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  1. Designed for general−purpose power amplifier and switching applications. NOTE: Effective June 2012 this device will be available only in the TO−247 package. Reference FPCN# 16827. …

  2. TIP35C Datasheet(PDF) - STMicroelectronics

    Description: COMPLEMENTARY SILICON HIGH POWER TRANSISTORS. Manufacturer: STMicroelectronics.

  3. TIP35C STMicroelectronics | Discrete Semiconductor Products

    TIP35C – Bipolar (BJT) Transistor NPN 100 V 25 A 3MHz 125 W Through Hole TO-247-3 from STMicroelectronics. Pricing and Availability on millions of electronic components from Digi-Key …

  4. In order to meet environmental requirements, ST offers these devices in ECOPACK® packages. These packages have a Lead-free second level interconnect . The category of second level …

  5. TIP35C Transistor Pinout, Equivalents, Uses, Technical Specs ...

    Sep 11, 2022 · If you are searching for a high power transistor that can drive load of upto 25A with 100V then TIP35C might be a good choice. It is a NPN transistor available in TO-218 & TO …

  6. TIP35C Datasheet and Replacement - All Transistors

    UNISONIC TECHNOLOGIES CO., LTD TIP35C NPN SILICON TRANSISTOR HIGH POWER TRANSISTORS DESCRIPTION The UTC TIP35C is a NPN Expitaxial-Base transistor, …

  7. TIP35C - Complementary power transistors - STMicroelectronics

    The devices are manufactured in epitaxial-base planar technology and are suitable for power linear and switching applications. Speed up your design by downloading all the EDA symbols, …

  8. General Purpose and Low VCE(sat) Transistors | TIP35C - onsemi

    The Bipolar Power Transistor is designed for general purpose power amplifier and switching applications. The TIP35A, TIP35B, TIP35C (NPN); TIP36A, TIP36B, TIP36C (PNP) are …

  9. TIP35C STMicroelectronics | Mouser

    3 days ago · TIP35C STMicroelectronics Bipolar Transistors - BJT NPN Gen Pur Power datasheet, inventory, & pricing.

  10. TIP35C,36C Datasheet by STMicroelectronics | Digi-Key Electronics

    2. 1 Elect r ica l cha ract er is tic (c ur ves) Figure 2. DC current g ain f or NPN type Figure 3. DC curr e nt gain fo r PNP type. Figure 4. DC cur rent ga in for NPN type Figure 5. DC current …

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