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High-Speed Precision Difet OPERATIONAL AMPLIFIER

    https://www.ti.com/lit/ds/symlink/opa602.pdf
    The OPA602 is a precision, wide bandwidth FET operational amplifier. Monolithic Difet (dielectrically isolated FET) con-struction provides an unusual combination of high-speed and accuracy. Its wide-bandwidth design minimizes dynamic errors. High slew rate and fast settling time allow accurate signal process-ing in pulse and data conversion ...

OPA602 data sheet, product information and support | TI.com

    https://www.ti.com/product/OPA602
    The OPA602 is a precision, wide bandwidth FET operational amplifier. Monolithic Difet (dielectrically isolated FET) construction provides an unusual combination of high-speed and accuracy.. Its wide-bandwidth design minimizes dynamic errors. High slew rate and fast settling time allow accurate signal processing in pulse and data conversion applications.

opa602 | diyAudio

    https://www.diyaudio.com/community/threads/opa602.25053/
    OPA602 I have used them for years in measuring instruments and also tried them for audio. They are very good opamps (quite fast and able to drive capacitive load), the only problem is phase inversion after clipping in non-inverting mode. Regarding your question, i would prefer (best to worst) OPA627, OPA134, OPA602, OPA604. •••

OPA602AU | Buy TI parts | TI.com

    https://www.ti.com/store/ti/en/p/product/?p=OPA602AU
    Description for the OPA602. The OPA602 is a precision, wide bandwidth FET operational amplifier. Monolithic Difet (dielectrically isolated FET) construction provides an unusual combination of high-speed and accuracy. Its wide-bandwidth design minimizes dynamic errors.

OPA602AP | Buy TI parts | TI.com

    https://www.ti.com/store/ti/en/p/product/?p=OPA602AP
    Description for the OPA602. The OPA602 is a precision, wide bandwidth FET operational amplifier. Monolithic Difet (dielectrically isolated FET) construction provides an unusual combination of high-speed and accuracy. Its wide-bandwidth design minimizes dynamic errors. High slew rate and fast settling time allow accurate signal processing in ...

OPA602BP | Buy TI parts | TI.com

    https://www.ti.com/store/ti/en/p/product/?p=OPA602BP
    The OPA602 is unity-gain stable and easily drives capacitive loads up to 1500pF. Laser-trimmed input circuitry provides offset voltage and drift performance normally associated with precision bipolar op amps. Difet construction achieves extremely low input bias currents (1pA max) without compromising input voltage noise.

741 Pin Compatible Equivalent Op Amps - Peter Vis

    https://www.petervis.com/Education/741_Pin_Compatible_Equivalent_Op_Amps/741_Pin_Compatible_Equivalent_Op_Amps.html
    This is useful if you wanted to switch audio signals, otherwise, you could always tie it permanently to ground. OPA602. The OPA602 is a high-speed precision operational amplifier with a dielectrically isolated FET (Difet) construction. This is the extreme-end of operational amplifiers manufactured by Burr-Brown and costs approximately £8.70 ...

the Source - Audio Design Guide

    http://audiodesignguide.com/DAC/dac5.html
    The my solid state headphone amplifier is used like a reference to check the sonic performances of the OPA602. Follows a measurement set of the signal before of any output stage get by Clio system on output to the DAC chips and driving the input signal with the SPDIF output of the USB audio interface Transit by M-Audio.

OPA-627 vs. OPA604 | diyAudio

    https://www.diyaudio.com/community/threads/opa-627-vs-opa604.9539/
    I'm hoping someone can help me out with understanding the major differences between these 2 Op-Amps. Now I know that the OPA-627 is known to be superior to most op-amps and better than the OPA-604. For example; for Headphone Amps. Would the OPA-627 be considered overkill for a Headphone Amp...

Notes on Audio Op-Amps - Tangentsoft

    https://tangentsoft.net/audio/opamps.html
    Audio requires a fairly high slew rate to maintain low distortion, flat frequency response from 20 Hz to 20,000 Hz, and decent output current if the chip is to drive headphones directly. A low supply voltage requirement is a plus for portable applications. We also ignore chopper-stabilized and CMOS op-amps as they're generally unsuited to audio.

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