Harper's Electricity Book for BoysAdams, Joseph H. (Joseph Henry)
Science
Harper's Electricity Book for Boys
Adams, Joseph H. (Joseph Henry)
Electricity -- Juvenile literature
The under edges of the arm may be slightly bevelled with a file, so that
it will slip up easily on the oval head of the brass tack. The drawing
shows an open switch; when the circuit is closed the arm rests on the
tack-head. By means of small screws this switch-board may be fastened to
a table or to any part of the wood-work in a house.
In Fig. 7 a complex switch is shown. This is the principle of the
shunt-box switch, of the resistance-coil, and also of the commutators of
a motor. A motorman’s controller on a trolley-car is a good example of
the shunt, and, with it and the resistance-coils, the car can be
started, stopped, or run at any speed, according to the current that is
admitted to the motor.
The complex switch is made in the same manner as described for the
single switch, except that any number of binding-posts may be employed,
arranged on a radial plan, so that the end of the arm will rest on any
tack-head at will. Bells in various parts of the house may be rung by
this switch, or it may be coupled with a series of resistance-coils to
control any amount of current.
The simple cut-out (Fig. 8) is constructed in the same manner as the
simple switch, except that there are two points of contact instead of
one. This is the principle of the telephone and telegraph instrument
wiring, so that a bell or sounder may be rung from a distance. The arm
is then thrown over and the bell cut out, allowing the “phone” or key to
be brought into use. In lifting the transmitter from the hook on a
telephone, a cut-out is operated and the bell circuit is thrown out of
action. It is in operation again directly the transmitter is returned to
the hook. The switch cut-out (Fig. 9) is inactive when the arm is in the
position shown in the illustration; but when it is thrown over (as shown
by the dotted line) it connects the poles at opposite ends of the board.
It may be thrown over in both directions, and is a useful switch for
many purposes.
For strong currents the lever-switch, that rests on a brass tack-head,
will not be suitable, as the switch-bar must be held firmly in place to
make a perfect connection. Strong currents throw weak switches open,
causing an open or broken circuit.
A single pole-switch, to carry a current up to one hundred and
twenty-five volts and twenty-five amperes, is shown in Fig. 10. This
consists of a base-block, a bar which is attached to the vertical ears
of a binding-post, and a clutch that will hold the bar when it is
pressed down between the ears.
Public-domain text, read in full here on John Shaqi.
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