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OPA207IDBVT датащи(PDF) 18 Page - Texas Instruments |
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OPA207IDBVT датащи(HTML) 18 Page - Texas Instruments |
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18 / 39 page ![]() Frequency (Hz) 20 40 60 80 100 120 10M 100M 1G 10G Frequency (Hz) 0 5 10 15 20 25 30 35 40 1 10 100 1k 10k 100k 1M Vs=±18 V Vs=±15 V Vs=±2.25 V 18 OPA207 SBOS826D – DECEMBER 2017 – REVISED OCTOBER 2019 www.ti.com Product Folder Links: OPA207 Submit Documentation Feedback Copyright © 2017–2019, Texas Instruments Incorporated Feature Description (continued) 7.3.7 Slew Boost The OPA207 uses a novel internal slew-boost technique. This method allows the OPA207 to consume very low power yet still achieve a high slew rate of 3.6 V/µs. This makes the OPA207 ideal for applications that require low noise and high out voltage swings where the high slew rate is necessary to achieve fast settling times. Figure 45. Full Power Bandwidth 7.3.8 EMI Rejection Ratio (EMIRR) The electromagnetic interference (EMI) rejection ratio, or EMIRR, describes the EMI immunity of operational amplifiers. An adverse effect that is common to many operational amplifiers is a change in the offset voltage as a result of RF signal rectification. An operational amplifier that is more efficient at rejecting this change in offset as a result of EMI has a higher EMIRR and is quantified by a decibel value. Measuring EMIRR can be performed in many ways, but this report provides the EMIRR IN+, which specifically describes the EMIRR performance when the RF signal is applied to the noninverting input pin of the operational amplifier. In general, only the noninverting input is tested for EMIRR for the following three reasons: 1. Operational amplifier input pins are known to be the most sensitive to EMI, and typically rectify RF signals better than the supply or output pins. 2. The noninverting and inverting operational amplifier inputs have symmetrical physical layouts and exhibit nearly matching EMIRR performance. 3. EMIRR is easier to measure on noninverting pins than on other pins because the noninverting input terminal can be isolated on a printed circuit board (PCB). This isolation allows the RF signal to be applied directly to the noninverting input terminal with no complex interactions from other components or connecting PCB traces. A more formal discussion of the EMIRR IN+ definition and test method is provided in TI Application Report EMI Rejection Ratio of Operational Amplifiers, available for download at www.ti.com. The EMIRR IN+ of the OPA207 is plotted versus frequency as shown in Figure 46. Figure 46. OPA207 EMIRR IN+ vs Frequency |
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