LMH6703MA/NOPB Texas Instruments, Current Feedback, Op Amp, 1.8GHz, 8-Pin SOIC

RS Stock No.: 145-6536Brand: Texas InstrumentsManufacturers Part No.: LMH6703MA/NOPB
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Technical Document

Specifications

Amplifier Type

Current Feedback

Mounting Type

Surface Mount

Package Type

SOIC

Power Supply Type

Dual

Number of Channels per Chip

1

Pin Count

8

Typical Gain Bandwidth Product

1.8GHz

Typical Dual Supply Voltage

±5V

Typical Slew Rate

4500V/µs

Minimum Operating Temperature

-40 °C

Maximum Operating Temperature

+85 °C

Rail to Rail

No

Height

1.45mm

Width

3.9mm

Dimensions

4.9 x 3.9 x 1.45mm

Typical Input Voltage Noise Density

2.3nV/√Hz

Length

4.9mm

Product details

Current Feedback Operational Amplifiers

A wide range of current feedback operational amplifiers from Texas Instruments. Current feedback operational amplifiers employ a circuit topology that is inherently faster than voltage-mode devices allowing better high frequency performance. They are ideally suited to high speed and video applications with modest DC accuracy requirements.

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P.O.A.

LMH6703MA/NOPB Texas Instruments, Current Feedback, Op Amp, 1.8GHz, 8-Pin SOIC

P.O.A.

LMH6703MA/NOPB Texas Instruments, Current Feedback, Op Amp, 1.8GHz, 8-Pin SOIC
Stock information temporarily unavailable.

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Technical Document

Specifications

Amplifier Type

Current Feedback

Mounting Type

Surface Mount

Package Type

SOIC

Power Supply Type

Dual

Number of Channels per Chip

1

Pin Count

8

Typical Gain Bandwidth Product

1.8GHz

Typical Dual Supply Voltage

±5V

Typical Slew Rate

4500V/µs

Minimum Operating Temperature

-40 °C

Maximum Operating Temperature

+85 °C

Rail to Rail

No

Height

1.45mm

Width

3.9mm

Dimensions

4.9 x 3.9 x 1.45mm

Typical Input Voltage Noise Density

2.3nV/√Hz

Length

4.9mm

Product details

Current Feedback Operational Amplifiers

A wide range of current feedback operational amplifiers from Texas Instruments. Current feedback operational amplifiers employ a circuit topology that is inherently faster than voltage-mode devices allowing better high frequency performance. They are ideally suited to high speed and video applications with modest DC accuracy requirements.