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FDMC013P030Z
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FDMC013P030Z Description
FDMC013P030Z Description
The FDMC013P030Z from onsemi is a high-performance P-channel MOSFET designed for power management applications requiring low on-resistance and high current handling. With a 30V drain-to-source voltage (Vdss) and 54A continuous drain current (Id), this device is optimized for efficiency in demanding circuits. Its 7mOhm maximum Rds(on) at 14A, 10V ensures minimal conduction losses, while the ±25V gate-to-source voltage (Vgs) tolerance enhances robustness in varied operating conditions. Packaged in an 8MLP (Tape & Reel), it is suitable for automated surface-mount assembly.
FDMC013P030Z Features
- Low Rds(on): 7mOhm @ 14A, 10V for reduced power dissipation.
- High Current Capability: 54A (Tc) continuous drain current supports high-load applications.
- Optimized Gate Charge: 135nC @ 10V ensures fast switching with minimal drive losses.
- Wide Vgs Range: ±25V enhances flexibility in gate drive design.
- Compact & Reliable: 8MLP package with MSL1 (Unlimited) moisture sensitivity, ideal for industrial environments.
- Compliance: ROHS3 Compliant and REACH Unaffected, meeting environmental standards.
FDMC013P030Z Applications
This MOSFET excels in:
- DC-DC Converters: Efficient power conversion in step-down/step-up topologies.
- Motor Control: High-current handling for brushed/brushless motor drivers.
- Battery Management Systems (BMS): Low-loss switching in charge/discharge circuits.
- Load Switches: Robust performance in high-side switching applications.
- Automotive Electronics: Suitable for 12V/24V systems due to its 30V Vdss rating.
Conclusion of FDMC013P030Z
The FDMC013P030Z combines low on-resistance, high current capability, and fast switching in a compact surface-mount package, making it ideal for power-efficient designs. While marked Obsolete, its performance metrics remain competitive for legacy or niche applications requiring P-channel MOSFETs with 30V tolerance and 54A throughput. Engineers should verify alternative solutions for new designs but can leverage this device’s proven reliability in existing systems.



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