Hertzian Wave Wireless TelegraphyFleming, J. A. (John Ambrose), Sir
Science
Hertzian Wave Wireless Telegraphy
Fleming, J. A. (John Ambrose), Sir
Electric waves; Telegraph, Wireless
Passing on next to the consideration of oscillation transformers of
various kinds--these are appliances of the nature of induction coils
for transforming the current or electromotive force of electrical
oscillations in a required ratio. These coils are, however, destitute
of any iron core, and they generally consist of coils of wire wound on
a fibre, wooden or ebonite frame, and must be immersed in a vat of oil
to preserve the necessary insulation. No dry insulation of the nature
of indiarubber or gutta-percha will withstand the high pressures that
are brought to bear upon the circuits of an oscillation transformer.
In constructing these transformers we have to set aside all previous
notions gathered from the design of low-frequency iron-core
transformers. The chief difficulty we have to contend against in the
construction of an effective oscillation transformer is the inductance
of the primary circuit and the magnetic leakage that takes place. In
other words, the failure of the whole of the flux generated by the
primary circuit to pass through or be linked with the secondary
circuit. Mr. Marconi has employed an excellent form of oscillation
transformer, in the design of which he was guided by a large amount of
experience. In this transformer the two circuits are wound round a
square wooden frame. The primary circuit consists of a number of
strands of thick insulated cable laid on in parallel, so that it
consists of only one turn of a stranded conductor. The secondary
circuit consists of a number of turns, say, ten to twenty, of thinner
insulated wire laid over the primary circuit and close to it, so that
the transformer has the transformation ratio of one to ten or one to
twenty. In the arrangements devised and patented by Mr. Marconi, these
two circuits, with their respective capacities in series with them,
are tuned to one another, so that the time-period of each circuit is
exactly the same, and without this tuning the device becomes
ineffective as a transformer.[21] There is no advantage in putting a
number of turns on the primary circuit, because such multiplication
simply increases the inductance, and, therefore, diminishes the
primary current in the same ratio which it multiplies the turns, and
hence the magnetic field due to the primary circuit remains the same.
Where it is desired to put a number of turns upon a coil, and yet at
the same time keep the inductance down, the writer has adopted the
device of winding a silk or hemp rope well paraffined between the
turns of the circuit, so as to keep them further apart from one
another, and as the inductance depends on the turns per centimetre,
this has the effect of reducing the inductance.
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