Model· 8 340A - Service
upsetting the feedback loop.
several signals are summed at the feedback point. The delay
compensation voltage, VCOMP, is applied through Q4 in Main
summing Amplifier, Block
F,
and a 411 kHz low pass filter formed
by
ca
and R55. The function of this filter is to round the
leading edge of VCOMP in order to properly match the delay
characteristics at the start of the sweep. The YO phase-locked
loop error voltage (YO TUNE) is summed through the network of
R51, R52, R32 and Cl4. This network is a 100 Hz low pass filter
to pass the desired low frequency component of the error voltage.
The YO coil OFFSET current (R47 in YO Error/Offset Summing Amp,
Block
E)
is summed through the same path as the YO TUNE voltage.
The YO coil OFFSET current is necessary because the YO coil
current verses YO frequency characteristic does not go through
the origin. That is to say, if you extrapolate the characteristic
down to zero current, you do not get zero frequency. This
off setting could have been handled by the processor by varying
the number sent to the Pretune DAC except for the fact that the
SYTM also uses that voltage and has its own independent offset.
A55 YO DRIVER ASSEMBLY CIRCUIT DESCRIPTION
Discrete Op-Amp
A
The Discrete OP-Amp is arranged in a standard configuration. Q3
provides the differential input with TP4 the - input and TP5 the
+
input. The Q2 circuitry forms a current source for biasing the
input stage. Cl is for noise filtering; CR2 and CR3 provide
temperature stablization. CRl limits the differential input
voltage to the OP-Amp.
Ql, QS, R8 and R9 form a current mirror to provide maximum gain
from the differential input to the single ended output. Q6 is the
output stage of the Discrete OP-Amp. RlO and C2 are for loop
compensation.
The gain of the YO Driver is set by the adjustable voltage
divider formed by Rl through R4. This adjustment is made at the
high end of the YO frequency range (i.e., 6.99 GHz). The GAIN
adjustment is interactive with the OFFSET adjustment, R47 in YO
Error/Offset Summing Amplifier (Block
E),
which is made at the
low end of the frequency range (2.3 GHz). See the adjustment
section.
Rl3, R20, and C3 form a noise filter used in the CW and MANUAL
modes. In YO sweeps, however, to avoid unwanted delay in the
response of YO Driver, the filter can be switched out by the
Filter Switch (Block
D).
This· filter also severely limits the
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