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Fluke 5502A
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5502A
Operators Manual
6-26
OUT 1 KOHM (ohms; 1 kΩ)
OUT 1 UF (capacitance; 1 μF)
OUT 100 CEL (temperature; 100 °C)
OUT 32 FAR (temperature; 32 °F)
OUT 60 HZ (frequency update; 60 Hz)
OUT 10 V, 1 A (power; 10 watts @ same frequency)
OUT 1 V, 1 A, 60 HZ (power ac; 1 watts @ 60 Hz)
OUT 1 V, 2 V (dual volts; 1 V, 2 V @ same freq.)
OUT 10 MV, 20 MV, 60 HZ (dual volts; .01 V, .02 V @ 60 Hz)
Each example shows a value and unit, e.g., –15.2 V. If a value is recorded without a unit,
the value of the output that exists is changed, when logically allowed.
OUT?
Sequential Overlapped
Coupled
IEEE-488 RS-232
x x xx
x
(Output query) Shows the output amplitudes and frequency of the Calibrator. Multipliers
(e.g., K or M) are not used in the response.
Parameters: V (optional for ac voltage and TC modes)
DBM (optional for ac voltage modes)
CEL (optional for RTD and TC modes, Celsius)
FAR (optional for RTD and TC modes, Fahrenheit)
OHM (optional for RTD modes, ohms)
Response: <primary amplitude value>,<primary units>,
<secondary amplitude value>,<secondary units>,
<fundamental frequency value>
Examples: OUT? shows -1.520000E+01,V,0E+00,0,0.00E+00
OUT? shows 1.88300E-01,A,0E+00,0,4.420E+02
OUT? shows 1.23000E+00,V,2.34000E+00,V,6.000E+01
OUT? shows 1.92400E+06,OHM,0E+00,0,0.00E+00
OUT? shows 1.52000E+01,V,1.88300E-01,A,4.420E+02
OUT? DBM shows 2.586E+01,DBM,0E+00,A,4.420E+02
OUT? shows 1.0430E+02,CEL,0E+00,0,0.00E+00
OUT? FAR shows 2.19740000E+02,FAR,0E+00,0,0.00E+00
OUT? V shows 4.2740E-03,V,0E+00,0,0.00E+00
OUT? OHM shows 1.40135E+02,OHM,0E+00,0,0.00E+00
The respective values for the above examples are:
–15.2 V
188.3 mA, 442 Hz
1.23 V, 2.34 V, 60 Hz
1.924 MΩ
15.2 V, 188.3 mA, 442 Hz
25.86 dBm, 442 Hz (25.86 dBm = 15.2 V at 600 Ω)
104.3 °C
219.74 °F (same value as 104.3 °C, in Fahrenheit)
4.274 mV (same value as 104.3 °C for a K-type thermocouple, in volts)
140.135 Ω (same value as 104.3 °C for a pt385 RTD, in ohms)
The primary and secondary units are: V, DBM, A, OHM, F, CEL, FAR. The units for the
<frequency value> is always assumed to be Hz.

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