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Electromagnet
The electromagnet can generate strong magnetic fields for experimental applications. Depending on the required magnetic flux density and Equipment under test volume the air gap can be adjustedcontinuously. The magnet poles come with conical shape close to the test volume to improve accessability and to optimize the achievable magnetic flux density.
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Fluxmeter
480
An advanced tool designed primarily for use in industrial and measurement systems settings, the Model 480 fluxmeter measures total flux from which B, flux density, and/or H, magnetic field strength, can be determined.
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Fluxmeters
Flux meter has been the established standard for the measurement of magnetic flux density for determining total flux in a magnet or magnetic assembly. Its use was curtailed except in a few specialized areas because of many factors such as the difficulty in setting up light beam flux meter or ballistic galvanometers, limitations on the ohmic resistance of search coils, the requirement of some degree of operator skill in reading the flux meter etc. The development of the integrating type Digital Flux meter has virtually cancelled the hitherto negative aspects of fluxmeterology and has found a broad niche for many magnetic measurement applications.
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Hall (Magnetic) Sensors
Small, compact axial and transverse Hall generators for measuring flux density. Available for use at cryogenic temperatures.
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Continuous Magnetic Measurement Equipment
CWM
The automatic measurement equipment to continuously measure magnetic property in commercial power frequency of magnetic steel sheet sample on line, is used for quality control. Core loss in definite time of magnetic flux density [B] or magnetic flux density [B] in definite time of strength of magnetic field [H] for excited magnetic steel sheet is measured on line.
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Measuring Stations
The main application is the measurement of the flux density on the surface of multipole magnets or components with magnets. A large amount of measuring stations is built for rotors.
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DMD Illuminators
Innovations in Optics' UV LED illuminators are ideal for TI’s larger DLP chipsets. LumiDL™ and Lumi3D™ optical design provides highly uniform flux density over large areas. Radiant flux is confined to 12° acceptance half-angle and DLP active area.
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General Purpose Integrating Spheres
General Purpose Integrating Sphere Systems are designed to spatially integrate radiant flux in order to measure optical radiation. The spheres can be coupled with a sensor to create radiometers, photometers, or spectroradiometers in order to measure the total geometric flux emanating from a light source or the flux density of an illuminated area. Additionally, these sphere systems can be used to measure the output of high power lasers and laser diodes or to measure the reflectance and transmittance of materials.
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Magnet Temperature Characteristics Apparatus
TDF
Evaluation of thermal stability of varieties of permanent magnets including rare-earth permanent magnet. TDF-5-200auto This apparatus automatically measures and analyzes reversible temperature coefficient(a) and irreversible temperature coefficient (Flux loss ?f) of magnetic flux density of rare-earth permanent magnet in the wide range from low to high temperature.
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Industrial Gaussmeter
The industrial gaussmeter IGM11 is used to measure magnetic DC and AC fields. The measurands are flux density in Tesla or Gauss and the field strength in Amps per meter.
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Dosimeters-Radiometers
Small-sized devices for measuring the ambient dose equivalent rate and the ambient dose equivalent of X-ray and gamma radiation, as well as measuring the flux density of beta particles (AT6130).
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Surface Contamination Monitors
Small-sized devices for measuring the ambient dose equivalent rate and the ambient dose equivalent of X-ray and gamma radiation, as well as measuring the flux density of beta particles (AT6130).
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Hall probes
Axial, transverse, multi-axis, and tangential Hall probes for measuring magnetic flux density. Choose from a wide range of lengths and thicknesses—probes are also available for cryogenic applications.
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Field Strength Measuring Instruments and Sensors
MAGNET-PHYSIK Dr. Steingroever GmbH
Field strength measuring devices are measuring devices for measuring the magnetic flux density B (formerly also called induction) and the magnetic field strength H of direct and alternating fields. They are also called Gaussmeters or Teslameters.
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Magnetic Constant Fields
Deviations in the earth's magnetic field are caused by metal parts in mattresses, furniture, appliances, loudspeakers, bathtubs, etc. Long-term effects lead to disorientation in the cell milieu system. The magnetic induction (flux density) of the fields is measured in Tesla (T) or Nanotesla (nT).
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Handheld Gaussmeter
HGM09
Data storage on a personal computer via keystroke. The HGM09s is easy to use and has a good price/performance ratio. The handheld gaussmeter HGM09s is used to measure magnetic DC and AC fields. The measurands are flux density in Tesla or Gauss and the field strength in Amps per meter.
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Underwater Quantum/PAR Sensors
Photosynthetic radiation is essential for the growth of the photosynthetic organisms such as corals. The wavelength range from 400 to 700 nm is PAR (Photosynthetically Active Radiation) or PPFD (Photosynthetic Photon Flux Density). Apogee quantum/PAR sensors are calibrated to measure the number of photons of light across this range.
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Reference Magnet
Reference magnets generate a homogeneous magnetic field in an air gap. They are mainly used to calibrate hall probes for their full scale value of output for the magnetic field strength H or the magnetic flux density B they measure. For example Gaussmeters can be calibrated by using reference magnets.
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Zero Field Cavity
Zero field cavities generate a zero magnetic field in an air gap. They are mainly used to calibrate hall probes for their zero scale value of output for the magnetic field strength H or the magnetic flux density B they measure. For example Gaussmeters can be calibrated by using Zero Field Cavity.
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AC Magnetostriction Measurement Equipment
TLVM
This equipment measures quantitatively magnetostriction to indicate mechanical striction in magnetizing direction caused when magnetic steel sheet sample was alternately magnetized and is used for research and development of magnetic steel sheet. Magnetostriction is detected as speed signal through the parameters of magnetic flux density and compressive stress with laser doppler vibration meter.
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Underwater Quantum Sensor
LI-192
The LI-192 Underwater Quantum Sensor measures PAR from all angles in one hemisphere. The LI-192 works in air or underwater at depths up to 560 meters. The measurements are cosine corrected and typically expressed as Photosynthetic Photon Flux Density (PPFD). For simultaneous measurements of downwelling and upwelling PAR, two sensors can be mounted on the 2009S Lowering Frame.
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Spectrometers
*Search and detection of gamma radiation sources with automatic identification of the radionuclide composition;*Measurement of the dose rate of gamma radiation;*Detection of neutron radiation and measurement of the neutron count rate (AT6102);*Measurement of the dose rate of neutron radiation (external detection unit BDKN-03);*Measurement of the flux density of alpha and beta particles from contaminated surfaces (external detection units BDPA-01 / BDPB-01)
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Line Quantum Sensor
LI-191R
The LI-191R Line Quantum Sensor measures PAR integrated over its 1-meter length. It is used to measure sunlight under a plant canopy, where the light field is non-uniform. The LI-191R makes it easy to measure under-canopy light in many plots quickly and consistently. It measures light in units of Photosynthetic Photon Flux Density (PPFD), which is expressed as μmol s-1 m-2.
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HF Measurement from 1 MHz to 10 GHz
Frequency Master IV
Based on a completely new method of signal analysis, ROM-Electronics measuring devices enable high-frequency and EMC measurements at a spectacular price.Finding sources of interference and their causes, determining power flux density, measuring and evaluating even the most complex signal forms - all this is easily possible with ROM-Electronics measuring devices.And by using our professional PC evaluation software you can increase the performance and functionality of your Frequency-Master IV even more!
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Hall Effect Measurement system
HMS-3300
Magnetic flux density : 0.55Tesla (+/-0.03T)Gap distance between both round magnets : 26mm / Round magnet diameter : 50mmMeasurable temp : RT ~ 300℃(model# HT55T3). Resolution : 0.1℃(Model# HT55T5 : RT ~ 500℃)Both HT55T3 and HT55T5 are only capable of using with HMS-3000 main body.(Not compatible with HMS-5000 )- You can flow purge gas into small chamber and measure hall effect at the same time. Gas control valve can be installed as an option.
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Magnetic Field And Permeability Measurement
MAGNETOMAT 1.790
Foerster Instruments, Incorporated
The MAGNETOMAT 1.790 is a measuring system for the precision detection of magnetic flux density and relative permeability. The MAGNETOMAT software is used for displaying the measured values and saving and exporting data. The wide range of probes facilitates optimal adjustment to the conditions of the application, such as the measurement of relative permeability within the scope of the quality control of stainless steel and low-permeable (non-magnetic) alloys. Further applications include the long-term monitoring of the magnetic environment, e.g. prior to installing magnetically sensitive devices, and the localization of ferrite enclosures in stainless steel and NE materials. Changes in material (sulfidation, degradation of lamination, structural changes) can also be proven thanks to permeability comparative measurements.
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Hall Effect Measurement system
HMS-3000
Hall Effect Measurement System is very useful for measuring Carrier Concentration, Mobility, Resistivity and Hall Coefficient that should be pre-checked in order to grasp the electrical specifications of semiconductor device. Therefore, it is essentially required system to understand the electrical characteristics of semiconductor device.Ecopia’s HMS series consist of constant current source , terminal conversion system by Van der Pauw technique, low temperature(77K) test system and magnetic flux density input system. So, it is well-established system that has all the things needed to Hall Effect Measurement System.
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Gaussmeter/Teslameter
Model 2100
The Model 2100 Gaussmeter is a fully featured, high-end Gaussmeter with a low cost Gaussmeter price. It is a compact, high accuracy, microprocessor controlled, flux density measuring instrument. The Model 2100 is capable of measuring static (DC), alternating (AC), or pulsed magnetic fields. Twelve measurement ranges allow the operator to configure the meter for maximum resolution and accuracy from 300mG (30 microTesla) to 300 kG (30 Tesla). Selecting primary measurement functions is quick and easy with dedicated front panel function keys. An easy-to-use menu allows access to user defined parameters such as upper and lower magnetic limits and relative magnetic measurements. Remote meter configuration is completely accessible using the built in RS-232 Interface or optional IEEE-488 Interface.
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Magnetic Field and Permeability Measurement
MAGNETOSCOP® 1.070
Foerster Instruments, Incorporated
The MAGNETOSCOP 1.070 is a portable magnetometer system with microprocessor and probes for measuring the magnetic flux density as an absolute or differential value (gradient). It has a USB port for simple data transfer and an SD card for saving measurement data and parameters. The measuring system also facilitates the recognition and saving of peak values and the adjustment of thresholds for limit values. The unit can be used for series and individual measurements. The data can be easily analyzed and documented with the PC software included in the scope of delivery. The MAGNETOSCOP 1.070 thus facilitates the portable and fast measurement of the relative permeability within the scope of the quality control of stainless steel and low-permeable (non-magnetic) alloys as well as the localization of ferrite enclosures. Changes in material (sulfidation, degradation of lamination, structural changes) can also be proven thanks to permeability comparative measurements.