Abstract:
Improved SAW pressure sensors and manufacturing methods thereof. A SAW wafer including a number of SAW transducers disposed thereon may be provided. A cover wafer may also be provided, with a glass wall situated between the cover wafer and the SAW wafer. The cover wafer may be secured to the SAW wafer such that the glass wall surrounds the SAW transducers. In some instances, the glass wall may define, at least in part, a separation between the cover wafer and the SAW wafer. One or more contours may also be provided between the cover wafer and the SAW wafer such that at least one of the contours surrounds at least one of the SAW transducers when the cover wafer is disposed over and secured relative to the SAW wafer.
Abstract:
The present invention a method and apparatus for measuring the compression of a stator core 10 that comprises attaching a measuring device 22 to a tensioner 20, placing the tensioner on an end of a through-bolt 12 of the stator core, and performing at least one act of tensioning the stator core 10 with the tensioner. Then measuring a compression state of the stator core by the measuring device registers determining the amount of relative compression achieved by the act of tensioning, the relative compression is the amount of actual compression of the core and the amount of stretch of the through-bolt. Finally determining an actual compression state of the stator core based on the measuring.
Abstract:
A micro-machined acceleration sensing apparatus includes a piezoelectric substrate that functions as a propagation medium. A diaphragm is configured upon the substrate, wherein the diaphragm is etched to form one or more etched cavities. Sensing elements are formed on the diaphragm, wherein a first sensing element among the sensing elements is located on a top of the diaphragm, a second sensing element among the sensing elements is located on a side of the diaphragm, and a third sensing element among the sensing elements is located at a crystallography different orientation with respect to the first and second sensing elements, such that the substrate, the diaphragm and the plurality of sensing elements comprise a micro-machined acceleration sensing apparatus thereof that is clamped at one end of the substrate to an object under an acceleration and submitted to a force at the free end of the substrate to provide signals indicative of acceleration.
Abstract:
The invention provides an isolated nucleic acid molecule, designated as a kinase nucleic acid molecule, which encodes a novel protein kinase. The invention also provides antisense nucleic acid molecules, recombinant expression vectors containing kinase nucleic acid molecules, host cells into which the expression vectors have been introduced, and nonhuman transgenic animals in which a kinase gene has been introduced or disrupted. The invention still further provides isolated 14790 proteins, fusion proteins, antigenic peptides and anti-kinase antibodies. Diagnostic, screening, and therapeutic methods utilizing compositions of the invention are also provided.
Abstract:
A sensor system for dialysis applications includes a plurality of pressure sensors, wherein each pressure sensor can be provided as an LC type sensor, and/or an RLC type sensor. Each sensor among the plurality of pressure sensors can be inductively coupled with a respective antenna among a plurality of antennas for the wireless transmission of pressure data. A dialysis machine is generally connected to the plurality of antennas, wherein the plurality of pressure sensors monitors pressure during operation of the dialysis machine to generate pressure data that is wirelessly transmitted to at least one antenna among the plurality of antennas.
Abstract:
The present invention provides molecules and methods for the prevention and/or treatment of memory deficit related conditions and/or enhancement of cognizance. In a preferred embodiment, the invention includes compounds, salts and prodrugs thereof for the prevention and/or treatment of these conditions.
Abstract:
A fluid pumping system that includes a motor and a pump, wherein an output shaft of the motor is directly coupled to an input shaft of the pump. This coupling between the output shaft of the motor and the input shaft of the pump may be the primary mechanism for coupling the motor to the pump. Such a configuration may be called a “floating pump mount”, because the pump is primarily coupled to the motor via the shaft connection. As a result of this connection, the output shaft of the motor may be naturally “aligned” with the input shaft of the pump. To help prevent the pump from freely rotating with the output shaft of the motor during operation, a rotational stop mechanism may be provided. The rotational stop mechanism may include at least one resilient member for absorbing or substantially absorbing at least some of any relative movement between the pump and the motor.
Abstract:
The present invention relates to a newly identified human agmatinase-like arginase, designated “25312”. The invention also relates to polynucleotides encoding the agmatinase-like arginase. The invention further relates to methods using the agmatinase-like polypeptides and polynucleotides as a target for diagnosis and treatment in disorders mediated by or related to the agmatinase-like arginase. The invention further relates to drug-screening methods using the polypeptides and polynucleotides to identify agonists and antagonists for diagnosis and treatment. The invention further encompasses agonists and antagonists based on the polypeptides and polynucleotides. The invention further relates to agonists and antagonists identified by drug screening methods with the polypeptides and polynucleotides as a target.
Abstract:
Devices and methods for acoustically measuring temperature and pressure are disclosed. A SAW sensor in accordance with an illustrative embodiment can include an electrode structure adapted to transmit and receive surface acoustic waves along a SAW delay line, temperature sensing means for measuring temperature along a first direction of the SAW delay line, and pressure sensing means for measuring pressure along a second direction of the SAW delay line. The SAW sensor can include an antenna adapted to wirelessly transmit and receive RF signals to and from an electrical interrogator unit that can be used to power the SAW sensor.
Abstract:
An interface device for interfacing automatic test equipment (ATE) with a unit under test (UUT) comprises at least one general purpose interface (GPI) connector body carrying at least one floating GPI contact, at least one twin access contact (TAC) connector body carrying at least one floating TAC contact, and a printed wiring board (PWB). The GPI contact has a first end and a second end. The first end of the GPI contact is adapted for engagement with a corresponding floating contact of the ATE in a manner to permit electrical communication between the GPI contact and its corresponding ATE contact. The TAC contact has a first end and a second end. The TAC connector body is positioned adjacent to the GPI connector body so that the second end of the GPI contact engages the first end of the TAC contact in a manner to permit electrical communication between the GPI contact and the TAC contact. The PWB has at least one contact pad and at least one surface mount connector for mating with a UUT. The contact pad and the surface mount connector are electrically connected via circuitry carried by the PWB. The contact pad of the PWB is adapted for engagement with the second end of the TAC contact in a manner to permit electrical communication between the contact pad and the TAC contact.