NCV33202VDR2G onsemi, Low Voltage, Op Amp, RRIO, 2.2MHz 10 Hz, 1.8 → 12 V, 8-Pin SOIC

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Subtotal 100 units (supplied on a continuous strip)*

£27.00

(exc. VAT)

£32.00

(inc. VAT)

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100 - 240£0.27
250 - 490£0.234
500 - 990£0.206
1000 +£0.187

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Packaging Options:
RS Stock No.:
805-7228P
Mfr. Part No.:
NCV33202VDR2G
Brand:
onsemi
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Brand

onsemi

Amplifier Type

Low Voltage

Mounting Type

Surface Mount

Package Type

SOIC

Power Supply Type

Single

Number of Channels per Chip

2

Pin Count

8

Typical Single Supply Voltage

1.8 → 12 V

Typical Gain Bandwidth Product

2.2MHz

Typical Slew Rate

1V/µs

Maximum Operating Frequency

10 Hz

Maximum Operating Temperature

+125 °C

Minimum Operating Temperature

-55 °C

Rail to Rail

Rail to Rail Input/Output

Typical Voltage Gain

109.5 dB

Length

5mm

Height

1.5mm

Width

4mm

Dimensions

5 x 4 x 1.5mm

Typical Input Voltage Noise Density

25nV/√Hz

MC33201/2/4, NCV33202/4, 12V Low Noise, Rail-to-Rail I/O, High Output Drive, Operational Amplifiers, ON Semiconductor


The ON Semiconductor MC33201/2/4, NCV33202/4 Op Amps provide rail-to-rail operation on both the input and output. Drive inputs as high as 200 mV beyond the supply rails without phase reversal on the outputs, and the output can swing within 50 mV of each rail. This rail-to-rail operation enables you to make full use of the supply voltage range available.

Output current boosting techniques provide a high output current capability while keeping the drain current of the amplifier to a minimum. Low noise and distortion with a high slew rate and drive capability make them ideal for audio applications.

Low Voltage, Single Supply Operation (+1.8 V and Ground to +12 V and Ground)
Input Voltage Range Includes both Supply Rails
Output Voltage Swings within 50 mV of both Rails
No Phase Reversal on the Output for Over-driven Input Signals
High Output Current (ISC = 80 mA, Typical)
Low Supply Current (ID = 0.9 mA, Typical)
600 W Output Drive Capability
Typical Gain Bandwidth Product = 2.2 MHz


Operational Amplifiers, ON Semiconductor