EM
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EM & Thermal Simulation Software
SEMCAD X
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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.
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Innovative EM Technology
BIPTEM
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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.
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Electron Multiplication (EM) Standard Image Sensors
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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.
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Handheld 2-D EM current meter with temperature and depth sensor
AEM213-D
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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.
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Transient EM System
terraTEM
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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.
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Transient EM System
TerraTEM24
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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.
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Electron Diffraction System
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Modern physics is the post-Newtonian conception of physics. It implies that classical descriptions of phenomena are lacking, and that an accurate, " Modern", description of nature requires theories to incorporate elements of quantum mechanics or relativity, or both. This section includes many of the most important experiments in physics, including e/m tubes, the Franck-Hertz experiment, and nuclear magnetic resonance (NMR)
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PathWave EM Design (EMPro)
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Electromagnetic (EM) simulation brings you insight before physical prototyping. Customize EM simulations for speed and accuracy. Integrate EM analysis with your circuit simulations.
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Sputter Coater & Freeze Fracture Solutions
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To obtain high-quality images of samples with scanning (SEM) or transmission electron microscopy (TEM), your samples need to be conductive to avoid charging. If a sample does not have a high enough conductivity, then you can quickly cover it with a conductive layer using the method of sputter coating. Also, a carbon or e-beam evaporator coating can be used. Such coatings protect the sample, allow enhancing of the EM image contrast, or can act as a TEM-grid support film for small scale samples.
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High Frequency Electromagnetic Software
Sonnet Suites
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The Sonnet® Suites™ develop precise RF models (S-, Y-, Z-parameters or extracted SPICE model) for planar circuits and antennas. The software requires a physical description of your circuit (arbitrary layout and material properties for metal and dielectrics), and employs a rigorous Method-of-Moments EM analysis based on Maxwell's equations that includes all parasitic, cross-coupling, enclosure and package resonance effects.
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Product
IQ Modulator
IQM Series
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*Capable of receiving from DC to 500 MHz, LO inputs, outputting RF frequencies *Internal low noise oscillator *Internal reference *Buffered modulator Balanced IQ *Optimized for low EVM *Internal Reference Detect Switch Optional (EM Research RDS Series) *Up to 250 mega-symbols per second
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IQ Demodulator
IQD Series
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*Capable of receiving RF and LO frequency inputs *Output from DC to 500 MHz *Internal low noise oscillator Internal reference *Buffered demodulator *Balanced IQ *Optimized for low EVm *Optional internal Reference Detect Switch (EM Research RDS Series) *Up to 250 mega-symbols per second
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Product
WIPL-D Pro CAD
WIPL-D Pro CAD
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WIPL-D Pro CAD is the tool that introduced solid modeling into WIPL-D, allowing fast modeling and manipulation for a wide range of EM applications. The simulation itself relies on WIPL-D’s proven and powerful kernel. Import of various CAD formats, numerous built-in modelling primitives, Boolean operations, waveguide ports, and automated simulation‑optimized all-quad mesh are features turning WIPL-D Pro CAD into a full, powerful package for high-complexity modeling of EM problems.
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3D/2.5D Time-Domain Electromagnetic Field Solver Software
EM-CORE ®
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3D/2.5D Time-Domain Electromagnetic Field Solver Software for Planar-Circuit and Antenna Simulation. 3D & 2D Radiation Patterns Modeling, Spiral Inductors Modeling, 3D EM Modeling of Filters, Intuitive Geometry Build, and more!
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Product
Logger version 2-D electro-magnetic current meter
INFINITY-EM AEM-USB
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Infinity EM is an autonomously deployable EM (electro-magnetic) current meter with a data logger. Due to the principle, the instrument provides high accurate 2-D current measurements in even low scatter fields, where ADVs (Acoustic Doppler Velocimeter) has difficulties. The measurement range is wide from 0 to ± 500 cm s-1. The instrument design is compact (1.0kg in air). Infinity EM allows for current velocity measurements virtually anywhere.
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Product
CCCP Controller
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CCCP is the technology behind Nüvü Camēras’ extraordinary sensitivity in low light imaging. The patented controller generates significantly less clock-induced charges (CIC) than any other CCD controller during charge transfer throughout the EMCCD (down to an average below 0.001 ē/pixel/frame), therefore allowing for greater EM gain to ultimately attain sub-electron readout noise.
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Ultra Low Level DC Voltage Amplifiers
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The EM A10 is a low level amplifier module for sensitive measurements, data collection and systems, where signals below 1 nanovolt may be measured. It is ideal for the input unit for precision voltage measuring systems, requiring voltage sensitivity for measuring low noise and low impedance sources. The noise level of the A10 is equivalent to a perfect resistor of about 20 ohms. When used with a digital voltmeter, steady one nanovolt digits may be displayed, with a response time constant of less than a second. The input voltage stability of the A10 is very high, with the drift around a nanovolt per degree C. The input connectors are made from pure copper. The input impedance is very high, and is time dependent, determined by the loop gain.
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Cable Harness EM Solver
MHARNESS
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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.
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Product
Navigation Information System
Nav-IS
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Aeronautical & General Instruments Ltd.
Nav-IS combines a single or dual axis EM Speed Log with a range of Meteorological System options for a low cost, integrated solution. Using the latest proven and in service solid state sensor technology, this innovative, cost-effective and accurate system has been specifically developed for all applications from ocean-going merchant and passenger vessels to offshore patrol, coastguard and naval support vessels.
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RF Architectural Shielding Products
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EMI (Electromagnetic Interference) is often used interchangeably with RFI (Radio Frequency Interference). However, EMI can be any frequency of electromagnetic noise, whereas RFI is a relatively narrow range of electromagnetic noise on the EM spectrum. EMI Shielding can be used to mitigate electric and magnetic radiation across various spaces. Radio Frequency (RF) Shielding can be used to mitigate RFI with specifically designed enclosures that can block RFI. As well, RF Shielding can include application of RF Shielding paints, fabrics, and other materials.
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Spiral Antenna UHF Trafo
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UHF Spiral antenna is a partial discharge sensor designed to receive electromagnetic (EM) emissions from a PD occurring in the monitored asset. It is a broadband antenna with a flat response which makes Spiral antenna suitable in a number of different applications. It has been optimized to operate in a frequency range typical for PD activity and it was designed to provide maximum sensitivity and high gain. Its compact and robust design (passive sensor) makes Spiral antenna the optimal sensor for direct installation on high voltage Transformers. It can be virtually applied in any electrical equipment provided that it has apertures or EM transparent surfaces. Contact our sales department for consulting.
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Product
Shielding Effectiveness/ Conductivity Test
EM-2107A | 30 MHz – 1.5 GHz
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The EM-2107A is a standard test fixture for evaluation of the electromagnetic shielding effectiveness of planar material. The fixture is an enlarged section of coaxial transmission line and complies fully with the requirements of ASTM test method D4935-1. The measured data relates to the shielding effectiveness due to a plane wave (far field EM wave) from which near field values for magnetic and electric fields may be inferred. The EM-2107A is provided with a reference standard test specimen, a dynamic range specimen. Dynamic range of greater than 80dB is achievable, although the cables and other test system components usually establishes the limiting factors.
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Product
TEM Antenna
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TEM antenna is a broadband antenna with a flat response which makes TEM suitable in a number of different applications. It has been optimized to operate in a frequency range typical for PD activity and it was designed to provide maximum sensitivity and high gain. Its compact and robust design (passive sensor) makes TEM the optimal sensor for direct installation on medium voltage Switchgears and motors. It can be virtually applied in any electrical equipment provided that it has apertures or EM transparent surfaces.
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Interference & Compatibility Evaluation System
ICEy
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Schmid & Partner Engineering AG
ICEy is the most advanced reactive near-field E/H-field scanning system for the analysis of EM interference and compatibility (EMI/EMC) in highly integrated electronics. ICEy is the only system that provides accurate EM measurements traceable to international calibration standards and also allows independent interlaboratory comparability of EMI/EMC measurement results.
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EMCCD Image Sensors for Space and Ground-based Astronomy
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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 such as adaptive optics and lucky imaging™.The combination of Teledyne e2v’s back-thinning technology and anti-reflection coatings enables industry leading quantum efficiency that can be optimised for applications in the visible, UV or NIR wavelength ranges.
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WIPL-D Pro
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WIPL-D kernel is unique in many ways, allowing the most efficient full wave EM simulations. It is based on the Method of Moments (MoM) but applied to quadrilateral mesh elements. In addition, the basis functions are HOBFs (Higher Order Basis Functions) which means up to 2 lambdas large mesh elements. The electrical size of problems is expressed in number of unknowns, rather than in mesh elements. The quad mesh offers two times less unknowns than the traditional triangular one, while using HOBFs reduces number of unknowns several times.
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Product
Cryo-Correlative Microscopy Stage
CMS196
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Linkham Scientific Instruments
Electron microscopy (EM) provides structural information at very high resolution. However, it can give only restricted insight into biological and chemical processes due to limitations in staining and sample preparation processes. Fluorescence microscopy on the other hand is a very sensitive method to detect biological, chemical and genetic processes and events inside living cells. Cryo-CLEM brings it all together: it is a new and emerging technique to combine the individual advantages from both Fluorescence and EM by imaging the same sample location with both techniques and superimposing the complementing information.
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Time-domain Field-Device-Circuit coupled simulator
EM-SUPREME®
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Time-domain Field-Device-Circuit coupled simulator for modeling of passive structures, active components, and complete RF & millimeter-wave modules. EM-Supreme is used for EM modeling of power amplifiers, switches, filters, active antennas, and complete RF modules such as antenna-switch, switch-filter, switch-filter-amplifier, and front-end modules with no approximations.
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Spiral Antenna
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UHF Spiral antenna is a partial discharge sensor designed to receive electromagnetic (EM) emissions from a PD occurring in the monitored asset. It is a broadband antenna with a flat response which makes Spiral antenna suitable in a number of different applications. It has been optimized to operate in a frequency range typical for PD activity and it was designed to provide maximum sensitivity and high gain.
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EMF Measurements/EM Measurements/Electromagnetic Radiation
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Holland Shielding Systems B.V.
Electromagnetic fields cause interference in electronic devices and may affect the health of people close to where the fields are generated. It is important to recognize this at an early stage in a construction process, for instance at a future construction location or while construction is already underway, so that budgets are not exceeded. By means of field-strength measurements one can chart the existing electromagnetic fields and radiation emitted by GSM, UMTS antennas and transformer spaces, to mention a few examples. These measurements can help determine the best location in the new building for rooms where sensitive measurements are to take place, e.g. in hospitals or nano laboratories. And last but not least, field-strength measurements can detect sources of interference and can be part of a scheduled check of existing screened spaces and Faraday cages.





























