Abstract:
A fabric-based item may include fabric formed from intertwined strands of material such as intertwined strands of tubing. The strands of material may include electrophoretic ink formed from charged nanoparticles of different colors in fluid. The electrophoretic ink may be contained within strands of tubing or may be enclosed within encapsulation structures such as encapsulation spheres. Encapsulation spheres or other encapsulation structures may be embedded in clear polymer binder within tubing or other strands. Electroluminescent particles may be included in the clear polymer binder. Electric fields can be applied to the electrophoretic ink in a given area of the fabric using conductive strands that overlap the area, using conductive electrodes such as transparent conductive electrodes on strands of tubing, using coaxial electrodes, or using other electrode structures.
Abstract:
A rearview mirror assembly includes a housing. A circuit board is positioned within the housing. A cantilevered contact is coupled with the circuit board. An electro-optic element is positioned proximate the circuit board. A first substantially transparent substrate defines a first surface and a second surface. A first edge extends around the first substrate. A second substantially transparent substrate defines a third surface and a fourth surface. A second edge extends around the second substrate and defines a notch having a notch edge set inboard from the second edge. An electrical bus extends proximate the first and second edges. A primary seal is disposed between the first and second substrates. The seal and the first and second substrates define a cavity therebetween. An electro-optic material is positioned within the cavity.
Abstract:
본 발명의 일 실시 에에 따른 표시장치는 외부 광이 제공되는 제1 기판, 상기 제1 기판 상에 마련되고, 제1 제어전극 및 상기 제1 제어전극에 이격하는 제2 제어전극, 상기 제1 및 제2 제어전극 상에 마련되는 절연막, 상기 절연막 상에 형성되되, 상기 제1 제어전극과 적어도 일부가 중첩하는 제1 접촉전극 및 상기 제1 접촉전극과 이격하고 상기 제2 제어전극과 적어도 일부가 중첩하는 제2 접촉전극, 상기 제1 접촉전극과 상기 제2 접촉전극 이격 사이에서 운동하며 광을 투과 또는 차단시키는 셔터링 구동체, 상기 제1 기판에 대향하는 제2 기판 및 상기 제1 또는 제2 기판에 마련되고, 상기 셔터링 구동체를 투과한 광의 파장을 조절하는 양자점 필름을 포함하여 이루어질 수 있다.
Abstract:
Brightness in conventional total internal reflection image displays may decrease due to incident light passing through the dark pupil region in the white state. Adding sub-wavelength structures to the surface of the convex protrusions on the transparent front sheet may increase brightness in the white state. Control of the size, spacing, shape and refractive index of the sub-wavelength structures may lead to zeroth order reflection and enhanced brightness.
Abstract:
Example implementations relate to an electrophoretic display (EPD) device with anti-reflective nanoparticles. For example, a display device may include a display panel to display content and an EPD device adjacent to the display panel. The EPD device provides a voltage to at least a portion of the EPD device such that positively-charged anti-reflective nanoparticles in the EPD device are moved toward a negative voltage and negatively-charged anti-reflective nanoparticles in the EPD device are moved toward a positive voltage. The content is displayed based on locations of the positively-charged anti-reflective nanoparticles and the negatively-charged anti-reflective nanoparticles in response to the voltage.