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NTMTSC1D6N10MCTXG
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NTMTSC1D6N10MCTXG Description
NTMTSC1D6N10MCTXG Description
The NTMTSC1D6N10MCTXG from onsemi is a high-performance N-channel MOSFET designed for demanding power management applications. With a 100V drain-to-source voltage (Vdss) and continuous drain current (Id) ratings of 35A (Ta) / 267A (Tc), this device delivers robust power handling in a compact 8TDFNW surface-mount package. Its ultra-low on-resistance (Rds(on)) of 1.7mΩ @ 90A, 10V ensures minimal conduction losses, making it ideal for high-efficiency designs. The MOSFET features ±20V gate-to-source voltage (Vgs) tolerance, 7630pF input capacitance (Ciss), and 106nC total gate charge (Qg), optimizing switching performance in high-frequency circuits.
NTMTSC1D6N10MCTXG Features
- High Power Density: Combines 291W (Tc) power dissipation with a wettable flank package for enhanced thermal management and solder joint inspection.
- Low Conduction Losses: 1.7mΩ Rds(on) minimizes heat generation, improving efficiency in high-current applications.
- Fast Switching: Optimized Qg (106nC) and Ciss (7630pF) reduce switching losses, suitable for PWM and DC-DC converters.
- Reliability: ROHS3 compliant, REACH unaffected, and MSL 1 (unlimited) rated for long-term durability.
- Versatile Drive Compatibility: 4V max Vgs(th) ensures compatibility with 3.3V/5V/10V gate drivers.
NTMTSC1D6N10MCTXG Applications
- Automotive Systems: Ideal for 48V mild-hybrid inverters, LED drivers, and battery management (BMS) due to high current handling and AEC-Q101 potential.
- Industrial Power: Used in motor drives, solar MPPT controllers, and industrial SMPS for its low Rds(on) and thermal stability.
- Consumer Electronics: Efficient power switching in gaming PCs, high-end servers, and fast-charging adapters.
- Renewable Energy: Suitable for DC-AC inverters and energy storage systems requiring high-voltage blocking.
Conclusion of NTMTSC1D6N10MCTXG
The NTMTSC1D6N10MCTXG stands out for its exceptional power density, low Rds(on), and rugged packaging, making it a top choice for high-efficiency, high-reliability applications. Its balance of switching speed, thermal performance, and compliance with environmental standards positions it as a superior alternative to conventional MOSFETs in automotive, industrial, and renewable energy systems.




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