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  2. Manganin - Wikipedia

    en.wikipedia.org/wiki/Manganin

    Manganin is a trademarked name for an alloy of typically 84.2% copper, 12.1% manganese, and 3.7% nickel. It was first developed by Edward Weston in 1892, improving upon his Constantan (1887). Manganin foil and wire is used in the manufacture of resistors , particularly ammeter shunts , because of its virtually zero temperature coefficient of ...

  3. List of named alloys - Wikipedia

    en.wikipedia.org/wiki/List_of_named_alloys

    Most iron alloys are steels, with carbon as a major alloying element.. Elinvar (nickel, chromium); Fernico (nickel, cobalt); Ferroalloys (Category:Ferroalloys) . Ferroboron ...

  4. Manganese - Wikipedia

    en.wikipedia.org/wiki/Manganese

    Copper alloys of manganese, such as Manganin, are commonly found in metal element shunt resistors used for measuring relatively large amounts of current. These alloys have very low temperature coefficient of resistance and are resistant to sulfur. This makes the alloys particularly useful in harsh automotive and industrial environments.

  5. Constantan - Wikipedia

    en.wikipedia.org/wiki/Constantan

    Very importantly, constantan can be processed for self-temperature compensation to match a wide range of test material coefficients of thermal expansion.A-alloy is supplied in self-temperature-compensation (S-T-C) numbers 00, 03, 05, 06, 09, 13, 15, 18, 30, 40, and 50, for use on test materials with corresponding thermal expansion coefficients, expressed in parts per million by length (or μm ...

  6. Talk:Manganin - Wikipedia

    en.wikipedia.org/wiki/Talk:Manganin

    The invention of "Manganin," the alloy now used universally for resistors of high accuracy, followed shortly thereafter. The resistance of "Manganin" is virtually constant within reasonable temperature limits. 1888 The Weston Electrical Instrument Co. is formed by Edward Weston. Dr.

  7. Shunt (electrical) - Wikipedia

    en.wikipedia.org/wiki/Shunt_(electrical)

    For manganin, a common shunt material, at 80 °C thermal drift begins to occur, at 120 °C thermal drift is a significant problem where error, depending on the design of the shunt, can be several percent and at 140 °C the manganin alloy becomes permanently damaged due to annealing resulting in the resistance value drifting up or down.

  8. Edward Weston (chemist) - Wikipedia

    en.wikipedia.org/wiki/Edward_Weston_(chemist)

    He invented two alloys, constantan and manganin. [2] Weston developed measurement instruments for electric current —the modern foundation for the voltmeter , ammeter and wattmeter . In 1888 he formed the Weston Electrical Instrument Corporation which would become famous for its voltmeters , ammeters , wattmeters , ohmmeters , frequency meters ...

  9. Resistance wire - Wikipedia

    en.wikipedia.org/wiki/Resistance_wire

    Other constant-resistance alloys include manganin (Cu 86 Mn 12 Ni 2), Cupron (Cu 53 Ni 44 Mn 3) [2] and Evanohm. Melts at about 1,220 °C (2,230 °F). Melts at about 1,220 °C (2,230 °F). Balco ( Ni 70 Fe 30 ) and similar alloys have very high, but more linear, temperature coefficients of resistivity, making them suitable for sensing elements.

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