This dynamo is in the collection of the Smithsonian Institution.]
For this reason all these systems used direct current and the 10 ampere
ultimately displaced the 20 ampere system. The 10 ampere circuit
was later standardized at 9.6 amperes, 50 volts per lamp. The lamp
therefore consumed 480 watts giving an efficiency of about 15 lumens
per watt. This lamp gave an average of 575 candlepower (spherical) in
all directions, though it was called the 2000 cp (candlepower) arc as
under the best possible conditions it could give this candlepower in
one direction. Later a 6.6 ampere arc was developed. This was called
the “1200 cp” lamp and was not quite as efficient as the 9.6 ampere
lamp.
“SUB-DIVIDING THE ELECTRIC LIGHT”
While the arc lamp was being commercially established, it was at once
seen that it was too large a unit for household use. Many inventors
attacked the problem of making a smaller unit, or, as it was called,
“sub-dividing the electric light.” In the United States there were four
men prominent in this work: William E. Sawyer, Moses G. Farmer, Hiram
S. Maxim and Thomas A. Edison. These men did not make smaller arc lamps
but all attempted to make an incandescent lamp that would operate on
the arc circuits.
[Illustration: SAWYER’S INCANDESCENT LAMP, 1878.
This had a graphite burner operating in nitrogen gas.]
[Illustration: FARMER’S INCANDESCENT LAMP, 1878.
The graphite burner operated in nitrogen gas. This lamp is in the
collection of the Smithsonian Institution.]
Sawyer made several lamps in the years 1878–79 along the lines of the
Russian scientists. All his lamps had a thick carbon burner operating
in nitrogen gas. They had a long glass tube closed at one end and the
other cemented to a brass base through which the gas was put in. Heavy
fluted wires connected the burner with the base to radiate the heat,
in order to keep the joint in the base cool. The burner was renewable
by opening the cemented joint. Farmer’s lamp consisted of a pair of
heavy copper rods mounted on a rubber cork, between which a graphite
rod was mounted. This was inserted in a glass bulb and operated in
nitrogen gas. Maxim made a lamp having a carbon burner operating in a
rarefied hydrocarbon vapor. He also made a lamp consisting of a sheet
of platinum operating in air.
EDISON’S INVENTION OF A PRACTICAL INCANDESCENT LAMP
Edison began the study of the problem in the spring of 1878. He had a
well-equipped laboratory at Menlo Park, New Jersey, with several able
assistants and a number of workmen, about a hundred people all told.
He had made a number of well-known inventions, among which were the
quadruplex telegraph whereby four messages could be sent simultaneously
over one wire, the carbon telephone transmitter without which Bell’s
telephone receiver would have been impracticable, and the phonograph.
All of these are in use today, so Edison was eminently fitted to attack
the problem.
[Illustration: MAXIM’S INCANDESCENT LAMP, 1878.
Public-domain text, read in full here on John Shaqi.
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