LMC6062
LMC6062 is Precision CMOS Dual Micropower Operational Amplifier manufactured by National Semiconductor.
Description
The LMC6062 is a precision dual low offset voltage, micropower operational amplifier, capable of precision single supply operation. Performance characteristics include ultra low input bias current, high voltage gain, rail-to-rail output swing, and an input mon mode voltage range that includes ground. These features
, plus its low power consumption, make the LMC6062 ideally suited for battery powered applications. Other applications using the LMC6062 include precision full-wave rectifiers, integrators, references, sample-and-hold circuits, and true instrumentation amplifiers. This device is built with National’s advanced double-Poly Silicon-Gate CMOS process. For designs that require higher speed, see the LMC6082 precision dual operational amplifier. PATENT PENDING
Features
(Typical Unless Otherwise Noted) n Low offset voltage 100 µV n Ultra low supply current 16 µA/Amplifier n Operates from 4.5V to 15V single supply n Ultra low input bias current 10 f A n Output swing within 10 m V of supply rail, 100k load n Input mon-mode range includes V- n High voltage gain 140 d B n Improved latchup immunity
Applications n n n n n n n Instrumentation amplifier Photodiode and infrared detector preamplifier Transducer amplifiers Hand-held analytic instruments Medical instrumentation D/A converter Charge amplifier for piezoelectric transducers
Connection Diagram
8-Pin DIP/SO
DS011298-1
Top View
Ordering Information
Temperature Range Package 8-Pin Molded DIP 8-Pin Small Outline 8-Pin Ceramic DIP LMC6062AMJ/883 Military
- 55˚C to +125˚C LMC6062AMN Industrial
- 40˚C to +85˚C LMC6062AIN LMC6062IN LMC6062AIM LMC6062IM J08A M08A Rail Tape and Reel Rail NSC Drawing N08E Transport Media Rail
© 1999 National Semiconductor Corporation
DS011298
.national.
Absolute Maximum Ratings (Note 1)
If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. Differential Input Voltage...