Abstract — The direct voltage programming of active-matrix organic light-emitting-diode (AMOLED) pixels with n-channel amorphous-Si (a-Si) TFTs requires a contact between the driving TFT and the OLED cathode. Current processing constraints only permit connecting the driving TFT to the OLED anode. Here, a new “inverted ” integration technique which makes the direct programming possible by connecting the driver n-channel a-Si TFT to the OLED cathode is demonstrated. As a result, the pixel drive current increases by an order of magnitude for the same data voltages and the pixel data voltage for turn-on drops by several volts. In addition, the pixel drive current becomes independent of the OLED characteristics so that OLED aging does not affect...
This paper presents a new voltage driving scheme with current feedback for polycrystalline silicon (...
Constant-current, active-matrix organic light-emitting displays (AM-OLEDs) with the advanced hydroge...
We fabricated and characterized the amorphous silicon thin-film transistor (a-Si:H TFT) pixel electr...
This paper presents a method of driving active-matrix organic light-emitting diode (AMOLED) displays...
We present a fast voltage programming scheme for active-matrix organic light-emitting diode (AMOLED)...
Abstract: A pixel design for active matrix organic light emitting diode (AM-OLED) displays employing...
This paper presents design considerations along with measurement results pertinent to hydrogenated a...
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...
This article presents design considerations pertinent to amorphous silicon (a-Si:H) pixel drive circ...
This work presents a new pixel circuit and driving scheme for active-matrix organic light-emitting d...
Abstract—This paper proposes a new pixel circuit for an active matrix organic light-emitting diode (...
Pixel circuits using undoped microcrystalline silicon as active layer have been investigated for the...
This work presents a new pixel circuit and driving scheme for active-matrix organic light-emitting d...
We present a new driving technique for active-matrix organic light-emitting diode displays using amo...
This paper presents a new voltage driving scheme with current feedback for polycrystalline silicon (...
Constant-current, active-matrix organic light-emitting displays (AM-OLEDs) with the advanced hydroge...
We fabricated and characterized the amorphous silicon thin-film transistor (a-Si:H TFT) pixel electr...
This paper presents a method of driving active-matrix organic light-emitting diode (AMOLED) displays...
We present a fast voltage programming scheme for active-matrix organic light-emitting diode (AMOLED)...
Abstract: A pixel design for active matrix organic light emitting diode (AM-OLED) displays employing...
This paper presents design considerations along with measurement results pertinent to hydrogenated a...
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...
This article presents design considerations pertinent to amorphous silicon (a-Si:H) pixel drive circ...
This work presents a new pixel circuit and driving scheme for active-matrix organic light-emitting d...
Abstract—This paper proposes a new pixel circuit for an active matrix organic light-emitting diode (...
Pixel circuits using undoped microcrystalline silicon as active layer have been investigated for the...
This work presents a new pixel circuit and driving scheme for active-matrix organic light-emitting d...
We present a new driving technique for active-matrix organic light-emitting diode displays using amo...
This paper presents a new voltage driving scheme with current feedback for polycrystalline silicon (...
Constant-current, active-matrix organic light-emitting displays (AM-OLEDs) with the advanced hydroge...
We fabricated and characterized the amorphous silicon thin-film transistor (a-Si:H TFT) pixel electr...