Things a Boy Should Know About Electricity: Second EditionSt. John, Thomas M. (Thomas Matthew)
Science
Things a Boy Should Know About Electricity: Second Edition
St. John, Thomas M. (Thomas Matthew)
Electricity
The two stations, R and L, may be in the same room, or in different
houses. The _return wire_, R W, passes from the copper of b to the zinc
of B. This is important, as the cells must help each other; that is,
they are in series. The _line wire_, L W, passes from one station to
the other, and the return may be through the wire, R W, or through the
earth; but for short lines a wire is best.
[Illustration: Fig. 111.]
=112. Operation of Simple Line.= Suppose two boys, R (right) and L
(left) have a line. Fig. 111 shows that R's switch, E, is open, while
e is closed. The entire circuit, then, is broken at but one point. As
soon as R presses his key, the circuit is closed, and the current from
both cells rushes around from B, through K, S, L W, s, k, b, R W, and
back to B. This makes the armatures of S and s come down with a click
at the same time. As soon as the key is raised, the armatures lift and
make the up-click. As soon as R has finished, he closes his switch E.
As the armatures are then held down, L knows that R has finished, so
he opens his switch e, and answers R. Both E and e are closed when the
line is not in use, so that either can open his switch at any time and
call up the other. Closed circuit cells must be used for such lines. On
very large lines dynamos are used to furnish the current.
=113. The Relay.= Owing to the large resistance of long telegraph
lines, the current is weak when it reaches a distant station, and not
strong enough to work an ordinary sounder. To get around this, relays
are used; these are very delicate instruments that replace the sounder
in the line wire circuit. Their coils are usually wound with many turns
of fine wire, so that a feeble current will move its nicely adjusted
armature. The relay armature merely acts as an automatic key to open
and close a local circuit which includes a battery and sounder. The
line current does not enter the sounder; it passes back from the relay
to the sending station through the earth.
[Illustration: Fig. 112.]
Fig. 112 gives an idea of simple relay connections. The key K, and
cell D C, represent a distant sending station. E is the electromagnet
of the relay, and R A is its armature. L W and R W represent the line
and return wires. R A will vibrate toward E every time K is pressed,
and close the local circuit, which includes a local battery, L B, and
a sounder. It is evident that as soon as K is pressed the sounder will
work with a good strong click, as the local battery can be made as
strong as desired.
Fig. 113 shows a regular instrument which opens and closes the local
circuit at the top of the armature.
[Illustration: Fig. 113.]
Public-domain text, read in full here on John Shaqi.
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