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Showing results: 1 - 15 of 113 items found.

  • EM Software

    QuickWave - QWED Sp. z o.o.

    QuickWave is a general-purpose electromagnetic simulator based on the conformal FDTD method and supplemented with a range of unique models for curved boundaries, media interfaces, modal excitation, and parameter extraction. It has a well-established position on the world’s market due to approaching specific, challenging problems (often bound to QWED’s specialists participation in the customer’s projects as consultants). That kind of approach causes that QuickWave has a very broad variety of information which can be extracted from the simulations in a form of different pre-processings, co-processings and post-processings.

  • EM Cube

    EMAG Technologies Inc..

    EM.Cube® is an industry-recognized simulation suite for electromagnetic modeling of RF system engineering problems. It features several distinct simulation engines that can solve a wide range of modeling problems such as electromagnetic radiation, scattering, wave propagation in various media, coupling, interference, signal integrity, field interactions with biological systems, etc. Using EM.Cube, you can solve problems of different sizes and length scales, varying from a few microns in MEMS devices to several miles in large urban propagation scenes.

  • Transient EM System

    TerraTEM24 - Monex Geoscope Pty Ltd

    The new generation terraTEM, the terraTEM24, has been designed to acquire high‑quality transient electromagnetic data from a wide variety of sensors ranging from remote inductive and B field sensors through to single loop and coincident loop configurations.

  • EM Tracking Products

    Northern Digital Inc.

    The strength of the Aurora and 3D Guidance electromagnetic tracking solutions lies in their similarities and their differences. Both can provide unobstructed in-vivo tracking of OEM medical instruments, share exceptional measurement accuracy and reliability and are engineered and manufactured to deliver unparalleled tracking performance. Between them, there are seven different field generators with unique measurement volumes, and 20 standard sensor offerings (plus custom options). While the Aurora has 6DOF and 5DOF sensors, the 3D Guidance solution specializes in 6DOF tracking. 6DOF sensors are usually re-processable; 5DOF can be disposable. Some of our field generators are portable, while others seamlessly integrate into the medical OEM’s procedural cart or operative table. These differences provide near-countless opportunities to customize and integrate the Aurora and 3D Guidance solutions – all while benefiting from a shared foundation of technical excellence and expert product execution.

  • Transient EM System

    terraTEM - Monex Geoscope Pty Ltd

    The terraTEM is a robust transient electromagnetic (TEM) survey system which provides high resolution conductivity imaging. Applications for the terraTEM include mineral exploration, near surface applications including geotechnical and engineering investigations, groundwater and salinity studies, and environmental surveys.

  • Innovative EM Technology

    BIPTEM - Monex Geoscope Pty Ltd

    The new system arising from this project will be known as BIPTEM (B field, Induced Polarisation, Transient Electromagnetic). Depending on the target nature, the system can be flown in fixed ground loop, traditional in-loop, or long‑offset Slingram configurations.

  • Whole Body EM Phantoms

    EM - PHANTOM - Schmid & Partner Engineering AG

    The POsable Phantom for Electromagnetic sYstems Evaluations (POPEYE) is an anatomically correct human phantom based on a torso shell w/ head with posable arms, hands and legs. This radio frequency (RF) human has been designed to meet the requirements for test configurations for which the effects of the body on the EM performance cannot be neglected, such as operating tablet and laptop computers and other body-mounted transmitters. With a simple adjustment (one tightening screw), the arms, hands and legs can be positioned accordingly for conducting simulations of any usage or operation (standing, sitting, arms raised, talking position, etc...).

  • PathWave EM Design (EMPro)

    Keysight Technologies

    Electromagnetic (EM) simulation brings you insight before physical prototyping. Customize EM simulations for speed and accuracy. Integrate EM analysis with your circuit simulations.

  • Cable Harness EM Solver

    MHARNESS - Electro Magnetic Applications, Inc.

    MHARNESS to Complete the Last Mile of EM Coupling Simulation Traditionally, electromagnetic effects simulation has focused on the transients induced on the overall cable bundle of complex systems. MHARNESS is a transmission line solver that reveals the EM transients on the most critical element of systems: the pin interface to electronics systems. Now, EMA3D and MHARNESS can co-simulate in one self-consistent simulation.

  • EM & Thermal Simulation Software

    SEMCAD X - Schmid & Partner Engineering AG

    SEMCAD X is the latest generation of 3-D FDTD full-wave simulation software offering unprecedented levels of user-friendliness, speed & memory efficiency. Its application range has been further greatly extended by incorporating the world's first EM ADI-FDTD solver.

  • EM Solver System Level Solver

    EMA3D - Electro Magnetic Applications, Inc.

    MA3D is a powerful 3D numerical solution of Maxwell’s curl equations based on the time-domain finite-difference method in rectangular coordinates. The code has application to nearly any EM coupling, radiating, or interaction problem. EMA3D’s FDTD approach is the only EM tool capable of capturing the detail of entire aerospace or ground systems down to individual electronics interfaces in a computationally accessible manner. Computational advances and parallelization allow for fidelity once only dreamed possible.

  • Electromagnetic (EM) Speed Log System

    AGILOG 2 - Aeronautical & General Instruments Ltd.

    AGILOG 2 is based on the well-established electromagnetic principle that a voltage is induced in a conductor by a moving magnetic field. By using the sea water as a conductor, an output is generated as the vessel progresses. Electromagnetic speed measurement is passive in operation and therefore particularly suitable for use in submarines and warships. The EM technology provides reliable and robust speed availability when compared to some alternative technologies.

  • Electron Multiplication (EM) Standard Image Sensors

    Teledyne e2v

    EM (Electron Multiplication) is a technology that uses on-chip gain in the charge domain to effectively eliminate read noise from an image sensor. This enables advanced ultra-low light applications that require extreme sensitivity at fast frame rates. Examples include life science applications such as single molecule detection, super resolution microscopy and spinning disk confocal microscopy along with physical science applications such as nanotechnology imaging, Bose Einstein condensates and soft X-ray spectroscopy, and astronomy applications such as adaptive optics and lucky imaging. The inclusion of an additional conventional output allows further flexibility for applications such as true 24 hour surveillance.

  • Handheld 2-D EM current meter with temperature and depth sensor

    AEM213-D - JFE Advantech Co., Ltd.

    AEM213-D electro-magnetic current meter with a display unit can provide the 2-D current speeds in real time. The instrument has a depth and a temperature sensor as well as the current sensor, enabling reliable current measurements at the desired depths. The compact and light-weight unit is easily portable, allowing you to use the instrument in a variety of situations.

  • Laboratory EM current meter / water level and wave height meter

    JFE Advantech Co., Ltd.

    ACM2-RS and ACM3-RS are 2-D and 3-D electro-magnetic current meters for laboratory experiments. The models provide digital output, a high-speed sampling rate and insusceptibility to electro-magnetic noise. ACH-600RS is a highly sensitive capacitance water level meters. With the new system, a maximum of four different sensors can be connected to the compact interface unit, enabling simultaneous recording on a personal computer. Additionally, the system can provide analog output as well as necessary. While conventional water level and wave height meters cannot be used near velocity sensors, our instrument can be as near as 5 cm without increasing noise, due to its special isolated circuit. The result is an innovative system that is capable of achieving highly accurate data.

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