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Specifications
precision time base operation and integrated precision timebase
Precision time base 86100D option PTB or 86107A
86107A Option 010 86107A Option 020 86107A Option 040 86100D-PTB
Trigger bandwidth 2.0 to 15.0 GHz 2.4 to 25.0 GHz 2.4 to 48.0 GHz 2.4 - 44 GHz
Typical jitter (RMS) using 86100D
mainframe
4
2.4 GHz: < 150 fs
10 GHz: < 100 fs
2.4 GHz: < 150 fs
10, 20 GHz: < 100 fs
2.4 GHz: < 150 fs
10, 20, 40 GHz: <
100 fs
2.4 - 4 GHz < 200 fs, 4
GHz - 9 GHz < 120 fs,
9 GHz - 44 GHz < 90 fs
Typical jitter (RMS) using 86100D
mainframe
5
2.4 GHz: < 280 fs
10 GHz: < 200 fs
2.4 GHz: < 280 fs
10, 20 GHz: < 200 fs
2.4 GHz: < 280 fs
10, 20, 40 GHz: <
200 fs
2.4 - 5 GHz < 400 fs,
5 GHz - 10 GHz < 300
fs, 10 GHz - 44 GHz <
200 fs
Time base linearity error < 200 fs
Input signal type Synchronous clock
1
Input signal level 0.5 to 1.0 Vpp
0.2 to 1.5 Vpp (typical functional performance)
DC offset range ±200 mV
2
Required trigger signal-to-noise
ratio
≥ 200: 1
Trigger impedance (nominal) 50 Ω
Connector type
3
3.5 mm (male) 3.5 mm (male)
2.4 mm (male)
2.92 mm
4
1. Filtering provided for Option 010 bands 2.4 to 4.0 GHz and 9.0 to 12.6 GHz, for Option 020 9.0 to 12.6 GHz and 18 to 25.0 GHz, for Option 40 9.0 to 12.6 GHz, 18.0 to 25.0 GHz, and 39.0 to 48.0
GHz. Within the filtered bands, a synchronous clock signal should be provided (clock, sinusoid, BERT trigger, etc.). Outside these bands, filtering is required to minimize harmonics and sub harmon-
ics and provide a sinusoid to the 86107 input (not required for 86100D-PTB).
2. For the 86107A with Option 020, the Agilent 11742A (DC Block) is recommended if the DC offset magnitude is greater than 200 mV.
3. Ships with female-female connector saver(s).
4. With 86107A module, or 86100D-PTB, and an 861xx, N1045 option LOJ, or N1055A module (electrical channel).
5. With 86107A module, or 86100D-PTB, and 54xxx, 8348x, and N1045A plug-in modules.
6. If an 86107A module is used in an 86100D frame with option PTB, the internal precision timebase is disabled.
The 86108 has an integrated precision timebase within the plug-in module. The 86108A/B can be triggered through clock recovery of the
Measurement performance can be further enhanced by adding precision time base capability to the 86100 mainframe. The precision time
base reduces the intrinsic jitter of the scope and is recommended when analyzing high-speed data signals. Precision timebase capability
is achieved using the 86107A precision timebase plug-in module or integrating the precision timebase system within the 86100D
mainframe (86100D option PTB). 86100D-PTB does not consume a mainframe plug-in slot.
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