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  1. KA431SAMF2TF – Shunt Voltage Reference IC Adjustable 2.495V 36 VV ±1% 100 mA SOT-23F-3 from onsemi. Pricing and Availability on millions of electronic components from Digi-Key Electronics.

    • Onsemi
  2. May 27, 2024 · KA431SAMF2TF onsemi / Fairchild Voltage References PROGRAMMABLE SHUNT REGULATOR 1% datasheet, inventory, & pricing.

    • Onsemi / Fairchild
    • SMD/SMT
    • onsemi
    • Voltage References
  3. KA431SL. Description. The KA431S / KA431SA / KA431SL are three−terminal adjustable regulator series with a guaranteed thermal stability over the operating temperature range. The output voltage can be set to any value between VREF (approximately 2.5 V) and 36 V with two external resistors.

    • 226KB
    • 8
  4. Features. • Programmable Output Voltage to 36 V. • Low Dynamic Output Impedance 0.2 Ω (Typical) • Sink Current Capability: 1.0 to 100 mA. • Equivalent Full-Range Temperature Coefficient of 50 ppm/°C (Typical) • Temperature Compensated for Operation Over Full Rated Operating Temperature Range. • Low Output Noise Voltage. • Fast Turn-on Response.

  5. KA431SAMF2TF. Mfr.: onsemi / Fairchild. Customer No: Description: Voltage References PROGRAMMABLE SHUNT REGULATOR 1% Datasheet: KA431SAMF2TF Datasheet (PDF) ECAD Model: Download the free Library Loader to convert this file for your ECAD Tool. Learn more about the ECAD Model. More Information. Learn more about onsemi / Fairchild KA431SAMF2TF.

    • Onsemi / Fairchild
  6. 4 days ago · More Information. Learn more about onsemi / Fairchild KA431SAMFTF. Compare Product. Add To Project | Add Notes. In Stock: 64,378. Stock: 64,378. Can Ship Immediately. On Order: 201,000. Expected 05-Aug-24. Factory Lead-Time: 24.

    • Onsemi / Fairchild
  7. Features. •Programmable Output Voltage to 36 V. •Low Dynamic Output Impedance: 0.2 (Typical) •Sink Current Capability: 1.0 to 100 mA. •Equivalent Full−Range Temperature Coefficient of 50 ppm/°C (Typical) •Temperature Compensated for Operation Over Full Rated Operating Temperature Range. •Low Output Noise Voltage. •Fast Turn−on Response. Figure 1.