摘要:
An semiconductor device is disclosed. The device includes a semiconductor body, a layer of insulating material disposed over the semiconductor body, and a region of gate electrode material disposed over the layer of insulating material. Also included are a source region adjacent to gate region and a drain region adjacent to the gate region. A gate connection is disposed over the semiconductor body, wherein the gate connection includes a region of gate electrode material electrically coupling a contact region to the gate electrode. An insulating region is disposed on the semiconductor body beneath the gate connection.
摘要:
A body tie test structure and methods for its manufacture are provided. The transistor comprises a body-tied semiconductor on insulator (SOI) transistor formed in a layer of semiconductor material, the transistor comprising a cross-shaped gate structure with a substantially constant gate length L. An insulating blocking layer enables formation of a spacer region in the layer of semiconductor material separating the source and drain regions from the body tie region. A conductive channel with substantially the same inversion characteristics as the intrinsic transistor body connects the body tie to the intrinsic transistor body through the spacer region.
摘要:
An semiconductor device is disclosed. The device includes a semiconductor body, a layer of insulating material disposed over the semiconductor body, and a region of gate electrode material disposed over the layer of insulating material. Also included are a source region adjacent to gate region and a drain region adjacent to the gate region. A gate connection is disposed over the semiconductor body, wherein the gate connection includes a region of gate electrode material electrically coupling a contact region to the gate electrode. An insulating region is disposed on the semiconductor body beneath the gate connection.
摘要:
A protective device in a semiconductor may comprise a substrate of a first conductivity type, an epitaxial layer formed on top of the substrate, a body area formed within the epitaxial layer of a second conductivity type extending from a top surface into the epitaxial layer, a first area of the first conductivity type extending from the top surface into the body area, an isolation area surrounding the first area, a ring area of the first conductivity type surrounding the isolation area, and a coupling structure for connecting the ring area with the substrate.
摘要:
A fluid injector for an exhaust treatment device is disclosed. The fluid injector may have a housing at least partially forming a fluid chamber. The housing may have a central axis, and a fluid passageway configured to supply fluid to the fluid chamber. The supply of fluid may be in a tangential direction relative to the central axis.
摘要:
A filter is delineated that may have an input for receiving an input signal including a plurality of different frequencies and an output for passing an output signal within a first frequency band. The filter may include a circuit coupled between the input of the filter and the output of the filter such that the circuit may add one or more zeros within a second frequency band to increase attenuation of the input signal within the second frequency band. Portions of the filter may be employed to form such a circuit. The filter may be used by an electrical system employing the filter.
摘要:
The embodiments relate to an active carbon cocofiber mattress with the functions of floating and life saving. The embodiment can be folded to form a floating bed. The mattress core comprises prefabricated solid and rigid cocofiber mattresses with an ultra-thick sandwiched layer sandwiched therebetween; thus, when integrated as a whole, has a specific gravity of less than about 1. On said cocofiber mattress, there is provided with a high elastic cocofiber mattress. Within the ultra-thick sandwiched layer, air holes and channels filled with active carbon are provided. Active carbon layers cover the surface of the cocofiber mattress core.
摘要:
An electrical connector (1) comprises an insulative housing (10), a plurality of terminals (20) received in the housing, and an insulative protector (30). The insulative housing comprises a mating portion (11), a plurality of terminal receiving passageways (13) defined in the mating portion, a pair of sidewalls (14) extending rearwardly from the mating portion and a pair of platforms (16) respectively formed outside of the sidewalls. The protector (30) comprises a top ledge (31) having a pair of tongues (311) formed on opposite ends thereof, and a base (32) having a pair of opposite side latches (321) at the bottom thereof. Each latch has a hook (322) formed at the free end thereof. The tongues of the top ledge and the latches of the base engage the sidewalls of the insulative housing to assemble the insulative protector to the insulative housing.
摘要:
An automated system for continual transdermal extraction of analytes present in a biological system is described. The system optionally uses reverse iontophoresis to carry out the continual transdermal extraction of the analytes. The present invention describes quality control test kits, and methods of use thereof, for testing the ability of the system to provide reliable, effective, and accurate determination of analyte concentration.
摘要:
A universal series bus (USB) connector (1) includes an insulative housing (12), a number of contacts (14) received in the housing and a metal shell (15) enclosing the housing and the contacts in the metal shell. The metal shell includes a front shield (16) and a rear shield (18) engaging with each other. The rear shield has a pair of board locks (184) at opposite sides thereof, which downwardly extend beyond a rear bottom surface (125) of the housing for mounting to a printed circuit board (PCB) (2). The front shield has a rear edge (163) confronting the rear shield. The front shield includes a pair of back plates (167) rearwardly extending from the rear edge thereof and sandwiching the rear shield therebetween. The front shield further includes two supporting devices (168) outwardly extending from the rear edge thereof and locating at opposite sides thereof. The two supporting devices each are inverted L-shaped and have a pin portion (1684) mountable to the PCB.