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ZXMP6A13FTA-VB, a P-channel SOT23-3 MOSFET datasheet parameters video explanatio
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**Product model:** ZXMP6A13FTA-VB .
**Silk screen:** VB2658 .
**Brand:** VBsemi .
**Parameters:**.
- Package: SOT23 .
- Type: P—Channel .
- Rated voltage: -60V.
- Rated current: -5.2A.
- On-state resistance (RDS(ON)): 40mΩ @ VGS=10V, VGS=20V.
- Threshold voltage (Vth): -2V .
.
**Package:** SOT23 .
.
**Detailed parameter description and application Introduction:**.
This device is a P-Channel field effect transistor in SOT23 package, suitable for a variety of application scenarios. Key parameters include negative voltage rating, low on-state resistance, and moderate threshold voltage, allowing for good performance under varying power and load conditions. .
.
**Application Areas:**.
1. **Power Management Module:** Due to its negative voltage rating, it can be used in switching power supplies and inverters in power management modules. .
2. **Battery protection module:** Suitable for mobile devices and battery-powered systems, providing reliable protection for batteries. .
3. **Signal switch module:** In scenarios where high-performance signal switches are required, it can be used to implement signal switching and level conversion. .
.
**Function:**.
- **Power management module:** Used for switching power supply and inverter to achieve high-efficiency conversion of power supply. .
- **Battery Protection Module:** Provides reliable protection for the battery against overcurrent and overvoltage. .
- **Signal switch module:** As part of the signal switch, it ensures stable signal switching and level conversion. .
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**Usage Precautions:**.
1. Please operate in accordance with the maximum ratings provided in the data sheet to ensure the reliability and stability of the device. .
2. Consider heat dissipation needs in the design, especially in high current and high power applications. .
3. Make sure to use it within the appropriate voltage range below the threshold voltage (Vth) to ensure normal operation. .
4. Avoid exceeding the rated voltage and current to avoid damaging the device.

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