The present invention relates to a field of image resolution identification, and more particularly to a system and method for automatically selecting an image resolution most suitable for a display module.
A conventional display usually provides only the function of displaying images, and it must be used with a computer main unit or a player to show the images. Recently, due to the growing trend of miniaturization of electronic elements, the integration of a computer main unit into a liquid crystal display (LCD) to provide an all-in-one computer has become very popular. Initially, the computer main unit and the LCD of the all-in-one computer are fixedly integrated with one another, which means the display screen and the computer main unit of the all-in-one computer are not freely changeable or replaceable, which inevitably forms a restriction to the function and the use flexibility of the display of the all-in-one computer.
To solve the problem of the unchangeable function of the display of the all-in-one computer, a modular display structure has been developed to include a display panel detachably connected to a functional computer main unit. The functional computer main unit used in the modular display structure is configured as a removable box that can be added to the display panel. That is, the functional computer main unit and the display panel are combined with each other to provide an integral computer main unit. The functional computer main unit can be in different forms, such as a display controller, an industrial computer main unit or a media player. The display panel can be combined with differently functioned computer main units to provide display devices capable of providing different functions.
While the modular display structure is featured by high use flexibility thereof, the display panels for modular display structures of different sizes and specifications not only have different sizes, but also different image resolutions. Further, in most cases, the display panels for different modular display structures available in the market have their own specific specifications. Therefore, it is possible the functional computer main unit used in one modular display structure is not able to automatically identify different parameters, such as the size and the image resolution, of the display panel connected thereto. At this point, the functional computer main unit must be manually reset or regulated for its different parameters, such as output signal size and image resolution. Therefore, each time the functional computer main unit is connected to a differently configured display panel, a user must take a lot of time to manually reset the parameters of the functional computer main unit. This will obviously result in inconvenience in using the modular display structure and lower the interchangeability of different display panels for use with the same functional computer main unit. As a result, in the conventional modular display structures, the display panels for using with different functional computer main units are usually produced to have only one size and accordingly have largely restricted use flexibility.
It is therefore tried by the inventor to work out a way to solve the above mentioned problems and disadvantages.
To overcome the problems and disadvantages in the prior art all-in-one computer and modular display structure, a primary object of the present invention is to provide a system and method for enabling a main module to automatically select the best image resolution most suitable for a display module connected thereto.
Another object of the present invention is to provide an image resolution auto-identifying system and method for automatically selecting the use of an expanded display identification data stored on a display module or an expanded display identification data stored on a main module.
To achieve the above and other objects, the image resolution auto-identifying system provided according to the present invention is installed on a main module and the main module is electrically connected to a display module. The image resolution auto-identifying system provided according to the present invention includes a storage unit having at least one expanded display identification data (EDID) stored thereon; a switch unit connected to the storage unit and a first specific pin on the display module; and a detection unit connected to the switch unit and detecting a voltage state at a second specific pin on the display module to control the switch unit according to the voltage state detected at the second specific pin.
To achieve the above and other objects, the image resolution auto-identifying method provided according to the present invention includes the steps of electrically connecting a display module to a main module that has an image resolution auto-identifying system installed thereon, and initializing the image resolution auto-identifying system; detecting a voltage state at a second specific pin on the display module and generating a control signal accordingly by a detection unit of the image resolution auto-identifying system; and determining by a switch unit of the image resolution auto-identify system according to the control signal transmitted thereto by the detection unit whether to use an expanded display identification data stored on the display module or an expanded display identification data stored on the main module.
With the image resolution auto-identify system and method of the present invention, when the main module is connected to any display module, the detection unit automatically detects the high/low voltage at a specific pin on the display module to determine whether there is an expanded display identification data stored on the display module, and accordingly determines whether to use the expanded display identification data stored on the display module or an expanded display identification data stored on the main module. It is noted the above determination process is automatically completed without the need of any manual hardware and firmware regulation by a user. That is, the present invention provides the function of automatic selection of the best image resolution most suitable for the display module that is currently connected to the main module.
The structure and the technical means adopted by the present invention to achieve the above and other objects can be best understood by referring to the following detailed description of the preferred embodiment and the accompanying drawings, wherein
The present invention will now be described with a preferred embodiment thereof and by referring to the accompanying drawings.
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The storage unit 11 can be, but not limited to, an electrically-erasable programmable read-only memory (EEPROM) or a programmable read-only memory (PROM), and has at least one expanded display identification data (EDID) stored thereon. The expanded display identification data on the storage unit 11 can be edited or replaced.
The switch unit 12 has a common contact 121, a first contact 122 and a second contact 123. The common contact 121 is connected to the output driving unit 14, the first contact 122 is connected to the first connection port 15, and the second contact 123 is connected to the storage unit 11.
The detection unit 13 can be, but not limited to, a micro control unit (MCU). The detection unit 13 detects a voltage state at a specific pin on the display module 2 to generate a control signal accordingly, which is transmitted to the switch unit 12. According to the control signal transmitted thereto, the switch unit 13 selects to close the common contact 121 and the first contact 122 or to close the common contact 121 and the second contact 123.
The output driving unit 14 has an input 141 connected to the common contact 121 and an output 142 connected to the display module 2.
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In the case the display module 2 does not internally include the first memory unit 24 and the second memory unit 25, one of the expanded display identification data stored on the storage unit 11 of the main module 1 that is most suitable for the display module 2 will be selected for use, and the selection of the most suitable EDID is determined according to the high/low value of the voltage state of the display module 2 detected by the detection unit 13 of the main module 1.
In a first step SP1, a main module having an image resolution identify system installed thereon is electrically connected to a display module, and the image resolution auto-identifying system is initialized. More specifically, a main module 1 as describe above is connected to a display module 2 via a first connection port 15 provided on the main module 1 and a second connection port 27 provided on the display module 2, so as to form an integral body. And, when the main module 1 is started, the image resolution auto-identifying system is initialized to correspond to the display module 2 that is currently connected to the main module 1.
In a second step SP2, a detection unit of the image resolution auto-identifying system detects a voltage state at a second specific pin on the display module and generates a control signal accordingly. More specifically, a detection unit 13 of the image resolution auto-identifying system can detect a voltage state, i.e. a high/low voltage value, at a second specific pin 22 on the display module 2 and accordingly generates a control signal to a switch unit 12 of the image resolution auto-identifying system.
In a third step SP3, the switch unit of the image resolution auto-identifying system selects according to the received control signal to use an expanded display identification data stored on the display module or an expanded display identification data stored on the main module. More specifically, according to the control signal sent thereto, the switch unit 12 of the image resolution auto-identifying system either closes a common contact 121 and a first contact 122 thereof or closes the common contact 121 and a second contact 123 thereof, so as to select the use of the expanded display identification data stored on the display module 2 or the expanded display identification data stored on the main module 1.
With the image resolution auto-identify system and method of the present invention, the main module 1 can automatically detect the high/low voltage at the specific pin on the display module 2 that is currently connected thereto to determine whether there is an expanded display identification data stored on the display module 2, and accordingly determines whether to use the expanded display identification data stored on the display module 2 or the expanded display identification data stored on the main module 1. It is noted the above selection or determination process is completely automatically performed without the need of any manual hardware and firmware regulation by a user. That is, the present invention provides the function of automatic selection of the best image resolution and other particular parameters that are most suitable for the display module 2 that is currently connected to the main module 1.
The present invention has been described with a preferred embodiment thereof and it is understood that many changes and modifications in the described embodiment can be carried out without departing from the scope and the spirit of the invention that is intended to be limited only by the appended claims.