Abstract:
An optoelectronic device includes a first electrode, a second electrode that is spaced apart from the first electrode, an optoelectronic unit that is disposed between the first electrode and the second electrode, an insulating layer and a driving electrode. The optoelectronic unit includes an optoelectronic stack emitting or absorbing at least two wavelengths of light. The insulating layer is disposed on a lateral side of the optoelectronic stack that extends in a stacking direction of the optoelectronic stack. The driving electrode is disposed on the insulating layer at a location corresponding in position to the optoelectronic unit and is separated from the first and second electrodes.
Abstract:
A system and a method for stress detection on small areas are disclosed. The method is applied to a strain gauge, which uses the Joule heating effect-generated temperature difference to monitor and to localize compressive and tensile strains. Furthermore, the invention provides a systematic extrapolation prediction methodology for strains.
Abstract:
The present invention provides a pixel for realizing a full-color display, including an elastomer; and a plurality of microstructures disposed on the elastomer, wherein the pixel is composed of a single sub-pixel and the plurality of microstructures have the same primary morphology; wherein when applying a force to the elastomer, the plurality of microstructures have a second morphology which is different from the primary morphology. The present invention also provides a micro-electro-mechanical system (MEMS) for realizing a full-color display, fabrication methods thereof, and a method to realize a full-color display with a single pixel.
Abstract:
An electro-wetting transmissive and interference display device with adjustable function includes a lower electrode, an upper electrode and an droplet disposed between the upper electrode and the lower electrode, wherein the lower electrode, the droplet and the upper electrode are disposed on a substrate, and the droplet is enclosed between the lower electrode and the upper electrode by an ink jet printing method.