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About Us – Vishay Foil Resistors
More than four and a half decades after its invention by physicist Dr. Felix Zandman in 1962, Bulk Metal® Foil (BMF) technology still outperforms all other resistor technologies available today for applications that require precision, stability, and reliability. Vishay's unique, ultra precision Bulk Metal Foil resistor products provide extremely low temperature coefficient of resistance (TCR) and exceptional long-term stability through temperature extremes.
The Vishay Foil Resistors portfolio comprises products in a variety of resistor configurations and package types to meet the needs of a wide range of applications: discrete resistors and resistor networks in surface mount and through-hole (leaded) configurations; customized chip resistor networks; precision trimming potentiometers; and discrete chips for use in hybrid circuits.
In 2000, Vishay achieved a technological breakthrough with the introduction of Bulk Metal® Z-Foil. Products built on this revolutionary technology deliver an absolute temperature coefficient of resistance (TCR) of 0.2 ppm/°C. The lower the TCR, the better a resistor can maintain its precise value despite ambient temperature variations and self-heating when power is applied. Vishay Bulk Metal Foil resistors are essentially non-inductive (less than 0.08 micro Henrys) and not capacitive, providing a rise time of about 1 nanosecond, making it particularly suitable for high frequency application. Furthermore, its thermal EMF is less than 0.05 µV/°C making it particularly important for low-ohmic DC applications.
With the award-winning Bulk Metal® Foil resistors, designers can significantly reduce circuit errors and greatly improve overall circuit performance. By taking advantage of the overall stability, high-frequency performance, and reliability of Bulk Metal® technology we can produce customer-oriented products designed to satisfy challenging technical requirements. Customers are invited to contact our Application Engineering Department with non-standard technical requirements and special applications (email: foil@vishaypg.com)
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Fri Feb 03 2012
Co. works on gain control operational amp 4 test equip project used 4 testing semiconductor chips. Solution? VHD200 http://t.co/3bonVZEn
Thu Feb 02 2012
Aerospace project 4 strain measurement landing gear needs low TCR tracking, good common mode rejection. Solution: DSMZ http://t.co/GTUNGbSW
Wed Feb 01 2012
Medical sector requires special customer oriented resistance configuration for differential amplifier. Solution? SMN http://t.co/Fi3qNJtZ
Tue Jan 31 2012
Scientific co. works on #seismic sensors project for undersea sensor gain control op amp. Solution? VFCD http://t.co/PhF9txec
Mon Jan 30 2012
A GPS clock project needs hi-stability & superior tracking 4 analog-digital convertor voltage ref. Solution? 300144Z http://t.co/Xm0DnznL
Fri Jan 27 2012
Aero co. looking 4 tight TCR track & long-term stability of ratio 4 their fuel control differential amp. Solution? SMNZ http://t.co/KGZzpICp
Thu Jan 26 2012
Instrumentation co. needs resistors w/low TCR tracking & tight tolerance 4 voltage calibrator project. Solution? VHD200 http://t.co/3bonVZEn
Wed Jan 25 2012
Sci-instrumentation co. requires best tracking & stability 4 differential amp 4 earthquake detection. Solution? VFD224 http://t.co/lpaIHhm2
Tue Jan 24 2012
Co. requires low TCR tracking & high stability 4 a differential amplifier for strain gage instrument. Solution? DSMZ: http://t.co/95N7Rj6y
Mon Jan 23 2012
Reliability: in practice, the mean time between failures (MTBF) http://t.co/nEmDaD9B #VFRGlossary

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