IC Phoenix logo

Home ›  O  › O8 > OPA656U

OPA656U from TI,Texas Instruments

Fast Delivery, Competitive Price @IC-phoenix

If you need more electronic components or better pricing, we welcome any inquiry.

OPA656U

Manufacturer: TI

Wideband, Unity Gain Stable Fet-Input Operational Amplifier

Partnumber Manufacturer Quantity Availability
OPA656U TI 100 In Stock

Description and Introduction

Wideband, Unity Gain Stable Fet-Input Operational Amplifier The OPA656U is a high-performance operational amplifier (op-amp) designed for precision applications requiring wide bandwidth and low noise. Manufactured in a compact SOIC-8 package, this component is well-suited for high-speed signal conditioning, data acquisition, and medical instrumentation.  

Featuring a unity-gain bandwidth of 500 MHz and a low input voltage noise of 4.8 nV/√Hz, the OPA656U excels in applications where signal fidelity is critical. Its low distortion and fast settling time make it ideal for driving analog-to-digital converters (ADCs) or amplifying high-frequency signals in communication systems. The op-amp operates on a single or dual power supply, with a wide voltage range of ±2.5 V to ±6 V, providing flexibility in various circuit designs.  

Additionally, the OPA656U includes a disable feature that reduces power consumption when the device is not in use, enhancing energy efficiency in battery-powered systems. Its robust design ensures stability even with capacitive loads, making it a reliable choice for demanding environments.  

Engineers and designers often select the OPA656U for its combination of speed, precision, and versatility, making it a key component in high-performance analog circuits.

Application Scenarios & Design Considerations

Wideband, Unity Gain Stable Fet-Input Operational Amplifier

Request Quotation

For immediate assistance, call us at +86 533 2716050 or email [email protected]

Part Number Quantity Target Price($USD) Email Contact Person
We offer highly competitive channel pricing. Get in touch for details.

Specializes in hard-to-find components chips