The present invention relates to a video display device for displaying a video on a display unit that carries out a dot matrix display by using a video signal, and more particularly to a video display control device to be used for the video display device.
In order to display a video on a video display unit 102, a horizontal synchronizing signal (H) and a vertical synchronizing signal (V) which are synchronized with the video signal and a dot clock signal (D) corresponding to the number of pixels are required. Furthermore, these signals have different timings depending on a type of the video display unit 102. Therefore, it has been known that the horizontal synchronizing signal and the vertical synchronizing signal create a timing signal which is dedicated to and required for the video display unit 102 in the decoder 101 and the color signal and the timing signal which are exactly input to the video display portion 102 are used exactly after a separation to display a video on the display unit for carrying out a dot matrix display (for example, see JP-A-2003-204529).
When the video display device is used, however, a horizontal synchronizing signal and a vertical synchronizing signal which are synchronized with an input video signal and a dot clock signal corresponding to the number of display pixels are required. Consequently, a signal timing and the number of pixels are varied for each video display unit. For this reason, it is necessary to use a dedicated decoder for outputting the horizontal synchronizing signal, the vertical synchronizing signal and the dot clock signal corresponding to the video display unit to be used. Therefore, there is a problem in that plural types of video display units cannot be driven by one type of decoder.
The invention has been made in order to solve the conventional problems and has an object to provide a video display control device capable of driving plural types of video display units by one type of decoder, and a video display device using the video display control device.
A video display control device according to the invention includes a decoder for separating a composite video signal including a video signal and a synchronizing signal which are input into a horizontal synchronizing signal, a vertical synchronizing signal and a color signal and generating a dot clock signal, and a timing signal converting unit having a storage area capable of writing a signal converting program for converting at least one of the dot clock signal, the horizontal synchronizing signal and the vertical synchronizing signal.
By this structure, the signal converting program corresponding to the video display unit can be written. Therefore, it is possible to use plural types of video display units by one type of video display unit dedicated decoder.
Moreover, the timing signal converting unit can be provided with a plurality of storage areas.
By this structure, it is possible to utilize different types of video display units.
Furthermore, the video display control device can be provided with a switch for selecting any one of the storage areas.
By this structure, it is possible to select one of proper signal converting programs.
Furthermore, the video display control device according to the invention can be provided with an input unit for inputting a video signal which is output from a portable information terminal.
By this structure, it is possible to watch and hear, in a suitable size, a video output through the portable information terminal with a simple structure.
The video display control device according to the invention can be applied to a control of a display unit provided in a vehicle compartment.
By this structure, the display unit to be mounted on a vehicle can be used in a plurality of types by means of one type of video display unit dedicated decoder.
Moreover, the video display device according to the invention has the video display control device and a display unit for displaying a video signal converted by the timing signal converting unit.
Another video display device according to the invention has the video display control device and a display unit which serves to display a video signal converted by the timing signal converting unit and can be attached and removed.
By this structure, it is possible to utilize plural types of different video display units.
Furthermore, a further video display device according to the invention has the video display control device and a plurality of display units for displaying a video signal converted by the timing signal converting unit.
By this structure, it is possible to simultaneously display the same video information on plural types of different video display units.
The invention can provide a video display control device in which a signal converting unit is disposed between a video display unit and a video display dedicated decoder and plural types of video display units can be thus used by one type of video display unit dedicated decoder, and a video display device.
The above objects and advantages of the present invention will become more apparent by describing in detail preferred exemplary embodiments thereof with reference to the accompanying drawings, wherein:
A video display control device and a video display device according to a first embodiment of the invention will be described below with reference to the drawings.
In
With reference to
As described above, the timing signal converting unit 5 includes first to third program storage units (signal converters) 6A, 6B and 6C, having storage areas for writing a signal converting program to display a video on plural types of display units. For example, in the case that three types of different video display units A, B and C are provided as shown in
Next, an operation in the video display device according to the embodiment will be described with reference to
Description will be given by taking the horizontal synchronizing signal Ha. First, a program for a video display which is dedicated to the connected video display unit 4A is written to the timing signal converting unit 5 by using an external PC. Consequently, a conversion into the horizontal synchronizing signal Ha to be an output is carried out by the horizontal synchronizing signal H1 and the vertical synchronizing signal V1 which are input. At this time, the timing of the horizontal synchronizing signal H1 which is output falls in a rise in the vertical synchronizing signal V1 which is input, and rises in a fall in a third H of the horizontal synchronizing signal H1 which is input. A timing is converted in accordance with the program written to the timing signal converting unit in response to the input signal so that other output signals are generated in the same manner. The program is varied for each video display unit to be connected, that is, differs in the video display units 4A, 4B and 4C, respectively. Therefore, a user can rewrite the program for the video display in the timing signal converting unit 5 for each video display unit through the external PC.
According to the embodiment described above, the video display control device is configured so as to include the decoder for separating the composite video signal obtained by combining the synchronizing signal and the video signal which are sent from a video information source such as a DVD reproducing device into the horizontal synchronizing signal H, the vertical synchronizing signal V and the color signal RGB, generating the horizontal synchronizing signal H1 and the vertical synchronizing signal V1 for projecting the horizontal synchronizing signal H and the vertical synchronizing signal V which are sent onto the dedicated video display, and generating and outputting the dot clock signal which is synchronous with these synchronizing signals and corresponds to the number of display pixels, and the timing signal converting unit 5 having the storage unit 6 capable of converting the timings of the horizontal synchronizing signal H1, the vertical synchronizing signal V1 and the dot clock signal D1 which are sent into the signals for displaying a video on the video display unit which is connected and outputting them, and displaying a video on the plural kinds of video display units 4. Furthermore, the video display control device includes the video display units 4 for displaying a video signal sent synchronously with the horizontal synchronizing signal, the vertical synchronizing signal and the dot clock signal which are sent from the video display control device. Therefore, it is possible to simultaneously display the plural types of video display units 4 having different specifications through one type of video display unit dedicated decoder 2.
As shown in
Furthermore, the three types of display units do not need to be connected. For example, as shown in
While the horizontal synchronizing signal, the vertical synchronizing signal and the dot clock signal are converted by the timing signal converting unit 5 in the embodiment, it is preferable that one of the signals should be converted if all of them do not particularly need to be converted.
A video display system according to a second embodiment of the invention applies the video display device according to the first embodiment, and description will be given by using the same reference numerals for the same portions as those in the first embodiment.
As shown in
In many cases, another onboard AV apparatus is usually mounted on the front panel portion. In the embodiment, therefore, a control unit is disposed in this portion.
In
On the other hand, the composite video signal output from the video selector is adapted to the dedicated video display unit and is separated into a horizontal synchronizing signal H1, a vertical synchronizing signal V1 and a color signal RGB for projecting a video, and a dot clock signal D1 to be adapted to the number of display pixels synchronously with the horizontal synchronizing signal H1 and the vertical synchronizing signal V1. More specifically, the composite video signal is adapted to the dedicated video display unit and is separated into a horizontal synchronizing signal H, a vertical synchronizing signal V and the color signal RGB for projecting the video, and the horizontal synchronizing signal H1, the vertical synchronizing signal V1 and the dot clock signal D1 for displaying the video on a dedicated video display unit 4 are generated by the timing signal generating function in a decoder 2 from the horizontal synchronizing signal H and the vertical synchronizing signal V which are separated. A timing signal converting unit 5 has a storage unit 6 (
According to the embodiments described above, the video display control device is configured so as to includes the decoder 2 for separating the composite video signal obtained by compositing the synchronizing signal and the video signal which are sent from the predetermined video information source into the horizontal synchronizing signal H, the vertical synchronizing signal V and the color signal RGB, generating the horizontal synchronizing signal H1 and the vertical synchronizing signal V1 for projecting the horizontal synchronizing signal H and the vertical synchronizing signal V which are sent onto the dedicated video display, and generating and outputting the dot clock signal which is synchronous with the synchronizing signals and corresponds to the number of display pixels, and the timing signal converting unit 5 having the storage unit 6 capable of converting the timings of the horizontal synchronizing signal H1, the vertical synchronizing signal V1 and the dot clock signal D1 which are sent into the signals for displaying a video on the video display unit 4 which is connected and outputting them, and writing a signal converting program for displaying a video on the plural kinds of video display units. Furthermore, the video display control device includes the video display units 4 for displaying a video signal sent synchronously with the horizontal synchronizing signal, the vertical synchronizing signal and the dot clock signal which are sent from the video display control device. Therefore, it is possible to simultaneously display the plural types of video display units 4 having different specifications through the generating portion of one type of video display unit dedicated decoder 2.
Furthermore, the three types of display units do not need to be connected and the display unit is removably connected to the control unit through a connector, and it is possible to use many types of display units corresponding to a user's taste if switching means (
By using the video display control device and the video display device according to the invention, it is possible to apply to various video display units including a small-sized and inexpensive unit and a large-sized unit, a unit having the small number of dots and low picture quality and a unit having a large number of dots and capable of displaying a video of high quality, and a unit giving a different tone of a color depending on an angle of field and a unit having a small difference in the tone of a color depending on a difference in the angle of field. Consequently, it is possible to select and use any of the various display units in respect of a cost and a performance according to a self-taste. In an onboard video display device, particularly, a large-sized display unit can be attached in order to enjoy a video in a rear seat, a display unit having a high visibility can be particularly attached in the case in which a car navigation device is used for a driver or a passenger in a passenger seat or a display unit capable of expressing a tone of a color corresponding to a personal taste can be utilized.
As described above, the video display control device and the video display device according to the invention have an advantage that a video can be simultaneously displayed on plural types of video display units by one type of decoder, and are useful for seeing and hearing the video in a rear seat of a vehicle through a car navigation device or an RSE (Rear Sheet Entertainment) device using plural types of display units.
While various embodiments according to the invention have been described above, the invention is not restricted to matters described in the embodiments but is intended for the skilled in the art to make changes and applications based on claims and the description of this specification, and well-known techniques without departing from the scope of the invention.
The present application is based on Japan Patent Application No. 2005-062570 filed on Mar. 7, 2006, the contents of which are incorporated herein for reference.
Number | Date | Country | Kind |
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P. 2005-062570 | Mar 2005 | JP | national |