Abstract:
장치 킥스탠드가 설명된다. 적어도 일부 구현들에서, 킥스탠드는 이동 컴퓨팅 장치에 회전 가능하게 부착된다. 킥스탠드는 컴퓨팅 장치의 상이한 배향들에 대한 지지를 제공하기 위해 다양한 위치들로 회전할 수 있다. 적어도 일부 구현들에서, 힌지들을 사용하여 킥스탠드를 이동 컴퓨팅 장치에 부착한다. 하나의 예시적인 힌지는 킥스탠드가 상이한 사전 설정 위치들에 배치되는 것을 가능하게 하는 사전 설정 힌지 스톱들을 이용한다. 다른 예시적인 힌지는 킥스탠드의 에지에 압력을 가하여, 킥스탠드에 대한 안정성 및 진동 감쇠를 제공한다.
Abstract:
본 명세서에는 압력 감지 키 기술이 개시되었다. 하나 이상의 구현에서, 압력 감지 키는 하나 이상의 컨덕터를 구비하는 센서 기판 및 센서 기판으로부터 이격되어 있으며 센서 기판에 접촉하기 위해 압력을 인가한 것에 대응하여 휘어지도록 구성된 신축성 접촉 층을 포함한다. 신축성 접촉 층은 힘 감지 잉크를 사용하여 센서 기판에 접촉하도록 구성된 제 1 위치 및 힘 감지 잉크를 사용하여 센서 기판에 접촉하도록 구성된 제 2 위치를 포함하되, 제 2 위치는 제 1 위치보다 증가된 전도성을 갖는다.
Abstract:
An input device has a circular arc resistive layer and a metal plate as a conductive layer that is faced to the circular arc resistive layer, and can detect a position operated by partial contact between them. The input device has an element unit where a linear insulating layer as a contact preventing unit for preventing both ends of the circular arc resistive layer from simultaneously coming into contact with the metal plate during operation is disposed on one end of the circular arc resistive layer.
Abstract:
A conductive resin composition which contains a composite of a poly(3,4-dialkoxythiophene) and a polyanion, wherein the composite has a conductivity of 0.30 S/cm or higher. This composition is suitable for use in producing a conductive film comprising a conductive layer made of the composition. The conductive film is suitable for use in a resistive-film switch.
Abstract:
An electronic device with a force sensing key (200) has a switch (280), a first force sensing region (290) for acquiring a first force value, a second force sensing region (290) for acquiring a second force value, and a processor for determining a selected function for the key (200) based upon the first force value and the second force value when the switch (280) is activated. The first force sensing pad (290) and the second force sensing pad (290) use a partially resistive material (250) that exhibits a force-to-voltage response value. By forming the switch (280) as a dome (225) switch, the force sensing key (200) provides crisp tactile feedback to a user. The force sensing key (200) can be configured for a variety of applications and user preferences by varying the architecture of the actuator (270).
Abstract:
The invention relates to a pressure sensor in the form of a film, comprising a first carrier film and a second carrier film which are arranged at a certain distance from each other by means of a spacer. The distance holder comprises at least one recess which defines an active region of the pressure sensor wherein both of the carrier films are arranged opposite each other, also comprising a first electrode and a second electrode and a layer made of pressure- sensitive material. The first electrode, the second electrode and the layer made of pressure-sensitive material are disposed in the active region on the first and/or second carrier film such that when the carrier films are pressed together through the pressure sensitive layer, electric contact is produced between the first and the second electrode. According to the invention, the pressure sensor comprises at least one third electrode which is disposed in the active region of the pressure sensor on the first and second carrier film such that when the carrier films are pressed together though the pressure sensitive layer, electric contact is produced between the third electrode and the first electrode and/or between the third electrode and the second electrode.
Abstract:
The invention relates to an operating element provided with an operating surface, especially in a vehicle, for actuating a regulating device which is actively connected to a component to be regulated. Said operating surface is embodied as a pressure- sensitive surface that can be used to generate a regulating signal according to the position and/or intensity of the pressure exerted on the operating surface. Said signal enables the component to be regulated to be correspondingly positioned by means of the regulating device.
Abstract:
A steering wheel having a pressure-sensitive horn activator integrated with an airbag assembly. The horn activator is configured for quick activation, while avoiding accidental activation due to changes in ambient temperatures and pressures.