SBIR Phase II: Ultra Low Hysteresis Giant-Magnetoresistive (GMR) Bridge Sensor
SBIR Phase II: Ultra Low Hysteresis Giant-Magnetoresistive (GMR) Bridge Sensor
批准号:
0091563
负责人:
John Anderson
金额:
$40.0万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-02-15 至 2004-01-31
中文摘要
该小型企业创新研究(SBIR)第二阶段项目将开发巨磁阻(GMR)传感器件,其磁滞性能上级现有的桥式传感器和GMR信号隔离器,并在不使用固定磁铁或功耗线圈的情况下提供固有的自偏置。 第一阶段表明,边缘钉扎技术可用于制造低滞后推挽式和屏蔽桥式传感器与设计的偏置点。 在该技术可以商业化之前,第二阶段的研究必须:(1)开发最小化滞后和最大化信号的硬边缘电阻器元件;(2)优化硬边缘处理和实现;(3)确定替代钉扎策略的可行性;(4)开发原型传感器或隔离器产品的规格、架构和物理设计;(5)制造目标器件;以及(6)表征磁响应和电响应的器件。 一个完全开发的磁场传感器和/或信号隔离器是预期的,一个是商业化的准备。潜在的商业应用是离散的低磁滞电桥传感器和隔离器,改进的数字磁开关,超低场传感器采用集成电路(IC)为基础的反馈放大器。
英文摘要
This Small Business Innovation Research (SBIR) Phase II project will develop giant-magnetoresistive (GMR) sensing devices that yield superior hysteresis performance over existing bridge sensors and GMR signal isolators and provide intrinsic self-biasing without using affixed magnets or power consuming coils. Phase I demonstrated that edge pinning techniques can be used to fabricate low hysteresis push-pull and shielded bridge sensors with designed bias points. Before the technology can be commercialized, Phase II research must: (1) develop hard edge resistor elements that minimize hysteresis and maximize signal; (2) optimize hard edge processing and implementation; (3) determine the viability of alternate pinning strategies; (4) develop specification, architecture, and physical designs for prototype sensor or isolator products; (5) fabricate target devices; and (6) characterize devices for magnetic and electrical responses. A fully developed magnetic field sensor and/or signal isolator is expected, one that is ready for commercialization.Potential commercial applications are discrete low hysteresis bridge sensors and isolators, improved digital magnetic switches, and ultra-low field sensors employing integrated circuit (IC) based feedback amplifiers.
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