The Romance of Modern Invention: Containing Interesting Descriptions in Non-technical Language of Wireless Telegraphy, Liquid Air, Modern Artillery, Submarines, Dirigible Torpedoes, Solar Motors, Airships, &c. &c. — John Shaqi
The Romance of Modern Invention: Containing Interesting Descriptions in Non-technical Language of Wireless Telegraphy, Liquid Air, Modern Artillery, Submarines, Dirigible Torpedoes, Solar Motors, Airships, &c. &c.Williams, Archibald
Science
The Romance of Modern Invention: Containing Interesting Descriptions in Non-technical Language of Wireless Telegraphy, Liquid Air, Modern Artillery, Submarines, Dirigible Torpedoes, Solar Motors, Airships, &c. &c.
Williams, Archibald
Inventions
What is inside the simple-looking receiver that hangs on the wall
beside a small mahogany case, or rests horizontally on a couple of
crooks over the case? In the older type of instrument the transmitter
and receiver are separate, the former fixed in front of the case, the
latter, of course, movable so that it can be applied to the ear. But
improved patterns have transmitter and receiver in a single movable
handle, so shaped that the earpiece is by the ear while the
mouthpiece curves round opposite the mouth. By pressing a small lever
with the fingers the one or the other is brought into action when
required.
The construction of the instrument, of which we are at first a little
afraid, and with which we later on learn to become rather angry, is in
its general lines simple enough. The first practical telephone,
constructed in 1876 by Graham Bell, a Scotchman, consisted of a long
wooden or ebonite handle down the centre of which ran a permanent
bar-magnet, having at one end a small coil of fine insulated wire
wound about it The ends of the wire coil are led through the handles
to two terminals for connection with the line wires. At a very short
distance from the wire-wound pole of the magnet is firmly fixed by its
edges a thin circular iron plate, covered by a funnel-shaped
mouthpiece.
The iron plate is, when at rest, concave, its centre being attracted
towards the pole of the magnet. When any one speaks into the
mouthpiece the sound waves agitate the diaphragm (or plate), causing
its centre to move inwards and outwards. The movements of the
diaphragm affect the magnetism of the magnet, sometimes strengthening
it, sometimes weakening it, and consequently exciting electric
currents of varying strength in the wire coil. These currents passing
through the line wires to a similar telephone excite the coil in it,
and in turn affect the magnetism of the distant magnet, which
attracts or releases the diaphragm near its pole, causing undulations
of the air exactly resembling those set up by the speaker’s words. To
render the telephone powerful enough to make conversation possible
over long distances it was found advisable to substitute for the one
telephone a special transmitter, and to insert in the circuit a
battery giving a much stronger current than could possibly be excited
by the magnet in the telephone at the speaker’s end.
Edison in 1877 invented a special transmitter made of carbon. He
discovered that the harder two faces of carbon are pressed together
the more readily will they allow current to pass; the reason probably
being that the points of contact increase in number and afford more
bridges for the current.
Accordingly his transmitter contains a small disc of lampblack (a form
of carbon) connected to the diaphragm, and another carbon or platinum
disc against which the first is driven with varying force by the
vibrations of the voice.
Public-domain text, read in full here on John Shaqi.
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