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Supplier: IHS Product Design
Description: TEST PROCEDURE FOR MEASURING RELATIVE SHIELDING PROPERTIES OF ACTIVE AND PASSIVE COAXIAL CABLE DEVICES USING H-P MAGNETIC CLOSE FIELD PROBE
Description: equipment, RF and microwave devices, consumer electronics, mobile devices, IT and medical equipment. Superior EMI noise mitigation is achieved through a unique layered design of magnetic and conductive/dielectric material. The magnetic layer’s powder composite absorbs lower frequency
- Electrically Conductive: Yes
- Material Type: Metal / Metal Filled
Supplier: Wharfedale Pro
Description: , ported loudspeaker system in a compact and well damped enclosure bi-amplified with an active crossover. All components are specifically designed for optimum performance as a system. Magnetic shielding is provided on the transducers to allow their use in close proximity to CRT displays. Drivers
- Sound Pressure Level: 106 dB
- Frequency Response: 50 to 24000 Hz
- Speaker Size: 5 inch
Supplier: Visual Sound, Inc.
Description: dispersion and stereo imaging together with an extremely large sweet spot. The B2031A is adjustable to a wide range of acoustic conditions or subwoofer combinations and magnetic shielding allows placement near computer/video monitors. All TRUTH monitors are delivered as matched pairs with individual
Supplier: Howard Computers
Description: to their magnetic shielding. They include a headphone socket for private listening.
- Nominal Input Power: 10 watts
- Frequency Response: 80 to 20000 Hz
- Speaker Size: 7.6 inch
- Features: Active / Integral Amplifier
Description: with rubber surround and PEI dome tweeter for increased durability, and magnetic shielding of all drivers to allow the speaker to be placed in close proximity to video equipment. The Monitor 6C is timbre matched to the rest of the MONITOR family and easily integrated to a full high performance
Description: The Yamaha YSTSW216BL Front Firing 100W Powered Subwoofer is a great addition to any home sound system.An integrated 10-inch long-stroke cone driver carries magnetic shielding to eliminate interference.The 100 watts of dynamic power ensure clear audio quality.A low frequency response of 25 &ndash
- Features: Active / Integral Amplifier
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Schaffner EMC Inc.
Flexible IEC inlet filter series FN9280 and FN9290
for faster and vibration-proof wiring. The new flange mount system with either horizontal or vertical mounting holes provides maximum flexibility for front or back mounting. Because of the RF tight joining of the flange frames with the deep-drawn steel housings an optimal shielding even against strong magnetic fields has been achieved. . The FN9280 series is equipped with proven single-stage EMC/EMI filters. The FN9290 series requiring the identical panel cutout has a double-stage EMC/EMI... (read more)
Browse EMI Filters and RFI Filters Datasheets for Schaffner EMC Inc.
Conduct Research Top
Whole lot of shakin' goin' on
. Isolation systems to attenuate floor vibration are widespread and magnetic shielding, active cancellation, and image processing can eliminate EMI. Using a sealed enclosure around the tool reduces transmission of acoustic noise. Unfortunately, these enclosures are not always used since they require
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The field of view shifted by ≈ 3 mm, which can be corrected by active magnetic shielding and further collimation.
Development of an active magnetic screen to allow a biomagnetometer to be used in an
We have developed an active magnetic shield with the aim of compensating for the urban magnetic field and its first-order spatial field gradient to allow biomagnetic measurements outside an MSR.
Compensating method of CRT display jitter caused by an external magnetic field
of the CRT for a magnetic field, and a new magnetic shield method by compensation coils ( active mag- netic shielding ) is introduced.
Active magnetic shielding for biomagnetic measurement using spatial gradient fields
Active magnetic shielding for biomagnetic measurement using spatial gradient fields .
Fundamental mode fluxgate magnetometers for active magnetic shielding
Fundamental mode fluxgate magnetometers for active magnetic shielding .
Software control of an active magnetic shield
Software control of an active magnetic shield .
Hardware control of an active magnetic shield
Hardware control of an active magnetic shield .
Mobile cryocooler-based SQUID NDE system utilizing active magnetic shielding
Mobile cryocooler-based SQUID NDE system utilizing active magnetic shielding .
Active magnetic shielding with a magnetic field sensor
Active magnetic shielding with a magnetic field sensor .
An experimental study on a fast self-acting magnetic shield type superconducting fault current limiter
An experimental study on a fast self- acting magnetic shield type superconducting fault current limiter .
Design criteria for active shielding of inhomogeneous magnetic fields for biomagnetic applications
H. Seifert, A. Wirth, and S. Schneider, “ Active magnetic shielding sup- port for biomagnetic instruments,�? in Springer Proceedings in Physics, Superconducting Devices and Their Applications, H. Koch and H. Lubbig, Eds. K. Matsumoto, Y. Yamagishi, A. Waknsawa, T. Noda, K...
Cryptographic Hardware and Embedded Systems - CHES 2013
Hilgenfeld, B., Strahmel, E., Nowak, H., Haueisen, J.: Active magnetic shielding for bio- magnetic measurement using spatial gradient fields.
Journal of Spacecraft and Rockets > Toroidal Magnetic Spacecraft Shield Used to Deflect Energetic Charged Particles
These so-called active magnetic shields must provide a region of space that is protected from energetic particles below a given energy, while also maintaining a safe level of magnetic field strength within the shielded region.
International Conference on Advancements of Medicine and Health Care through Technology
K. Kato, K. Yamazaki, H. Matsuba, C. Sumi, S. Sato, (2001) Active magnetic shield for biomagnetic measurements, Proc. of the 12th Int. Conf. on Biomagnetism 2000, Helsinki University of Technology, Espoo, Finland, Ed. J. Nenonen, R. Ilmoniemi, T. Katila (Vantaa, Finland: Dark...
MFTF-. cap alpha. + T progress report
Briefly, passive rather than active magnetic shielding techniques were selected for the axicell neutral beam injec tors because the stray field is <2 kG and passive techniques are the most practical.