AD824ARZ-16 Product Details
The AD824ARZ-16 is a quad, FET input, single supply amplifier, featuring rail-to-rail outputs. The combination of FET inputs and rail-to-rail outputs makes the AD824ARZ-16 useful in a wide variety of low voltage applications where low input current is a primary consideration.
The AD824ARZ-16 is guaranteed to operate from a 3 V single supply up to ±15 volt dual supplies. AD824AR-3V parametric performance at 3 V is fully guaranteed.
Fabricated on ADI's complementary bipolar process, the AD824ARZ-16 has a unique input stage that allows the input voltage to safely extend beyond the negative supply and to the positive supply without any phase inversion or latch-up. The output voltage swings to within 15 mV of the supplies. Capacitive loads to 350 pF can be handled without oscillation.
The FET input combined with laser trimming provides an input that has extremely low bias currents with guaranteed offsets below 1 mV. This enables high accuracy designs even with high source impedances. Precision is combined with low noise,making the AD824ARZ-16 ideal for use in battery powered medical equipment.
Applications for the AD824ARZ-16 include portable medical equipment, photo diode preamplifiers, and high impedance transducer amplifiers.
The ability of the output to swing rail-to-rail enables designers to build multistage filters in single supply systems and maintain high signal-to-noise ratios.
The AD824ARZ-16 is specified over the extended industrial (−40°C to +85°C) temperature range and is available in narrow 14-lead SOIC package.Applications- Photo diode preamplifier
- Battery powered instrumentation
- Power supply control and protection
- Medical instrumentation
- Remote sensors
- Low voltage strain gage amplifiers
- DAC output amplifier
Feature
- Single supply operation: 3 V to 30 V
- Very low input bias current: 2 pA
- Wide input voltage range
- Rail-to-rail output swing
- Low supply current per amplifier: 500 µA
- Wide bandwidth: 2 MHz
- Slew rate: 2 V/µs
- No phase reversal
(Picture: Pinout)