TM 11-6625-3071-14
all full scale inputs (e.g. 10V input to the A/D for 30mV,
300mV, 3V, etc. inputs to the 3478A).
3-21.
When the DC Volts Function is selected, the
right side of the display shows "MVDC" or "VDC",
dependent on the range selected. The reading can be
displayed either as a 5 1/2, 4 1/2, or 3 1/2 digit reading,
dependent on the selected Number Of Digits Displayed
(see paragraph 3-54). Refer to Table 1-1 or Table 4-1 for
the DC Volts Function’s accuracy specifications.
3-22.
AC Volts Measurements
3-23.
The 3478A uses a True RMS AC to DC
Converter to measure ac voltages from 1uV to 300V in
four ranges: 300mV, 3V, 30V, and 300V. The response
of the converter is from 20Hz to 100KHz on all ranges (to
300KHz on the 30V Range only). All ranges are
protected from input voltages up to 450V peak. Select
the AC Volts Function for ac volts measurements by
pressing the - v button.
3-24.
The AC to DC Converter changes the ac input
voltage to dc volts, which is then measured by the
3478A’s A/D Converter. All ranging is done in the AC to
DC Converter, applying the same voltage value to the
A/D Converter for all full scale inputs.
3-25.
When the AC Volts Function is selected, the
right side of the display shows "MVAC" or "VAC",
dependent on the range selected. The reading can be
displayed either as a
51/2,
41/2, or 31/2 digit reading,
dependent on the selected Number of Digits Displayed
(see paragraph 3-54.) A .6 second delay is also applied
in the ACV Function before a reading is taken (also,
during a range change). Refer to Table 1-1 or Table 4-1
for the AC Volts Function’s accuracy specifications.
3-26.
Resistance Measurements
3-27.
The 3478A is able to make resistance
measurements from .0001 ohms to 30M ohms in seven
ranges. The ranges extend from the 30 ohm to the 30M
ohm range. All ranges are protected from input voltages
up to 350V peak. Resistance measurements can be
made using either the 2-Wire or 4-Wire ohms
configuration, which are selected by the 2 WIRE
Ω
and 4
WIRE
Ω
buttons, respectively. Refer to Figure 3-4 for the
correct ohms connections.
3-28.
Resistance measurements are made by applying
a known current (generated by the 3478A) to the
unknown resistance. The resultant voltage drop is then
measured by the 3478A’s dc circuitry (Input Circuitry and
A/D Converter). In the 2-Wire Ohms Function, the
voltage drop is measured across the HI and LO INPUT
Terminals. In the 4-Wire Ohms Function, the voltage is
measured across the HI and LO
Ω
SENSE Terminals.
The Ohms Current Source generates the known current
Figure 3-4. Ohms Connections
which is applied to the unknown resistance (in both ohms
functions) from the HI INPUT Terminal. The current
values are as follows:
Range
Current
30 ohm
1mA
300 ohm
1mA
3K ohm
1mA
30K ohm
100uA
300K ohm
10uA
3M ohm
1uA
30M ohm
1uA
3-29.
When an Ohms Function is selected, the right
side of the display shows either "OHM", "KOHM", or
"MOHM", dependent on the range selected. In addition,
the "2
Ω
" annunciator is on for the 2-Wire Ohmns
3-4
Содержание 3478A
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Страница 98: ...TM 11 6625 3071 14 3478A Figure 7 F 2 Simplified Schematic Of The Input Switching Circuitry 7 F 4 ...
Страница 111: ...TM 11 6625 3071 14 Figure 7 F 17 3478A Simplified Reference Circuitry 7 F 16 ...
Страница 122: ...TM 11 6625 3071 14 Table A 2 A 2 HP IB Worksheet A 4 ...
Страница 137: ...TM 11 6625 3071 14 Figure 7 D 2 Flow chart A 7 D 3 ...
Страница 139: ...TM 11 6625 3071 14 Figure 7 G 2 3478A Block Diagram 7 G 3 ...
Страница 140: ...TM 11 6625 3071 14 Component Locator for Input Circuitry and Ohms Current Source 7 G 4 ...
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Страница 143: ...TM 11 6625 3071 14 2 Figure 7 G 4 AC to DC Converter 7 G 7 ...
Страница 144: ...TM 11 6625 3071 14 Component Locator for A D Converter and Control Logic 7 G 8 ...
Страница 145: ...TM 11 6625 3071 14 3 Figure 7 G 5 A D Converter and Control Logic 7 G 9 ...
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Страница 149: ...PIN NO 057444 ...