Abstract:
전자디바이스하우징의다양한컴포넌트들및 그것들의조립을위한방법이개시된다. 하우징은둘 이상의상이한섹션들을서로조립하고연결함으로써형성될수 있다. 하우징의섹션들은하나이상의결합부재를이용하여서로결합될수 있다. 결합부재들은제1 샷이결합부재들의구조적부분을형성하고, 제2 샷이결합부재들의장식용부분들을형성하는 2 샷몰딩프로세스를사용하여형성될수 있다.
Abstract:
PROBLEM TO BE SOLVED: To provide a headset engaging connector system which includes two or more headset engaging contact regions to provide at least one of power and data.SOLUTION: A headset connector system 200 includes two or more headset connector contact regions 221, 222, 223. The headset connector system 200 or a headset engaging connector system includes switching circuitry 215 electrically coupled to each of the contact regions. The switching circuitry 215 can be operative to determine an interface orientation between the headset connector contact regions and headset engaging contact regions. At least a portion of the headset connector system or the headset engaging connector system has magnetic attractive force.
Abstract:
PROBLEM TO BE SOLVED: To provide headset connector systems and headset engaging connector systems.SOLUTION: Headset connector systems 200 includes two or more headset connector contact regions 211, 212, 213 to provide at least one of power and data. The headset connector system 200 includes switching circuitry 215 electrically coupling the respective contact regions. The switching circuitry 215 can be operative to determine an interface orientation between the headset connector contact regions 211, 212, 213 and the headset engaging contact regions 221, 222, 223. The switching circuitry 215 can also be operative to selectively route received signals based on the determined interface orientation. At least a portion of the headset connector system 200 or a headset engaging connector system is magnetically attractive.
Abstract:
Abstract of the Disclosure An electronic device may have a housing surrounding an interior in which electrical components are mounted. A display may be mounted to housing structures in the device. The housing may have a rear wall. The display cover layer and rear wall of the housing may be formed from transparent glass layers. Coatings may be formed on inwardly facing surfaces of the transparent glass layers. A coating on a transparent glass layer may be formed from a thin-film interference filter having a stack of dielectric layers. The coating may include an ink layer on the thin-film interference filter. 28 30 32 28 12 36 3 52 36 34
Abstract:
Eine elektronische Vorrichtung kann elektrische und andere Komponenten umfassen, die im Innenraum eines Gehäuses montiert sind. Die Vorrichtung kann auf einer Vorderseite der Vorrichtung eine Anzeige und auf einer Rückseite der Vorrichtung eine Glasschicht aufweisen, die Teil des Gehäuses ist. Die Glasschicht kann mit Bereichen mit unterschiedlichem Erscheinungsbild versehen sein. Die Bereiche können texturiert sein, können Beschichtungen wie z.B. Dünnfilm-Interferenzfilter-Beschichtungen aufweisen, die aus Stapeln dielektrischen Materials mit abwechselnden Brechungsindizes gebildet werden, und können Metallbeschichtungsschichten und/oder Farbbeschichtungsschichten aufweisen. Texturierte Oberflächen können auf Dünnglasschichten und Polymerfilmen, die an die Glasschicht gekoppelt sind, gebildet werden. Eine Glasschicht kann aus einem Paar von gekoppelten Glasschichten gebildet werden. Die gekoppelten Schichten können eine oder mehrere Vertiefungen oder andere Strukturen aufweisen, um verschiedene Bereiche der Glasschicht optisch zu unterscheiden.
Abstract:
Abstract of the Disclosure An electronic device may have a housing surrounding an interior in which electrical components are mounted. A display may be mounted to housing structures in the device. The housing may have a rear wall. The display cover layer and rear wall of the housing may be formed from transparent glass layers. Coatings may be formed on inwardly facing surfaces of the transparent glass layers. A coating on a transparent glass layer may be formed from a thin-film interference filter having a stack of dielectric layers. The coating may include an ink layer on the thin-film interference filter.
Abstract:
Method and device relate to improved sensor configurations in a user device are disclosed. A device implements the improved sensor configurations includes a switch configured to detect a force applied by a user, one or more touch sensors configured to detect an angular position of the user input which are peripherally located relative to the switch, and a processor configured to generate a signal for performing a task selected from a plurality of predefined tasks in accordance with the force and the angular position of the user input.
Abstract:
Method and apparatus for implementing multiple push buttons in a user device are disclosed. The method includes detecting a location of a user input using one or more touch sensors, detecting a force of the user input using a switch, and generating a signal for representing one of the push buttons being pressed according to with the location and force of the user input.
Abstract:
Abstract Various components of an electronic device housing and methods for their assembly are disclosed. The housing can be formed by assembling and connecting two or more different sections together. The sections of the housing may be coupled together using one or more coupling members. The coupling members may be formed using a two-shot molding process in which the first shot forms a structural portion of the coupling members, and the second shot forms cosmetic portions of the coupling members.