame 1 in a correct direction of assembly. Further, the positioning structures 128 can position the backlight module 2 in the receiving space 13.
Concretely speaking, each of the positioning structures 128 includes a positioning groove 131 and a positioning stud 132 provided in the positioning groove 131. The optical film layer 23 of the backlight module 2 includes two projections 231 each having a shape matching that of the positioning groove 131 so as to engage with the same. Each of the projections 231 is formed with a positioning hole 232 having a shape matching that of the positioning stud 132. When each projection 231 engages the respective positioning groove 131, the positioning stud 132 of each positioning structure 128 extends into the positioning hole 232 of the respective projection 231 simultaneously, so that the optical film layer 23 of the backlight module 2 can be stably positioned in the receiving space 13 and will not rocked. By providing the positioning structures 128 on the rear wall 127 of the main surrounding wall 12, the size of the left and right sides of each of the support frame 1 and the upper wall 54 of the upper casing 5 can be effectively reduced. For example, as shown in
Referring to
In this embodiment, the liquid crystal display device 160 further comprises a double-sided adhesive tape 68 adhering the liquid crystal display panel 3 to one side of the second support 121. The main surrounding wall 12 further includes a retention portion 129 projecting from the other side of the second support 121. The double-sided adhesive tape 68 and the retention portion 129 are opposite to each other. When the liquid crystal display panel 3 is assembled on the support frame 1, the liquid crystal display panel 3 is placed on the second support 121 such that the double-sided adhesive tape 68 adheres one side of the liquid crystal display panel 3 and the retention portion 129 retains the other side of the liquid crystal display panel 3 in a retention hole 10 (see
With reference to
Alternatively, as shown in
Referring to
Referring to
Referring to
Referring to
In summary, the liquid crystal display device 100-190 of each of the embodiments uses the first and second supports 111, 121 of the integrally formed support frame 1 to support the backlight module 2 and the liquid crystal display panel 3, respectively, so that the number of components of the liquid crystal display device 100-190 can be reduced and the structure of the liquid crystal display device 100-190 simple. Further, the assembly time can be shortened, the manufacturing costs can be saved, and the accumulated tolerance of the components can be reduced. Hence, the objects of this disclosure can be realized.
While the present disclosure has been described in connection with what are considered the most practical embodiments, it is understood that this disclosure is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Zhang, Meng, Hsu, Ching-Fu, Lin, Tzu-Wei, Kao, Lien-Te, Lu, Chi-Yeh, Pan, Ming-Hung, Lin, Ming-Chen, Lin, Min-Wei, Chen, Ting-Feng, Xia, Wan-Bing, Yen, Kai-Cheng
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