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IM DLM3054-01EN
Automatic Zero Adjustment of Current Probes (Probe Zero CAL)
Automatic zero adjustment of current probes can be executed when all the following conditions are met.
• A current probe compatible with the instrument’s probe interface is connected to the signal input terminal.
• The input coupling is set to DC.
If the current probe’s residual offset is large, an error may occur when automatic zero adjustment is executed.
If this happens, adjust the current probe’s residual offset to zero.
Demagnetization and Automatic Zero Adjustment of Current Probes (DEMAG &
ZeroCAL)
Demagnetization and automatic zero adjustment of current probes can be executed when all the following
conditions are met.
• A current probe with a YOKOGAWA probe interface (e.g., PBC100, PBC050) is connected to the signal input
terminal.
• The input coupling is set to DC.
When you demagnetize and perform automatic zero adjustment on a current probe, do not clamp the
conductor. If you demagnetize a current probe while the conductor is clamped, the current that flows through
the conductor as a result of demagnetization may damage components of the DUT circuitry.
Deskew (Deskew)
You can adjust for the time offsets (skew) between the CH1 to CH4 signals, which are caused by the use of
different types of probes, and monitor the signals. You can adjust each channels (CH1 to CH4) separately.
Selectable range: −1000.0 ns to 1000.0 ns (0.01 ns resolution)
Inverted Waveform Display (Invert)
Waveforms can be inverted across the waveform vertical position. Only the display is inverted. Cursor
measurements, automated measurement of waveform parameters, and computation functions are performed on
the non-inverted waveform. The trigger function is also executed on the non-inverted waveform.
Linear Scaling (LinearScale)
The following computation is performed based on the specified scaling coefficient A and offset B, and cursor
measurement values and automated measurement values of waveform parameters are displayed using the
scaled values. You can assign units to scaled values.
By using this function, you can multiply the voltage divider ratio of the external voltage divider to the measured
values of this instrument and convert measured voltage into current.
Y(Unit)=AX + B
X: Value before scaling
Y: Value after scaling
Turning Linear Scaling On and Off (Mode)
Set whether to perform linear scaling.
• ON: Linear scaling is performed.
• OFF: Linear scaling is not performed.
1 Vertical Axis (Analog Signal)