Overview
The FDMA908PZ is a P-Channel PowerTrench® MOSFET produced by onsemi. This device is specifically designed for battery charge or load switching in cellular handsets and other ultraportable applications. It is known for its low on-resistance and high current handling capabilities, making it suitable for a variety of power management tasks.
Key Specifications
Parameter | Value |
---|---|
Voltage Rating (Vds) | -12V |
Current Rating (Id) | -12A (Continuous), -40A (Pulsed) |
On-Resistance (Rds(on)) | 12.5mΩ @ 4.5V |
Power Dissipation (Pd) | 2.4W |
Threshold Voltage (Vth) | 400mV |
Package Type | MicroFET (2x2) |
Key Features
- Dual-protected low-side smart, discrete device with temperature and current limit
- Low on-resistance for efficient power handling
- Standard 40V gate level power MOSFET
- ESD protection
- Compact MicroFET (2x2) package
Applications
- Battery charge or load switching in cellular handsets
- Other ultraportable applications
- Motor driver applications
Q & A
- What is the voltage rating of the FDMA908PZ MOSFET? The voltage rating is -12V.
- What is the continuous current rating of the FDMA908PZ? The continuous current rating is -12A.
- What is the on-resistance of the FDMA908PZ at 4.5V? The on-resistance is 12.5mΩ at 4.5V.
- What is the power dissipation of the FDMA908PZ? The power dissipation is 2.4W.
- What is the threshold voltage of the FDMA908PZ? The threshold voltage is 400mV.
- What type of package does the FDMA908PZ come in? The FDMA908PZ comes in a MicroFET (2x2) package.
- Does the FDMA908PZ have ESD protection? Yes, the FDMA908PZ has ESD protection.
- What are some common applications of the FDMA908PZ? Common applications include battery charge or load switching in cellular handsets and other ultraportable applications, as well as motor driver applications.
- What is the maximum pulsed current rating of the FDMA908PZ? The maximum pulsed current rating is -40A.
- Is the FDMA908PZ a dual-protected device? Yes, the FDMA908PZ is a dual-protected low-side smart, discrete device with temperature and current limit.