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LPV802 Folha de dados(PDF) 13 Page - Texas Instruments

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Nome de Peças LPV802
Descrição Electrónicos  TLV8801/TLV8802 320 nA Nanopower Operational Amplifiers for Cost-Optimized Systems
PDF  27 Pages
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Fabricante Electrônico  TI1 [Texas Instruments]
Página de início  http://www.ti.com
Logo TI1 - Texas Instruments

LPV802 Folha de dados(HTML) 13 Page - Texas Instruments

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VIN
RISO
VOUT
CL
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TLV8801, TLV8802
www.ti.com
SNOSD34 – AUGUST 2016
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Copyright © 2016, Texas Instruments Incorporated
Device Functional Modes (continued)
When possible, use AC coupling and AC feedback to reduce static current draw through the feedback elements.
Use film or ceramic capacitors since large electolytics may have large static leakage currents in the nanoamps.
7.4.4 Driving Capacitive Load
The TLV880x is internally compensated for stable unity gain operation, with a 6 kHz typical gain bandwidth.
However, the unity gain follower is the most sensitive configuration to capacitive load. The combination of a
capacitive load placed directly on the output of an amplifier along with the amplifier’s output impedance creates a
phase lag, which reduces the phase margin of the amplifier. If the phase margin is significantly reduced, the
response will be under damped which causes peaking in the transfer and, when there is too much peaking, the
op amp might start oscillating.
In order to drive heavy (>50pF) capacitive loads, an isolation resistor, RISO, should be used, as shown in
Figure 37. By using this isolation resistor, the capacitive load is isolated from the amplifier’s output. The larger
the value of RISO, the more stable the amplifier will be. If the value of RISO is sufficiently large, the feedback loop
will be stable, independent of the value of CL. However, larger values of RISO result in reduced output swing and
reduced output current drive. The recommended value for RISO is 30-50kΩ.
Figure 37. Resistive Isolation Of Capacitive Load



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