The Story of Great InventionsBurns, Elmer Ellsworth
History
The Story of Great Inventions
Burns, Elmer Ellsworth
Inventions -- History
The telephone, like the telegraph, depends on the electromagnet. The
thought of inventors at first was to make the vibrations of a thin
membrane, caused by the sound of the voice, open and close a telegraphic
circuit. An electromagnet at the other end of the line would cause a
thin membrane with a piece of soft iron attached to it to vibrate, just
as the magnet in the telegraph receiver pulls and releases the
soft-iron armature as the circuit is made and broken. The thin membrane
caused to vibrate in this way would give out the sound. A telephone on
this principle was invented by Philip Reis, a schoolmaster in Germany.
The transmitter was carved out of wood in the shape of a human ear, the
thin membrane being in the position of the ear-drum. Musical sounds and
even words were transmitted by this telephone, but it could never have
been successful as a practical working telephone. The membrane in the
receiver would vibrate with the same speed as the membrane in the
transmitter, but sound depends on something more than speed of
vibration.
The Bell telephone, as known to-day, began with a study of the human
ear. Alexander Graham Bell was a teacher of the deaf. His aim was to
teach the deaf to use spoken language, and for this purpose he wished to
learn the nature of the vibrations caused by the voice. His plan was to
cause the ear itself to trace on smoked glass the waves produced by the
different letters of the alphabet, and to use these tracings in teaching
the deaf. Accordingly, a human ear was mounted on a suitable support,
the stirrup-bone removed, leaving two bones attached, and a stylus of
wheat straw attached to one of the bones. The ear-drum, caused to
vibrate by the sound, moved the two small bones and the pointer of
straw, so that when he sang or talked to the ear delicate tracings were
made on the glass.
This experiment suggested to Mr. Bell that a membrane heavier than the
ear-drum would move a heavier weight. If the ear-drum, no thicker than
tissue-paper, could move the bones of the ear, a heavier membrane might
vibrate a piece of iron in front of an electromagnet. He was at the
same time devising a telegraph for transmitting messages by means of
musical sounds. In this telegraph he was using an electromagnet in the
transmitter and another electromagnet in the receiver. He attached the
soft-iron armature of each electromagnet to a stretched membrane of
gold-beaters' skin, expecting that the sound of his voice would cause
the membrane of the transmitter to vibrate, and that, by means of the
electromagnets, the membrane of the receiver would be made to vibrate in
the same way (Fig. 68). At first he was disappointed, but after making
some changes in the armatures a distinct sound was heard in the
receiver. Later the membrane was discarded, and a thin iron disk used
with better effect.
Public-domain text, read in full here on John Shaqi.
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