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Quantity | Price |
---|---|
1+ | $0.473 |
10+ | $0.310 |
25+ | $0.251 |
50+ | $0.192 |
100+ | $0.132 |
250+ | $0.123 |
500+ | $0.112 |
1000+ | $0.102 |
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Multiple: 5
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Product Information
ManufacturerNEXPERIA
Manufacturer Part NoNX3008NBKS,115
Newark Part No.75T7842
Technical Datasheet
Channel TypeN Channel
Drain Source Voltage Vds N Channel30V
Continuous Drain Current Id350mA
Drain Source Voltage Vds30V
Drain Source Voltage Vds P Channel30V
Continuous Drain Current Id N Channel350mA
Continuous Drain Current Id P Channel350mA
Drain Source On State Resistance N Channel1ohm
Drain Source On State Resistance P Channel1ohm
Transistor Case StyleSOT-363
No. of Pins6Pins
Power Dissipation N Channel445mW
Power Dissipation P Channel445mW
Operating Temperature Max150°C
Product Range-
Qualification-
MSL-
SVHCNo SVHC (21-Jan-2025)
Product Overview
The NX3008NBKS is a dual N-channel enhancement mode Field-Effect Transistor (FET) in a surface mounted device (SMD) plastic package using Trench MOSFET technology. Suitable for high-speed line driver and low-side loadswitch.
- Very fast switching
- Low threshold voltage
- Up to 2kV ESD protection
- AEC-Q101 Qualified
Applications
Industrial
Technical Specifications
Channel Type
N Channel
Continuous Drain Current Id
350mA
Drain Source Voltage Vds P Channel
30V
Continuous Drain Current Id P Channel
350mA
Drain Source On State Resistance P Channel
1ohm
No. of Pins
6Pins
Power Dissipation P Channel
445mW
Product Range
-
MSL
-
Drain Source Voltage Vds N Channel
30V
Drain Source Voltage Vds
30V
Continuous Drain Current Id N Channel
350mA
Drain Source On State Resistance N Channel
1ohm
Transistor Case Style
SOT-363
Power Dissipation N Channel
445mW
Operating Temperature Max
150°C
Qualification
-
SVHC
No SVHC (21-Jan-2025)
Technical Docs (3)
Alternatives for NX3008NBKS,115
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Legislation and Environmental
US ECCN:EAR99
EU ECCN:Unknown
RoHS Compliant:Yes
RoHS
RoHS Phthalates Compliant:Yes
RoHS
SVHC:No SVHC (21-Jan-2025)
Download Product Compliance Certificate
Product Compliance Certificate
Product traceability