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BUK6510-75C

N-channel TrenchMOS FET

Standard and logic level gate drive N-channel enhancement mode Field-Effect Transistor (FET) in a plastic package using advanced TrenchMOS technology. This product has been designed and qualified to the appropriate AEC Q101 standard for use in high performance automotive applications.

This product has been discontinued, click here for discontinuation information and replacement parts.

Features and benefits

  • AEC-Q101 compliant
  • Suitable for standard and logic level gate drive sources
  • Suitable for thermally demanding environments due to 175 °C rating

Applications

  • 12 V Automotive systems
  • Electric and electro-hydraulic power steering
  • Motors, lamps and solenoid control management
  • Start-Stop micro-hybrid applications
  • Transmission control
  • Ultra high performance power switching

Parametrics

Type number Package version Package name Product status Channel type Nr of transistors VDS [max] (V) RDSon [max] @ VGS = 10 V (mΩ) RDSon [max] @ VGS = 5 V (mΩ) RDSon [max] @ VGS = 4.5 V (mΩ) Tj [max] (°C) ID [max] (A) QGD [typ] (nC) QG(tot) [typ] @ VGS = 10 V (nC) Ptot [max] (W) Qr [typ] (nC) VGSth [typ] (V) Automotive qualified Ciss [typ] (pF) Coss [typ] (pF) Release date
BUK6510-75C SOT78A TO-220AB End of life N 1 75 10.4 12.4 13 175 77 29.999998 81 158 105 2.3 Y 3938.0002 310 2010-12-13

Package

All type numbers in the table below are discontinued. See the table Discontinuation information for more information.

Type number Orderable part number, (Ordering code (12NC)) Status Marking Package Package information Reflow-/Wave soldering Packing
BUK6510-75C BUK6510-75C,127
(934064248127)
Obsolete BUK6510 75C P**XXYY AZ BATCH NO SOT78A
TO-220AB
(SOT78A)
SOT78A Not available

Environmental information

All type numbers in the table below are discontinued. See the table Discontinuation information for more information.

Type number Orderable part number Chemical content RoHS RHF-indicator
BUK6510-75C BUK6510-75C,127 BUK6510-75C rohs rhf rhf
Quality and reliability disclaimer

Documentation (18)

File name Title Type Date
BUK6510-75C N-channel TrenchMOS FET Data sheet 2010-12-13
AN10273 Power MOSFET single-shot and repetitive avalanche ruggedness rating Application note 2022-06-20
AN10874_ZH LFPAK MOSFET thermal design guide, Chinese version Application note 2020-04-30
AN11113_ZH LFPAK MOSFET thermal design guide - Part 2 Application note 2020-04-30
AN11156 Using Power MOSFET Zth Curves Application note 2021-01-04
AN11158 Understanding power MOSFET data sheet parameters Application note 2020-07-06
AN11158_ZH Understanding power MOSFET data sheet parameters Application note 2021-01-04
AN11160 Designing RC Snubbers Application note 2023-02-03
AN11243 Failure signature of Electrical Overstress on Power MOSFETs Application note 2017-12-21
AN11261 RC Thermal Models Application note 2021-03-18
AN11599 Using power MOSFETs in parallel Application note 2016-07-13
AN11172 Mounting instructions for SOT78 (TO-220AB); SOT186A (TO-220F) Application note 2021-05-21
Nexperia_package_poster Nexperia package poster Leaflet 2020-05-15
SOT78A plastic, single-ended package (heatsink mounted, 1 mounting hole); 3 leads; 2.54 mm pitch; 15.5 mm x 10 mm x 4.3 mm body Package information 2020-04-21
BUK6510-75C BUK6510-75C SPICE model SPICE model 2012-04-11
TN00008 Power MOSFET frequently asked questions and answers Technical note 2023-01-12
BUK6510-75C_RC_Thermal_Model BUK6510-75C Thermal design model Thermal design 2021-01-18
BUK6510-75C BUK6510-75C Thermal model Thermal model 2010-09-24

Support

If you are in need of design/technical support, let us know and fill in the answer form we'll get back to you shortly.

Models

File name Title Type Date
BUK6510-75C BUK6510-75C SPICE model SPICE model 2012-04-11
BUK6510-75C_RC_Thermal_Model BUK6510-75C Thermal design model Thermal design 2021-01-18
BUK6510-75C BUK6510-75C Thermal model Thermal model 2010-09-24

How does it work?

The interactive datasheets are based on the Nexperia MOSFET precision electrothermal models. With our interactive datasheets you can simply specify your own conditions interactively. Start by changing the values of the conditions. You can do this by using the sliders in the condition fields. By dragging the sliders you will see how the MOSFET will perform at the new conditions set.