Title :
A Highly Sensitive Capacitive Touch Sensor Integrated on a Thin-Film-Encapsulated Active-Matrix OLED for Ultrathin Displays
Author :
Sunkook Kim ; Woong Choi ; Woojin Rim ; Youngtea Chun ; Hongsik Shim ; Hyukjun Kwon ; Jongsoo Kim ; Inseo Kee ; Sungchul Kim ; Sangyoon Lee ; Jongsun Park
Author_Institution :
Samsung Adv. Inst. of Technol., Yongin, South Korea
Abstract :
This paper presents ultrathin and highly sensitive input/output devices consisting of a capacitive touch sensor (Cap-TSP) integrated on thin-film-encapsulated active-matrix organic light-emitting diodes (OLEDs). The optimal structure of the electrically noise-free capacitive touch sensor, which is assembled on a thin-film-encapsulated active-matrix OLED (AMOLED) display, is obtained by investigating the internal electrical field distribution and capacitance change based on the Q3D Extractor model. Electrostatic simulations have verified malfunction-free electrical signals for 4-in diagonal-sized capacitive touch sensors on AMOLEDs possessing a 100-μm-thick optically clear adhesive (OCA, εr = 1.4) layer. The prototype OLED platform using the capacitive touch sensors exhibits an overall thickness of 1.2 mm, which is the lowest thickness for commercially available OLED platforms.
Keywords :
LED displays; capacitance; capacitive sensors; electric fields; organic light emitting diodes; tactile sensors; touch sensitive screens; AMOLED display; Q3D extractor model; capacitance change; electrically noise free capacitive touch sensor; electrostatic simulation; highly sensitive capacitive touch sensor; internal electrical field distribution; malfunction free electrical signals; organic light emitting diode; size 1.2 mm; thin film encapsulated active matrix OLED; ultrathin display; Capacitance; Electrodes; Glass; Indium tin oxide; Organic light emitting diodes; Tactile sensors; Active-matrix organic light-emitting diode (AMOLED); capacitive touch sensor (Cap-TSP); noise; ultrathin display;
Journal_Title :
Electron Devices, IEEE Transactions on
DOI :
10.1109/TED.2011.2162844