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  1. UG-1882: Evaluating the AD4696 16-Channel, 16-Bit, 1 MSPS Multiplexed SAR ADC
    User Guide
    The EVAL-AD4696FMCZ is designed to demonstrate AD4696 performance and provide access to its many configuration options via an easy to use ACE plugin graphical interface.

    PDF

    UG-1882: Evaluating the AD4696 16-Channel, 16-Bit, 1 MSPS Multiplexed SAR ADC

    1.31 M

  2. EV-SOMCRR-EZKIT Schematic
    Demo Board Schematic
    Schematic for EV-SOMCRR EZ-KIT

    PDF

    EV-SOMCRR EZ-KIT Schematic

    6.4 M

  3. UG-1439: Evaluating the AD5292 Digital Potentiometer
    User Guide
    This user guide describes the full featured EVAL-AD5292DBZ board for evaluating the AD5292 digital potentiometer.

    PDF

    UG-1439: Evaluating the AD5292 Digital Potentiometer

    1.09 M

  4. UG-670: Evaluating Universal Precision High-Voltage Op Amps in SOIC Packages
    User Guide

    PDF

    UG-670: Evaluating Universal Precision High-Voltage Op Amps in SOIC Packages

    304 kB

  5. UG-1449: Evaluating the AD5290 Compact, 30 V/±15 V, 256-Position Digital Potentiometer
    User Guide
    This user guide describes the full featured EVAL-AD5290DBZ board for evaluating the AD5290 digital potentiometer.

    PDF

    UG-1449: Evaluating the AD5290 Compact, 30 V/±15 V, 256-Position Digital Potentiometer

    910.95 K

  6. EVAL-ADA4620-1 User Guide: Evaluating the ADA4620-1 36 V, Precision, Low Noise, 16.5 MHz JFET Op Amp
    User Guide
    The EVAL-ADA4620-1ARZ is an evaluation board designed for the ADA4620-1, a 36 V, precision, low noise, low offset drift, JFET op amp, available in an 8-lead SOIC package.

    PDF

    EVAL-ADA4620-1 User Guide: Evaluating the ADA4620-1 36 V, Precision, Low Noise

    618.11 K

  7. EVAL-ADA4620-2 User Guide: Evaluating the ADA4620-2 36 V, Precision, Low Noise, 16.5 MHz JFET Op Amp
    User Guide
    The EVAL-ADA4620-2ARZ is an evaluation board designed for the ADA4620-2, a 36 V, precision, low noise, low offset drift, JFET op amp, available in an 8-lead SOIC package.

    PDF

    VAL-ADA4620-2 User Guide: Evaluating the ADA4620-2 36 V, Precision, Low Noise

    801.99 K

  8. EVAL-KW4503Z User Guide: ADA4510-2 Stability + LED Carrier KWIK Demo Board
    User Guide
    The EVAL-KW4503Z is a know-how with integrated knowledge (KWIK) demonstration board designed to familiarize its users how to predict, measure, and simulate the stability and phase margin of an operational amplifier (op amp).

    PDF

    EVAL-KW4503Z User Guide: ADA4510-2 Stability LED Carrier KWIK Demo Board

    2.42 M

  9. UG-2133: Evaluating the ADA4510-2 Precision, 40 V, ±70 nV/°C, Rail-to-Rail Input and Output Op Amp with DigiTrim
    User Guide
    The EVAL-ADA4510-2ARZ is an evaluation board used to test the ADA4510-2, a dual-channel, low input bias current amplifier that comes in an 8‑lead, standard small outline package (SOIC_N).

    PDF

    UG-2133: Evaluating the ADA4510-2 Precision, Rail-to-Rail Input/Output Op Amp

    794.14 K

  10. EVAL-KW4502Z User Guide: Evaluating Low-Frequency Noise of Operational Amplifiers
    User Guide
    The EVAL-KW4502Z is a demonstration board for evaluating the low-frequency noise of three general operational amplifiers (op amp): (1) low power op amp, (2) low noise, bipolar op amp, and (3) low noise, zero drift op amp.

    PDF

    EVAL-KW4502Z User Guide: Evaluating Low-Frequency Noise of Operational Amplifier

    1.66 M

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Results on EngineerZone

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    1. Output current drift in VI converter using AD8276 and ADA4610-2

      Forum Thread
      Answered
      Specialty Amplifiers
      09 October, 2015
      Hello, I designed a VI converter using AD8276 difference amplifier and ADA4610-2 operational amplifier as shown on the schematic attached. The circuit was designed with reference to CN0099 current source reference design. During the measurement, the input VIN is connected to AGND and the output is monitored at IOUT …
      Operational Amplifiers (Op Amps)amplifiersdriftADA4610-2ad8276Specialty AmplifiersDifference AmplifiersLow Input Bias Current Op Amps (&le;100 pA)vi converterada4610

    2. Current Noise Density of ADA4610

      Forum Thread
      Answered
      Differential Amplifiers and ADC Drivers
      26 June, 2019
      Hello, I am looking for information on current noise density for ADA4610, on parametric search it is listed as 1fA/(hz)^.5 but i see no reference in the datasheet for that value. I assume the 1fA is a default value when one isn't listed or can I trust …
      ada4610

    3. ADA4610-1 Maximum Supply Voltage.

      Forum Thread
      Answered
      Operational Amplifiers
      26 March, 2018
      The device's datasheets specify a maximum supply voltage of +/- 18V. Does this device have to supply a positive voltage? My design is a structure that can only supply 24V of voltage. I want to supply V +: 24V, V-: 0V. Is there any problem with performance even if it works …
      Operational Amplifiers (Op Amps)amplifiersADA4610-1ada4610High Voltage Op Amps =12V

    4. ADA4610 Single Supply

      Forum Thread
      Answered
      Other Products (EN)
      08 April, 2016
      Using ADA4610 for color light diode sensor ... prefer to use just a single +5V supply vs the +/- 5V supplies. Any notes on the successful hookup? Issues that may be expected?
      ada4610

    5. Regarding variations in voltage noise density (ADA4610-1&ADA4898-1)

      Forum Thread
      Answered
      Operational Amplifiers
      12 October, 2023
      Hello If you know the maximum value of voltage noise density for the following products, please let me know.・ADA4610-1・ADA4898-1 If you do not have detailed data, a rough value of 1.5 times or 3 times the typical value is fine. I would appreciate it if …
      Operational Amplifiers (Op Amps)Datasheet/SpecsamplifiersADA4610-1ADA4898-1Precision Op Amps (Vos &le;1mV &amp; TCVos &le;2uV/C)ADA4610-1 ADA4898-1High Voltage Op Amps =12V

    6. About the electrical characteristic data of ADA4610 when V+=15V, V-=0V

      Forum Thread
      Answered
      Operational Amplifiers
      20 September, 2023
      Hello I am considering ADA4610-2 and ADA4610-4.I am thinking of using the power supply voltage under the conditions of V+=15V, V-=0V, but there was no data under these conditions in the data sheet.I would appreciate it if you could share the data if you …
      Operational Amplifiers (Op Amps)Datasheet/SpecsamplifiersADA4610-2ada4610-4Low Input Bias Current Op Amps (&le;100 pA)ADA4610-2 ADA4610-4

    7. Defects of ADA4610 that its datasheet doesnot have input current noise density

      Forum Thread
      Answered
      Operational Amplifiers
      21 February, 2023
      Hi,ADI !!! When evaluating the noise caused by the input current noise density, the input current noise density was not found in the ADA4610 data manual! I appreciate feedback on it .
      Operational Amplifiers (Op Amps)amplifiershardwareADA4610-2Low Input Bias Current Op Amps (&le;100 pA)

    8. AD8672 vs ADA4610-2 problem

      Forum Thread
      Answered
      Operational Amplifiers
      23 August, 2022
      Hi All.I have the next problem. Have the scheme, previously i used the ADA4610-2, but now, with the problem accessibility of parts, changed to AD8672. On PP197 (Ux3) the amplifier starting generate the square signal +Vcc to -Vcc with frequency 1Hz.(but if i resolder to ADA4610-2 …
      Operational Amplifiers (Op Amps)amplifiershardwaread8672ADA4610-2Precision Op Amps (Vos &le;1mV &amp; TCVos &le;2uV/C)Low Input Bias Current Op Amps (&le;100 pA)

    9. ADA4610-2ARMZ

      Forum Thread
      Answered
      Operational Amplifiers
      08 March, 2022
      Several of our clients have requested that we confirm the ADA4610-2ARMZ, is not impacted by the current Ukraine\Russia crisis ? Can AD state that this components raw material sourcing and production are not affected by the crisis ? Regards, Sean

    10. ADA4610-2ARMZ

      Forum Thread
      Answered
      Differential Amplifiers and ADC Drivers
      12 December, 2020
      Hello, I would like to understand the behavior of the amplifier output source impedance if one of the dual rails became disconnected. I am operating the amplifier on +/-5V and driving a single ended ADC (3.3V supply). I am looking at possible failure scenarios where either +/-5V supply may …

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