China WSD46N10DN56 Dual N-Ch 100V 40A DFN5X6-8L WINSOK MOSFET Suppliers, Distributor

Part Number:WSD46N10DN56 BVDSS:100V ID:40A RDSON:14mΩ   Channel:Dual N-Ch Package:DFN5X6-8L

Product Description

The voltage of WSD46N10DN56 MOSFET is 100V, the current is 40A, the resistance is 14mΩ, the channel is Dual N-Ch, and the package is DFN5X6-8L.
Voltage 100V
Current 40A
Resistance 14mΩ
Channel Dual N-Ch
Package DFN5X6-8L
Applications
E-cigarette Wireless charger Motor Drone Medical Car charger Controller Digital products Small appliances Consumer electronics
Technical Specifications

Part number

Configuration

Type

VDS

VGS

ID (A)

RDS(ON) (mΩ)

RDS(ON) (mΩ)

Ciss

Package

@10V

@6V

@4.5V

@2.5V

@1.8V

(V)

±(V)

Max.

Typ.

Max.

Typ.

Max.

Typ.

Max.

Typ.

Max.

Typ.

Max.

(pF)

WSD46N10DN56

Dual

N-Ch

100

20

40

14

20

-

-

18

30

-

-

-

-

1010

DFN5X6-8L

Frequently Asked Questions
What are the primary specifications of the WSD46N10DN56 MOSFET?
The WSD46N10DN56 is a Dual N-Channel MOSFET featuring a drain-to-source voltage (VDS) of 100V, a continuous drain current (ID) of 40A, and a typical gate-source resistance (RDS(ON)) of 14mΩ.
What package style is used for the WSD46N10DN56?
This MOSFET comes in a DFN5X6-8L package, which offers a compact footprint and excellent thermal performance.
What applications are suitable for this MOSFET?
WSD46N10DN56 is highly suited for e-cigarettes, wireless chargers, motors, drones, medical equipment, car chargers, controllers, digital products, small appliances, and consumer electronics.
What is the gate-to-source voltage (VGS) rating?
The gate-to-source voltage (VGS) rating for the WSD46N10DN56 is ±20V.
What is the typical input capacitance (Ciss) value of the WSD46N10DN56?
The typical input capacitance (Ciss) value for this MOSFET is 1010 pF, which helps ensure efficient switching characteristics.
What is the maximum RDS(ON) resistance at different gate voltages?
At a gate voltage of 10V, the maximum RDS(ON) is 20mΩ (typical 14mΩ). At 4.5V, the maximum RDS(ON) is 30mΩ (typical 18mΩ).

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