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The transmission of energy through material or space.


Showing results: 421 - 435 of 444 items found.

  • Fiber Optic Sensors

    Leuze electronic GmbH + Co. KG

    Plastic fiber optics are suitable for universal applications with low space requirements for object detection. Glass fiber optics are used in demanding environmental conditions with high temperatures and are resistant to chemicals. For radiation through foils or applications with high light power, they offer further advantages through the especially low damping. The flexible fiber optics with various head shapes can be integrated in nearly any system design. The detection range is dependent on the fiber optics and amplifiers used. Fiber optics can be used with the throughbeam principle or with scanning function. As a fiber array with multiple light beams, they can be used to detect especially small objects.

  • 8GHz RF Electromagnetic Field Strength Meter

    Extech 480846 - Extech Instruments Corporation

    This 480846 RF EMF Strength Meter monitors high frequency radiation in the 10MHz to 8GHz range. Ideal for mobile phones, cell phones, base stations, locating RF hotspots, wireless network (Wi-Fi) RF detection, RF "Electrosmog" detection, microwave leakage, and wireless communication applications (CW, TDMA, GSM, DECT). Meter features non-directional measurement with 3-channel (triaxial) measurement probe, Max Hold and Average functions, and manual store/recall of up to 99 data sets. In addition, there is an audible alarm with a user-selectable threshold. The meter comes complete with a 9V battery and carrying case.

  • 3D Electromagnetic Simulation Software

    Efield AB

    Efield® offers a complete and unique integrated modelling and simulation environment for 3D analysis of a wide range of electromagnetic applications such as: Antenna design All kind of antennas including horn, reflector, wire and microstrip antennas as well as broadband antennas and antenna arrays. Antenna integration Radiation pattern of installed antennas on large platforms such as aircraft or ships. Coupling between installed antennas. Microwave design Typical applications includes design of filters, connectors and couplers. EMI/EMC interaction Analysis of a wide range of EMC/EMI problems including shielding and coupling. Scattering & radar cross-section RCS analysis of structures such as aircraft, ships, air-intakes, exhausts, and antennas.

  • Electromagnetic Pulse

    EMP - Keystone Compliance

    An electromagnetic pulse (EMP) is a short burst of electromagnetic energy that can be extremely damaging to electronic equipment. EMP energy can be transferred in the form of electromagnetic radiation, an electric field, electrical conduction or a magnetic field. Since EMPs have a short duration, their impact can occur across large ranges of frequencies. EMPs can be produced naturally, occur from man-made equipment. Natural EMPs include lightning strikes and electrostatic discharges (ESD), geomagnetic storms/coronal mass ejections of solar origin. Man-made EMPs include power line surges, pulses created by ignition systems, nuclear electromagnetic pulses (NEMP) and non-nuclear electromagnetic pulses (NNEMP).

  • Open Path Combustible Gas Detector

    SafEye (Quasar 900) - Teledyne Gas & Flame Detection

    The Open Path Combustible system detects hydrocarbon gases by analyzing the absorption of radiation caused by gases in the atmosphere and comparing it to background atmospheric absorption. This is accomplished between a pair of units: a Flash Source and a Detector that can monitor a distance of up to 200 meters.Open Path Combustible Gas Detectors are robustly designed and can handle the toughest environments: 316L stainless steel housings that meet IP66/IP68 and NEMA 250 6P egress standards; circuit boards epoxy coated for protection; MIL-C-810C testing for humidity, salt, fog, vibration, mechanical shock and temperature extremes; and SIL-2 approval per IEC61508 is a final statement in reliability.

  • Thermal Testing And Analysis

    Response Dynamics Vibration Engineering, Inc.

    We have consulted on thermal issues ranging from conduction issues in TECs, thermal radiation modeling, and countless air cooled system issues relating to system performance, vibration, and acoustics noise. We use a wide array of thermocouple instrumentation, thermal imaging, flow measurements, as well as finite element analysis and analytic modeling to measure, design, and debug thermal and related issues. We often work on customer products in our Response Dynamics lab where we characterize the system, engineer solution options, and prototype solutions. We then work with the customer to work the winning solution into their quality control and manufacturing process.

  • X-RAY Cameras Based On CCD

    XiRAY - XIMEA GmbH

    *High resolution direct phosphor imaging, ideal for Micro CT*Ultra-low readout noise with CCD and especially the new sCMOS sensors*Crystal clear 14 bit/pixel images*Partial readout and binning modes for enhanced sensitivity and higher speed*Non-linearity over full dynamic range <2% (of full scale) to 95% of full scale*External triggering, LVTTL*Low power consumption 6 Watt with Cooling or 2W without*Antiblooming, Enhanced Statistical Extra-Mural Absorption*Radiation hardened, Support of Energy levels 7 to 100keV*Measures just 63 x 63 x 46 mm*Peltier TE Cooled with Heatsink and optional fan

  • EMCTD Broadband RF Safety Systems

    LBA Group, Inc

    The EMCTD analog Smart Fieldmeter® is easy to read and to operate. The EMCTD broadband electromagnetic probe covers the 0.2 to 3000 MHz spectrum where most common industrial, communications, medical and government RF emitters are found. The ANGPE-3000  system enables checking of home, office, and workplace RF levels. The system is designed to conveniently measure RF levels around WiFi access points, RFID systems and rooftop antennas; to find transmitter cabinet radiation, locate transmission line leaks, to identify non-radiating antenna elements, and much more. With the supplied NIST-traceable calibration, this system supports laboratory testing of RF devices in compliance with present EMC and RF safety standards.

  • Shielding Effectiveness Test

    Keystone Compliance

    Shielding effectiveness testing determines the ability of material to reduce the electromagnetic field in a space by blocking the field with barriers made of conductive and/or magnetic materials. Shielding effectiveness testing can be applied to a broad range of radio frequencies. Electromagnetic Shielding is typically applied to both enclosures and cables. The shielding can reduce the coupling or radio waves, electromagnetic fields and electrostatic fields. The amount of reduction can vary based on the material used, its thickness, the size of the shielded volume and the frequency of the fields of interest. Also impacting the effectiveness of the shielding is the size, shape and orientation or apertures in a shield to an incident electromagnetic field. Electromagnetic shielding that blocks radio frequency electromagnetic radiation is also known as RF Shielding.

  • Medical Thyratrons

    Teledyne e2v

    Teledyne e2v has been designing and building thyratrons used in Radiotherapy for over 60 years. The healthcare market demands the highest levels of trust, quality and security of supply.Our RF Power products can be found in over 90% of the world's Radiotherapy treatment machines, helping to improve and save people's lives every minute of the day.We have strong long-term relationships with the global manufacturing base for Radiotherapy machines and are the established market leader for the supply of medical thyratrons; generating the microwave power required for the radiation treatment of tumours.More recently, our technical support for Hospital Engineers has extended into online training, technical FAQ support and bespoke conference events.

  • Portable CCD Spectroradiometer

    LMS-6000 - Lisun Electronics Inc.

    The Portable CCD Colorimeter Spectroradiometer has the following versions which can measure different parameters: • LMS-6000: illuminance (lux), E(Fc), Ee(W/m2), Tc (K), Duv Correlated Color Temperature (CCT), Chromaticity Coordinates, CRI, Purity, Peak Wavelength, Dominant Wavelength, Half Bandwidth, Center Wavelength, Centroid Wavelength, Total Color Difference, Brightness Difference, Red-Green Degree, Yellow-Blue Degree, CCT Difference, SDCM Diagram, Spectrum Diagram • LMS-6000L: cd/m2, fL, Tc (K), Duv Correlated Color Temperature (CCT), Chromaticity Coordinates, CRI, Purity, Peak Wavelength, Dominant Wavelength, Half Bandwidth, Center Wavelength, Centroid Wavelength, Total Color Difference, Brightness Difference, Red-Green Degree, Yellow-Blue Degree, CCT Difference, SDCM Diagram, Spectrum Diagram • LMS-6000P: LMS-6000 Parameters+PAR, PPFD, YPFD, Blue-purple irradiance Eb, Yellow-green irradiance Ey, Red-orange irradiance Er, Ratio of red and blue radiation Erb_Ratio • LMS-6000S: LMS-6000 Parameters+PAR, PPFD, YPFD, Blue-purple irradiance Eb, Yellow-green irradiance Ey, Red-orange irradiance Er, Ratio of red and blue radiation Erb_Ratio, Rf and Rg according to TM-30 • LMS-6000F: LMS-6000 Parameters+Flicker test • LMS-6000B: LMS-6000 Parameters+Blue Light Hazard Weighted Irradiance according to GB/T20145, CIE S009/E:2002 • LMS-6000BF: LMS-6000 Parameters+Flicker test, Blue Light Hazard Weighted Irradiance according to GB/T20145, CIE S009/E:2002

  • Lens Antennas

    ERAVANT

    A lens antenna is a directional antenna that uses a shaped piece of microwave-transparent material to bend and focus microwaves by refraction, as an optical lens does for light.[1] Typically it consists of a small feed antenna such as a patch antenna or horn antenna which radiates radio waves, with a piece of dielectric or composite material in front which functions as a converging lens to collimate the radio waves into a beam.[2] Conversely, in a receiving antenna the lens focuses the incoming radio waves onto the feed antenna, which converts them to electric currents which are delivered to a radio receiver. They can also be fed by an array of feed antennas, called a focal plane array (FPA), to create more complicated radiation patterns.

  • Nuclear Event Detectors

    DDC Connectivity Power Controls

    DDC's radiation-hardened, hybrid, Nuclear Event Detectors (NED) sense ionizing radiation pulses generated by a nuclear event, such as the detonation of a nuclear weapon, and rapidly switches its output from the normal high state to a low state with a propagation delay time of less than 20ns. The active low Nuclear Event Detection signal (NED) is used to initiate a wide variety of circumvention functions, thus preventing upset and burnout of electronic components. The NED output is also used to initiate both hardware and software recovery. This high-speed, 14-pin hybrid detector is used in electronic systems as a general-purpose circumvention device to protect memory, stop data processing, and drive power supply switches as well as signal clamps.

  • Component Test and Analysis Laboratories

    Raytheon Company

    The Component Test and Analysis team specializes in electronic and mechanical components such as hybrids, connectors, cables, harnesses, passive or discrete components, and digital or linear devices. The test lab has extensive experience in developing test software to electrically and environmentally characterize virtually any integrated circuit, including analog, digital, mixed signal, converters, FPGA and ASICs, as well as experience in developing actual radiation environments for parts testing. The component analysis team offers the analytical expertise and advanced instrumentation to identify root cause explanation for a wide range of component-level failures, as well as the resources to evaluate for possible quality and reliability issues through non-destructive and destructive techniques. With access to a detailed database, the Component Test and Analysis team offers a 25-year history of test and analysis data — a valuable resource for addressing new customer requirements.

  • Thickness Check Calix

    LAP GmbH

    For the manufacturing of a perfect cold strip, many factors are crucial. Our measuring frames specifically check the thickness-related quality parameters of the strip steel or steel sheet. Free of radioactive radiation, laser sensors are used in the cold strip areas that do not require protection measures with laser class 2, or only low precautions when using laser class 3B sensors. The installation of our measurement systems is quick and uncomplicated for our customers. The CALIX is integrated into the line with its C-shaped frame across the material flow. Our solutions with and without traversing determine all important parameters for quality assurance, including strip thickness, edge thickness, wedge or cambering, and measure the complete thickness profile. Thus, you have full process control in the current production.

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