Hertzian Wave Wireless TelegraphyFleming, J. A. (John Ambrose), Sir
Science
Hertzian Wave Wireless Telegraphy
Fleming, J. A. (John Ambrose), Sir
Electric waves; Telegraph, Wireless
By regulating the pressure of the spring against the back contact, by
means of an adjusting screw, the rate at which the break vibrates can
be regulated, but as a rule it is not possible, with a hammer break,
to obtain more than about 800 interruptions per minute, or, say,
twelve a second. The hammer break is usually operated by the magnetism
of the iron core of the coil, but for some reasons it is better to
separate the break from the coil altogether, and to work it by an
independent electromagnet, which, however, may be excited by a current
from the same battery supplying the induction coil. For coils up to
the ten-inch size the hammer break can be used when very rapid
interruptions are not required. It is not in general practicable to
work coils larger than the ten-inch size with a platinum contact
hammer break, as such a butt contact becomes overheated and sticks if
more than ten amperes is passed through it. In the case of larger
coils, we have to employ some form of interrupter in which mercury or
a conducting liquid forms one of the contact surfaces.
The next class of interrupter is the vibrating or hand-worked mercury
break, in which a platinum or steel pin is made to vibrate in and out
of mercury. This movement may be effected by the attraction of an iron
armature by an electromagnet, or by the varying magnetism of the core
of the coil, or it may be effected more slowly by hand.
The mercury surface must be covered with water, alcohol, paraffin or
creosote oil to prevent oxidation and to extinguish the break spark.
The interruption of the primary current obtained by the mercury break
is more sudden than that obtained by the platinum contact in air, in
consequence of the more rapid extinction of the spark; hence the
sparks obtained from coils fitted with mercury interrupters are
generally from twenty to thirty per cent. longer than those obtained
from the same coil under the same conditions, with platinum contact
interrupters. The mercury breaks will not, however, work well unless
cleaned at regular intervals by emptying off the oil and rinsing well
with clean water, and hence they require rather more attention than
platinum interrupters. It is not generally possible to obtain so many
interruptions per minute with the simple vibrating mercury interrupter
as with the ordinary hammer interrupter. The mercury interrupter has,
however, the advantage that the contact time during which the circuit
is kept closed may be made longer than is the case with the hammer
break. Also, if fresh water is allowed to flow continuously over the
mercury surface, it can be kept clean, and the break will then operate
for considerable periods of time without attention. The mercury
interrupter may be worked by a separate electromagnet or by the
magnetism of the core of the induction coil.
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