Section 8. Operation
438
where
percent-of-
reading = 1050 mV • ±0.04%
= ±0.42 mV
and
offset = 10 µV.
Therefore,
accuracy = ±0.42 mV + 10 µV
= ±0.52 mV
Electronic Noise
Electronic "noise" can cause significant error in a voltage measurement,
especially when measuring voltages less than 200 mV. So long as input
limitations are observed, the PGIA ignores voltages, including noise, that are
common to each side of a differential-input pair. This is the common-mode
voltage. Ignoring (rejecting or canceling) the common-mode voltage is an
essential feature of the differential input configuration that improves voltage
measurements.
Figure
PGIA with Input Signal Decomposition
(p. 418),
illustrates the
common-mode component (V
cm
) and the differential-mode component (V
dm
) of a
voltage signal. V
cm
is the average of the voltages on the V+ and V– inputs. So,
V
cm
= (V+ + V
–)/2 or the voltage remaining on the inputs when V
dm
= 0. The
total voltage on the V+ and V–
inputs is given as V+ = V
cm
+ V
dm
/2, and V
L
=
V
cm
– V
dm
/2, respectively.
8.1.3 Pulse Measurements — Details
Related Topics:
•
Pulse Measurements — Specifications
(p. 110)
•
Pulse Measurements — Overview
(p. 78)
•
Pulse Measurements — Details
(p. 438)
Read More
Review the sections in
Specifications
(p. 101).
Review pulse
measurement programming in
CRBasic Editor
Help
for the
PulseCount()
and
TimerInput()
instructions.
Summary of Contents for CR6 Series
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Page 538: ...Section 8 Operation 538 8 11 2 3 Final Storage Data FIGURE 124 CR1000KD Final Storage Data ...
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