Abstract:
A foldable wheel seat has a base, an operating bar, a first rotating shaft and two wheel axles. The base has a groove formed in a top face of the base. The operating bar is mounted pivotally in the groove of the base. The first rotating shaft is mounted rotatably in the base and has at least one end and two pulling segments. The at least one end of the first rotating shaft is extended into the groove of the base and is securely connected to the operating bar. The pulling segments are mounted on the first rotating shaft and each pulling segment has two pulling tabs. The wheel axles are mounted rotatably in the base and are perpendicular to the first rotating shaft and below the pulling segments of the first rotating shaft. Each wheel axle has an engaging block, at least two wheels, a holding panel and a torsional spring.
Abstract:
The present invention discloses a suspended nanochannel transistor structure and a method for fabricating the same. The transistor structure of the present invention comprises a substrate; a side gate formed on the substrate; a dielectric layer covering the substrate and the side gate; a suspended nanochannel formed beside the lateral of the side gate with an air gap existing between the suspended nanochannel and the dielectric layer; a source and a drain formed over the dielectric layer and respectively arranged at two ends of the suspended nanochannel. The electrostatic force of the side gate attracts or repels the suspended nanochannel and thus fast varies the equivalent thickness of the side-gate dielectric layer. Thereby, the on/off state of the element is rapidly switched, or the initial voltage of the channel is altered.
Abstract:
A method for forming semi-insulating portions in a semiconductor substrate provides depositing a hardmask film over a semiconductor substructure to a thickness sufficient to prevent charged particles from passing through the hardmask. The hardmask is patterned creating openings through which charged particles pass and enter the substrate during an implantation process. The semi-insulating portions may extend deep into the semiconductor substrate and electrically insulate devices formed on opposed sides of the semi-insulating portions. The charged particles may advantageously be protons and further substrate portions covered by the patterned hardmask film are substantially free of the charged particles.
Abstract:
A printed circuit board is disclosed. The printed circuit board comprises a substrate having a top surface and a bottom surface. A ground plane is on the bottom surface. A signal trace is on the top surface along a first direction. At least two isolated power planes are on the top surface adjacent to opposite sides of the signal trace, respectively. A conductive connection along a second direction couples to the two power planes, across the signal trace without electrically connecting to the signal trace, wherein the signal trace doesn't directly pass over any split of the ground plane.
Abstract:
A dual mode control system for a hydraulic circuit (200) having a variable displacement pump (216) includes at least two actuators, each controlled by a respective valve. The valves are connected in series with a pressure sensor (250) measuring a pressure of fluid between the first valve (224) and the second valve (234) and relaying a signal to the electronic controller (202). The electronic controller (202) operates in a first mode, varying the displacement of the pump (216) based on a command signal operating at least one of the valves, and operates in a standby mode, varying the displacement of the pump (216) based on the signal from the sensor, when both valves are in their respective neutral positions.
Abstract:
A sliding mechanism is disclosed, wherein the sliding mechanism movably connects to a display module and an input module of an electronic device. The sliding mechanism includes a first member, a second member, a connection member, and a cover movably disposed on the first member. The first member is movable with respect to the second member and has an opening. A flexible printed circuit (FPC) of the electronic device is disposed through the opening and electronically connects to the display module and the input module. The connection member connects the first and second members at opposite sides thereof, and a middle portion of the connection member connects to the cover. When the first member slides with respect to the second member in a first direction, the connection member impels the cover to block a part of the opening.
Abstract:
A light-emitting device of a light-emitting diode (LED) and a manufacture method thereof are provided. The light-emitting device includes a post-like metal material, a printed circuit board, conductors, insulators, light-emitting diodes, wires, and an encapsulating material. The light-emitting device has through holes, in which conductors are disposed and surrounded with the insulators. One end of each conductor is connected to the printed circuit board to form a composite structure heat-dissipation substrate. The light-emitting diodes are disposed on the post-like metal material, connected to the conductors via the wires, and encapsulated by the encapsulating material. Furthermore, the light-emitting diodes, the wires, and the encapsulating material can be combined into a light-emitting unit. Moreover, red, blue, and green light-emitting diodes can be combined and the color of output light thereof can be adjusted by controlling the input signal.
Abstract:
A control system for a machine is disclosed. The control system may have a power source, an operator input device configured to generate a first signal indicative of a desired mode of power source operation, and a work implement driven by the power source. The control system may also have a controller in communication with the power source and the operator input device. The controller may be configured to classify a currently performed work implement task and select an output map based on the classification of the currently performed work implement task and the first signal. The controller may further be configured to control the power source operation using the output map.
Abstract:
An infrared receiving module is disclosed. The infrared receiving module including a first strip element, a second strip element, an infrared receiver disposed on the second strip element, and a resin wrapping the first strip element and the second strip element. The first strip element has a receiving window. The infrared receiver on the second strip element is under the receiving window.
Abstract:
A folding mechanism for a treadmill, including a first support frame with two protruding portions mounted respectively at opposite ends of one side; a second support frame with two connector interfaces mounted respectively at opposite edges of two side frames, each of the connector interfaces corresponding respectively to the protruding portions; a pair of sliding bars having at least one sliding element at one end of each of the pair of sliding bars; a pair of stationary bars; and a pair of guide tracks mounted respectively in the interiors of two side walls of the first support frame, allowing the sliding elements to move along the guide tracks.