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OPA992 датащи(PDF) 21 Page - Texas Instruments |
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OPA992 датащи(HTML) 21 Page - Texas Instruments |
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21 / 70 page ![]() 7.3 Feature Description 7.3.1 Input Protection Circuitry The OPAx992 uses a special input architecture to eliminate the requirement for input protection diodes but still provides robust input protection under transient conditions. Figure 7-1 shows conventional input diode protection schemes that are activated by fast transient step responses and introduce signal distortion and settling time delays because of alternate current paths, as shown in Figure 7-2. For low-gain circuits, these fast-ramping input signals forward-bias back-to-back diodes, causing an increase in input current and resulting in extended settling time. OPAx992 40 V ~0.7 V VOUT V+ V Conventional Input Protection Limits Differential Input Range OPAx992 Provides Full 40-V Differential Input Range VIN+ VIN VOUT V+ V VIN+ VIN Figure 7-1. OPAx992 Input Protection Does Not Limit Differential Input Capability Input Low-Pass Filter Ron_mux CS CS CD Sn Sn+1 D Simplified Mux Model RFILT RFILT CFILT CFILT Vn = 10 V Vn+1 = ±10 V 10 V ±10 V Buffer Amplifier 1 2 Idiode_transient 10 V ~±9.3 V 1 VIN+ VIN± ~0.7 V VOUT 2 ±10 V Ron_mux Figure 7-2. Back-to-Back Diodes Create Settling Issues The OPAx992 family of operational amplifiers provides a true high-impedance differential input capability for high-voltage applications using a patented input protection architecture that does not introduce additional signal distortion or delayed settling time, making the device an optimal op amp for multichannel, high-switched, input applications. The OPAx992 tolerates a maximum differential swing (voltage between inverting and non-inverting pins of the op amp) of up to 40 V, making the device suitable for use as a comparator or in applications with fast-ramping input signals such as data-acquisition systems; see the TI TechNote MUX-Friendly Precision Operational Amplifiers for more information. 7.3.2 EMI Rejection The OPAx992 uses integrated electromagnetic interference (EMI) filtering to reduce the effects of EMI from sources such as wireless communications and densely-populated boards with a mix of analog signal chain and digital components. EMI immunity can be improved with circuit design techniques; the OPAx992 benefits from these design improvements. Texas Instruments has developed the ability to accurately measure and quantify the immunity of an operational amplifier over a broad frequency spectrum extending from 10 MHz to 6 GHz. Figure 7-3 shows the results of this testing on the OPAx992. Table 7-1 shows the EMIRR IN+ values for the OPAx992 at particular frequencies commonly encountered in real-world applications. The EMI Rejection Ratio of Operational www.ti.com OPA992, OPA2992, OPA4992 SBOSA10D – JUNE 2021 – REVISED AUGUST 2022 Copyright © 2022 Texas Instruments Incorporated Submit Document Feedback 21 Product Folder Links: OPA992 OPA2992 OPA4992 |
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