Getting Started
Product Description
Table 2: Sampling module features
Feature
Number of independent channels 1
Rise time
Bandwidth
3
Displayed noise
Select channel buttons for quick
trace identification
Maximum non-destructive input
voltage
Vertical sensitivity, full scale
2
Signal connectors
Number of TDR channels
1
The 80E01 module risetime is estimated using the formula risetime = 0.35/bandwidth. The 80E06 module risetime is
estimated using the formula risetime = 0.35/(typical bandwidth).
2
3.5 mm female to 2.4 mm male adapter is provided.
3
Measured at 1 ps/div.
4
Because the 2.4 mm connector of this adapter will mechanically interface with the 1.85 mm connector of the 80E06, it
serves as a 1.85 mm-to-2.92 mm adapter for the 80E06 module.
2
The sampling modules provide the features shown in Table 2.
80E01
80E02
2
1
7 ps, typical
28 ps
50 GHz
12.5 GHz
2.3 mV
800 V
RMS
Yes
Yes
2 V (DC + peak
3 V (DC + peak
AC)
AC)
10 mV to 1 V
10 mV to 1 V
2.4 mm male to
3.5 mm female
2.92 mm (K)
female
N.A.
N.A.
As shown in Figure 1, the sampling modules have two independent channels
(80E01 and 80E06 each have one channel), each with its own acquisition
circuitry.
The strobe drive signal from the instrument controls the timing of the strobe
assertion to each acquisition system and guarantees sampling coincidence
between the channels in a sampling module.
CAUTION. To prevent electrostatic damage to the main instrument and sampling
modules, follow the precautions described in this manual and the manuals
accompanying your instrument. (See Electrostatic Discharge on page 6.)
80E03
2
17.5 ps
20 GHz
1.2 mV
RMS
RMS
Yes
3 V (DC + peak
AC)
10 mV to 1 V
3.5 mm female
N.A.
80E00 Electrical Sampling Modules User Manual
80E04
80E06
2
1
17.5 ps
5.0 ps, typical
20 GHz
70 GHz, typical
1.2 mV
2.8 mV
RMS
Yes
Yes
3 V (DC + peak
2 V (DC + peak
AC)
AC)
10 mV to 1 V
10 mV to 1 V
3.5 mm female
2.4 mm male to
2.92 mm (K)
4
female
2
N.A.
1
RMS
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