Agilent Technologies 4294A Instruction Manual Page 162

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154 Chapter 6
Calibration
Fixture Compensation
Step 4. Select one of the compensation data definition keys, OPEN CONDUCT(G), OPEN CAP(C),
SHORT RESIST(R), SHORT INDUCT(L), LOAD RESIST(R), or LOAD INDUCT(L), to
confirm or set the compensation data definition.
The current value of the compensation data definition is displayed in the setting parameter
area of the LCD's upper-left side.
Step 5. Use the keys or rotary knob of the ENTRY block in one of the following ways to specify
the compensation data definition .
Enter the desired value with the numerical keys (
[0] through [9], [.], [-]) and then press
one of the unit keys (
[G/n], [M/m], [k/m], or [´1]).
Turn the rotary knob (
m
mm
m) until the desired value is set.
Press the step keys ([][¯]) to set the desired value.
NOTE When entering the capacitance value in the compensation data definition, the [fF] unit is
automatically added at the end of the value you enter with the unit keys. For example, if
you enter a value with the numeric keys and then press the
[x1] key, the [fF] unit is added to
the entered value.
Step 6. Repeat steps 4 and 5 to set all of the required compensation data definitions.
Compensation Data Definition Key Stroke
Equivalent parallel conductance value (G) of
OPEN standard used for fixture compensation
(preset state: 0 S)
OPEN CONDUCT(G)
Equivalent parallel capacitance value (C) of
OPEN standard used for fixture compensation
(preset state: 0 F)
OPEN CAP(C)
Equivalent series resistance value (R) of
SHORT standard used for fixture
compensation
(preset state: 0 W)
SHORT RESIST(R)
Equivalent series inductance value (L) of
SHORT standard used for fixture
compensation
(preset state: 0 H)
SHORT INDUCT(L)
Equivalent series resistance value (R) of
LOAD standard used for fixture compensation
(preset state: 50 W)
LOAD RESIST(R)
Equivalent series inductance value (L) of
LOAD standard used for fixture compensation
(preset state: 0 H)
LOAD INDUCT(L)
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