
OP97 Datasheet
Low Power, High Precision Operational Amplifier
Low Power, High Precision Operational Amplifier
Part No. | In Stock | Price | Packaging | SPQ | Marking | MSL | Pins | Temp Range | Package Description |
5962-8954401PA | 0 | $0 | Tube | 48 | 5962-8954401PA | 1 | 8 | -55°C ~ 125°C | 8-CERDIP |
OP97EPZ | 0 | $7.146 | Tube | 50 | OP97E | 1 | 8 | -40°C ~ 85°C | 8-Lead PDIP |
OP97FPZ | 0 | $2.979 | Tube | 50 | OP97FPZ | 1 | 8 | -40°C ~ 85°C | 8-Lead PDIP |
OP97FSZ | 0 | $2.07 | Tube | 98 | OP97F | 1 | 8 | -40°C ~ 85°C | 8-Lead SOIC |
OP97FSZ-REEL | 0 | $2.07 | Reel | 2500 | OP97F | 1 | 8 | -40°C ~ 85°C | 8-Lead SOIC |
OP97FSZ-REEL7 | 900pcs | $2.07 | Reel | 1000 | OP97F | 1 | 8 | -40°C ~ 85°C | 8-Lead SOIC |
The OP97 is a low-power alternative to the industry-standard OP-07 precision amplifier. The OP-97 maintains the standards of performance set by the OP-07 while utilizing only 600µA supply current, less than 1/6 that of an OP-07. Offset voltage is an ultra-low 25µV, and drift over temperature is below 0.6µV/°C. External offset trimming is not required in the majority of circuits.
Improvements have been made over OP-07 specifications in several areas. Notable is bias current, which remains below 250pA over the full military temperature range. The OP-97 is ideal for use in precision long-term integrators or sample-and-hold circuits that must operate at elevated temperatures.
Common-mode rejection and power-supply rejection are also improved with the OP-97, at 114dB minimum over wider ranges of common-mode or supply voltage. Outstanding PSR, a supply range specified from ±2.25V to ±20V and the OP-97's minimal power requirements combine to make the OP-97 a preferred device for portable and battery-powered instruments.
The OP97 conforms to the OP-07 pinout, with the null potentimeter connected between pins 1 and 8 with the wiper to V+. The OP97 will upgrade circuit designs using 725, OP05, OP07, OP12, and 1012 type amplifiers. It may replace 741-type amplifiers in circuits without nullling or where the nulling circuitry has been removed.