IP Library Granted Patent US 9,495,910
Granted Patent B2
US 9,495,910 · App. 14/546,689 · Granted Nov 15, 2016

Pixel circuit, driving method, display device, and inspection method

Inventor: Rajeev Rohatgi (Reno, NV)
Assignee: Global OLED Technology LLC
G09G3/3233G09G3/006G09G3/3258G09G2300/088G09G2300/0819G09G2300/0842G09G2300/0866G09G2310/0202G09G2310/0262G09G2320/043G09G2320/045G09G2330/12
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Quick Facts
Patent No.
US 9,495,910
App. No.
14/546,689
Granted
Nov 15, 2016
Kind
B2
Abstract

A circuit is provided to drive a controlled current from a drive transistor into one electroluminescent element of a pixel array. The circuit is operable to compensate for threshold voltage variation of the drive transistor, thereby providing improved image quality. The circuit is suitable for implementation with p-channel MOSFETs and a conventional geometry having in order: substrate, TFT layer(s), anode, electroluminescent layer(s), cathode. A driving method for this circuit is provided. A display incorporating this circuit is provided. The circuit is operable to provide an inspection function prior to fabrication of the electroluminescent layer(s). An inspection method is provided.

Claims (29)

1. A pixel circuit comprising:

a sampling transistor having a gate electrode controlled by a first scanning line and a second electrode connected to a signal line;

a driving transistor having a gate electrode connected to a third electrode of the sampling transistor, and having a source electrode and a drain electrode;

a light emitting element connected between a drain electrode of the driving transistor and a first power supply line and driven by current supplied from the driving transistor;

a storage capacitor connected between the gate and source electrodes of the driving transistor;

a switching transistor having a gate electrode controlled by a second scanning line, a second electrode connected to the source electrode of the driving transistor, and a third electrode connected to a preset potential line;

a diode-connected transistor having gate and second electrodes connected to the source electrode of the driving transistor and a third electrode connected to a second power supply line; and

a shunt transistor having a gate electrode controlled by a third scanning line, a second electrode connected to the drain of the driving transistor, and a third electrode connected to a sink potential line;

wherein one of the preset potential line and the sink potential line is connected to a test point that is operable to connect to a probe for measuring current through the driving transistor prior to formation of the light emitting element.

2. A display device having a plurality of pixels arranged in a matrix, comprising:

a plurality of signal lines;

a signal line driving circuit for driving the plurality of signal lines;

a plurality of first scanning lines;

a first scanning line driving circuit for driving the plurality of first scanning lines;

a plurality of second scanning lines;

a second scanning line driving circuit for driving the plurality of second scanning lines;

a plurality of third scanning lines;

a third scanning line driving circuit for driving the plurality of third scanning lines;

at least one preset potential line for supplying a preset potential;

at least one sink potential line for supplying a sink potential; and

each of the plurality of pixels further comprising:

a sampling transistor having a gate electrode controlled by one of the plurality of first scanning lines and a second electrode connected to one of the plurality of signal lines;

a driving transistor having a gate electrode connected to a third electrode of the sampling transistor, and having a source electrode and a drain electrode;

a light emitting element connected between a drain electrode of the driving transistor and a first power supply line and driven by current supplied from the driving transistor;

a storage capacitor connected between the gate and source electrodes of the driving transistor;

a switching transistor having a gate electrode controlled by one of the plurality of second scanning lines, a second electrode connected to the source electrode of the driving transistor, and a third electrode connected to one of the at least one preset potential line;

a diode-connected transistor having gate and second electrodes connected to the source electrode of the driving transistor and a third electrode connected to a second power supply line; and

a shunt transistor having a gate electrode controlled by one of the plurality of third scanning lines, a second electrode connected to the drain of the driving transistor, and a third electrode connected to one of the at least one sink potential line;

wherein one of the at least one preset potential line and the at least one sink potential line is connected to a test point that is operable to connect to a probe for measuring current through the driving transistor prior to formation of the light emitting element.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2014
From: ROHATGI, RAJEEV
To: GLOBAL OLED TECHNOLOGY LLC
Reel/Frame 034286/0626 →
Continuity (2)
Provisional Application 61908011 · Nov 22, 2013
Related Publication 20150145848A1 · May 28, 2015