M3H68TAD-R
AI

The **M3H68TAD-R** is a high-performance power management component, specifically an **N-Channel Enhancement Mode Trench Power MOSFET**. It is commonly used in power switching applications, DC-DC converters, and motor control due to its high efficiency and low thermal resistance.
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### 1. Key Technical Specifications
The following table highlights the primary electrical characteristics of the M3H68TAD-R:
| Parameter | Symbol | Typical Value |
| :--- | :--- | :--- |
| **Drain-Source Voltage** | $V_{DSS}$ | 30V |
| **Continuous Drain Current** | $I_D$ | 60A - 80A (depending on cooling) |
| **Static Drain-Source On-Resistance** | $R_{DS(on)}$ | ~6.5mΩ @ $V_{GS}$ = 10V |
| **Gate Threshold Voltage** | $V_{GS(th)}$ | 1.0V to 2.5V |
| **Package Type** | Package | TO-252 (D-PAK) |
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### 2. Functional Features
* **Trench Technology:** Uses a high-density cell design to achieve extremely low $R_{DS(on)}$, which minimizes power loss during conduction.
* **Fast Switching:** Optimized for high-frequency switching applications, reducing switching losses.
* **Thermal Efficiency:** The TO-252 package allows for excellent heat dissipation when mounted on a PCB with adequate copper trace area.
* **Logic Level Compatibility:** The low gate threshold voltage allows the MOSFET to be driven directly by 5V logic circuits or microcontrollers.
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### 3. Pin Configuration (TO-252)
When looking at the part from the front (leads pointing down):
1. **Gate (G):** Controls the "on" and "off" state of the MOSFET.
2. **Drain (D):** The center lead and the large metal tab on the back.
3. **Source (S):** Usually connected to the system ground or negative load side.
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### 4. Common Applications
* **Motherboards & Servers:** Used in VRM (Voltage Regulator Module) circuits to step down voltage for CPUs.
* **DC-DC Converters:** Buck or Boost converters for power supplies.
* **Motor Drivers:** Ideal for H-bridge configurations in small to medium DC motors.
* **Battery Protection:** Integrated into BMS (Battery Management Systems) for load switching.
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What are the equivalent replacement parts for the M3H68TAD-R?
- ⤷ How do I calculate the heat sink requirements for this MOSFET at 40A?
- ⤷ What is the maximum gate-source voltage ($V_{GS}$) to avoid damaging the component?