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Near Field Probes 30 MHz up to 6 GHz
XF1 set
The XF1 set of near field probes consists of 4 passive near field probes and one passive E field probe for making measurements in the development phase of the magnetic and electric fields in ranges from 30 MHz to 6 GHz. Due to their integrated impendance matching, the probes are less sensitive in the lower frequency range than the RF type probes. The probe heads of the XF1 set allow for the step by step identification of interference sources of the magnetic field on an electronic assembly. At first, for example the XF-R 400-1 detects the fields which the assembly emits in total. Next, using higher resolution probes the interference sources can be more precisely detected. The E field probe is used for the detection of electric interfering fields near the assemblies. With trained use of the near field probes, field orientation and field distribution can be detected. The near field probes are small and handy. They have a sheath current attenuation and are electrically shielded. They can be connected to a spectrum analyzer or an oscilloscope with a 50 Ω input. They have an internal terminating resistance.
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Probes for Tube Inspection
Probes for tube inspection are lightweight but solidly constructed eddy current, remote field, magnetic flux leakage, and IRIS ultrasound. These probes are used for ferromagnetic or non-ferromagnetic tube inspection applications.
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Probes, Magnetic Field
EM-6881 | 480 KHz To 30 MHz
The EM-6880, EM-6881 and EM-6882 Magnetic Field Probes operate in conjunction with any 50 ohm input impedance receivers.
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Microrad RF Fieldmeter
Users can measure from static/almost static magnetic fields up to 6GHz utilising only two probes while remaining compliant with Directive 2013/35/EU. This solution is the NHT-3D meter plus 33P and 01E probes
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3D Geo-Magnetometer
For the measurement of magnetic equilibria such as the earth's magnetic field, for the determination of anomalies and biologically active location factors. Three highly sensitive magnetic field sensors, as well as a dedicated microprocessor, are integrated into the measuring probe. The sensitive magnetic field sensor is connected to a PC, notebook or laptop (not included). The main features in brief:
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Time Domain Sensors
TDS
Schmid & Partner Engineering AG
Time Domain Sensor (TDS) probes are miniaturized fully isolated active optical magnetic or electric field sensors operating in the frequency range from 10MHz to 6GHz. TDS offers unparalleled sensitivity for EM measurements resolved in the time and frequency domains while maintaining all amplitude and phase information.
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Magnetic Flaw Detector
CDX-Ⅲ
magnetic particle flaw detector is the self-designed magnetic participle flaw detector of MITECH CO.,LTD. With small size, light weight, easy operation, multifunction in one unit. The detector can equip A, D, E O four types of probes to realize the functions of magnetic clamp detection, electromagnetic yoke detection, cross magnetic yoke detection, ring detection. It is the necessary detector to do quality control, safety check, life evaluation in the fields of petrol, chemicals, metallurgy, shipbuilding, aviation, railway etc
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Tesla Meters & Adapters
Projekt Elektronik Mess- und Regelungstechnik GmbH
Magnetic field measuring devices, also known as magnetometers or gaussmeters, which we market under the product name Teslameter, together with one of our probes, form the individual solution for a measurement task. The basic principle at Projekt Elektronik is the modular structure, which allows the combination of different probes with a magnetic field measuring device. This means that our components can be flexibly adapted to the respective requirements. A great advantage for the everyday practice of our customers.
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Field Probe for Electric & Magnetic Field Measurement
WP400-3
Wavecontrol presents a new and unique field probe for the measurement of electric and magnetic fields that integrates both E & H sensors within dimensions of only 3 cm². Which makes it unique is that Wavecontrol has managed to add an E field sensor in a basic structure of a classical 3 cm² field probe. It has been possible, therefore, to obtain a 3 cm² field probe without compromising the capability of assessing E and H fields of its 100 cm² big sister, the recognized and successful WP400.
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Magnetic Field Measurement Systems
The magnetic field probe performs non-contact current measurements and can be used for real traces. The probe of higher resolution enables pinpoint measurements.
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Polarity Tester
PT-1
International Electro-Magnetics, Inc.
The PT-1 provides a simple and easy way to determine the relative polarity of coil windings. It allows for an in-process test that takes a minimum of time to perform. By placing a coil on the platform and making connection to the start and end of a winding, a test signal is induced in the winding. The induced signal is low level and completely safe for the operator. By comparing the test signal phase of the coil under the test output, the relative polarity is indicated by the Red/Green LED. The tester operates by inducing a signal voltage in the coil under test by means of a magnetic flux field. The field is generated by a coil located in the probe base. The coil configuration is designed to provide optimum field distribution. We have also applied this basic circuit to a 5-channel scanning unit.
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RF Helmholtz Coil
The Beehive Electronics 135A RF Helmholtz coil generates a well-controlled, uniform magnetic field. It can be used to calibrate magnetic field probes, such as the Beehive 100 series, or for testing the susceptibility of other devices to magnetic fields. The Helmholtz coil comes supplied with a fixture that makes it easy to calibrate Beehive 100 series probes.
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Scanner Probe
RFS set
The RFS set consits of three passive near field probes designed for the use in a measurement scanner during the development of E-field and magnetic field. They are designed for frequency ranges of 30 MHz to 3 GHz. The probe heads of the RFS set allow for close measurements needed to correctly localize interference sources on an electronic assembly. They document the whole image of the device under test`s near field. The scanner probes have a sheath current attenuation and are electrically shielded. They are connected to a spectrum analyzer or an oscilloscope with a 50 Ω input. They do not have an internal terminating resistance. The measuring signal can be increased with PA 203 or PA 303 preamplifier. On request RFS, LFS and XFS scanner probes can be produced.
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Coating Thickness Gauge
CM8855
It meets the standards of both ISO2178 and ISO 2361 as well as DIN, ASTMand BS. It can be used both in the laboratory and in harsh field conditions. The F probes measure the thickness of non-magnetic materials (e.g. paint,plastic, porcelain enamel, copper, zinc, aluminum , chrome etc.) on magneticmaterials (e.g. iron, nickel etc.) . often used to measure the thickness ofgalvanizing layer, lacquer layer,porcelain enamel layer, phosphidelayer, copper tile, aluminum tile, some alloy tile, paper etc. The N probes measure the thickness of non - magnetic coatings on non-magnetic metals .It is used on anodizing, varnish, paint, enamel,plastic coatings, powder, etc. appliedto aluminum, brass, non-magnetic stainless steel, etc. Automatic substrate recognition. Manual or automatic shut down. Two measurement mode: Single and Continuous Wide measuring range and high resolution. Metric/Imperial conversion. Digital backlit display gives exact reading with no guessing or errors. Can communicate with PC computer for statistics and printing by the optional cable. Can store 99 groups of measurements. Statistics is available.2.SPECIFICATIONSDisplay: 4 digits LCD, backlitRange: 0~1250 μm/0~50mil (other ranges can be specified )Min.radius workpiece: F: Convex 1.5mm/Concave 25mmN: Convex 3mm/ Concave 50mmMin. measuring area: 6mmMin.Sample thickness : 0.3mmResolution: 0.1 μm (0~99.9μm);1 μm (over 100μm)Accuracy: ±1~3%n or 2.5 μm or 0.1mil(Whichever is the greater)Bttery Indicator: Low batter indicator.PC interface: with RS-232C interfacePower supply: 2x1.5 AAA(UM-4) batteryOperating condition: Temp. 0~50℃ .Humidity <95% .Size: 126x65x35 mm; 5.0x2.6x1.6 inchWeight: about 81g(not including batteries)Standard accessories:Carrying case ...................1 pc.Operation manual ............ 1 pc.F probe in built .................1 pc.NF probe in built...............1 pc.Calibration foils ..............1set.Substrate (Iron) ................1 pc.Substrate (Aluminium)......1 pc.Optional accessories: RS-232C cable & software:1.USB adaptor for RS-232C2.Bluetooth interface
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Helmholtz Coil
In the measurement of magnetic fields by means of Hall probes or measuring coils it is necessary to calibrate the instruments in a known magnetic field. Our standard field coil according to Helmholtzenables to production of a magnetic field calculable with high accuracy from the dimensions and the amperage. In series arrangement with an accurate ammeter field strengths of up to 800A/cm are produced. The dield room accessible both in axial and radial direction. Helmholtz coils with fluxmeters are also useful in testing of magnets. Helmholtz coils give repeatable results as against the search coils due to which the magnets can be compared with more accuracy for their total flux and in turn their quality. Field Generating and Field Detecting Helmholtz coils are designed as per user specifications.
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Gaussmeter
DX-102
DX-102 Gaussmeter is a portable gauss meter, based on the latest progress of Hall effect magnetic field measuring instrument, adopted DSP technology. Test probe adopts import GaAs linear Hall chip, the difference between any two probes is small, if damaged, it can be replaced directly. DX-102 Gaussmeter is an ideal DC magnetic field test instrument.
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Near Field Probes 30 MHz up to 3 GHz
RF6 set
The RF6 near field probe set consists of 2 passive magnetic field probes and 2 passive E field probes for measurements in the development phase of the E-field and magnetic field in the range from 30 MHz to 3 GHz on electronic assemblies. The probe heads of the RF6 set allow a step by step localization of interference sources of the RF magnetic field and RF-E-field on an assembly. From a larger distance the electromagnetic interference is detected by RF-R 50-1 for the magnetic field and by RF-E 02 for the E-field. The RF-B 3-2 and RF-E 10 probes with their higher resolution can more presicely detect the interference sources of the magnetic field and the E-field. Field orientation and field distribution on an electronic assembly can be detected by special guidiance of the near field probe. The near field probes are small and handy. They have a sheath current attenuation and are electrically shielded. They can be connected to a spectrum analyzer or an oscilloscope with a 50 Ω input. They do not have an internal terminating resistance.
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Near Field Probes 30 MHz - 6 GHz
XF Family
The XF family consists of 4 passive magnetic field probes and 3 passive E field probes designed for measuring magnetic and E-fields in ranges from 30 MHz to 6 GHz during the development phase. Due to their integrated impendance matching the probes are less sensitive in the lower frequency range than the RF type probes.
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Reference Magnets
Series MT
The reasonably priced WUNTRONIC standard reference magnets offer the possibility in a simple way of being able to calibrate or to check magnet measuring instruments like Gauss Meter/Tesla Meter with the respectively accompanying probes in a defined magnetic field.
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Near Field Probes 30 MHz up to 3 GHz
RF2 set
The RF2 near field probe set consists of 4 passive near field probes for measurements in the development phase of the magnetic field in the range from 30 MHz to 3 GHz on electronic assemblies. The probe heads of the RF2 set allow the step by step localization of interference sources of the RF magnetic field on assemblies. From greater distances the electromagnetic interference can be detected by RF-R 400-1 and RF-R 50-1 probes. The RF-B 3-2 and RF-U 5-2 probes with their higher resolution can more precisely detect the interference sources. Field orientation and field distribution on an electronic assembly can be detected through a trained special use of the near field probe. The near field probes are small and handy. They have a sheath current attenuation and are electrically shielded. They can be connected to a spectrum analyzer or an oscilloscope with a 50 Ω input. They do not have an internal terminating resistance.
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HandyScope HS6-DIFF With EMI & SafeGround: 1 GS/s, 250MHz BW, 4 Channel (256MS/ch), USB Differential Digital Storage Oscilloscope, Spectrum Analyzer, Voltmeter, Transient Recorder
HS6-DIFF-1000XMEG-W5
The powerful capabilities of the WiFiScope HS6-DIFF-1000XMEG EMI analyzer give the user the possibility to quickly perform a good EMI compliance test. With this cost effective test, time and money are saved by avoiding extra visits to expensive EMC testing facilities. The supplied EMI probe set TP-EMI-HS6 contains three magnetic field (H field) probes and one electric field (E field) probe. The tripod ensures that the probes can be positioned properly at the object under test.
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Gaussmeter
DX-101
DX-101 Gaussmeter is based on the Hall effect magnetic field strength of the latest developments in instrumentation, the design of desktop-type Gauss meter. Maximum range 330.0mT and 3000mT two tranches, the minimum basic error of 1.0%. Test probe connectors is imported, stable and reliable connection.
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Magnetic Field Meter
MP - 2000
The new magnetic field meter MP - 2000 first used probes (tangential and Axialfeldsonden), in which an own microcontroller, the analog sensor signals are digitized and linearized directly in the probe. This new technique is extremely trouble-free and allows very precise measurements, especially at high magnetic field strengths, where Hall probes can not operate linearly.
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Zero Gauss Chamber
ZGC
The model ZGC zero gauss chamber reduces the environmental magnetic field (Earth field) to near zero inside the chamber. Any gaussmeter probe which is less than 9.4 mm or 0.370" diameter can be placed inside. The meter is then "zeroed", which means that it will read zero whenever the probe is subsequently placed in zero field. By using a zero gauss chamber, any offset error is therefore eliminated. The model ZGC is unique in that it contains a degausser (demagnetizer). This is situated between the inner and outer mu-metal shields. When the degauss button is pressed, any accidental magnetization of the chamber, no matter how strong, is erased. Accidental magnetization is a major problem with most zero gauss chambers and it has limited their use. If a magnet comes too close, the chamber will become "permanently" magnetized and will have an internal field that is typically 0.2 to 0.5 gauss. The chamber must then be degaussed because the Earth field is also around 0.5 gauss, so a magnetized zero gauss chamber will not significantly reduce the field.
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Near Field Probes 1GHz - 10 GHz
SX set
The SX1 set consists of 3 passive near field probes for making measurements in the development phase of E-field and magnetic field with a high clock frequency in the range from 1 GHz to 10 GHz. The probe heads of the set SX allow for measurements close to electronic assemblies, e.g. on single IC pins, conducting paths, components and their connectors, to localize interference sources. Field orientation and field distribution on an electronic assembly can be detected through trained use of the near field probe. The near field probes are small and handy. They have a sheath current attenuation and are electrically shielded. They can be connected to a spectrum analyzer or an oscilloscope with a 50 Ω input. They have an internal terminating resistance.
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Gauss Meters
A gauss meter displays electromagnetic wave measurements in Gauss (G), milliGauss (mG), milliTesla (mT) or microTesla (µT) units. A gauss meter can detect either static (DC) permanent (rare-earth) magnetic or dynamic (AC) electromagnetic fields (EMFs), or both. Thus, it is important to review the specifications of a gauss meter prior to purchase to ensure suitability for the intended application.Neodymium (NdFeB) permanent magnets are among the world's strongest and most widely used magnets. When testing magnets made of neodymium or other rare-earth elements, a gaussmeter or magnetometer capable of measuring DC magnetic fields is required. However, most electromagnetic fields encountered are generated by AC currents. Examples include electrical power lines, transformers and wiring for overhead lighting, solar panels and other electrical devices and equipment. Electromagnetic fields from electrical installations are believed to cause feelings of nervousness, anxiety and paranoia in EMF-sensitive human beings.Most gaussmeters offered by PCE Instruments can be calibrated and certified according to DIN ISO 9000 standards for an additional fee. Replacement gaussmeter probes and optional accessories are available for most gaussmeter models.
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Magnetic Susceptibility Meter for Multi-Layer Survey
MULTI KAPPA
Multi Kappa instrument serves for fast field survey allowing both spot measurement and mapping by means of several probes. Together with GF Instruments traditional pocket magnetic susceptibility meters cover wide range of demands for accurate susceptibility measurement on ground surface, outcrops and samples of rock and soil. geological survey, archaeology, agriculture and forestry, raw material prospecting, mineralogy, sedimentology, detection of metallic objects, UXO survey.
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Gaussmeter
DX-103
DX-103 Gaussmeter is a desktop gaussmeter.Which is based on he latest progress of the the Hall Effect magnetic field measuring instrument.Adapt the high stability constant current source circuit technology to design and manufacture. Test probes adapt imported GaAs linear Hall-chip, the difference between probes is small, which can be replaced directly when it is damaged, and is an ideal AC & DC magnetic field test instrument.
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Electromagnetic Radiation Analyzer
SEM-600
Beijing KeHuan Century EMC Technology Co,.LTD
Broadband Electromagnetic Radiation Analyzer SEM-600 can accurately measure various complex electromagnetic environments. The probe covers all frequencies from low frequency to microwave radiation. It can measure electric field strength and magnetic field by equipping different types of probes. Intensity (magnetic induction) and power density, it is also equipped with ordinary probes and other weighted probes based on human safety standards.
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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.