NDS9952A: Dual N & P-Channel Enhancement Mode Field Effect Transistor
These dual N- and P-channel enhancement mode power field effect transistors are produced using Fairchild's proprietary, high cell density, DMOS technology. This very high density process is especially tailored to minimize on-state resistance, provide superior switching performance, and withstand high energy pulses in the avalanche and commutation modes. These devices are particularly suited for low voltage applications such as notebook computer power management and other battery powered circuits where fast switching, low in-line power loss, and resistance to transients are needed.
Features
- N-Channel 3.7A, 30V, RDS(ON)=0.08W @ VGS=10V,
P-Channel -2.9A, -30V, RDS(ON)=0.13W @ VGS=-10V.
- High density cell design for extremely low RDS(ON).
- High power and current handling capability in a widely used surface mount package.
- Dual (N & P-Channel) MOSFET in surface mount package.
Ordering CodeProduct | Product & Eco Status | Unit Price/1K Order | Packing Method Convention | Package Marking Convention* |
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NDS9952A | Full Production
Green as of Jan 2015
China RoHS | $0.3551 | SO 8L NB
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1.75 x 3.9 x 4.9mm,
TAPE REEL | Line 1$Y (Fairchild logo) &Z (Plant Code) &2 (2-Digit Date Code) &K
Line 2NDS
Line 39952A
|
Application Notes
AN-4163 Shielded Gate PowerTrench® MOSFET Datasheet Explanation Last Update : 23-Oct-2014AN-9034 Power MOSFET Avalanche Guideline Last Update : 05-Mar-2011AN-7510 A New PSPICE Subcircuit for the Power MOSFET Featuring Global Temperature Options Last Update : 05-Mar-2011AN-9010 MOSFET Basics Last Update : 09-Sep-2013AN-9065 FRFET® in Synchronous Rectification Last Update : 28-Jun-2014AN-7515 A Combined Single-Pulse and Repetitive UIS Rating System Last Update : 03-Mar-2011AN-7533 A Revised MOSFET Model With Dynamic Temperature Compensation Last Update : 05-Mar-2011AN-558 Introduction to Power MOSFETs and their Applications Last Update : 29-Mar-2016AN-9005 Driving and Layout Design for Fast Switching Super-Junction MOSFETs Last Update : 26-Nov-2014