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The Electric Motor

Electrical Engineering

The electric motor converts electrical energy into mechanical rotation by using the force a magnetic field exerts on a current carrying conductor. Michael Faraday demonstrated the underlying principle, electromagnetic rotation, on 3 September 1821, spinning a wire around a permanent magnet in a pool of mercury. The Hungarian physicist Anyos Jedlik built a device combining a stator, a rotor and a commutator, the three components of a practical direct current motor, by 1828. The German-Russian inventor Moritz von Jacobi built what is usually credited as the first genuinely useful rotating motor in May 1834, powerful enough to drive a small boat carrying fourteen passengers on the Neva River. Thomas Davenport, working with his wife Emily Davenport, patented a commutated motor in the United States in 1837 that reached six hundred revolutions per minute and drove machine tools and a printing press. Frank Julian Sprague's motor of 1886 was the first to hold a nearly constant speed under a varying mechanical load, the advance that made the motor practical for industrial machinery, and Sprague went on to build the first successful electric streetcar system in 1887 and 1888. This description is adapted from Wikipedia contributors under CC BY-SA 4.0; changes were made. https://creativecommons.org/licenses/by-sa/4.0/

Several distinct milestones are each credited by different historians as the true beginning of the practical motor; the record below states them in sequence rather than picking one.
Facts
Patent or First-Use Date
1837-01-01 1
Year Thomas Davenport patented his commutated DC electric motor; exact day not stated in source.
Significance
By replacing shafts and belts run from one central steam engine with machinery that carried its own power source, the electric motor let a factory place equipment wherever the work required rather than wherever a line shaft could reach, and the same technology carried straight into urban transit through Sprague's electric streetcars and, later, electric subways. 1
Disputed
Year
1834 1
1834 marks Jacobi's motor, usually credited as the first genuinely useful rotating design, but 1821 (Faraday's principle), 1828 (Jedlik's stator-rotor-commutator device) and 1837 (Davenport's patent) are each defensible answers to a differently framed question.
Learn More
The Many Fathers of the Electric Motor

This article records tradition as it has been passed down and reported. Its sources are not yet part of the atlas's verified catalogue.

Ask who invented the electric motor and the honest answer is that no single filing settles it, because the idea arrived in pieces across sixty years. Michael Faraday supplied the principle on 3 September 1821, spinning a wire around a magnet in a pool of mercury to show that a magnetic field could turn electricity into motion, but Faraday built a demonstration, not a machine anyone could put to work. The Hungarian physicist Anyos Jedlik took the next step in 1828, building a device with a stator, a rotor and a commutator, the three parts every later direct current motor would keep, though his work stayed largely unpublished outside Hungary. It was Moritz von Jacobi, a German engineer working in Russia, who built the motor usually credited as the first genuinely useful one: in May 1834 his design was strong enough to drive a small boat carrying fourteen passengers across the Neva River, a public demonstration that a magnet and a coil could do real mechanical work. None of these three ever built a business around the motor. That took another decade, and a different country entirely.

Davenport, Sprague, and the Motor That Left the Laboratory

This article records tradition as it has been passed down and reported. Its sources are not yet part of the atlas's verified catalogue.

In 1837 the American blacksmith Thomas Davenport, working with his wife Emily Davenport, patented a commutated motor that reached six hundred revolutions per minute and could drive machine tools and even a small printing press. It was the first motor built with a shop, not a laboratory, in mind, and it still fell short of what industry needed: without a way to hold a steady speed under a changing load, an electric motor could not replace the belts and shafts a factory already trusted. That problem waited until 1886, when Frank Julian Sprague built the first motor that stayed at a nearly constant speed no matter how hard it was worked, the advance that finally let a factory place power wherever a machine stood rather than wherever a line shaft could reach. Sprague did not stop at the factory floor. In 1887 and 1888 he built the first successful electric streetcar system, carrying his own motor design out of the workshop and into the street, and from there into the subway. The distance between Jacobi's fourteen-passenger boat in 1834 and Sprague's city transit system in 1888 is the distance between a proof that an idea works and a proof that it pays.

Connections

Associated With

Copper, Materials

Copper windings carry the current in nearly every practical motor design.

Source Electric Motor (Wikipedia)Wikipedia contributors

In Field

Source Electric Motor (Wikipedia)Wikipedia contributors

Invented By

Usually credited with building the first genuinely useful rotating electric motor in May 1834, three years before Thomas Davenport's independently developed and patented American motor.

Source Moritz von Jacobi (Wikipedia)Wikipedia contributors

Received U.S. Patent No. 132 in 1837 for a commutated direct-current motor, the first American patent on an electric machine, and used it to drive machine tools and a small printing press.

Source Thomas Davenport (Wikipedia)Wikipedia contributors

Long-Form Articles

In the Other Atlases
Sources
1. Electric Motor (Wikipedia)
Wikipedia contributors, Wikimedia Foundation
  • DC motors section
    Following Sturgeon's work, a commutator-type direct-current electric motor was built by American inventors Thomas Davenport and Emily Davenport, which he patented in 1837.
  • Lead section
    An electric motor is a machine that converts electrical energy into mechanical energy.
  • Associated With: Copper
  • In Field: Electrical Engineering, Categories
    Electric motors
View the Source
Thomas Davenport (Wikipedia)
Wikipedia contributors, Wikimedia FoundationInvented By: Thomas DavenportView the Source
Moritz von Jacobi (Wikipedia)
Wikipedia contributors, Wikimedia FoundationInvented By: Moritz von JacobiView the Source
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