Agilent Technologies N1022A Instrukcja Użytkownika Strona 21

  • Pobierz
  • Dodaj do moich podręczników
  • Drukuj
  • Strona
    / 42
  • Spis treści
  • BOOKMARKI
  • Oceniono. / 5. Na podstawie oceny klientów
Przeglądanie stron 20
21
High-Frequency Passive Voltage Probe
Agilent 54006A 6 GHz Resistor Divider Probe
The Agilent 54006A allows you to
probe signals up to 6 GHz using
replaceable tips that provide
either 10:1 division ratio with
500 input resistance, or a
20:1 division ratio with 1 k
input resistance. This 6 GHz
probe gives access to circuit
nodes that are not 50 or do not
have 50 connectors allowing
Figure 3.14. Agilent 54006A for probing
high frequency, up to 100 impedance
signals.
you to see signals at specific
points, such as the input to a
gate. Agilent 54006A’s input
capacitive loading is approxi-
mately 0.25 pF, allowing you to
get very accurate timing measure-
ments for a wide bandwidths
of signals.
The 54006A probe is a good,
low-cost alternative for high
frequency probing where the
higher resistive loading is not an
issue and the other features of
the InfiniiMax probing system
are not needed (such as differen-
tial inputs and multiple connec-
tivity options).
Specifications
Operating Characteristics
Bandwidth (–3 dB) 6 GHz
Attenuation ratio 10:1, 20:1
Input resistance 500 , 1 k
Input capacitance 0.25 pF
Max dc volts 20 V
Length in meters (feet) 0.9 m (3 ft)
Ordering Information
Part # Description Quantity
54006A* 6 GHz Resistor Divider Probe 1
Includes:
One 10:1 500 probe body, six 450 resistors,
One 20:1, 1 k probe body, six 950 resistors,
One 36 in, 50 coaxial cable, SMA (m-m)
One blocking cap, 10 GHz-26 GHz APC – 3,5 (m-f)
* Requires the 54855-67604 SMA to precision-BNC adapter to connect to BNC scope input.
Useful in probing high-frequency
signals with low source impedance
Supplied with 10:1, 500 and
20:1, 1 k resistor dividers
Low capacitive loading to
extremely high frequencies
Przeglądanie stron 20
1 2 ... 16 17 18 19 20 21 22 23 24 25 26 ... 41 42

Komentarze do niniejszej Instrukcji

Brak uwag