Method and system for driving an active matrix display circuit
A method and system for driving an active matrix display is provided. The system includes a drive circuit for a pixel having a light emitting device. The drive circuit includes a drive transistor for driving the light emitting device. The system includes a mechanism for adjusting the gate voltage of the drive transistor.
1. A display comprising:
an array of pixel circuits arranged in rows and columns, each of the pixel circuits including:
a light emitting device for emitting light; and
a drive circuit for driving the light emitting device;
a temperature sensor associated with at least one pixel circuit and having a sensing terminal coupled to an internal node of a first pixel circuit of the at least one pixel circuit, the drive circuit of the first pixel circuit coupled directly to the internal node, a conductance of the temperature sensor depending upon the temperature of the first pixel circuit, a changing voltage of the internal node discharging through the temperature sensor based on the conductance of the temperature sensor constituting a time-varying sensor output of the temperature sensor,
a read-back circuit controllably coupled to said temperature sensor via said internal node and producing a time-varying output signal based on said time-varying sensor output when coupled to said temperature sensor, said internal node being interposed between said temperature sensor and said read-back circuit,
at least one controllable switch coupling said read-back circuit to said temperature sensor, and,
a data driver circuit coupled to said read-back circuit and to said pixels and providing programming signals to said pixels based in part on variations in said time-varying output signal from said read-back circuit.
2. The display of claim 1 , wherein the temperature sensor is shared between two or more of the pixel circuits.
3. The display of claim 1 , wherein the sensing terminal of the temperature sensor is controllably coupled to the internal node of the pixel circuit.
4. The display of claim 1 , wherein the time-varying output signal of the read-back circuit is used to compensate for the change in the characteristics of the pixel circuit by calibrating a programming voltage stored in a storage capacitor of the pixel circuit.
5. The display of claim 4 , which includes a data line controllably coupled to said storage capacitor via said internal node.
6. The display of claim 1 , which includes multiple temperature sensors associated with different pixels or groups of pixels, and multiple read-back circuits, each of which is coupled to a different temperature sensor.
7. The display of claim 6 , wherein the time-varying output signal of the read-back circuit is used to compensate for the change in the characteristics of the pixel circuit by calibrating a programming voltage stored in a storage capacitor of the pixel circuit.
8. The display of claim 1 , in which the programming signals are calibrated based on the time-varying output signal of the read-back circuit.
9. The display of claim 1 , in which the data driver circuit generates programming data, calibrates the programming data, and drives data lines to the pixels with the calibrated programming data.
10. The display of claim 1 , wherein said programming signals compensate for the change in the temperature of the pixel circuit.