Abstract:
A heating, ventilation, and air conditioning (HVAC) controller may include a housing and a printed circuit board (PCB) situated within the housing. The PCB may include a battery seat region and electrical terminals for electrically connecting a battery to the PCB when the battery is positioned at the battery seat region. The housing may include an opening that may be configured to receive the battery. The battery seat region may be at least partially offset relative to the opening in the housing, but accessible via the opening. The housing may be configured to allow the battery to be inserted into the opening and then moved laterally to the battery seat region, where the battery may be at least partially covered and/or protected by the housing when at the battery seat region. In some cases, the battery may be inserted within the housing without adjusting any part of the housing.
Abstract:
The described embodiment relates generally to the field of inductive bonding. More specifically an inductive heater designed for use in assembling electronics is disclosed. A number of methods for shaping a magnetic field are disclosed for the purpose of completing an inductive bonding process without causing harm to unshielded adjacent electrical components.
Abstract:
A visual display includes a plurality of display panels. Each of the display panels is secured to a common support device and independently movable relative to an axis associated with the common support device. The display panels are positionable in a first position.
Abstract:
An electronic device includes: a case; a first board that includes a first connector; a positioning section that positions the first board with respect to the case; a second board that includes a second connector; a guide rail that has an end portion on the first board side formed with a fitting port into which the first connector fits, and that guides the second connector towards the first connector that is fitted into the fitting port; a pair of sloping portions formed to edge portions on both guide rail pivot direction sides of the fitting port; and a pair of stoppers respectively disposed at each of the guide rail pivot direction sides so as to restrict the pivot range of the guide rail such that the first connector is insertable between the pair of sloping portions.
Abstract:
Alignment markers are added to each layer of a multiple layer substrate for proper alignment. Optical alignment markers are applied on the surface of each substrate layer. Groups of alignment markers are arranged in localized areas on each substrate layer. Each localized group of alignment markers are referred to as alignment target areas. The alignment markers in a first alignment target area on the first substrate layer are to be aligned with corresponding alignment markers in a second alignment target area on the second substrate layer. In some embodiments, the first alignment target area includes an alignment marker configured for manual alignment and another alignment marker configured for machine alignment. The second alignment target area has a corresponding manual alignment marker and machine alignment marker.
Abstract:
Embodiments provide a tilt mechanism for tilting an electronic display that includes at least two nested torsion springs to offset and/or balance the torque generated by a display acting on the tilt mechanism. In some cases a tilt mechanism includes first and second brackets pivotally coupled about a tilt axis. First and second springs are wound about a tilt axis such that the first spring is located at least partially within the second spring. The springs engage with the brackets to exert first and second torques between the first and the second brackets. In some cases such tilt mechanisms can be carried by stands, arms, carts, and the like. Methods of tilting electronic displays are also provided.
Abstract:
A method and apparatus for self-assembling a part on a substrate are disclosed herein. In some embodiments, a method includes placing a substrate having a first binding site capable of generating a first magnetic field and having a first shaped surface with a first droplet conformably disposed thereon into a first fluid; placing a part having a second binding site capable of generating a second magnetic field and having a second shaped surface with a second droplet conformably disposed on the second shaped surface into the first fluid; and attracting the part towards the first binding site such that an equilibrium is formed between an attractive force and a repulsive force such that the part is free to rotate about the first binding site to minimize the repulsive force when the first and second shaped surfaces rotate into an alignment causing the part to aligned with the first binding site.
Abstract:
A substrate transport apparatus comprises a substrate holder capable of holding a substrate, a link unit which extends/retracts the substrate holder, a driving unit which generates a driving force to operate the link unit, a guide bar provided to one of the substrate holder and the link unit; and a support unit which is provided to the other of the substrate holder and the link unit, and slidably supports the guide bar when the substrate holder moves by the operation of the link unit.
Abstract:
Rail system and method for a photovoltaic array. The system includes at least one modular rail in a first direction. The modular rail includes a first vehicle support surface along the first direction and a first mounting surface along the first direction. The first vehicle support surface is configured to support at least a first vehicle moving in the first direction, and the first mounting surface is configured to support one or more photovoltaic modules mounted on the first mounting surface.
Abstract:
A part mounting apparatus mounts a plurality of mounting parts to a board. The board is placed on a placement stage. A first part support part supports a first mounting part. A second part support part supports a second mounting part. A first camera image-recognizes the first mounting part supported by the first part support part from above, and image-recognizes a mounting surface of the board placed on the placement stage from above the first part support part. A second camera image-recognizes the second mounting part supported by the second part support part from underneath.