OEM WSD30L88DN56 Dual P-channel -30V -49A DFN5*6-8 WINSOK MOSFET Buy, In Stock

Product Description

The WSD30L88DN56 is the highest performance trench Dual P-Ch MOSFET with extreme high cell density, which provide excellent RDSON and gate charge for most of the synchronous buck converter applications. The WSD30L88DN56 meet the RoHS and Green Product requirement 100% EAS guaranteed with full function reliability approved.
Key Technical Features
Advanced High Cell Density Trench Technology
Super Low Gate Charge
Excellent CdV/dt Effect Decline
100% EAS Guaranteed
Green Device Available
Maximum Ratings & Specifications
Symbol Parameter Rating Units
VDS Drain-Source Voltage -30 V
VGS Gate-Source Voltage ±20 V
ID@TC=25℃ Continuous Drain Current, VGS @ -10V1 -49 A
ID@TC=100℃ Continuous Drain Current, VGS @ -10V1 -23 A
IDM Pulsed Drain Current2 -120 A
EAS Single Pulse Avalanche Energy3 68 mJ
PD@TC=25℃ Total Power Dissipation4 40 W
TSTG Storage Temperature Range -55 to 150
TJ Operating Junction Temperature Range -55 to 150
Applications
Ideal for High Frequency Point-of-Load Synchronous Buck Converter for MB/NB/UMPC/VGA, Networking DC-DC Power System, and Load Switch.
E-cigarettes Wireless charging Motors Drones Medical care Car chargers Controllers Digital products Small household appliances Consumer electronics
Frequently Asked Questions (FAQ)
❓ What type of MOSFET is the WSD30L88DN56?
The WSD30L88DN56 is a high-performance trench Dual P-Channel MOSFET designed with extremely high cell density.
❓ What is the Drain-Source Voltage (VDS) rating of this device?
The Drain-Source Voltage (VDS) rating for WSD30L88DN56 is -30V.
❓ Is the WSD30L88DN56 environmentally compliant?
Yes, it meets 100% of the RoHS and Green Product requirements, ensuring a reliable and eco-friendly standard.
❓ What is the operating temperature range for this MOSFET?
Both the operating junction temperature range (TJ) and storage temperature range (TSTG) are specified from -55 to 150 ℃.
❓ What are the primary applications for the WSD30L88DN56?
It is primarily used in High Frequency Point-of-Load Synchronous Buck Converters, networking DC-DC power systems, load switches, wireless charging systems, drone controllers, and various consumer electronics.
❓ What makes it suitable for high-efficiency applications?
Its advanced trench technology, super low gate charge, and excellent CdV/dt effect decline make it highly efficient with minimized power loss.

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