Microelectromechanical systems(MEMS) were a $12 billion business in 2014.
DSC613时钟系列通过集成低功耗和高稳定性微机电系统(MEMS)谐振器,消除了对外部晶振的需求。
The DSC613 clock family is designed to eliminate theneed for an external crystal by integrating a low-power Micro-Electro-Mechanical Systems(MEMS) resonator.
这涉及到利用微机电系统(MEMS)实现片上变压器,从而简单地隔离数字信号并节省空间。
This involves a microelectromechanical systems(MEMS) reproduction of a transformer that enables simple, space-saving isolation of digital signals.
微机电系统(MEMS)越来越多地用于这些任务,这是因为其尺寸紧凑,功耗低,特别精确的测量能力。
Micro-electro-mechanical systems(MEMS) are increasingly used for these tasks due to their compact dimensions, low power characteristics and extremely precise measurement capabilities.
Microelectromechanical systems(MEMS), also called microsystems in Europe, is typically defined as man-made mechanical components which are characterized by micron-scale size.
IMT成立于2000年,专门生产微机电系统(MEMS)器件。
IMT was formed in 2000, specifically to produce MEMS(micro-electro-mechanical systems) devices.
来自MIT的研究人员已经开发出了以当前成本的百分之一来构建微机电系统的新技术。
Researchers from MIT have developed new techniques for building microelectromechanical systems at one-hundredth of the current cost.
两种相互作用途径现在已经在传感器上首次结合在一起,被科学家称为“磁性微机电系统”(m-MEMS)。
Both interaction pathways have now been combined in the sensor,which has been termed a‘magnetic microelectromechanical system'(m-MEMS) by the scientists.
现在,这两个途径首次在传感器上结合在一起,称之为「磁性微机电系统」(m-MEMS)。
Both were United for the first time on the sensor,which was called«magnetic microelectromechanical system»(m-MEMS).
以微机电系统技术为基础的智能传感器发展水平已成为衡量一个国家是否具有国际竞争优势的重要标志。
The development of intelligent sensor based on microelectromechanical systems has become an important symbol of whether a country has an international competitive advantage.
Baolab公司的每个纳米微机电系统传感器的长度都不足90微米。
Each of Baolab's nano-MEMS sensors is less than 90 microns long.
微机电系统(MEMS)的第一波大规模生产要追溯到1995年。
The first wave of microelectromechanical systems(MEMS) entered mass production in 1995.
GLOBALFOUNDRIES today announced a strategic partnership with SVTCTechnologies to accelerate the move to high-volume manufacturing of Microelectromechanical Systems(MEMS).
Micro-electro-mechanical system(MEMS) microphones offer a high-performance alternative to traditional ICP microphones, at a cost that is at least two orders of magnitude lower.
微机电系统(MEMS)也在考虑范围。
Minnesota's electric transmission system is also considered.
微机电系统(MEMS)陀螺仪开始抢夺传统FOG应用的市场份额。
Micro electro mechanical system(MEMS) gyroscope began to grab the market share of traditional FOG applications.
微机电系统和传感器是通过测量热、化学、磁力、机械或光学现象分析环境参数来收集信息的器件。
MEMS and sensors are devices which gather information by analyzing environmental parameters by measuring thermal, chemical, magnetic, mechanical, or optical phenomenon.
由于采用微机电系统(MEMS)生产技术,这种微针的生产成为可能,这可以实现良好的成本/性能折衷。
The production of this kind of microneedle is possible thanks to microelectromechanical system(MEMS) production techniques, which allows good cost/performance compromises.
在美国它们称为“微机电系统”,而在其他地区被称为“微系统技术”或“微机械加工设备”。
Within the United States they're predominantly known as MEMS, while in another components of the world they are called Microsystems Technology” or micromachined devices”.
仙童半导体公司微机电系统和传感解决方案副总裁亚努什·布莱泽克预测,20年后将有45万联网传感器。
Dr. Janusz Bryzek, vice president of MEMS and Sensing Solutions at Fairchild Semiconductor, predicts there will be 45 trillion networked sensors 20 years from now.
微机电系统实现的小型化变得更加普及,气体传感器的潜力将充分发挥,为许多新市场领域的发展做出贡献。
As miniaturisation through MEMS becomes more available, gas sensors can reach their full potential, contributing to many new markets.
本文将要讨论的最后一种谐振器技术是基于微机电系统(MEMS)的谐振器。
The final resonator technology tobe discussed in this article is based on microelectromechanical systems(MEMS).
研究团队采用了微机电系统(MEMS)技术,利用三维激光光刻系统开发出一种三维聚合物结构。
Out of technologies for Micro Electro Mechanical Systems(MEMS), the research team developed a three-dimensional polymer structure using a three-dimensional laser lithography system..
微机电系统和传感器是通过测量热、化学、磁力、机械或光学现象分析环境参数来收集信息的器件。
MEMS(Micro electro mechanical system) sensors are devices which gather information by analyzing environmental parameters by measuring thermal, chemical, magnetic, mechanical, and optical phenomenon.
微机电系统采用微机械加工制造建立在微米尺度的电气和机械系统-一米的百万分之一。
MEMS uses micro-machining fabrication to build electrical and mechanical systems at the micron scale-- one-millionth of a meter.
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