A power-saving circuit for a digital video display device includes a tmds driving unit converting a tmds data signal and a tmds clock signal, a display driving unit driving a display unit based on the horizontal/vertical synchronous signals and the digital video signal input from the tmds driving unit, a clock signal detecting unit outputting a first or a second level of a clock detecting signal depending on the tmds clock signal, a controller outputting a first-level of a power-saving signal when the first level clock detecting signal is input, and outputting a second level of power-saving signal when the second level clock detecting signal is input, and a power supply unit supplying a voltage to respective components, and cutting off the supply of the voltage to respective components depending on the level of the power-saving signal or the clock detecting signal.
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0. 31. A power saving method for a video display device having a normal power mode and a power savings mode, the method comprising:
receiving a transmission minimized differential signaling (tmds) data signal and a tmds clock signal;
detecting whether said tmds clock signal is input to the video display device; and
converting said power savings mode of said video display device from said normal power mode to said power saving mode when said tmds clock signal is not input.
0. 29. A video display device having a normal power mode and a power savings mode, said device comprising:
a transmission minimized differential signaling (tmds) driving unit for receiving a tmds data signal and a tmds clock signal;
a clock signal detecting unit for detecting whether said tmds clock signal is input to said tmds driving unit; and
a power supply unit for converting said normal power mode to said power savings mode when said clock signal detecting unit determines that said tmds clock signal is not input.
0. 26. A video display device comprising:
a transmission minimized differential signaling (tmds) driving unit for receiving a tmds data signal and a tmds clock signal;
a clock signal detecting unit for detecting whether said tmds clock signal is input; and
a controller for controlling an operating state of said tmds driving unit and one or more components of said video display device based on whether said tmds clock signal is input to the video display device, said clock signal detecting unit detecting said input of said tmds clock signal;
wherein the operating state is a power savings mode.
0. 28. A video display device for displaying an image based on received a digital signal, said device comprising:
a transmission minimized differential signaling (tmds) driving unit for receiving a tmds data signal and a tmds clock signal;
a clock signal detecting unit for detecting whether said tmds clock signal is input to said tmds driving unit; and
a controller controlling a power mode of said device when said clock signal is input to the device;
wherein said controller generates a power down signal for reducing a power consumption of said device when said clock signal is not input to said device.
0. 27. A video display device for receiving a digital video data signal and a clock signal, said device comprising:
a clock signal detecting unit for detecting whether said clock signal is input, wherein said digital video data signal comprises a tmds data signal, and said clock signal comprises a tmds clock signal;
a controller for controlling a power savings mode of said video display device when said clock signal is input to the video display device;
a transmission minimized differential signaling (tmds) driving unit for receiving said tmds data signal and said tmds clock signal; and
a power supply unit for controlling said tmds driving unit and one or more components of said video display device to be set as a power-saving mode when said tmds clock signal is not input to the video display device, said clock signal detecting unit detecting when said tmds clock signal is not input to the video display device;
wherein said controller generates a power down signal to reduce power consumption of said device when said clock signal detecting unit determines that said clock signal is not input.
17. A power-saving circuit for a digital video display device having a transmission minimized differential signaling driving unit having a signal conversion mode for converting a transmission minimized differential signaling data signal and a transmission minimized differential signaling clock signal input to the transmission minimized differential signaling driving unit into horizontal and vertical synchronous signals and a digital video signal, a display driving unit for driving a display unit based on the horizontal and vertical synchronous signals and the digital video signal input from the transmission minimized differential signaling driving unit and a power supply unit for supplying a voltage to the transmission minimized differential signaling driving unit and the display driving unit, said power-saving circuit comprising:
a clock signal detecting unit outputting a first level of a clock detecting signal when the transmission minimized differential signaling clock signal is not input to the transmission minimized differential signaling driving unit and outputting a second level of the clock detecting signal when the transmission minimized differential signaling clock signal is input to the transmission minimized differential signaling driving unit;
said power supply unit cutting off the supply of the voltage to at least one of the transmission minimized differential signaling driving unit and the display driving unit when the clock signal detecting unit outputs the first level of the clock detecting signal, and providing the supply of the voltage to the transmission minimized differential signaling driving unit and the display driving unit when the clock signal detecting unit outputs the second level of the clock detecting signal.
7. A power-saving circuit for a digital video display device, comprising:
a transmission minimized differential signaling driving unit for converting a transmission minimized differential signaling data signal input together with a transmission minimized differential signaling clock signal to the transmission minimized differential signaling driving unit into horizontal and vertical synchronous signals and a digital video signal based on a transmission minimized differential signaling signal conversion mode;
a display driving unit for driving a display unit based on the horizontal and vertical synchronous signals and the digital video signal input to the display driving unit from the transmission minimized differential signaling driving unit;
a clock signal detecting unit for outputting a first level of a clock detecting signal when the transmission minimized differential signaling clock signal is not input to the transmission minimized differential signaling driving unit, and for outputting a second level of the clock detecting signal when the transmission minimized differential signaling clock signal is input to the transmission minimized differential signaling driving unit; and
a power supply unit for supplying a voltage to the transmission minimized differential signaling driving unit, the display driving unit and the clock signal detecting unit, for cutting off the supply of the voltage except to the clock signal detecting unit when the first level of the clock detecting signal is input to the power supply unit from the clock signal detecting unit, and for providing the supply of the voltage to the transmission minimized differential signaling driving unit, the display driving unit and the clock signal detecting unit when the second level of the clock detecting signal is input to the power supply unit from the clock signal detecting unit.
15. A power-saving method for a digital video display device, comprising the steps of:
converting by a transmission minimized differential signaling driving unit a transmission minimized differential signaling data signal input together with a transmission minimized differential signaling clock signal to the transmission minimized differential signaling driving unit into horizontal and vertical synchronous signals and a digital video signal based on a transmission minimized differential signaling signal conversion mode;
driving by a display driving unit a display unit based on the horizontal and vertical synchronous signals and the digital video signal input to the display driving unit from the transmission minimized differential signaling driving unit;
outputting by a clock signal detecting unit a first level of a clock detecting signal when the transmission minimized differential signaling clock signal is not input to the transmission minimized differential signaling driving unit, and outputting by the clock signal detecting unit a second level of the clock detecting signal when the transmission minimized differential signaling clock signal is input to the transmission minimized differential signaling driving unit; and
supplying by a power supply unit a voltage to the transmission minimized differential signaling driving unit, the display driving unit and the clock signal detecting unit, cutting off by the power supply unit the supply of the voltage except to the clock signal detecting unit when the first level of the clock detecting signal is input to the power supply unit from the clock signal detecting unit, and providing by the power supply unit the supply of the voltage to the transmission minimized differential signaling driving unit, the display driving unit and the clock signal detecting unit when the second level of the clock detecting signal is input to the power supply unit from the clock signal detecting unit.
1. A power-saving circuit for a digital video display device, comprising:
a transmission minimized differential signaling driving unit for converting a transmission minimized differential signaling data signal input together with a transmission minimized differential signaling clock signal to the transmission minimized differential signaling driving unit into horizontal and vertical synchronous signals and a digital video signal based on a transmission minimized differential signaling signal conversion mode;
a display driving unit for driving a display unit based on the horizontal and vertical synchronous signals and the digital video signal input from the transmission minimized differential signaling driving unit;
a clock signal detecting unit for outputting a first level of a clock detecting signal when the transmission minimized differential signaling clock signal is not input to the transmission minimized differential signaling driving unit and for outputting a second level of the clock detecting signal when the transmission minimized differential signaling clock signal is input to the transmission minimized differential signaling driving unit;
a controller for outputting a first level of a power-saving signal when the first level of the clock detecting signal is input to the controller from the clock signal detecting unit, and for outputting a second level of the power-saving signal when the second level of the clock detecting signal is input to the controller from the clock signal detecting unit; and
a power supply unit for supplying a voltage to the transmission minimized differential signaling driving unit, the controller, the clock signal detecting unit and the display driving unit, for cutting off the supply of the voltage except to the controller and the clock signal detecting unit when the first level of the power-saving signal is input to the power supply unit from the controller, and for providing the supply of the voltage to the transmission minimized differential signaling driving unit, the controller, the clock signal detecting unit and the display driving unit when the second level of the power-saving signal is input to the power supply unit from the controller.
13. A power-saving method for a digital video display device, comprising the steps of:
converting by a transmission minimized differential signaling driving unit a transmission minimized differential signaling data signal input together with a transmission minimized differential signaling clock signal to the transmission minimized differential signaling driving unit into horizontal and vertical synchronous signals and a digital video signal based on a transmission minimized differential signaling signal conversion mode;
driving by a display driving unit a display unit based on the horizontal and vertical synchronous signals and the digital video signal input from the transmission minimized differential signaling driving unit;
outputting by a clock signal detecting unit a first level of a clock detecting signal when the transmission minimized differential signaling clock signal is not input to the transmission minimized differential signaling driving unit and outputting by the clock signal detecting unit a second level of the clock detecting signal when the transmission minimized differential signaling clock signal is input to the transmission minimized differential signaling driving unit;
outputting by a controller a first level of a power-saving signal when the first level of the clock detecting signal is input to the controller from the clock signal detecting unit, and outputting by the controller a second level of the power-saving signal when the second level of the clock detecting signal is input to the controller from the clock signal detecting unit; and
supplying by a power supply unit a voltage to the transmission minimized differential signaling driving unit, the controller, the clock signal detecting unit and the display driving unit, cutting off by the power supply unit the supply of the voltage except to the controller and the clock signal detecting unit when the first level of the power-saving signal is input to the power supply unit from the controller, and providing by the power supply unit the supply of the voltage to the transmission minimized differential signaling driving unit, the controller, the clock signal detecting unit and the display driving unit when the second level of the power-saving signal is input to the power supply unit from the controller.
10. A power-saving circuit for a digital video display device, comprising:
a transmission minimized differential signaling driving unit for converting a transmission minimized differential signaling data signal input together with a transmission minimized differential signaling clock signal to the transmission minimized differential signaling driving unit into horizontal and vertical synchronous signals and a digital video signal based on a transmission minimized differential signaling signal conversion mode, for stopping a driving of an operation for signal converting when a first level of a clock detecting signal is input to the transmission minimized differential signaling driving unit, and for starting the driving of the operation for signal converting when a second level of the clock detecting signal is input to the transmission minimized differential signaling driving unit;
a display driving unit for driving a display unit based on the horizontal and vertical synchronous signals and the digital video signal input to the display driving unit from the transmission minimized differential signaling driving unit;
a clock signal detecting unit for outputting the first level of the clock detecting signal to the transmission minimized differential signaling driving unit when the transmission minimized differential signaling clock signal is not input to the transmission minimized differential signaling driving unit, and for outputting the second level of the clock detecting signal to the transmission minimized differential signaling driving unit when the transmission minimized differential signaling clock signal is input to the transmission minimized differential signaling driving unit; and
a power supply unit for supplying a voltage to the transmission minimized differential signaling driving unit, the display driving unit, and the clock signal detecting unit, for cutting off the supply of the voltage except to the transmission minimized differential signaling driving unit and the clock signal detecting unit when the first level of the clock detecting signal is input to the power supply unit from the clock signal detecting unit, and for providing the supply of the voltage to the transmission minimized differential signaling driving unit, the display driving unit, and the clock signal detecting unit when the second level of the clock detecting signal is input to the power supply unit from the clock signal detecting unit.
16. A power-saving method for a digital video display device, comprising the steps of:
converting by a transmission minimized differential signaling driving unit a transmission minimized differential signaling data signal input together with a transmission minimized differential signaling clock signal to the transmission minimized differential signaling driving unit into horizontal and vertical synchronous signals and a digital video signal based on a transmission minimized differential signaling signal conversion mode, stopping by the transmission minimized differential signaling driving unit a driving of an operation for signal converting when a first level of a clock detecting signal is input to the transmission minimized differential signaling driving unit, and starting by the transmission minimized differential signaling driving unit the driving of the operation for signal converting when a second level of the clock detecting signal is input to the transmission minimized differential signaling driving unit;
driving by a display driving unit a display unit based on the horizontal and vertical synchronous signals and the digital video signal input to the display driving unit from the transmission minimized differential signaling driving unit;
outputting by a clock signal detecting unit the first level of the clock detecting signal to the transmission minimized differential signaling driving unit when the transmission minimized differential signaling clock signal is not input to the transmission minimized differential signaling driving unit, and outputting by the clock signal detecting unit the second level of the clock detecting signal to the transmission minimized differential signaling driving unit when the transmission minimized differential signaling clock signal is input to the transmission minimized differential signaling driving unit; and
supplying by a power supply unit a voltage to the transmission minimized differential signaling driving unit, the display driving unit, and the clock signal detecting unit, cutting off by the power supply unit the supply of the voltage except to the transmission minimized differential signaling driving unit and the clock signal detecting unit when the first level of the clock detecting signal is input to the power supply unit from the clock signal detecting unit, and providing by the power supply unit the supply of the voltage to the transmission minimized differential signaling driving unit, the display driving unit, and the clock signal detecting unit when the second level of the clock detecting signal is input to the power supply unit from the clock signal detecting unit.
4. A power-saving circuit for a digital video display device, comprising:
a transmission minimized differential signaling driving unit for converting a transmission minimized differential signaling data signal input together with a transmission minimized differential signaling clock signal to the transmission minimized differential signaling driving unit into horizontal and vertical synchronous signals and a digital video signal based on a transmission minimized differential signaling signal conversion mode, for stopping a driving of an operation for signal converting when a first level of a power-down signal is input to the transmission minimized differential signaling driving unit, and for starting the driving of the operation for signal converting when a second level of the power-down signal is input to the transmission minimized differential signaling driving unit;
a display driving unit for driving a display unit based on the horizontal and vertical synchronous signals and the digital video signal input to the display driving unit from the transmission minimized differential signaling driving unit;
a clock signal detecting unit for outputting a first level of a clock detecting signal when the transmission minimized differential signaling clock signal is not input to the transmission minimized differential signaling driving unit and for outputting a second level of the clock detecting signal when the transmission minimized differential signaling clock signal is input to the transmission minimized differential signaling driving unit;
a controller for outputting the first level of the power-down signal to the transmission minimized differential signaling driving unit and for outputting a first level of a power-saving signal when the first level of clock detecting signal is input to the controller from the clock signal detecting unit, and for outputting the second level of the power-down signal to the transmission minimized differential signaling driving unit and for outputting a second level of the power-saving signal when the second level of the clock detecting signal is input to the controller from the clock signal detecting unit; and
a power supply unit for supplying a voltage to the transmission minimized differential signaling driving unit, the display driving unit, the clock signal detecting unit and the controller, for cutting off the supply of the voltage except to the controller, the transmission minimized differential signaling driving unit and the clock signal detecting unit when the first level of the power-saving signal is input to the power supply unit from the controller, and for providing the supply of the voltage to the transmission minimized differential signaling driving unit, the display driving unit, the clock signal detecting unit and the controller when the second level of power-saving signal is input to the power supply unit from the controller.
14. A power-saving method for a digital video display device, comprising the steps of:
converting by a transmission minimized differential signaling driving unit a transmission minimized differential signaling data signal input together with a transmission minimized differential signaling clock signal to the transmission minimized differential signaling driving unit into horizontal and vertical synchronous signals and a digital video signal based on a transmission minimized differential signaling signal conversion mode, stopping by the transmission minimized differential signaling driving unit a driving of an operation for signal converting when a first level of a power-down signal is input to the transmission minimized differential signaling driving unit, and starting by the transmission minimized differential signaling driving unit the driving of the operation for signal converting when a second level of the power-down signal is input to the transmission minimized differential signaling driving unit;
driving by a display driving unit a display unit based on the horizontal and vertical synchronous signals and the digital video signal input to the display driving unit from the transmission minimized differential signaling driving unit;
outputting by a clock signal detecting unit a first level of a clock detecting signal when the transmission minimized differential signaling clock signal is not input to the transmission minimized differential signaling driving unit and outputting by the clock signal detecting unit a second level of the clock detecting signal when the transmission minimized differential signaling clock signal is input to the transmission minimized differential signaling driving unit;
outputting by a controller the first level of the power-down signal to the transmission minimized differential signaling driving unit and outputting by the controller a first level of a power-saving signal when the first level of the clock detecting signal is input to the controller from the clock signal detecting unit, and outputting by the controller the second level of the power-down signal to the transmission minimized differential signaling driving unit and outputting by the controller a second level of the power-saving signal when the second level of the clock detecting signal is input to the controller from the clock signal detecting unit; and
supplying by a power supply unit a voltage to the transmission minimized differential signaling driving unit, the display driving unit, the clock signal detecting unit and the controller, cutting off by the power supply unit the supply of the voltage except to the controller, the transmission minimized differential signaling driving unit and the clock signal detecting unit when the first level of the power-saving signal is input to the power supply unit from the controller, and providing by the power supply unit the supply of the voltage to the transmission minimized differential signaling driving unit, the display driving unit, the clock signal detecting unit and the controller when the second level of the power-saving signal is input to the power supply unit from the controller.
2. The power-saving circuit as claimed in
a first capacitor for removing direct current components of the transmission minimized differential signaling clock signal;
an amplifying transistor connected to the first capacitor for amplifying the transmission minimized differential signaling clock signal without the direct current components removed by the first capacitor to provide an amplified signal;
a first resistor connected to the base of the amplifying transistor for biasing the base of the amplifying transistor;
a second resistor connected to the collector of the amplifying transistor for biasing the collector of the amplifying transistor;
a switching transistor connected to the emitter and the collector of the amplifying transistor, the switching transistor being switched based on the amplified signal received from the amplifying transistor, and for outputting one of a low level signal and a high level signal through the collector of the switching transistor, the low level signal corresponding to the first level of the clock detecting signal and the high level signal corresponding to the second level of the clock detecting signal;
a third resistor connected to the collector of the switching transistor for biasing the collector of the switching transistor; and
a second capacitor connected to the emitter of the switching transistor, and a fourth resistor connected to the second capacitor and the collector of the switching transistor, the second capacitor and the fourth resistor for smoothing an output signal of the switching transistor, the output signal of the switching transistor corresponding to one of the first level of the clock detecting signal and the second level of the clock detecting signal.
3. The power-saving circuit as claimed in
5. The power-saving circuit as claimed in
a first capacitor for removing direct current components of the transmission minimized differential signaling clock signal;
an amplifying transistor connected to the first capacitor for amplifying the transmission minimized differential signaling clock signal without the direct current components removed by the first capacitor to provide an amplified signal;
a first resistor connected to the base of the amplifying transistor for biasing the base of the amplifying transistor;
a second resistor connected to the collector of the amplifying transistor for biasing the collector of the amplifying transistor;
a switching transistor connected to the emitter and the collector of the amplifying transistor, the switching transistor being switched based on the amplified signal received from the amplifying transistor, and for outputting one of a low level signal and a high level signal through the collector of the switching transistor, the low level signal corresponding to the first level of the clock detecting signal and the high level signal corresponding to the second level of the clock detecting signal;
a third resistor connected to the collector of the switching transistor for biasing the collector of the switching transistor; and
a second capacitor connected to the emitter of the switching transistor, and a fourth resistor connected to the second capacitor and the collector of the switching transistor, the second capacitor and the fourth resistor for smoothing an output signal of the switching transistor, the output signal of the switching transistor corresponding to one of the first level of the clock detecting signal and the second level of the clock detecting signal.
6. The power-saving circuit as claimed in
8. The power-saving circuit as claimed in
a first capacitor for removing direct current components of the transmission minimized differential signaling clock signal;
an amplifying transistor connected to the first capacitor for amplifying the transmission minimized differential signaling clock signal without the direct current components removed by the first capacitor to provide an amplified signal;
a first resistor connected to the base of the amplifying transistor for biasing the base of the amplifying transistor;
a second resistor connected to the collector of the amplifying transistor for biasing the collector of the amplifying transistor;
a switching transistor connected to the emitter and the collector of the amplifying transistor, the switching transistor being switched based on the amplified signal received from the amplifying transistor, and for outputting one of a low level signal and a high level signal through the collector of the switching transistor, the low level signal corresponding to the first level of the clock detecting signal and the high level signal corresponding to the second level of the clock detecting signal;
a third resistor connected to the collector of the switching transistor for biasing the collector of the switching transistor; and
a second capacitor connected to the emitter of the switching transistor, and a fourth resistor connected to the second capacitor and the collector of the switching transistor, the second capacitor and the fourth resistor for smoothing an output signal of the switching transistor, the output signal of the switching transistor corresponding to one of the first level of the clock detecting signal and the second level of the clock detecting signal.
9. The power-saving circuit as claimed in
11. The power-saving circuit as claimed in
a first capacitor for removing direct current components of the transmission minimized differential signaling clock signal;
an amplifying transistor connected to the first capacitor for amplifying the transmission minimized differential signaling clock signal without the direct current components removed by the first capacitor to provide an amplified signal;
a first resistor connected to the base of the amplifying transistor for biasing the base of the amplifying transistor;
a second resistor connected to the collector of the amplifying transistor for biasing the collector of the amplifying transistor;
a switching transistor connected to the emitter and the collector of the amplifying transistor, the switching transistor being switched based on the amplified signal received from the amplifying transistor, and for outputting one of a low level signal and a high level signal through the collector of the switching transistor, the low level signal corresponding to the first level of the clock detecting signal and the high level signal corresponding to the second level of the clock detecting signal;
a third resistor connected to the collector of the switching transistor for biasing the collector of the switching transistor; and
a second capacitor connected to the emitter of the switching transistor, and a fourth resistor connected to the second capacitor and the collector of the switching transistor, the second capacitor and the fourth resistor for smoothing an output signal of the switching transistor, the output signal of the switching transistor corresponding to one of the first level of the clock detecting signal and the second level of the clock detecting signal.
12. The power-saving circuit as claimed in
18. The power-saving circuit as claimed in
a first capacitor removing direct current components of the transmission minimized differential signaling clock signal;
an amplifying transistor connected to the first capacitor amplifying the transmission minimized differential signaling clock signal without the direct current components removed by the first capacitor to provide an amplified signal;
a first resistor connected to the base of the amplifying transistor biasing the base of the amplifying transistor;
a second resistor connected to the collector of the amplifying transistor biasing the collector of the amplifying transistor;
a switching transistor connected to the emitter and the collector of the amplifying transistor, the switching transistor being switched based on the amplified signal received from the amplifying transistor, and outputting one of a low level signal and a high level signal through the collector of the switching transistor, the low level signal corresponding to the first level of the clock detecting signal and the high level signal corresponding to the second level of the clock detecting signal;
a third resistor connected to the collector of the switching transistor biasing the collector of the switching transistor; and
a second capacitor connected to the emitter of the switching transistor, and a fourth resistor connected to the second capacitor and the collector of the switching transistor, the second capacitor and the fourth resistor smoothing an output signal of the switching transistor, the output signal of the switching transistor corresponding to one of the first level of the clock detecting signal and the second level of the clock detecting signal.
19. The power-saving circuit as claimed in
20. The power-saving circuit as claimed in
21. The power-saving circuit as claimed in
a controller outputting a first level of a power-saving signal when the first level of the clock detecting signal is input to the controller from the clock signal detecting unit, and outputting a second level of the power-saving signal when the second level of the clock detecting signal is input to the controller from the clock signal detecting unit;
said power supply unit further supplying a voltage to the controller and the clock signal detecting unit, cutting off the supply of the voltage to both the transmission minimized differential signaling driving unit and the display driving unit, but not to the controller and the clock signal detecting unit, when the first level of the power-saving signal is input to the power supply unit from the controller; and
said power supply unit re-supplying the voltage to the transmission minimized differential signaling driving unit and the display driving unit when the second level of the power-saving signal is input to the power supply unit from the controller.
22. The power-saving circuit as claimed in
a controller outputting a first level of a power-down signal to the transmission minimized differential signaling driving unit and outputting a first level of a power-saving signal to the power supply unit when the first level of the clock detecting signal is input to the controller from the clock signal detecting unit, said transmission minimized differential signaling driving unit stopping the signal conversion mode in response to said first level of a power-down signal;
said controller outputting a second level of the power-down signal to the transmission minimized differential signaling driving unit and outputting a second level of the power-saving signal to the power supply unit when the second level of the clock detecting signal is input to the controller from the clock signal detecting unit, said transmission minimized differential signaling driving unit starting the signal conversion mode in response to said second level of the power-down signal; and
said power supply unit further supplying a voltage to the clock signal detecting unit and the controller, cutting off the supply of the voltage to said display driving unit, but not to the controller, the transmission minimized differential signaling driving unit and the clock signal detecting unit, when the first level of the power-saving signal is input to the power supply unit from the controller, and re-supplying of the voltage to the display driving unit when the second level of power-saving signal is input to the power supply unit from the controller.
23. The power-saving circuit as claimed in
a controller outputting a first level of a power-saving signal when the first level of the clock detecting signal is input to the controller from the clock signal detecting unit, and outputting a second level of the power-saving signal when the second level of the clock detecting signal is input to the controller from the clock signal detecting unit;
said power supply unit further supplying a voltage to the controller and the clock signal detecting unit, cutting off the supply of the voltage to said at least one of the transmission minimized differential signaling driving unit and the display driving unit, but not to the controller and the clock signal detecting unit, when the first level of the power-saving signal is input to the power supply unit from the controller; and
said power supply unit re-supplying the voltage to the transmission minimized differential signaling driving unit and the display driving unit when the second level of the power-saving signal is input to the power supply unit from the controller.
24. The power-saving circuit as claimed in
said controller outputting a first level of a power-down signal to the transmission minimized differential signaling driving unit when the first level of the clock detecting signal is input to the controller from the clock signal detecting unit, said transmission minimized differential signaling driving unit stopping the signal conversion mode in response to said first level of a power-down signal; and
said controller outputting a second level of the power-down signal to the transmission minimized differential signaling driving unit when the second level of the clock detecting signal is input to the controller from the clock signal detecting unit, said transmission minimized differential signaling driving unit starting the signal conversion mode in response to said second level of the power-down signal.
25. The power-saving circuit as claimed in
said clock signal detecting unit outputting the first level of the clock detecting signal to the transmission minimized differential signaling driving unit when the transmission minimized differential signaling clock signal is not input to the transmission minimized differential signaling driving unit, said transmission minimized differential signaling driving unit stopping the signal conversion mode in response to said first level of the clock detecting signal; and
said clock signal detecting unit outputting the second level of the clock detecting signal to the transmission minimized differential signaling driving unit when the transmission minimized differential signaling clock signal is input to the transmission minimized differential signaling driving unit, said transmission minimized differential signaling driving unit starting the signal conversion mode in response to said second level of the clock detecting signal.
0. 30. The video display device as claimed in claim 29, wherein said power supply unit cuts off supply of power to said tmds driving unit and/or one or more components of said video display device in said power savings mode.
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This application makes reference to, incorporates the same herein, and claims all benefits accruing under 35 U.S.C. §119 from an application entitled A POWER-SAVING CIRCUIT IN A DIGITAL VIDEO SIGNAL DISPLAY SYSTEM earlier filed in the Korean Industrial Property Office on the day of Sep. 29, 2000, and there duly assigned Serial No. 2000-57445.
1. Technical Field
The present invention relates to a power-saving circuit for a digital video display device, and more particularly to a power-saving circuit for a digital video display device for detecting whether a transmission minimized differential signaling (TMDS) clock signal is input and performing a power-saving mode according to the detection result.
2. Description of the Related Art
In general, an analog video display device employing a cathode ray tube (CRT) and a digital video display device employing a liquid crystal display (LCD) are widely used for a desktop computer and a portable computer, respectively, wherein the digital video display device employs an analog interface mode and a digital interface mode.
The digital video display device of the analog interface mode has an advantage capable of being directly substituted for the existing analog video display device, whereas the digital video display device of the digital interface mode has an advantage capable of being simple and facilitating the impedance match, so that most portable computers employ the digital video display device of the digital interface mode.
With reference to
In general, except for but power to the controller 26 and the clock signal detecting unit 24 is not cut off, when the first level of the power-saving signal PS is input to the power supply unit 28 from the controller 26, and for supplying the voltage Vcc to the TMDS driving unit 20, the display driving unit 22, the controller 26 and the clock signal detecting unit 24 when the second level of the power-saving signal PS is input to the power supply unit 28 from the controller 26, during the power supply unit 28 supplying of the voltage Vcc to the respective components of the power-saving circuit 200.
Referring to
Referring now to
Referring to
Referring now to
The method and operation of the power-saving circuits 200, 300, 400, and 500 according to the respective embodiments of the present invention will now be described with reference to
In general, a graphic card built in a computer main body compresses and encodes horizontal/vertical synchronous signals and a digital video signal into a TMDS data signal Data to be output to a digital video display device together with a TMDS clock signal Clock.
Accordingly, referring first to the embodiment of the power-saving circuit 200 of
The clock signal detecting unit 24 outputs the first level of the clock detecting signal CS to the controller 26 when the TMDS clock signal Clock is not input to the TMDS driving unit and outputs the second level of the clock detecting signal CS to the controller 26, when the TMDS clock signal Clock is input to the TMDS driving unit 20 from the computer main body.
Referring now to
Continuing the reference to the power-saving circuit 200 of
Accordingly, in the embodiment of the power-saving circuit 200 of
Continuing now with reference to the operation of the power-saving circuit 300 of
In the power-saving circuit 300, the clock signal detecting unit 34 outputs the first level of the clock detecting signal CS to the controller 36 when the TMDS clock signal Clock is not input to the TMDS driving unit 30 from the computer main body, and the clock signal detecting unit outputs the second level of clock detecting signal CS to the controller 36 when the TMDS clock signal Clock is input to the TMDS driving unit 30 from the computer main body.
Also, in the power-saving circuit 300 of
Accordingly, in the power-saving circuit 300 of
Further, in the power-saving circuit 300 of
Continuing with reference to the operation of the power-saving circuit 400 of
Accordingly in the power-saving circuit 400 of
Continuing with reference to the operation of the power-saving circuit 500 of
Accordingly, in the power-saving circuit 500 of
Further, in the power-saving circuit 500 of
As discussed above, the power-saving circuits according to the present invention, such as power-saving circuits 200, 300, 400 and 500 of
While there have been illustrated and described what are considered to be preferred embodiments of the present invention, it will be understood by those skilled in the art that various changes and modifications may be made, and equivalents may be substituted for elements thereof without departing from the true scope of the present invention. In addition, many modifications may be made to adapt a particular situation to the teaching of the present invention without departing from the scope thereof. Therefore, it is intended that the present invention not be limited to the particular embodiments disclosed as the best mode contemplated for carrying out the present invention, but that the present invention includes all embodiments falling within the scope of the appended claims.
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