Abstract:
An inductive device including an inductor coil located over a substrate, at least one electrically insulating layer interposing the inductor coil and the substrate, and a plurality of current interrupters each extending into the substrate, wherein a first aggregate outer boundary of the plurality of current interrupters substantially encompasses a second aggregate outer boundary of the inductor coil.
Abstract:
An intelligent LED lamp group control device using an existing wall switch for controlling a group of LED lamps includes an AC power converter, an interface for intelligent control using an interface circuit for upgrading the existing wall switch for scene group control. The device further includes a night lamp control input port, an emergency operation switch, an external set control box connector, a wall switch input unit, a control configuration set interface, a power failure battery input port and a night lamp and RS-485 serial port. The device enables one single controller to achieve control of and provide power supply to multiple LED lamps, and uses a communication control interface for converting the power supply originally provided to the LED lamps into a logic control signal so that the wiring layout and location of the original lighting control wall switch can be used.
Abstract:
An inductive device including an inductor coil located over a substrate, at least one electrically insulating layer interposing the inductor coil and the substrate, and a plurality of current interrupters each extending into the substrate, wherein a first aggregate outer boundary of the plurality of current interrupters substantially encompasses a second aggregate outer boundary of the inductor coil.
Abstract:
Aspects of the present disclosure provide a method and a system for closing plate take-over in immersion lithography. A plate holder is provided for a closing plate in a wafer holder of an immersion lithography system. An optical detector is provided below the plate holder for determining whether a light signal passing through the closing plate is aligned with the plate holder using the optical detector. If the light signal is aligned, a fluid containment mechanism is lowered, and the closing plate is placed into the plate holder. Alternatively, the fluid containment mechanism is lowered to surface of the closing plate, the closing plate is affixed to the mechanism, and the mechanism is raised with the closing plate. If the light signal is not aligned, an error is triggered and the scanner is stopped.
Abstract:
A method and device for interleaving the (N+1) input data and for allocating the corresponding memory comprises the steps of allocating a mth buffer section equals to (m×Dm+Pm) memory address for buffering the mth data of the N+1 input data, where m is a nonnegative integer from 0, 1 to N, Dm is the delay of the mth data, and Pm is a nature number representing a predetermined number of memory address for extra buffering the mth data; assigning an empty memory address in the mth buffer section to buffer the mth data; accessing the mth data from where the mth data buffered after buffering the (N+1) data, and outputting the (N+1) data in a (m×Dm) delay sequence. The present invention allocates the memory address effectively, so applying the present invention economizes the use of the memory request.
Abstract:
A spine stabilization system having collars, resilient inserts and pins for coupling a rod to bone fasteners. A bone fastener may be advanced into a vertebral body. A first collar having a set of deflectable arms and a channel in a first end and an opening in the second end recessing to form a cavity may be positioned with the head of the bone fastener in the cavity. A rod may be advanced into the channel in the first end of each collar. The deflectable arms may have a set of recessed portions. The recessed portions may have an angular or arcuate profile. A resilient insert may be advanced into the collar and positioned in the recessed portions, with the bottom surface of the resilient insert in contact with the rod. A pin may be inserted in the resilient insert to inhibit removal of the resilient insert.
Abstract:
An inductive device including an inductor coil located over a substrate, at least one electrically insulating layer interposing the inductor coil and the substrate, and a plurality of current interrupters each extending into the substrate, wherein a first aggregate outer boundary of the plurality of current interrupters substantially encompasses a second aggregate outer boundary of the inductor coil.
Abstract:
An apparatus for anchoring a rod to a bone fastener in a spine stabilization system. A first resilient insert may have two deflectable arms and a first channel formed therein. A second resilient insert may have two deflectable arms and a second channel formed therein. A cylindrical body may have a passage, wherein the first resilient insert and the second resilient insert have a width greater than the inner diameter of the cylindrical body when the first resilient insert is in a neutral state. Advancement of the first resilient insert or the second resilient insert into the passage deflects the two deflectable arms inward, causing the width of the first or second channel to decrease, and inhibiting the first resilient insert or the second resilient insert from moving relative to the cylindrical body.
Abstract:
A collective LED intelligent illumination control device includes a power converter for providing the necessary working power supply to a plurality of LED lamps, and a multipurpose controller for dimming control of each said LED lamp which includes a power measurement module for measuring the power consumed by each LED lamp and recording the measured data, a scene mode input interface in conjunction with at least one existing wall switch for group switching and multi-step dimming controls, and a built-in network card and a Zigbee communication interface for communication with a remote server for remote power and dimming controls and collection of power consumption data of each said LED lamp and for wireless communication with surrounding sensors and equipment for predetermined data collection and controls.
Abstract:
A method and device for interleaving the (N+1) input data and for allocating the corresponding memory comprises the steps of allocating a mth buffer section equals to (m×Dm+Pm) memory address for buffering the mth data of the N+1 input data, where m is a nonnegative integer from 0, 1 to N, Dm is the delay of the mth data, and Pm is a nature number representing a predetermined number of memory address for extra buffering the mth data; assigning an empty memory address in the mth buffer section to buffer the mth data; accessing the mth data from where the mth data buffered after buffering the (N+1) data, and outputting the (N+1) data in a (m×Dm) delay sequence. The present invention allocates the memory address effectively, so applying the present invention economizes the use of the memory request.