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MEMS
Micro Electro-Mechanical Systems are a microstructure integration of electronics, sensors, actuators and mechanical components.
- Pickering Interfaces Inc.
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PXI/PXIe MEMS Optical MUX, 8-Channel, Multi-Mode, 50/125 Fiber
40-852A-318-M50-HI
The 40/42-852A-318-M50 is a PXI/PXIe 8-channel multiplexer with MU (mini SC) connectors, includes hardware interlock and is part of Pickering's range of PXI Fiber Optic MEMS Switching modules. They are available in many high density formats with a choice of different connector styles to suit most applications: FC/APC (for optimal performance), FC/PC and SC/PC for general applications and LC and MU for high density applications.
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MEMS Microphones
A MEMS microphone is an electro-acoustic transducer housing a sensor (MEMS) and an application-specific integrated circuit (ASIC) in a single package.
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MEMS Accelerometers
Safran designs and manufactures high-precision tactical grade MEMS acceleration sensors and mems inclinometers for demanding applications in the Defense, Aerospace, Industrial, and Commercial markets. Safran’s journey as a global leader in MEMSMicroElectroMechanical System. See also technology spans decades. Our extensive experience has not only honed our expertise but also enabled us to develop ITAR-free solutions. This means our MEMS technology is readily available for a wide range of applications, without the constraints of International Traffic in Arms Regulations (ITAR).
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Sensors and MEMS
Analog Devices MEMS accelerometer and gyroscope solutions provide designers with discrete components and plug and play iSensor® MEMS subsystems. Our iSensor MEMS IMUs are highly integrated, multiaxis solutions that combine gyroscopes, accelerometers, magnetometers, pressures sensors, and additional technology for multiple degrees of freedom applications under dynamic conditions. Download our technical articles and read our customer success stories to discover how we are efficiently and reliably addressing today’s complex application requirements.
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MEMS Module
The design and modeling of microelectromechanical systems (MEMS) is a unique engineering discipline. At small length scales, the design of resonators, gyroscopes, accelerometers, and actuators must consider the effects of several physical phenomena in their operation. Consequently, COMSOL Multiphysics is ideally suited for MEMS applications. To this end, the MEMS Module provides predefined user interfaces with associated modeling tools, referred to as physics interfaces, for a variety of coupled physics, including electromagnetic-structure, thermal-structure, or fluid-structure interactions. You can include a variety of damping phenomena in your model: thin-film gas damping, anisotropic loss-factors for solid and piezo materials, anchor damping, and thermoelastic damping. For elastic vibrations and waves, perfectly matched layers (PMLs) provide state-of-the-art absorption of outgoing elastic energy.
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MEMS Handler
4664-IH
The ULTRA P is a high performance production handler that provides thermal conditioning, full 6 DOF mechanical stimulus and an electrical ATE signal path for testing Micro-Electro-Mechanical Systems (MEMS) Accelerometers and Gyroscopes.
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MEMS Gyroscopes
Safran designs and manufactures high-precision tactical grade MEMSMicroElectroMechanical System. See also gyro sensors for demanding applications. We serve a global customer base in the Defense, Industrial, Aerospace and Commercial markets with ITAR-free solutions utilized in a wide range of applications. Our miniature MEMS gyro modules offer our customers compact and cost effective solutions while maintaining high performance and accuracy requirements.
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MEMS Accelerometer
SQ-XLD
The acceleration sensor module performs calibrated acceleration measurement with digital serial output. Using a USB or RS232 interface cable (sold separately), it functions as a self contained data acquisition system for 2 axis or 3 axis acceleration, tilt, and vibration measurement.
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Audio MEMS Sensors
An audio MEMS sensor is an electro-acoustic transducer housing a sensor (MEMS) and an application-specific integrated circuit (ASIC) in a single package.
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MEMS Sensor Simulation
SimSENSOR
Performance testing of sensor fusion in MEMS inertial and multi-GNSS navigation systems. SimSENSOR extends the capabilities of Spirent’s multi-GNSS simulators by simulating MEMS sensor outputs on a common trajectory with the simulated GNSS RF signals. The simulated MEMSs sensor outputs include user control of representative noise and errors (bias/drift).
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MEMS Tunable Filter
Optoplex’s MEMS Tunable Optical Filter is based on a patented micro-optic design with MEMS tuning technology. It is an integrated module consisting of a MEMS chip, micro-optics and control electronics and interface. When receiving a stream of optical signals of a plurality of wavelengths from the Input-Port (IN), the 2-port tunable optical filter directs a selected channel to the Output-Port (OUT). Wavelength (frequency) tuning is achieved by changing driving voltage applied to the MEMS chip, via the control electronics and the built-in firmware.
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MEMS Optical Switches
Guilin GLsun Science and Tech Group Co., LTD
MEMS Optical Switches by GLSN
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MEMS Foundry Services
Teledyne DALSA is one of the world’s foremost pure-play MEMS foundries. We operate over 41,000 sq ft (3800m2) of clean rooms, 24/7, using both 150mm and 200mm wafers. Our comprehensive MEMS toolbox allows us to manufacture in high volume for a wide range of applications.Across many device types, from micro-mirrors for telecommunication, gyro sensors for game controllers, microfluidic devices for miniaturized medical systems, automotive pressure and inertial sensors for automobiles or microphones for smartphones, Teledyne DALSA has delivered high volume MEMS production for innovations that reduce both size and power consumption even as they increase performance.We are ISO/TS 16949 and ISO 14001 registered and RoHS compliant, well equipped and experienced to meet the demanding requirements of customers that serve all the main MEMS markets including consumer, automotive, industrial and biotech/medical.
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MEMS Spring Probe
MEMS Spring Probe is developed by NIDEC-READ original ultra-fine 3D processing technology and enables our customer to supply advanced and innovative test solutions at PCB & semiconductor testing market.
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Sensors And MEMS Test
Easy docking and undocking of the MEMS modules to the standard test handler whether Gravity, Pick and Place or Test in StripTest in the complete tri-temp range for ambient, hot and cold (automotive certified)Easily convertible to other packagesDownscaled stand-alone engineering set-up availableGlobal support by experienced Cohu Field Service and Applications staff
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MEMS Optical Switch
FTBx-9160
With its MEMS-based design, EXFO’s FTBx-9160 delivers durable performance in a compact package. Fast switching time and a 1-billion-cycle lifetime expectancy make it the perfect optical switch for demanding manufacturing applications. The FTBx-9160 MEMS Optical Switch is available for singlemode fibers with a choice of 1x2, 1x4,1x8, 1x12, 1x16, 1x24 and 1x32 modules.
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MEMS Testing System
BK3010V2
The BaKo BK3010V2 is our updated MEMS Tester, based on our C-Mic tester, the best selling BK3010. It's small enough to carry under your arm and with a test time of under 0.5 seconds, it tests as fast as you can connect a microphone. Setting up the specifications is very easy and can be done in a few minutes. In addition, the new BK3010V2 can be connected to a computer so you can keep and view compiled data and track trends in variations in your C-Mics.
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MEMS Device-Oriented Testers
Are your test requirements oriented to defined families of devices, with common characteristics? You do not need to purchase an expensive, general-purpose mixed signal tester: You can rely on SPEA DOT 100, a system designed to answer the test requirements of MEMS and other low-pin-count devices at an incredibly low cost.The DOT 100 is based on a revolutionary per-device architecture: each device under test has a dedicated CPU managing the entire test process, while each card hosts all the resources for the parallel test of 3 devices, in the size of a postcard.
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MEMS Inertial Test
Cohu´s inertial solutions enable high precise Gyroscope and Accelerometer test with best-in-class cost of test due to high parallelism and package flexibility. All Cohu stimulus modules guarantee high precision and velocity stability as well as high temperature accuracy. With use of our high efficient handler portfolio we can offer the ideal solution with optimized cost of test.
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MEMS Pressure Test
Cohu‘s well established pressure test equipment are providing high volume final test solutions for all pressure sensor markets.
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MEMS Test Cells
Pre-validated Test Cells delivering fast ramp to production yield and throughputCohu has delivered more than 20 complete test cells to IDMs and OSATs in Asia, Europe and North America to address next-generation device test requirements and supplement existing production capacity.
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Solid-State MEMS Inclinometer
SQ-SI-360DA
The inclinometer module performs calibrated angle measurement with analog voltage and digital serial outputs.
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MEMS Microphone Test
The market is driving the need for improved voice recognition for security, automobile infotainment control, VoIP, accurate language translation, voice-activated consumer devices and high precision hearing aids. The latest next-generation microphones require highly accurate precision testing with SNR tests up to 78 dB with high parallelism, high UPH, in a high volume production environment.
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MEMS Gyro Sensors For Consumers
Panasonic Industrial Devices Sales Company of America
MEMS Gyro Sensors For Consumers
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MEMS Test System Development
olidus Technologies’ can design and build a test system customized for your exact needs, using our own or off the shelf components:Custom MEMS Test Systems. We can integrate and assemble test equipment and handling systems to fit your requirements. Custom MEMS Test Software. We can write custom software for device-specific calibration and testing, interfacing various instruments and handling systems, or create a customized GUI. We can also adapt our standard STI Test Software to work on your hardware system.
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MEMS DC Response Accelerometers
PCB® series 3711F, 3713F, 3741F, and 3743F MEMS DC response sensors are used to measure low frequency motion down to zero hertz. These accelerometers are used in applications such as structural monitoring, aerospace vibration testing, drivability, and gravitational force measurements. Each series includes a full scale measurement range from ± 2g to ± 200g and features low spectral noise with high resolution.
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Piezoresistive MEMS Shock Accelerometers
Piezoresistive shock accelerometers, manufactured by MEMS technology, have low power consumption while still providing +/- 200 mV full scale output. They afford a wider operating temperature range when compared to mechanically isolated ICP® accelerometers. Their frequency response ranges from DC (0 Hz) to 20 kHz. To lessen the severity of response when their resonant frequency is excited, they incorporate squeeze film damping, achieving values of 0.02 to 0.06 of critical.
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Programmable MEMS Tilt Switch
SQ-PTS
The tilt sensor module provides a digital level output if pre-programmed angle thresholds are exceeded. The two standard digital outputs can be configured at the factory as two different angle thresholds. In addition 4 additional input/output lines can be factory configured for a variety of functions on a semi-custom basis, greatly simplifying designs that require accurate, reliable angle detection.
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MEMS Gyro Sensors For Rollover Detection
Panasonic Industrial Devices Sales Company of America
MEMS Gyro Sensors For Rollover Detection
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End-of-Line IC & MEMS Tester
igentic® 841t
Integrated circuit (IC) and micro electro-mechanical system (MEMS) device manufacturers need to address the challenges of today's global market including increased functionality, speed and complexity while delivering components at reduced costs. Sterner Automation's igentic® 841t automated test systems meet these demanding requirements by providing a flexible platform for comprehensive end-of-line IC and MEMS device handling, testing, grading and packaging. The resulting improvements in quality assurance and process efficiency will maximize customer satisfaction and profitability.