TYPE | DESCRIPTION |
---|
Mounting Style | Surface Mount |
Number of Pins | 8 Pin |
Case/Package | SOIC-8 |
Supply Current | 4.3 mA |
Number of Circuits | 2 Circuit |
Number of Channels | 2 Channel |
Number of Positions | 8 Position |
Common Mode Rejection Ratio | 86 dB |
Input Offset Drift | 600 nV/K |
Bandwidth | 20 MHz |
Slew Rate | 30.0 V/μs |
Gain Bandwidth Product | 20 MHz |
Input Offset Voltage | 15 µV |
Input Bias Current | 85 pA |
Operating Temperature (Max) | 125 ℃ |
Operating Temperature (Min) | -40 ℃ |
Gain Bandwidth | 20 MHz |
Minimum CMRR Range | 86 dB |
Supply Voltage | 4V ~ 12V |
Supply Voltage (Max) | 12 V |
Supply Voltage (Min) | 4 V |
TYPE | DESCRIPTION |
---|
Product Lifecycle Status | Active |
Packaging | Tape & Reel (TR) |
Size-Length | 4.9 mm |
Size-Width | 3.91 mm |
Size-Height | 1.5 mm |
Operating Temperature | -40℃ ~ 125℃ |
The OPA2727AIDR is an e-trim high precision CMOS Operational Amplifier uses a state-of-the-art 12V analogue CMOS process and e-trim, a package-level trim, offering outstanding DC precision and AC performance. The extremely low offset and drift are achieved by trimming the IC digitally after packaging to avoid shift in parameters as a result of stresses during package assembly. To correct for offset drift, the OPA727 family is trimmed over-temperature. The device features very high CMRR and open-loop gain to minimize errors. Excellent AC characteristics, such as GBW, 30V/µs slew rate and 0.0003% THD+N make the OPA727 well-suited for communication, high-end audio and active filter applications. With a bias current of less than 500pA, they are well suited for use as transimpedance (I/V-conversion) amplifiers for monitoring optical power in ONET applications. Optimized for single-supply operation up to 12V, input common-mode range extends to GND for true single-supply functionality.
● 150µV Maximum offset
● 1.5µV/°C Maximum drift
● 500pA Maximum bias current
● 4.3mA/channel Quiescent current
● 6µA Shutdown mode
● Green product and no Sb/Br
●This IC can be damaged by ESD. We recommend that all ICs be handled with appropriate precautions. Failure to observe proper handling and installation procedures can cause damage.
TI
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