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  1. DescripTion. The LM®329 temperature compensated 6.9V Zener references provide excellent stability over time and temperature, very low dynamic impedance and a wide operating current range. The device achieves low dynamic impedance by incorporating a high gain shunt regulator around the Zener.

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  2. Oct 2, 2017 · Features. Guaranteed 10 ppm/°C temperature coefficient. Guaranteed 1.0 ohms max. dynamic impedance. Guaranteed 20µV max. wideband noise. Wide operating current range 0.6mA to 15mA. Additional Details. Most H (Metal Can), J (Ceramic), and K (Metal Can) Packages Are Now Obsolete. Download Complete Datasheet for Details.

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  4. May 3, 2024 · LM329DZ Texas Instruments Voltage References datasheet, inventory, & pricing.

  5. 1,800. Order today, ships today. LM329DZ/NOPB – Shunt Voltage Reference IC Fixed 6.9V V -4.35%, +5.07% 15 mA TO-92-3 from Texas Instruments. Pricing and Availability on millions of electronic components from Digi-Key Electronics.

    • IC VREF SHUNT -4.35%/+5.07% TO92
    • Texas Instruments
    • LM329DZ/NOPB-ND
    • LM329DZ/NOPB
  6. Order today, ships today. LM329DZ#PBF – Shunt, Buried Zener Voltage Reference IC Fixed 6.9V V ±0.29% 15 mA TO-92-3 from Analog Devices Inc.. Pricing and Availability on millions of electronic components from Digi-Key Electronics.

    • IC VREF SHUNT 0.29% TO92-3
    • Analog Devices Inc.
    • LM329DZ#PBF-ND
    • LM329DZ#PBF
  7. LM329DZ/NOPB NRND TO-92 LP 3 1800 Green (RoHS & no Sb/Br) CU SN N / A for Pkg Type 0 to 70 LM329 DZ (1) The marketing status values are defined as follows: ACTIVE: Product device recommended for new designs. LIFEBUY: TI has announced that the device will be discontinued, and a lifetime-buy period is in effect. NRND: Not recommended for new designs.

  8. The LM329 is a precision multi-current temperature- compensated 6.9V zener reference with dynamic impedance a factor of 10 to 100 less than discrete diodes. Constructed in a single silicon chip, the LM329 uses active circuitry to buffer the internal zener allowing the device to operate over a 0.5 mA to 15 mA range with virtually no change in ...

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