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LMV712TL/NOPB 数据表(PDF) 17 Page - Texas Instruments |
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LMV712TL/NOPB 数据表(HTML) 17 Page - Texas Instruments |
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17 / 33 page ![]() OUTPUT VOLTAGE SHUTDOWN PULSE (2V/div) 17 LMV712-N, LMV712-N-Q1 www.ti.com SNOS534J – FEBRUARY 2001 – REVISED NOVEMBER 2016 Product Folder Links: LMV712-N LMV712-N-Q1 Submit Documentation Feedback Copyright © 2001–2016, Texas Instruments Incorporated Feature Description (continued) The output stage is composed of a PMOS and a NPN transistor in a common source or emitter configuration, delivering a rail-to-rail output excursion. The MN4 transistor ensures that the LMV712-N output remains near V− when the amplifier is in shutdown mode. 7.4 Device Functional Modes 7.4.1 Shutdown Pin The LMV712-N offers independent shutdown pins for the dual amplifiers. When the shutdown pin is tied low, the respective amplifier shuts down and the supply current is reduced to less than 1 µA. In shutdown mode, the output level of the amplifier stays at V−. In a 2.7-V operation, when a voltage from 1.5 V to 2.7 V is applied to the shutdown pin, the amplifier is enabled. As the amplifier is coming out of the shutdown mode, the output waveform ramps up without any glitch. Figure 31. Output Recovery from Shutdown A glitch-free output waveform is highly desirable in many applications, one of which is power amplifier control loops. In this application, the LMV712-N is used to drive the power amplifier's power control. If the LMV712-N did not have a smooth output ramp during turn on, it would directly cause the power amplifier to produce a glitch at its output. This adversely affects the performance of the system. To enable the amplifier, the shutdown pin must be pulled high. It must not be left floating in the event that any leakage current may inadvertently turn off the amplifier. 7.4.2 Capacitive Load Tolerance The LMV712-N can directly drive 200 pF in unity-gain without oscillation. The unity-gain follower is the most sensitive configuration to capacitive loading. Direct capacitive loading reduces the phase margin of amplifiers. The combination of the amplifier's output impedance and the capacitive load induces phase lag. This results in either an underdamped pulse response or oscillation. To drive a heavier capacitive load, TI recommends the circuit in Figure 32. |
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