Abstract:
A portable electronic device that provides compact configurations for audio elements are disclosed. The audio elements can be drivers (e.g., speakers) or receivers (e.g., microphones). According to one aspect, mesh structures, such as mesh barriers, are formed to facilitate improved acoustic sealing in a space efficient manner. In one embodiment, a mesh barrier for an audio port can be reliably acoustically sealed (or coupled) with an audio chamber and/or outer device housing in a space efficient manner. A mesh barrier can serve to block undesired foreign substances from entry or further entry into an audio port and/or serve as a cosmetic barrier which obscures vision into an audio port. In one embodiment, a portion of a mesh structure can be provided with a substantially planar surface that facilitates improved acoustic sealing.
Abstract:
The keyboard assembly is suitable for use as a keyboard of a hand held computing device. The assembly has a base layer of a printed circuit board and includes a carrier layer having snap domes set out in an array aligned with keys of a keypad layer. An electroluminescent layer generates light in areas aligned with the keys to backlight the keys. An actuator layer having projections is aligned with the keys and snap domes. Pressing a key causes a snap dome to be deformed, closing a switch for the key and providing a snap action press and release feedback for the user.
Abstract:
A computing system is provided that includes a plurality of interconnected components. The components include a processing subsystem, an input subsystem, an output subsystem, a storage subsystem, and a power subsystem. Subsets of the plurality of components may be rearranged and interconnected in various configurations to form different computing systems.
Abstract:
Coating of a cosmetic finish applied to a metallic surface is provided to prevent the cosmetic finish from oxidizing and tarnishing. A clear adhesion promoting layer with a thickness of 5 to 10 microns is applied to the cosmetically finished metallic surface. A clear wear resistant layer with a thickness of 25 to 35 microns is subsequently applied over the clear adhesion promoting layer. In one variation, the metallic surface is first painted after which a portion of the painted surface is removed to expose the cosmetic finish. In another variation, the metallic surface has a raised portion representing e.g. a logo, emblem or other feature. In this case, the paint and a small amount of the metal substrate from the raised portion are removed to expose the cosmetic finish.
Abstract:
Systems and methods for shielding circuitry from interference with conformal coating are disclosed. Systems having conformal EMI shields according to embodiments are provided by applying insulating and conductive layers to areas of a printed circuit board (PCB). This produces systems that may be thinner and also smaller in surface area, and that may be suitable as part of electronic devices.
Abstract:
This is directed to systems and methods for coupling sections of an electronic device together. Sections of an electronic device can be coupled together via “knuckles.” The particular shape and structure of the knuckles can be based on various design considerations. For example, in some embodiments each section can function as an individual antenna. In this case, the knuckles can be designed in order to provide electrical isolation between the sections, thus allowing proper operation of the antennas. For example, the knuckles can be formed from a dielectric material, etc. As another design example, the knuckles can be designed in order to provide increased strength in areas of high strain, and/or to counteract torsional twisting in areas of high impact. As yet another design example, the knuckle can be designed in a manner that is aesthetically pleasing or which otherwise meets cosmetic requirements.
Abstract:
This is directed to systems and methods for coupling sections of an electronic device together. Sections of an electronic device can be coupled together via “knuckles.” The particular shape and structure of the knuckles can be based on various design considerations. For example, in some embodiments each section can function as an individual antenna. In this case, the knuckles can be designed in order to provide electrical isolation between the sections, thus allowing proper operation of the antennas. For example, the knuckles can be formed from a dielectric material, etc. As another design example, the knuckles can be designed in order to provide increased strength in areas of high strain, and/or to counteract torsional twisting in areas of high impact. As yet another design example, the knuckle can be designed in a manner that is aesthetically pleasing or which otherwise meets cosmetic requirements.
Abstract:
Systems and methods for shielding circuitry from interference with conformal coating are disclosed. Systems having conformal EMI shields according to embodiments are provided by applying insulating and conductive layers to areas of a printed circuit board (PCB). This produces systems that may be thinner and also smaller in surface area, and that may be suitable as part of electronic devices.
Abstract:
A docking assembly for a computer. The docking assembly includes a base station, and a computer-support assembly coupled to the base station. A method for positioning a computer -support assembly for receiving a portable computer comprising moving away from a base station at least one engager member bound to a computer-support assembly. The base station and the computer-support assembly are rotatably coupled to an arm assembly. The method additionally includes moving the computer-support assembly away from the base station while rotating about the arm assembly, and positioning the computer-support assembly in a posture for receiving a portable computer.
Abstract:
A computing system is provided that includes a plurality of interconnected components. The components include a processing subsystem, an input subsystem, an output subsystem, a storage subsystem, and a power subsystem. Subsets of the plurality of components may be rearranged and interconnected in various configurations to form different computing subsystems.