"clifford wright" <
c.c.w...@paradise.net.nz> wrote in
message news:Xns9FE538B2...@216.196.97.131...
I can't find an original post for this.
Crystal pickups became popular about the mid-1930s. The
patents were held by Brush Development Company in the US and
licensed to a number of other companies. Crystal pickups
have the virtue of very high output and very high impedance
so they work directly into the grid of fairly low gain
tubes. The amount of energy they absorb from the record
depends on the design but, in general, the higher the output
the more energy they must absorb and the more the record
will wear. Most crystal pickups were designed for high
output for use in cheap phonographs but a few were designed
for light tracking pressure and wide frequency range.
The balanced armature design can also be adapted to
either fairly high output or high fidelity applications. The
early pickups, dating from the introduction of electrical
recording in the mid-1920s were generally very heavy and had
tracking pressures up to perhaps five ounces. The magnet
materials available at the time did not allow smaller units.
Later developments led to all sort of related devices with
quite low tracking pressures and small sizes. Up to about
the end of WW-2 most high quality pickups for broadcast use
were either moving coil (Western Electric for example) or
ribbon types (RCA for example). But some manufacturers like
Audax made what amounted to moving armature pickups with
fairly light tracking pressure. These older broadcast
pickups typically tracked at around 1oz to 1.5oz, this was
considered light! After the introduction of the Lp record
in 1948 a number of higher quality pickups began to be
available. Some, like the Fairchild pickup were refined
moving coil types but the variable reluctance type, which is
related to the balanced armature type, proved more
economical and some very high performance pickups, like the
General Electric PR series became very popular. The first
ones tracked at around 15 grams (half an ounce) but this was
soon lowered to around 5 grams. In general the forces
involved from 78 coarse groove records required heavier
tracking pressure but pickups like the GE would still
perform well at around 15 grams.
The nature of the stylus support is very important.
Ideally a pickup for lateral records should have very high
compliance for both vertical and lateral motion but no
sensitivity to the vertical component, which in a lateral
monaural recording contains only distortion products. For
vertical (hill and dale) records the motion is almost all
vertical so lateral compliance is of less importance than in
a latera pickup but its still desirable. BTW, vertical
records have an inherent distortion due to the lack of
automatic cancellation of the even harmonic distortion
caused by the difference in tracking path of the sharp-edged
recording styli and the spherical playback styli. This is
aleviated to some extent in both vertical and stereo
recordings (which are a combination of vertical and lateral)
but the use of eliptical styli which more closely resemble
the cutter. A trick sometimes used in vertical recording was
to re-record with the polarity reversed (upward motion in
the original became downward in the copy) in order to try to
cancel some of the distortion. I am not sure how well this
worked or how widely it was ever used. Vertical recording
had a resurgence for transcription use in the mid-1930s
because of the Western Elecric Type 1-A recorder, a vertical
recorder with feedback, the first commercial recorder to
employ it. Despite the advantages of lateral recording this
device was so much better than anything else avaible that is
established vertical recording for a time as a standard.
--
--
Richard Knoppow
Los Angeles
WB6KBL
dick...@ix.netcom.com