Method and system for programming, calibrating and/or compensating, and driving an led display
US-2022223094-A1 · Jul 14, 2022 · US
US2021312863A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2021312863-A1 |
| Application number | US-202117354233-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jun 22, 2021 |
| Priority date | Mar 15, 2013 |
| Publication date | Oct 7, 2021 |
| Grant date | — |
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The OLED voltage of a selected pixel is extracted from the pixel produced when the pixel is programmed so that the pixel current is a function of the OLED voltage. One method for extracting the OLED voltage is to first program the pixel in a way that the current is not a function of OLED voltage, and then in a way that the current is a function of OLED voltage. During the latter stage, the programming voltage is changed so that the pixel current is the same as the pixel current when the pixel was programmed in a way that the current was not a function of OLED voltage. The difference in the two programming voltages is then used to extract the OLED voltage.
Opening claim text (preview).
1 - 25 . (canceled) 26 . A system for determining a value of a pixel parameter of a pixel in an array of pixels in a display, the pixel including a storage capacitor coupled to a drive transistor for supplying current to a light-emitting device of the pixel as a function of a programming of the storage capacitor, the system comprising: a controller adapted to: while measuring a first output electrical signal from the pixel in response to a first input electrical signal provided to the pixel, vary the first input electrical signal until reaching a final first input electrical signal provided to the pixel when the first output electrical signal equals a predetermined electrical signal; and extract the value of the pixel parameter with use of the final first input electrical signal, wherein one of the first output electrical signal and the predetermined electrical signal is a function of the pixel parameter. 27 . The system of claim 26 wherein the predetermined electrical signal is a predetermined known reference current and the first output electrical signal is a first output current which is a function of the pixel parameter. 28 . The system of claim 26 wherein the predetermined electrical signal is a previously measured second output electrical signal, the second output electrical signal previously output from the pixel in response to a second input electrical signal provided to the pixel. 29 . The system of claim 28 wherein the controller is adapted to extract the pixel parameter with use of the second input electrical signal provided to the pixel. 30 . The system of claim 29 wherein the controller is adapted to extract the pixel parameter from a difference between the final first input electrical signal provided to the pixel and the second input electrical signal. 31 . The system of claim 28 wherein the controller is further adapted to, prior to the measuring the first output electrical signal, setting the second input electrical signal provided to the pixel to generate the measured second output electrical signal, wherein only one of the first output electrical signal and the predetermined electrical signal is a function of the pixel parameter. 32 . The system of claim 26 wherein the first output electrical signal is a function of the pixel parameter, and wherein the controller is further adapted to: at an earlier time previous to the extracting of the pixel parameter, while measure a third output electrical signal from the pixel in response to a third input electrical signal provided to the pixel, vary the third input electrical signal until reaching a final third input electrical signal provided to the pixel when the third output electrical signal equals the predetermined electrical signal, wherein one of the predetermined electrical signal and the third output electrical signal is a function of the pixel parameter at the earlier time, and extract the value of the pixel parameter at the earlier time with use of the final third input electrical signal; and extract the value of the pixel parameter with use of the final third input electrical signal provided to the pixel and the final first input electrical signal provided to the pixel and the value of the pixel parameter at the earlier time. 33 . The system of claim 32 wherein only one of the predetermined electrical signal and the third output electrical signal is a function of the pixel parameter at the earlier time. 34 . The system of claim 26 , wherein the pixel parameter is the operational voltage V OLED of the light-emitting device. 35 . A method of determining a value of a pixel parameter of a pixel in an array of pixels in a display, the pixel including a storage capacitor coupled to a drive transistor for supplying current to a light-emitting device of the pixel as a function of a programming of the storage capacitor, the method comprising: while measuring a first output electrical signal from the pixel in response to a first input electrical signal provided to the pixel, varying the first input electrical signal until reaching a final first input electrical signal provided to the pixel when the first output electrical signal equals a predetermined electrical signal; and extracting the value of the pixel parameter with use of the final first input electrical signal provided to the pixel, wherein one of the first output electrical signal and the predetermined electrical signal is a function of the pixel parameter. 36 . The method of claim 35 wherein the predetermined electrical signal is a predetermined known reference current and the first output electrical signal is a first output current which is a function of the pixel parameter. 37 . The method of claim 35 wherein the predetermined electrical signal is a previously measured second output electrical signal, the second output electrical signal previously output from the pixel in response to a second input electrical signal provided to the pixel. 38 . The method of claim 37 wherein the extracting comprises extracting the pixel parameter with use of the second input electrical signal provided to the pixel. 39 . The method of claim 38 wherein the extracting comprises extracting the pixel parameter from a difference between the final first input electrical signal provided to the pixel and the second input electrical signal provided to the pixel. 40 . The method of claim 37 further comprising: prior to the measuring the first output electrical signal from the pixel, setting the second input electrical signal provided to the pixel to generate the measured second output electrical signal, wherein only one of the first output electrical signal and the predetermined electrical signal is a function of the pixel parameter. 41 . The method of claim 35 wherein the first output electrical signal is a function of the pixel parameter, the method further comprising: at an earlier time previous to the extracting of the pixel parameter, while measuring a third output electrical signal from the pixel in response to a third input electrical signal provided to the pixel, varying the third input electrical signal until reaching a final third input electrical signal provided to the pixel when the third output electrical signal equals the predetermined electrical signal, wherein one of the predetermined electrical signal and the third output electrical signal is a function of the pixel parameter at the earlier time, and extracting the value of the pixel parameter at the earlier time with use of the final third input electrical signal provided to the pixel; and extracting the value of the pixel parameter with use of the final third input electrical signal provided to the pixel and the final first input electrical signal provided to the pixel and the value of the pixel parameter at the earlier time. 42 . The method of claim 41 wherein only one of the predetermined electrical signal and the third output electrical signal is a function of the pixel parameter at the earlier time. 43 . The method of claim 35 , wherein the pixel parameter is the operational voltage V OLED of the light-emitting device.
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