Model 8340A
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Service
switch pull-up resistors. When a FET is on, the voltage at its
gate should be equal to VSWP. When the FET is off, the gate
voltage should be approximately -15 volts.
In sweep widths where the YO would be sweeping less than 5 MHz,
the 20-30 Loop is swept and the YO loop stays phase-locked. This
scheme gives better noise performance for narrow sweeps. However,
for the first range of sweep widths where the YO sweep width is
between 500 kHz and 5MHz, the PRETUNE voltage is also swept.
Since the SYTM also uses the PRETUNE voltage, this improves the
YO/SYTM tracking. In this case Q9 is turned on.
For sweeps narrower than 500 kHz, tracking is not a problem (the
SYTM bandwidth is about 25 MHz), and only the 20-30 Loop is
swept.
It is important to note that the sweep mode used, 20-30 Loop
sweep, or PRETUNE sweep, depends not on the actual instrument
sweep width but the YO sweep width. For instance, if the
instrument is set to sweep from 20 GHz to 24 GHz, the instrument
sweep width is 4 GHz but the YO sweep width is 1 GHz. This is
because the fourth harmonic of the YO is being used.
For YO sweep widths less than 500 kHz, in MANUAL or CW modes,
VSWP is turned off. This is done by turning on Qll which grounds
the input of the buffer Ul7. This keeps any noise from the Sweep
Generator from getting to the Pretune DAC and degrading the phase
noise performance.
sweep Buffer
o
Ul8 simply inverts VSWP. This output (BVSWP) is used on the A27
Level Control board ADC to measure VSWP when trouble-shooting the
sweep circuitry.
Sweep Control Logic
p
The sweep Control Logic takes HSP (High sweep) , LRSP (Low Reset
sweep), and LBX (Low Bandcross) and generates control signals to
drive the front panel sweep LED (LSPLD Low sweep LED), Reset
Amplifier 1 (Block
R),
the Current Shunt, and the Reset Control
Logic.
The sweep Control Logic timing diagram, Figure 8D-20, shows what
happens at the end of sweep and at bandcrossings. The arrows and
numbers indicate the sequence of events as well as the cause and
effect relationship of various transitions.
When Marker Ramp gets to +10 volts, indicating the end of a
sweep, LBX (Low Bandcross, TP6) goes LOW. This interrupts the
8-369NB
Scans by HB9HCA and HB9FSX
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