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OPA381 Datasheet PDF

Part Series:
OPA381 Series
Category:
Operational Amplifiers(General Purpose)
Description:
Transimpedance Amplifier, 5.5V, 18MHz, 0.8mA, 1mA, 400mV, MSOP
Updated Time: 2023/01/13 02:54:50 (UTC + 8)

OPA381 Datasheet PDF Operational Amplifiers(General Purpose)

24 Pages
TI
Transimpedance Amplifier, 5.5V, 18MHz, 0.8mA, 1mA, 400mV, MSOP
24 Pages
TI
Transimpedance Amplifier, 5.5V, 18MHz, 0.8mA, 1mA, 400mV, SON
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Precision, Low Power, High-Speed Transimpedance Amplifier 8-SON -40℃ to 125℃
23 Pages
TI
Precision, Low Power, High-Speed Transimpedance Amplifier 8-VSSOP -40℃ to 125℃

OPA381AIDGKT - TI Specifications

TYPE
DESCRIPTION
Mounting Style
Surface Mount
Number of Pins
8 Pin
Supply Voltage (DC)
5.50 V
Case/Package
VSSOP-8
Output Current
10mA @5.5V
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OPA381AIDGKT - TI Function Overview

The OPA381AIDGKT is a precision low power transimpedance amplifier in 8 pin VSSOP package. This high speed single transimpedance amplifier provides 18MHz of gain bandwidth (GBW) with extremely high precision, excellent long term stability and very low 1/f noise. The OPA381 far exceeds offset, drift and noise performance that conventional JFET op-amps provide. The signal bandwidth of transimpedance amplifier depends largely on GBW of amplifier and parasitic capacitance of photodiode as well as feedback resistor. The 18MHz GBW of OPA381 enables a transimpedance bandwidth of greater than 250KHz in most configurations. The device is ideally suited for fast control loops for power level measurement on an optical fibre. In contrast to logarithmic amplifiers, the OPA381 provides very wide bandwidth throughout over full dynamic range. By using an external pull down resistor to -5V, the output voltage range can be extended to include 0V.
Over 250KHz transimpedance bandwidth
Supply voltage range from 2.7V to 5.5V
Bias current of 3pA
Maximum offset voltage of 25µV
Maximum offset drift of 0.1µV/°C
10nV/√Hz low voltage noise
Slew rate of 12V/µs at G = +1
Quiescent current of 800µA
Fast overload recovery
Operating temperature range from -40°C to 125°C
This integrated circuit can be damaged by ESD. Failure to observe proper handling and installation procedures can cause damage to the device.
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