IP Library Granted Patent US 12682800
Granted Patent B2
US 12682800 · App. 18/893,996 · Granted Jul 14, 2026

Output amplifier circuit, display driver and display device

Inventors: Hiroki Aizawa (Yokohama, JP); Hiroshi Tsuchi (Yokohama, JP)
Assignee: LAPIS Technology Co., Ltd.
G09G3/20H03F3/16G09G2310/0291G09G2310/08G09G2320/0233G09G2330/028
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Quick Facts
Patent No.
US 12682800
App. No.
18/893,996
Granted
Jul 14, 2026
Kind
B2
Abstract

An output amplifier circuit, and a display driver and a display device including the output amplifier circuit. The output amplifier circuit includes: first to nth amplifiers which receive first to nth input voltages and generate first to nth output voltages by amplifying the respective first to nth input voltages; first to Kth bias circuits which are provided corresponding to each of first to Kth amplifier groups formed by grouping the first to nth amplifiers into K groups, and each generates a bias voltage for setting a current value of an operating current of the amplifiers; first to Kth wirings which supply the bias voltage generated by each of the first to Kth bias circuits to the first to Kth amplifier groups respectively; and a switch circuit which, when in an ON state, connects one wiring among the first to Kth wirings with another wiring different from the one wiring.

Claims (37)

1 . An output amplifier circuit, comprising:

first to nth amplifiers, receiving first to nth (where n is an integer of 2 or more) input voltages for each of data periods of a predetermined cycle, and generating first to nth output voltages by amplifying the respective first to nth input voltages;

first to Kth bias circuits, provided corresponding to each of first to Kth amplifier groups formed by grouping the first to nth amplifiers into K (where K is an integer of 2 or more) groups, and each generating a bias voltage for setting a current value of an operating current of the amplifiers;

first to Kth wirings which are independent of one another, supplying the bias voltage generated by each of the first to Kth bias circuits to the first to Kth amplifier groups respectively;

a switch circuit, when in an ON state, connecting one wiring among the first to Kth wirings with another wiring among the first to Kth wirings that is different from the one wiring; and

a control unit configured to set the switch circuit to an ON state or an OFF state,

wherein, for each of the data periods comprising a first period immediately after a start of the data period and a second period subsequent to the first period, the control unit is configured to:

set the switch circuit to an OFF state during the first period, thereby disconnecting a connection between the one wiring and the another wiring; and

set the switch circuit to an ON state at least throughout the second period.

2 . The output amplifier circuit according to claim 1 , wherein

the switch circuit has an ON resistance higher than a predetermined value.

3 . The output amplifier circuit according to claim 2 , wherein the first to Kth bias circuits comprise a voltage adjustment unit which receives a bias control signal specifying a voltage value of the bias voltage, and adjusts the voltage value of each of the bias voltages to the voltage value specified by the bias control signal.

4 . The output amplifier circuit according to claim 1 , wherein the data period is set such that a start timing of the data period is shifted for each of a predetermined number of the first to nth amplifiers.

5 . The output amplifier circuit according to claim 4 , wherein the first to Kth bias circuits comprise a voltage adjustment unit which receives a bias control signal specifying a voltage value of the bias voltage, and adjusts the voltage value of each of the bias voltages to the voltage value specified by the bias control signal.

6 . The output amplifier circuit according to claim 1 , wherein the first to Kth bias circuits comprise a voltage adjustment unit which receives a bias control signal specifying a voltage value of the bias voltage, and adjusts the voltage value of each of the bias voltages to the voltage value specified by the bias control signal.

7 . The output amplifier circuit according to claim 6 , comprising a common bias voltage generation circuit which generates a bias voltage with a fixed voltage value different from the bias voltage and supplies the bias voltage to the first to nth amplifiers.

8 . A display driver, comprising:

a gradation voltage generation circuit, generating first to nth (where n is an integer of 2 or more) gradation voltages each having a voltage value corresponding to a brightness level of each of pixels based on a video signal;

first to nth amplifiers, receiving the first to nth gradation voltages, and supplying first to nth output voltages by amplifying the respective first to nth gradation voltages to first to nth data lines of a display panel;

first to Kth bias circuits, provided corresponding to each of first to Kth amplifier groups formed by grouping the first to nth amplifiers into K (where K is an integer of 2 or more) groups, and each generating a bias voltage for setting a current value of an operating current of the amplifiers;

first to Kth wirings which are independent of one another, supplying the bias voltage generated by each of the first to Kth bias circuits to the first to Kth amplifier groups respectively;

a switch circuit, when in an ON state, connecting one wiring among the first to Kth wirings with another wiring among the first to Kth wirings that is different from the one wiring; and

a control unit configured to set the switch circuit to an ON state or an OFF state,

wherein, for each of the data periods comprising a first period immediately after a start of the data period and a second period subsequent to the first period, the control unit is configured to:

set the switch circuit to an OFF state during the first period, thereby disconnecting a connection between the one wiring and the another wiring; and

set the switch circuit to an ON state at least throughout the second period.

9 . A display device, comprising:

a display panel, comprising first to nth (where n is an integer of 2 or more) data lines extending along a horizontal direction of a display screen;

a gradation voltage generation circuit, generating first to nth gradation voltages each having a voltage value corresponding to a brightness level of each of pixels based on a video signal;

first to nth amplifiers, receiving the first to nth gradation voltages, and supplying first to nth output voltages by amplifying the respective first to nth gradation voltages to the first to nth data lines of the display panel;

first to Kth bias circuits, provided corresponding to each of first to Kth amplifier groups formed by grouping the first to nth amplifiers into K (where K is an integer of 2 or more) groups, and each generating a bias voltage for setting a current value of an operating current of the amplifiers;

first to Kth wirings which are independent of one another, supplying the bias voltage generated by each of the first to Kth bias circuits to the first to Kth amplifier groups respectively;

a switch circuit, when in an ON state, connecting one wiring among the first to Kth wirings with another wiring among the first to Kth wirings that is different from the one wiring; and

a control unit configured to set the switch circuit to an ON state or an OFF state,

wherein, for each of the data periods comprising a first period immediately after a start of the data period and a second period subsequent to the first period, the control unit is configured to:

set the switch circuit to an OFF state during the first period, thereby disconnecting a connection between the one wiring and the another wiring; and

set the switch circuit to an ON state at least throughout the second period.