Letters of a Radio-Engineer to His Son — John Stuart Mill — John Shaqi
Letters of a Radio-Engineer to His Son
John Stuart Mill · en
In my last letter I told how electrons are boiled out of a heated
filament. The hotter the filament the more electrons are emitted each
second. If the temperature is kept steady, or constant as we say, then
there are emitted each second just the same number of electrons. When
the filament is enclosed in a vessel or glass bulb these electrons which
get free from it cannot go very far away. Some of them, therefore, have
to come back to the filament and the number which returns each second is
just equal to the number which is leaving. You realize that this is what
is happening inside an ordinary electric light bulb when its filament is
being heated.
[Illustration: Fig 4]
An ordinary electric light bulb, however, is not an audion although it
is like one in the emission of electrons from its filament. That reminds
me that last night as I was waiting for a train I picked up one of the
Radio Supplements which so many newspapers are now running. There was a
column of enquiries. One letter told how its writer had tried to use an
ordinary electric light bulb to receive radio signals.
He had plenty of electrons in it but no way to control them and make
their motions useful. In an audion besides the filament there are two
other things. One is a little sheet or plate of metal with a connecting
wire leading out through the glass walls and the other is a little wire
screen shaped like a gridiron and so called a "grid." It also has a
connecting wire leading through the glass. Fig. 4 shows an audion. It
will be most convenient, however, to represent an audion as in Fig. 5.
There you see the filament, _F_, with its two terminals brought out
from the tube, the plate, _P_, and between these the grid,
_G_.
[Illustration: Fig 5]
These three parts of the tube are sometimes called "elements." Usually,
however, they are called "electrodes" and that is why the audion is
spoken of as the "three-electrode vacuum tube." An electrode is what we
call any piece of metal or wire which is so placed as to let us get at
electrons (or ions) to control their motions. Let us see how it does so.
To start with, we shall forget the grid and think of a tube with only a
filament and a plate in it--a two-electrode tube. We shall represent it
as in Fig. 6 and show the battery which heats the filament by some lines
as at _A_. In this way of representing a battery each cell is
represented by a short heavy line and a longer lighter line. The heavy
line stands for the negative plate and the longer line for the positive
plate. We shall call the battery which heats the filament the "filament
battery" or sometimes the "A-battery." As you see, it is formed by
several battery cells connected in series.
[Illustration: Fig 6]