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INA293 データシート(PDF) 13 Page - Texas Instruments

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部品番号 INA293
部品情報  INA293-Q1, AEC-Q100, ??-V to 110-V, 1-MHz, Ultra-Precise Current Sense Amplifier
PDF  27 Pages
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メーカー  TI [Texas Instruments]
ホームページ  http://www.ti.com
Logo TI - Texas Instruments

INA293 データシート(HTML) 13 Page - Texas Instruments

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7 Detailed Description
7.1 Overview
The INA293-Q1 is a high- or low-side current-sense amplifier that offers a wide common-mode range, precision
zero-drift topology, excellent common-mode rejection ratio (CMRR), high bandwidth and fast slew rate. Different
gain versions are available to optimize the output dynamic range based on the application. The INA293-Q1 is
designed using a transconductance architecture with a current-feedback amplifier that enables low bias currents
of 20 μA with a common-mode voltage of 110 V.
7.2 Functional Block Diagram
IN+
IN±
OUT
-
+
Buffer
Current
Feedback
VS
GND
RL
R1
R1
Bias
Load
RSENSE
ISENSE
Load
Supply
7.3 Feature Description
7.3.1 Amplifier Input Common-Mode Signal
The INA293-Q1 supports large input common-mode voltages from –4 V to +110 V. Because of the internal
topology, the common-mode range is not restricted by the power-supply voltage (VS). This allows for the
INA293-Q1 to be used for both low and high side current-sensing applications.
7.3.1.1 Input-Signal Bandwidth
The INA293-Q1 –3-dB bandwidth is gain dependent, with several gain options of 20 V/V, 50 V/V, 100 V/V, 200
V/V, and 500 V/V. The unique multistage design enables the amplifier to achieve high bandwidth at all gains.
This high bandwidth provides the throughput and fast response that is required for the rapid detection and
processing of overcurrent events.
The bandwidth of the device also depends on the applied VSENSE voltage. Figure 7-1 shows the bandwidth
performance profile of the device over frequency as output voltage increases for each gain variation. As shown
in Figure 7-1, the device exhibits the highest bandwidth with higher VSENSE voltages, and the bandwidth is higher
with lower device gain options. Individual requirements determine the acceptable limits of error for high
frequency current-sensing applications. Testing and evaluation in the end application or circuit is required to
determine the acceptance criteria, and to validate that the performance levels meet the system specifications.
www.ti.com
INA293-Q1
SBOS870A – MAY 2019 – REVISED SEPTEMBER 2020
Copyright © 2020 Texas Instruments Incorporated
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Product Folder Links: INA293-Q1



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