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TSV782IST 数据表(PDF) 21 Page - STMicroelectronics |
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TSV782IST 数据表(HTML) 21 Page - STMicroelectronics |
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21 / 34 page ![]() Figure 43. Test configuration for RISO Please note that RISO = 22 Ω is sufficient to make the TSV78x stable whatever the capacitive load. 5.8 Resistor values for high speed op amp design Due to its high gain bandwidth product (GBP), this op amp is particularly sensitive to parasitic impedances. Board parasitics should be taken into account in any sensitive design. Indeed, excessive parasitics (both capacitive and inductive) in the op amp frequency range can alter performances and stability. These issues can often be mitigated by lowering the resistive impedances. More specifically, the RC network created by the schematic resistors (Rf and Rg) and the parasitic capacitances of both the op amp and the PCB can generate a pole below or in the same order of magnitude as the closed-loop bandwidth of the circuit. In this case, the feedback circuit is not able to fully play its role at high frequency, and the application can be unstable. This issue can happen when the schematic gain is low (typically < 5), or the device is used in follower mode with a resistor in the feedback. In these cases, it is advised to use a low value feedback resistor (Rf), typically 600 Ω. Figure 44. Inverting amplifier configuration with parasitic input capacitances Also, some designs use an input resistor on the positive input, generally of the same value as the input on the negative resistor. This resistor can be useful to balance the input currents on the positive and negative inputs, and reduce the impact of those input currents on precision. However, this is not useful on the TSV78x as the input currents are very low. Furthermore, this resistor can also interact with the input capacitances to generate a pole. The frequency of this pole should be kept higher than the closed-loop bandwidth frequency. The macromodel provided takes into account the circuit parasitic capacitors. Thus, a transient spice simulation (100 mV step) is an easy way to evaluate the stability of the application. However, this cannot replace a hardware evaluation of the application circuit. TSV781, TSV782 Application information DS14011 - Rev 7 page 21/34 |
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