Hertzian Wave Wireless TelegraphyFleming, J. A. (John Ambrose), Sir
Science
Hertzian Wave Wireless Telegraphy
Fleming, J. A. (John Ambrose), Sir
Electric waves; Telegraph, Wireless
Turning in the next place to the primary key, or signalling
interrupter, it is necessary to be able to control the torrent of
sparks between the secondary terminals of the coil, and to cut them up
into long and short periods in accordance with the letters of the
Morse alphabet. This is done by means of the primary key. The primary
key generally consists of an ordinary massive single contact key with
heavy platinum contacts. As the current to be interrupted amounts to
about ten amperes and is flowing in a highly inductive circuit, the
spark at break is considerable. If the attempt is made to extinguish
this spark by making the contacts move rapidly away from one another
through a long distance, in other words, by using a key with a wide
movement, then the speed at which the signals can be set is greatly
diminished. The speed of sending greatly depends upon the time taken
to move the key up and down between sending two dots, and hence a
short range key sends quicker than a long range key. If it is desired
to use a short range key, then some method must be employed to
extinguish the spark at the contacts. This is done in one of three
ways: Either by using a high resistance coil to short-circuit these
contacts, or by a condenser, or by a magnetic blow-out, as in the case
of an electric tramcar circuit controller. Of these, the magnetic
blow-out is probably the best.
Mr. Marconi has designed a signalling key which performs the function
not only of interrupting the primary circuit, but at the same time
breaks connection between the receiving appliance and the aerial.
The author has designed for signalling purposes a multiple contact key
which interrupts the circuit simultaneously in ten or twelve different
places. The particular point about this break is the means which are
taken to make the twelve interruptions absolutely simultaneous. If
these interruptions are not simultaneous, the spark always takes place
at the contact which is broken first, but if the circuit is
interrupted in a dozen places quite simultaneously, then the spark is
cut up into a dozen different portions, and the spark at each contact
is very much diminished. By this break, voltages up to two thousand
volts may be quite easily dealt with.
Various forms of break have been devised in which the circuit is
broken under oil or insulating fluids, but, generally speaking, these
devices are not very portable, and a dry contact between platinum
surfaces with appropriate means for cutting up the spark and blowing
it out so that the mechanical movement of the switch may be small is
the best thing to use.
Public-domain text, read in full here on John Shaqi.
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