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LPV521 датащи(PDF) 19 Page - Texas Instruments |
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LPV521 датащи(HTML) 19 Page - Texas Instruments |
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19 / 36 page ![]() 7 Applications 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. 7.1 Application Information The LPV521 is specified for operation from 1.6V to 5.5V (±0.8V to ±2.25V). Many of the specifications apply from –40°C to +125°C. The LMV521 features rail-to-rail input and rail-to-rail output swings while consuming only nanowatts of power. Parameters that exhibit significant variance with regard to operating voltage or temperature are presented in Section 5.6. 7.1.1 Driving Capacitive Load The LPV521 is internally compensated for stable unity gain operation, with a 6.2kHz, typical gain bandwidth. However, the unity gain follower is the most sensitive configuration to capacitive load. The combination of a capacitive load placed at the output of an amplifier along with the amplifier output impedance creates a phase lag, which reduces the phase margin of the amplifier. If the phase margin is significantly reduced, the response is underdamped, and causes peaking in the transfer. When there is too much peaking, the op amp can start oscillating. + - VIN RISO VOUT CL Figure 7-1. Resistive Isolation of Capacitive Load To drive heavy capacitive loads, use an isolation resistor, RISO, as in Figure 7-1. By using this isolation resistor, the capacitive load is isolated from the amplifier output. The larger the value of RISO, the more stable the amplifier. If the value of RISO is sufficiently large, the feedback loop is stable, independent of the value of CL. However, larger values of RISO result in reduced output swing and reduced output current drive. Table 7-1 shows the recommended minimum RISO values for a 5V supply. Figure 7-2 shows the typical response obtained with the CL = 50pF and RISO = 154kΩ. The other values of RISO in Table 7-1 are chosen to achieve similar dampening at the respective capacitive loads. Notice that for the LPV521 with larger a CL, a smaller RISO can be used for stability. However, for a given CL, a larger RISO provides a more damped response. For capacitive loads of 20pF and less, no isolation resistor is needed. Table 7-1. Recommended Minimum RISO Values for a 5V Supply CL RISO 0pF to 20pF Not needed 50pF 154kΩ 100pF 118kΩ 500pF 52.3kΩ 1nF 33.2kΩ 5nF 17.4kΩ 10nF 13.3kΩ www.ti.com LPV521 SNOSB14E – AUGUST 2009 – REVISED JULY 2024 Copyright © 2024 Texas Instruments Incorporated Submit Document Feedback 19 Product Folder Links: LPV521 |
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