AbstractOptical feedback driving schemes can enable accurate ageing and pixel brightness non-uniformity corrections in AMOLED displays. Here, we report on a pixel driver utilizing a metal-insulator-semiconductor (MIS) sensor for luminance control of the OLED element. In the proposed pixel architecture for bottom-emission AMOLEDs, the embedded MIS sensor shares the same layer stack with back-channel etched a-Si:H TFTs to maintain the fabrication simplicity. Performance characteristics of the MIS sensor are presented and analyzed to demonstrate its feasibility. Details on the pixel circuit functionality including the sensing and programming operations are also discussed
We present a fast voltage programming scheme for active-matrix organic light-emitting diode (AMOLED)...
A memory reduction method of luminance compensation algorithm using luminance sensor is proposed for...
Abstract: Active matrix organic light emitting diode (AMOLED) displays are considerably attractive f...
AbstractOptical feedback driving schemes can enable accurate ageing and pixel brightness non-uniform...
This paper presents a new driving scheme utilizing an in-pixel metal-insulator-semiconductor (MIS) p...
This work presents a new pixel circuit and driving scheme for active-matrix organic light-emitting d...
This work presents a new pixel circuit and driving scheme for active-matrix organic light-emitting d...
© 2005-2012 IEEE. A new accurate voltage-programmed pixel circuit for active-matrix organic light-em...
Abstract—This paper proposes a new pixel circuit for an active matrix organic light-emitting diode (...
Abstract — A novel pixel circuit for electrically stable AMOLEDs with an a-Si:H TFT backplane and to...
A novel pixel driving circuit for active-matrix organic light-emitting diode (AMOLED) displays with ...
OLED is a current based device, which emitted amount of light depends on the current supplied to the...
Abstract: A pixel design for active matrix organic light emitting diode (AM-OLED) displays employing...
Abstract—A new pixel design and driving method for ac-tive-matrix organic light-emitting diode (AMOL...
This paper reviews the challenges associated with development of stable and uniform active matrix or...
We present a fast voltage programming scheme for active-matrix organic light-emitting diode (AMOLED)...
A memory reduction method of luminance compensation algorithm using luminance sensor is proposed for...
Abstract: Active matrix organic light emitting diode (AMOLED) displays are considerably attractive f...
AbstractOptical feedback driving schemes can enable accurate ageing and pixel brightness non-uniform...
This paper presents a new driving scheme utilizing an in-pixel metal-insulator-semiconductor (MIS) p...
This work presents a new pixel circuit and driving scheme for active-matrix organic light-emitting d...
This work presents a new pixel circuit and driving scheme for active-matrix organic light-emitting d...
© 2005-2012 IEEE. A new accurate voltage-programmed pixel circuit for active-matrix organic light-em...
Abstract—This paper proposes a new pixel circuit for an active matrix organic light-emitting diode (...
Abstract — A novel pixel circuit for electrically stable AMOLEDs with an a-Si:H TFT backplane and to...
A novel pixel driving circuit for active-matrix organic light-emitting diode (AMOLED) displays with ...
OLED is a current based device, which emitted amount of light depends on the current supplied to the...
Abstract: A pixel design for active matrix organic light emitting diode (AM-OLED) displays employing...
Abstract—A new pixel design and driving method for ac-tive-matrix organic light-emitting diode (AMOL...
This paper reviews the challenges associated with development of stable and uniform active matrix or...
We present a fast voltage programming scheme for active-matrix organic light-emitting diode (AMOLED)...
A memory reduction method of luminance compensation algorithm using luminance sensor is proposed for...
Abstract: Active matrix organic light emitting diode (AMOLED) displays are considerably attractive f...