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Product Information
ManufacturerDIODES INC.
Manufacturer Part NoDMP3056LSD
Newark Part No.65T8232
Technical Datasheet
Channel TypeP Channel
Drain Source Voltage Vds N Channel30V
Continuous Drain Current Id6.9A
Drain Source Voltage Vds30V
Drain Source Voltage Vds P Channel30V
Continuous Drain Current Id N Channel6.9A
Continuous Drain Current Id P Channel6.9A
Drain Source On State Resistance N Channel0.045ohm
Drain Source On State Resistance P Channel0.045ohm
Transistor Case StyleSOIC
No. of Pins8Pins
Power Dissipation N Channel2.5W
Power Dissipation P Channel2.5W
Operating Temperature Max150°C
Product Range-
Qualification-
MSLMSL 1 - Unlimited
SVHCNo SVHC (27-Jun-2024)
Product Overview
The DMP3056LSD is a dual P-channel enhancement-mode MOSFET designed to minimize the ON-state resistance RDS (ON) and yet maintain superior switching performance. It is ideal for high efficiency backlighting and DC-to-DC converter applications.
- Low ON-resistance
- Low gate threshold voltage
- Low input capacitance
- Fast switching performance
- Low input/output leakage
- Halogen-free
- UL94V-0 Flammability rating
Applications
Industrial, Power Management, Lighting
Technical Specifications
Channel Type
P Channel
Continuous Drain Current Id
6.9A
Drain Source Voltage Vds P Channel
30V
Continuous Drain Current Id P Channel
6.9A
Drain Source On State Resistance P Channel
0.045ohm
No. of Pins
8Pins
Power Dissipation P Channel
2.5W
Product Range
-
MSL
MSL 1 - Unlimited
Drain Source Voltage Vds N Channel
30V
Drain Source Voltage Vds
30V
Continuous Drain Current Id N Channel
6.9A
Drain Source On State Resistance N Channel
0.045ohm
Transistor Case Style
SOIC
Power Dissipation N Channel
2.5W
Operating Temperature Max
150°C
Qualification
-
SVHC
No SVHC (27-Jun-2024)
Technical Docs (1)
Associated Products
2 Products Found
Legislation and Environmental
US ECCN:EAR99
EU ECCN:Unknown
RoHS Compliant:Yes
RoHS
RoHS Phthalates Compliant:Yes
RoHS
SVHC:No SVHC (27-Jun-2024)
Download Product Compliance Certificate
Product Compliance Certificate
Product traceability