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OPA620DBVR Datasheet(PDF) 18 Page - Texas Instruments |
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OPA620DBVR Datasheet(HTML) 18 Page - Texas Instruments |
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18 / 34 page ![]() 9 Application and Implementation Note Information in the following applications sections is not part of the TI component specification, and TI does not warrant its accuracy or completeness. TI’s customers are responsible for determining suitability of components for their purposes, as well as validating and testing their design implementation to confirm system functionality. 9.1 Application Information The OPAx620 devices are CMOS, rail-to-rail I/O, high-speed, voltage-feedback operational amplifiers designed for current and voltage sensing, high-speed, and other applications. The amplifiers feature a 100MHz gain bandwidth, and 190V/µs slew rate, are unity-gain stable, and operate as 1V/V voltage followers. 9.2 Typical Applications 9.2.1 Low-Side Current Sensing The need to accurately and quickly detect the load current through a low-side shunt resistor is a critical application in systems requiring over-current, feedback control loops, battery monitoring, and power-supply monitoring. Load current is often measured using low-side current sensing, which is when the voltage is measured across a shunt-resistor that is placed between the load and ground. One common way to discretely implement low-side current monitoring is to use a current-sense amplifier in a difference configuration, as shown in Figure 9-1. This approach offers a simple and cost-effective way to measure current, with benefits like: 1. High accuracy with proper offset and drift control. 2. Easy ground-referenced measurement (no need for differential high-voltage handling). 3. Simplified PCB layout and signal processing. 4. Designed for fast fault detection, especially in power electronics and automotive systems. R 1 R Sense R 1 R 2 R 2 GND V CC PGND Out GND + – V CC I Sense OPAx620 Figure 9-1. Low-side Current Sensing Circuit 9.2.1.1 Design Requirements For this design example, use the parameters listed in Design Parameters as the input parameters. Table 9-1. Design Parameters PARAMETER EXAMPLE VALUE Supply voltage, VCC 3.3V Input offset voltage across temperature ±1mV ISense 100mA - 2A OPA620, OPA2620 SLOSEG2A – APRIL 2026 – REVISED JUNE 2026 www.ti.com 18 Submit Document Feedback Copyright © 2026 Texas Instruments Incorporated Product Folder Links: OPA620 OPA2620 |
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