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TLV9054


Part Number TLV9054
Manufacturer Texas Instruments
Title RRIO Op Amp
Description The TLV9051, TLV9052, and TLV9054 devices are single, dual, and quad operational amplifiers, respectively. The devices are designed for low voltag...
Features
• High slew rate: 15 V/µs
• Low quiescent current: 330 µA
• Rail-to-rail input and output
• Low input offset voltage: ±0.33 mV
• Unity-gain bandwidth: 5 MHz
• Low broadband noise: 15 nV/√ Hz
• Low input bias current: 2 pA
• Unity-gain stable
• Internal RFI and EMI filter
• Scalable family of CMOS op...

File Size 5.65MB
Datasheet TLV9054 PDF File








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TLV9051 : The TLV9051, TLV9052, and TLV9054 devices are single, dual, and quad operational amplifiers, respectively. The devices are designed for low voltage operation from 1.8 V to 6.0 V. The inputs and outputs can operate from rail to rail at a very high slew rate. These devices are an excellent choice for costconstrained applications where low-voltage operation, high slew rate, and low quiescent current is needed. The capacitive-load drive of the TLV905x family is 150 pF, and the resistive open-loop output impedance makes stabilization easier with much higher capacitive loads. The TLV905xS devices include a shutdown mode that allow the amplifiers to be switched off into a standby mode with typical .

TLV9051S : The TLV9051, TLV9052, and TLV9054 devices are single, dual, and quad operational amplifiers, respectively. The devices are designed for low voltage operation from 1.8 V to 6.0 V. The inputs and outputs can operate from rail to rail at a very high slew rate. These devices are an excellent choice for costconstrained applications where low-voltage operation, high slew rate, and low quiescent current is needed. The capacitive-load drive of the TLV905x family is 150 pF, and the resistive open-loop output impedance makes stabilization easier with much higher capacitive loads. The TLV905xS devices include a shutdown mode that allow the amplifiers to be switched off into a standby mode with typical .

TLV9052 : The TLV9051, TLV9052, and TLV9054 devices are single, dual, and quad operational amplifiers, respectively. The devices are designed for low voltage operation from 1.8 V to 6.0 V. The inputs and outputs can operate from rail to rail at a very high slew rate. These devices are an excellent choice for costconstrained applications where low-voltage operation, high slew rate, and low quiescent current is needed. The capacitive-load drive of the TLV905x family is 150 pF, and the resistive open-loop output impedance makes stabilization easier with much higher capacitive loads. The TLV905xS devices include a shutdown mode that allow the amplifiers to be switched off into a standby mode with typical .

TLV9052S : The TLV9051, TLV9052, and TLV9054 devices are single, dual, and quad operational amplifiers, respectively. The devices are designed for low voltage operation from 1.8 V to 6.0 V. The inputs and outputs can operate from rail to rail at a very high slew rate. These devices are an excellent choice for costconstrained applications where low-voltage operation, high slew rate, and low quiescent current is needed. The capacitive-load drive of the TLV905x family is 150 pF, and the resistive open-loop output impedance makes stabilization easier with much higher capacitive loads. The TLV905xS devices include a shutdown mode that allow the amplifiers to be switched off into a standby mode with typical .

TLV9054S : The TLV9051, TLV9052, and TLV9054 devices are single, dual, and quad operational amplifiers, respectively. The devices are designed for low voltage operation from 1.8 V to 6.0 V. The inputs and outputs can operate from rail to rail at a very high slew rate. These devices are an excellent choice for costconstrained applications where low-voltage operation, high slew rate, and low quiescent current is needed. The capacitive-load drive of the TLV905x family is 150 pF, and the resistive open-loop output impedance makes stabilization easier with much higher capacitive loads. The TLV905xS devices include a shutdown mode that allow the amplifiers to be switched off into a standby mode with typical .




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