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REF1925AIDDCR Datasheet(PDF) 19 Page - Texas Instruments

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Part # REF1925AIDDCR
Description  Voltage References
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
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REF1925AIDDCR Datasheet(HTML) 19 Page - Texas Instruments

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background image
-
+
IN-
IN+
REF
GND
V+
OUT
:
m
10
A
5
.
2
mV
25
I
V
R
(max)
LOAD
(max)
SHUNT
(max)
SHUNT
(max)
LOAD
(max)
SHUNT
(max)
SHUNT
I
V
R

REF1925, REF1930, REF1933, REF1941
www.ti.com
SBOS697 – SEPTEMBER 2014
Typical Application (continued)
10.2.2.1 Shunt Resistor
As illustrated in Figure 46 , the value of VSHUNT is the ground potential for the system load. If the value of VSHUNT
is too large, issues may arise when interfacing with systems whose ground potential is actually 0 V. Also, a value
of VSHUNT that is too negative may violate the input common-mode voltage of the differential amplifier in addition
to potential interfacing issues. Therefore, limiting the voltage across the shunt resistor is important. Equation 6
can be used to calculate the maximum value of RSHUNT.
(6)
Given that the maximum shunt voltage is ±25 mV and the load current range is ±2.5 A, the maximum shunt
resistance is calculated as shown in Equation 7.
(7)
To minimize errors over temperature, select a low-drift shunt resistor. To minimize offset error, select a shunt
resistor with the lowest tolerance. For this design, the Y14870R01000B9W resistor is used.
10.2.2.2 Differential Amplifier
The differential amplifier used for this design must have the following features:
1. Single supply (3 V),
2. Reference voltage input,
3. Low initial input offset voltage (VOS),
4. Low-drift,
5. Fixed gain, and
6. Low-side sensing (input common-mode range below ground).
For this design, a current-shunt monitor (INA213) is used. The INA21x family topology is shown in Figure 47. The
INA213B specifications can be found in the INA213 product data sheet.
Figure 47. INA21x Current-Shunt Monitor Topology
The INA213B is an excellent choice for this application because all the required features are included. In general,
instrumentation amplifiers (INAs) do not have the input common-mode swing to ground that is essential for this
application. In addition, INAs require external resistors to set their gain, which is not desirable for low-drift
applications. Difference amplifiers typically have larger input bias currents, which reduce solution accuracy at
small load currents. Difference amplifiers typically have a gain of 1 V/V. When the gain is adjustable, these
amplifiers use external resistors that are not conducive to low-drift applications.
Copyright © 2014, Texas Instruments Incorporated
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Product Folder Links: REF1925 REF1930 REF1933 REF1941


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