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  1. Mar 8, 2008 · The ADR290, ADR291 and ADR292 are low noise, micro-power precision voltage references that use an XFET ™ reference circuit. The new XFET ™ architecture offers significant performance improvements over traditional bandgap and Zenerbased references. Improvements include: one quarter the voltage noise output of bandgap references operating at ...

  2. GENERAL DESCRIPTION. The ADR290, ADR291 and ADR292 are low noise, micro-power precision voltage references that use an XFETTMrefer-ence circuit. The new XFETTM architecture offers significant performance improvements over traditional bandgap and Zener-based references.

  3. The ADR291/ADR292 family is a series of voltage references providing stable and accurate output voltages from supplies as low as 2.8 V for the ADR291. Output voltage options are 2.5 V and 4.096 V for the ADR291 and ADR292, respectively. Quiescent current is only 12 μA, making these devices ideal for battery-powered instrumentation.

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  4. ADR290 Product details. GENERAL DESCRIPTION. The ADR290, ADR291 and ADR292 are low noise, micropower precision voltage references that use an XFET™ reference circuit. The new XFET architecture offers significant performance improvements over traditional bandgap and Zener-based references.

  5. Order today, ships today. ADR290GR – Series Voltage Reference IC Fixed 2.048V V ±0.29% 5 mA 8-SOIC from Analog Devices Inc.. Pricing and Availability on millions of electronic components from Digi-Key Electronics.

    • Analog Devices Inc.
    • 2156-ADR290GR-ND
    • LOW NOISE UPOWER PRECISION V-REF
    • Analog Devices Inc.
  6. The ADR290, ADR291 and ADR292 are low noise, micropower precision voltage references that use an XFETTM reference circuit. The new XFET architecture offers significant performance improvements over traditional bandgap and Zener-based references.

  7. The ADR290, ADR291 and ADR292 are low noise, micropower precision voltage references that use an XFET® reference circuit. The new XFET architecture offers significant performance improvements over traditional bandgap and Buried Zener-based references.