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INA293 Scheda tecnica(PDF) 17 Page - Texas Instruments

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Il numero della parte INA293
Spiegazioni elettronici  INA293-Q1, AEC-Q100, ??-V to 110-V, 1-MHz, Ultra-Precise Current Sense Amplifier
PDF  29 Pages
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Produttore elettronici  TI [Texas Instruments]
Homepage  http://www.ti.com
Logo TI - Texas Instruments

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• GAIN is the gain of the current-sense amplifier.
• VSN is the negative output swing of the device.
Table 8-1 shows an example of the different results obtained from using five different gain versions of the
INA293-Q1. From the table data, the highest gain device allows a smaller current-shunt resistor and decreased
power dissipation in the element.
Table 8-1. RSENSE Selection and Power Dissipation (1)
PARAMETER
EQUATION
RESULTS AT VS = 5 V
A1, B1
DEVICES
A2, B2
DEVICES
A3, B3
DEVICES
A4, B4
DEVICES
A5, B5
DEVICES
G
Gain
20 V/V
50 V/V
100 V/V
200 V/V
500 V/V
VDIFF
Ideal differential input voltage
VDIFF = VOUT / G
250 mV
100 mV
50 mV
25 mV
10 mV
RSENSE
Current sense resistor value
RSENSE = VDIFF / IMAX
25 mΩ
10 mΩ
5 mΩ
2.5 mΩ
1 mΩ
PSENSE
Current-sense resistor power dissipation
RSENSE × IMAX2
2.5 W
1 W
0.5W
0.25 W
0.1 W
(1)
Design example with 10-A full-scale current with maximum output voltage set to 5 V.
8.1.2 Input Filtering
Note
Input filters are not required for accurate measurements using the INA293-Q1, and use of filters in this
location is not recommended. If filter components are used on the input of the amplifier, follow the
guidelines in this section to minimize the effects on performance.
Based strictly on user design requirements, external filtering of the current signal may be desired. The initial
location that can be considered for the filter is at the output of the current sense amplifier. Although placing the
filter at the output satisfies the filtering requirements, this location changes the low output impedance measured
by any circuitry connected to the output voltage pin. The other location for filter placement is at the current sense
amplifier input pins. This location satisfies the filtering requirement also, however the components must be
carefully selected to minimally impact device performance. Figure 8-1 shows a filter placed at the input pins.
IN+
IN±
OUT
V
CM
-
+
Buffer
Current
Feedback
V
S
GND
RL
R1
R1
Bias
Load
R
SENSE
I
SENSE
R
IN
R
IN
C
IN
Figure 8-1. Filter at Input Pins
External series resistance provides a source of additional measurement error, so keep the value of these series
resistors to 10 Ω or less to reduce loss of accuracy. The internal bias network shown in Figure 8-1 creates a
mismatch in input bias currents (see Figure 6-15, Figure 6-16 and Figure 6-17) when a differential voltage is
applied between the input pins. If additional external series filter resistors are added to the circuit, a mismatch is
created in the voltage drop across the filter resistors. This voltage is a differential error voltage in the shunt
resistor voltage. In addition to the absolute resistor value, mismatch resulting from resistor tolerance can
significantly impact the error because this value is calculated based on the actual measured resistance.
www.ti.com
INA293-Q1
SBOS870A – MAY 2019 – REVISED SEPTEMBER 2020
Copyright © 2020 Texas Instruments Incorporated
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