P6021 Tektronix, P6021 Datasheet - Page 23

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P6021

Manufacturer Part Number
P6021
Description
Test Probes 60MHZ, 250A 5 FT, w/term
Manufacturer
Tektronix
Datasheet

Specifications of P6021

Color
Black
Equipment Type
Test Probe Set
Accessory Type
AC Current Probe
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
AC current measurements
Circuit Description
P6021 Instruction Manual
Current Probe
Termination
This section describes the circuits in the P6021 current probe and termination.
The P6021 current probe consists of a current transformer mounted in the nose of
the probe head case, an impedance-matching network, and an internal switch to
disconnect the transformer shield from ground.
The transformer contains a two-section U-shaped ferrite core. One section is
stationary; the other is mechanically movable to permit closing the core around
the conductor being measured. The conductor under test forms a one-turn
primary winding for the transformer; the windings around the stationary portion
of the core are the secondary windings. The circuitry between the transformer
and the coaxial cable corrects any differences in level between the signal induced
in the parallel windings of the secondary and matches the balanced probe
winding to the cable.
As indicated on the probe body, the turns ratio of the P6021 is 125:1. This refers
to the number of windings in the secondary of the probe transformer.
The probe transformer is shielded to eliminate interference from outside signals.
To eliminate the possibility of creating a short circuit from this shield to the
conductor being measured, the slide switch disconnects the ground from the
shield when you open the sliding portion of the probe to connect or remove it
from a conductor.
The P6021 termination consists of an impedance-matching network to terminate
the coaxial cable and a voltage divider that is switched in by a sensitivity control
to change the sensitivity by a factor of five. When the control is in the 2 mA/mV
position, a 10 mA current signal in the conductor under test induces a 5 mV
signal at the output of the termination. (This assumes that the termination is
connected to a 1 MΩ input oscilloscope.)
When the sensitivity control is in the 10 mA/mV position, a 10 mA current
signal is attenuated to induce a 1 mV signal at the output of the termination.
Service Information
11

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