This application makes reference to, incorporates the same herein, and claims all benefits accruing under 35 U.S.C. §119 from an application for PLASMA DISPLAY DEVICE earlier filed in the Korean Intellectual Property Office on the 9th of Mar. 2007 and there duly assigned Serial No. 2007-0023665.
1. Field of the Invention
The present invention relates to a plasma display devices generally, and, more particularly, to a plasma display panel having a flexible cable and a connector which facilitates creation of reliable electrical connection while allowing efficient assembly of each plasma display panel.
2. Description of Related Art
Plasma display devices using plasma display panels (PDPs) are flat display devices that display images by using a gas discharge, and are considered to be the next generation of large-scale, flat panel display devices due to those of their excellent display properties such as high brightness, high contrast, lack of a residual image, wide viewing angle, and thin and large-scale display structure.
Typically, a plasma display device includes a plasma display panel (PDP), a chassis base to support the PDP, a circuit unit to drive the PDP, and a case.
The plasma display device further includes a signal transmitting conductor in which electronic devices are mounted to transmit signals between the PDP and the circuit unit.
Flat film cables (FFCs) or tape carrier packages (TCPs) are typically used as the signal transmitting conductor. Since the FFCs and TCPs generally include flexible cables, the signal transmitting conductor needs to include a cable connector that connects the flexible cable to the circuit unit.
In contemporary manufacturing practice, a flexible cable is usually a flat film which is inserted into a cable connector, and the cable is electrically connected to the cable connector. The connector usually provides a slot, to receive the cable pad, and that slot is traditionally designed to be wider than the cable pad so as to improve assembly efficiency under long-standing principles of engineering design which strive for ease and rapid assembly line pace for insertion of the cable into the slot and preservation of compactedness of the overall design of the plasma display panel.
Not infrequently, when the cable is poorly inserted into a slot of a cable connector, the alignment of the array of electrically conduction cable pads which terminate the cable become skewed relative to the direction of insertion, because an inserting unit of the connector is wider than the cable. This skewing will cause misalignment between the individual cable pads and the corresponding electrical connections housed within the cable connector, and consequently, defective electrical connections. Additionally, the cable pads may not be securely seated with their corresponding electrical connector, and a jolt subsequent to manufacture may cause an open connection and thus, a defective product.
It is therefore, an object of the present invention to provide an improved plasma display device, and process for manufacturing an improved plasma display device.
It is another object to provide a plasma display device able to assure continuously secure electrical connections between a multi-contact cable connector and each pad in an array of pads of electrical connectors that terminate one end of a cable.
These and other objects maybe attained with present invention, which provides a plasma display device having improved working efficiency by allowing easy insertion of a cable of a signal transmitting means into a cable connector and preventing poor insertion of the cable, such as skewing.
According to an aspect of the present invention, there is provided a plasma display device including: a plasma display panel which displays an image; a chassis base disposed on the rear of the plasma display panel; a circuit unit installed on the chassis base, which generates an electrical signal to drive the plasma display panel; a plurality of signal transmission members including a plurality of electronic devices and flexible cables such that one end of each signal transmission member is connected to the circuit unit and the other end of each signal transmission member is connected to the plasma display panel in order for a signal that is generated by the circuit unit to be transmitted to the plasma display panel; and a plurality of cable connectors that are mounted on the circuit unit to electrically connect the signal transmission member to the circuit unit and each include an inserting unit in which a cable of the signal transmission member is inserted, wherein the width of an inlet of the inserting unit of the cable connector gradually narrows toward the inside of the cable connector.
The narrowest width of the inlet of the inserting unit of the cable connector maybe selected to correspond to the width of the cable.
According to another aspect of the present invention, there is provided plasma display device including: a plasma display panel which displays visible, variable video images; a chassis base disposed on the rear of the plasma display panel; a circuit unit installed on the chassis base, which generates an electrical signal to drive the plasma display panel to display the images; a plurality of signal transmission members including a plurality of electronic devices and flexible cables oriented with one end of each signal transmission member being connected to the circuit unit and the other end of each signal transmission member being connected to the plasma display panel in order for a signal that is generated by the circuit unit to be transmitted to the plasma display panel; and a plurality of cable connectors that are mounted on the circuit unit to electrically connect the signal transmission member to the circuit unit. Each of the cable connectors including insertion units in which cables of the signal transmission member may be inserted, and protruding units which protrude toward the center of the width of the inserting unit and are installed at both ends of the inlet of the inserting unit of the cable connector and have a gradually narrowing gradient that forms a taper to the inlet of the inserting unit.
The inlet of the inserting unit of the cable connector may be wider than the cable.
The narrowest width between the protruding units may be set to correspond to the width of the cable.
The cable connector may further include a cover to cover the inserting unit.
A more complete appreciation of the invention, and many of the attendant advantages thereof, will be readily apparent as the same becomes better understood by reference to the following detailed description when considered in conjunction with the accompanying drawings in which like reference symbols indicate the same or similar components, wherein:
The present invention will now be described more fully with reference to the accompanying drawings, in which exemplary embodiments of the invention are shown. The invention may, however, be embodied in many different forms, and should not be construed as being limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the concept of the invention to those skilled in the art
The plasma display device 100 illustrated in
The plasma display panel 10 displays varying, visible video images that may be viewed by an audience facing plasma display panel, and includes a front panel 11 and a rear panel 12, wherein front panel 11 and rear panel 12 face each other and are combined together to form an operational unit. Plasma display panel 10 may be selected from various kinds of plasma display panels, for example, an alternating current (AC) PDP of a three electrode, surface discharge type. Front panel 11 and rear panel 12 include a substrate, a plurality of electrodes disposed on the substrate such that a voltage may be applied to the electrodes during operation of plasma display panel 10, and dielectric layers covering those electrodes.
At the rear of the plasma display panel 10, chassis base 13 is installed to support plasma display panel 10. Chassis base 13 is combined with plasma display panel 10 by using an adhesive material 14 such as double-sided tape or alternatively, a bonding agent. In the present embodiment, adhesive material 14 is disposed along the edge of the chassis base 13. In addition, chassis base 13 receives heat generated by plasma display panel 10 during its operation while displaying varying video images, and smoothly dissipates the heat to the ambient environment on the outside of the assembled display device. Accordingly, chassis base 13 may be formed of a material having excellent heat conduction properties, such as aluminum. In order to reduce the weight and manufacturing cost of chassis base 13, chassis base 13 may be formed of a synthetic resin. And chassis base 13 may be manufactured by casting or by press processing. Chassis base 13 may have a bend portion 13a that forms a flange which is bent perpendicularly away from plasma display panel 10 and is located along on the upper and lower parts of the chassis base 13 as a stiffener.
A heat transmitting element 15 such as a thermally conducting sheet of a material exhibiting a high value of thermal conductive, may be interposed between the plasma display panel 10 and chassis base 13. Heat transmitting element 15 partially disperses heat generated by the plasma display panel 10 while the plasma display device 100 operates to entertain viewers who are facing panel 10 an watching the visible, varying video images formed on panel 10 in response to video signals applied to display device 100 via electrical circuits 17. In addition, heat transmitting element 15 smoothly transmits heat from the plasma display panel 10 to the chassis base 13, and thus the heat can be easily dissipated to the outside. As illustrated in
A supporting member 16 may be installed along the edges and both of the adjoining sides of upper and lower flanges 13a of chassis base 13 in order to prevent chassis base 13 in order to further stiffen chassis base 13 and thereby present chassis base 13 from bending and twisting. Supporting member 16 may be formed of a relatively common structural material such as, by way of example, aluminum.
The circuit units 17 are installed on the rear side of chassis base 13. Circuit units 17 generate electrical signals which drive the plasma display panel 10 to display varying, visible video images for an audience watching display panel 10, when those electrical signals are applied to plasma display panel 10.
A plurality of signal transmission members 18 are interposed between circuit units 17 and the plasma display panel 10 to connect the circuit units 17 and the plasma display panel 10. The signal transmission members 18 serve to transmit electrical signals between the circuit units 17 and the plasma display panel 10, and may be constructed as a tape carrier package (TCP) or alternatively, as a flat film cable (FFC).
The signal transmission members 18 include a plurality of electronic devices 19 such as integrated circuits (ICs) entrained and supported by corresponding ones of signal transmission members 18, which function to turn the signal transmission between the circuit units 17 and the plasma display panel 10 between ON and OFF electrical states.
Typically, each signal transmission member 18 includes an electronic device 19 such as an IC, and a flexible cable 20 in a film form.
Flexible cable 20 is connected to a cable connector 30 which is mounted on circuit units 17 and is electrically connected to the circuit units 17.
Referring to
The base 31 includes an inserting unit 33 such that when linearly aligned, pad unit 20a of the cable 20 is inserted into the inlet formed by inserting unit 33. Pad unit 20a of cable 20 is inserted into inserting unit 33 to make electrical contact with individual electrically connecting devices included inside base 31.
The width W1 of the inlet of the inserting unit 33 is made wider than the width W2 of the pad unit 20a of the cable 20, to order to improve efficiency of assembling the cable 20 and the cable connector 30 when the pad unit 20a of the cable 20 is inserted into the inlet of the inserting unit 33.
The width W1 of the inlet of the inserting unit 33 is tapered and gradually narrows toward the inside of the cable connector 30. Accordingly, pad unit 20a of cable 20 can be easily and reliably inserted into the inlet of the inserting unit 33. Further, misalignment between the inlet of the inserting unit 33 and the pad unit 20a, which may be caused because the inlet of the inserting unit 33 is, at the initial entrance of the inlet, wider than the pad unit 20a of the cable in order to improve efficiency during the manufacturing assembly of the plasma display panel, can be prevented, and skewing can also be prevented. For this, the narrowest width of the inserting unit 33 may be established to correspond to the width of pad unit 20a of cable 20.
According to an embodiment of the present invention, protruding units 35 are installed at both ends of the inlet of inserting unit 33. The protruding units 35 have a gradual gradient provided by ramps 36 from the inlet toward the inside of the inserting unit 33. That is, the presence of the ramped surfaces 36 causes the thicknesses of protruding units 35 to gradually increase in a direction of insertion of pad unit 20a, as pad unit 20a travels into the inlet. Here, the narrowest width W3 between the protruding units corresponds to the width W2 of the pad unit 20a for the cable 20. Accordingly, pad unit 20a of cable 20 can be smoothly inserted into inserting unit 33.
As illustrated in
As illustrated in
As illustrated in
As described above, after the cable 20 is inserted into inserting unit 33, cover 34 is closed to encase the assembly of cable 20 and cable connector 30.
In a plasma display device constructed as an embodiment of the principles of the present invention, efficiency in assembling the cable of the signal transmission member and the cable connector can be improved, misalignment between them can be prevented, and thus reliability of the display device incorporating the assembled cable and cable connector can be enhanced, while preserving the internal compactedness of the plasma display device. Application of these principles to contemporary practice provide a plasma display device able to assure the formation of continuously secure electrical connections between a multi-contact cable connector and each electrically conducting pad in an array of pads of electrical connectors that terminate one end of a cable.
The details of the foregoing description of the practice of the principles of the present invention demonstrate that those embodiments, as well as other embodiments, of these principles enable a rapid and efficient high volume production of large-scale, flat panel display devices which exhibit reliable internal electrical connections that assure such excellent display properties as high brightness, high contrast, lack of a residual image, wide viewing angle, and thin and large-scale display structure.
While the present invention has been particularly shown and described with reference to exemplary embodiments thereof, it will be understood by those of ordinary skill in the art that various changes in form and detail may be made therein without departing from the spirit and scope of the present invention as defined by the following claims.
Number | Date | Country | Kind |
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10-2007-0023665 | Mar 2007 | KR | national |