IP Library › Granted Patent US 11,488,524
Granted Patent B2
US 11,488,524 · App. 17/380,243 · Granted Nov 1, 2022

Organic light emitting diode display device, and method of operating an organic light emitting diode display device

Inventors: Kihyun Pyun (Gwangmyeong-si, KR); Geonhwi Park (Anyang-si, KR); Jungeon An (Asan-si, KR)
Assignee: SAMSUNG DISPLAY CO., LTD.
G09G3/3208G09G3/2096G09G2320/0233G09G2320/0266G09G2330/021G09G2340/0435G09G2360/16
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Quick Facts
Patent No.
US 11,488,524
App. No.
17/380,243
Granted
Nov 1, 2022
Kind
B2
Abstract

An organic light emitting diode (“OLED”) display device, which operates in a variable frame mode, includes a display panel including a plurality of pixels, a power management circuit which supplies a power supply voltage to the plurality of pixels, and a controller which determines a panel load, a first representative gray level and a second representative gray level by analyzing input image data, determines an initial level of the power supply voltage based on the panel load and the first representative gray level, and determines a step level of the power supply voltage based on the panel load and the second representative gray level. The power management circuit generates the power supply voltage having the initial level during an active period, and gradually increases a voltage level of the power supply voltage from the initial level based on the step level during a variable blank period.

Claims (58)

1. An organic light emitting diode display device which operates in a variable frame mode in which a frame period includes a variable blank period, the organic light emitting diode display device comprising:

a display panel including a plurality of pixels;

a power management circuit which supplies a power supply voltage to the plurality of pixels; and

a controller which determines a panel load, a first representative gray level and a second representative gray level by analyzing input image data, determines an initial level of the power supply voltage based on the panel load and the first representative gray level, and determines a step level of the power supply voltage based on the panel load and the second representative gray level,

wherein the power management circuit generates the power supply voltage having the initial level during an active period of the frame period, and gradually increases a voltage level of the power supply voltage from the initial level based on the step level during the variable blank period of the frame period.

2. The organic light emitting diode display device of claim 1 , wherein the voltage level of the power supply voltage in the variable blank period is increased as a time length of the variable blank period increases.

3. The organic light emitting diode display device of claim 1 , wherein the voltage level of the power supply voltage in the variable blank period is periodically increased by the step level.

4. The organic light emitting diode display device of claim 1 , wherein the initial level of the power supply voltage is increased as the panel load increases, and is increased as the first representative gray level increases.

5. The organic light emitting diode display device of claim 1 , wherein the step level of the power supply voltage is increased as the panel load increases, and is increased as the second representative gray level increases.

6. The organic light emitting diode display device of claim 1 ,

wherein the controller generates an initial voltage code representing the initial level of the power supply voltage and a step code representing the step level of the power supply voltage, and generates an additional voltage code which has an initial value in the active period and periodically increases by the step code during the variable blank period, and

wherein the power management circuit receives the initial voltage code and the additional voltage code from the controller, and generates the power supply voltage having the voltage level corresponding to a sum of the initial voltage code and the additional voltage code.

7. The organic light emitting diode display device of claim 1 ,

wherein the first representative gray level is a maximum gray level of the input image data, and

wherein the second representative gray level is an average gray level of the input image data.

8. The organic light emitting diode display device of claim 7 , wherein the controller includes:

a load calculation block which calculates the panel load by calculating a ratio of a sum of gray levels of the input image data to a maximum gray level sum;

a maximum gray detection block which determines the maximum gray level among the gray levels of the input image data;

an average gray calculation block which calculates the average gray level of the gray levels of the input image data;

a voltage code generation block which generate san initial voltage code representing the initial level corresponding to the panel load and the maximum gray level;

a step code generation block which generates a step code representing the step level corresponding to the panel load and the average gray level; and

a blank counter block which counts clock pulses during the variable blank period, and generates an additional voltage code which is increased by the step code each time when a number of the counted clock pulses is increased by a predetermined number.

9. The organic light emitting diode display device of claim 8 , wherein the controller further includes:

an initial voltage code lookup table which stores a plurality of initial voltage codes corresponding to a plurality of first combinations of panel loads and maximum gray levels; and

a step code lookup table which stores a plurality of step codes corresponding to a plurality of second combinations of the panel loads and average gray levels,

wherein the voltage code generation block outputs the initial voltage code corresponding to the panel load calculated by the load calculation block and the maximum gray level determined by the maximum gray detection block among the plurality of initial voltage codes stored in the initial voltage code lookup table, and

wherein the step code generation block outputs the step code corresponding to the panel load calculated by the load calculation block and the average gray level calculated by the average gray calculation block among the plurality of step codes stored in the step code lookup table.

10. The organic light emitting diode display device of claim 8 , wherein the power management circuit includes:

a power supply voltage digital-to-analog converter block which calculates a sum of the initial voltage code and the additional voltage code, and generates an analog voltage corresponding to the sum of the initial voltage code and the additional voltage code; and

a power supply voltage generation block which generates the power supply voltage based on the analog voltage received from the power supply voltage digital-to-analog converter block.

11. The organic light emitting diode display device of claim 1 , wherein each of the first representative gray level and the second representative gray level is a maximum gray level of the input image data.

12. The organic light emitting diode display device of claim 11 , wherein the controller includes:

a load calculation block which calculates the panel load by calculating a ratio of a sum of gray levels of the input image data to a maximum gray level sum;

a maximum gray detection block which determines the maximum gray level among the gray levels of the input image data;

a voltage code generation block which generates an initial voltage code representing the initial level corresponding to the panel load and the maximum gray level;

a step code generation block which generates a step code representing the step level corresponding to the panel load and the maximum gray level; and

a blank counter block which counts clock pulses during the variable blank period, and generates an additional voltage code which is increased by the step code each time when a number of the counted clock pulses is increased by a predetermined number.

13. The organic light emitting diode display device of claim 12 , wherein the controller further includes:

an initial voltage code lookup table which stores a plurality of initial voltage codes corresponding to a plurality of first combinations of panel loads and maximum gray levels; and

a step code lookup table which stores a plurality of step codes corresponding to a plurality of second combinations of the panel loads and the maximum gray levels,

wherein the voltage code generation block outputs the initial voltage code corresponding to the panel load calculated by the load calculation block and the maximum gray level determined by the maximum gray detection block among the plurality of initial voltage codes stored in the initial voltage code lookup table, and

wherein the step code generation block outputs the step code corresponding to the panel load calculated by the load calculation block and the maximum gray level determined by the maximum gray detection block among the plurality of step codes stored in the step code lookup table.

14. A method of operating an organic light emitting diode display device which operates a variable frame mode in which a frame period includes a variable blank period, the method comprising:

determining a panel load, a first representative gray level and a second representative gray level by analyzing input image data;

determining an initial level of a power supply voltage, which is provided to a plurality of pixels of a display panel, based on the panel load and the first representative gray level;

determining a step level of the power supply voltage based on the panel load and the second representative gray level;

generating the power supply voltage having the initial level during an active period of the frame period; and

gradually increasing a voltage level of the power supply voltage from the initial level based on the step level during the variable blank period of the frame period.

15. The method of claim 14 , wherein the voltage level of the power supply voltage in the variable blank period is increased as a time length of the variable blank period increases.

16. The method of claim 14 , wherein the voltage level of the power supply voltage in the variable blank period is periodically increased by the step level.

17. The method of claim 14 , wherein the gradually increasing the voltage level of the power supply voltage includes

counting clock pulses during the variable blank period; and

increasing the voltage level of the power supply voltage by the step level each time when a number of the counted clock pulses is increased by a predetermined number.

18. The method of claim 14 , wherein the initial level of the power supply voltage is increased as the panel load increases, and is increased as the first representative gray level increases.

19. The method of claim 14 , wherein the step level of the power supply voltage is increased as the panel load increases, and is increased as the second representative gray level increases.

20. The method of claim 14 ,

wherein the first representative gray level is a maximum gray level of the input image data, and

wherein the second representative gray level is an average gray level of the input image data.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 6, 2022
From: PYUN, KIHYUN; PARK, GEONHWI; AN, JUNGEON
To: SAMSUNG DISPLAY CO., LTD.
Reel/Frame 060594/0776 →
Priority Claims (1)
KR 10-2021-0000554 · Jan 4, 2021 · national
Continuity (1)
Related Publication 20220215798A1 · Jul 7, 2022