OP07 Ultralow Offset Voltage Op-Amp IC DIP-8
The OP07 has very low input offset voltage (75 ?V maximum for OP07E) that is obtained by trimming at the wafer stage. These low offset voltages generally eliminate any need for external nulling. The OP07 also features low input bias current (?4 nA for the OP07E) and high open-loop gain (200 V/mV for the OP07E). The low offset and high open-loop gain make the OP07 particularly useful for high gain instrumentation applications.
OP177 Ultra-Precision Operational Amplifier IC DIP-8
The OP177 features one of the highest precision performance of any operational amplifier currently available. Offset voltage of the OP177 is only 25 ?V maximum at room temperature. The ultralow VOS of the OP177 combines with the exceptional offset voltage drift (TCVOS) of 0.3 ?V/?C maximum to eliminate the need for external VOS adjustment and increases system accuracy over temperature. The OP177 open-loop gain of 12 V/?V is maintained over the full ?10 V output range. CMRR of 130 dB minimum, PSRR of 120 dB minimum, and maximum supply current of 2 mA are just a few examples of the excellent performance of this operational amplifier. The combination of outstanding specifications of the OP177 ensures accurate performance in high closed-loop gain applications.
OP177F
The OP177 features one of the highest precision performance of
any operational amplifier currently available. Offset voltage of the
OP177 is only 25 ?V maximum at room temperature. The ultralow
VOS of the OP177 combines with the exceptional offset voltage
drift (TCVOS) of 0.3 ?V/?C maximum to eliminate the need for
external VOS adjustment and increases system accuracy over
temperature.
OP177G
The OP177 features one of the highest precision performance of
any operational amplifier currently available. Offset voltage of the
OP177 is only 25 ?V maximum at room temperature. The ultralow
VOS of the OP177 combines with the exceptional offset voltage
drift (TCVOS) of 0.3 ?V/?C maximum to eliminate the need for
external VOS adjustment and increases system accuracy over
temperature.