Model: 16N05-VB. Screen printing: VBE1638. Brand: VBsemi. Package: TO-252. Channel type: N—Channel. Maximum voltage (VDS): 60V . Maximum current (ID): 45A. On-resistance (RDS(ON)): 24mΩ @ VGS=10V, VGS=20V. Gate threshold voltage (Vth): 1.8V. . **Detailed parameter description:**. 1. **Channel type:** N—Channel, indicating that this is an N-channel MOSFET. . 2. **Maximum voltage (VDS):** 60V, indicating the maximum drain-source voltage that the device can withstand. . 3. **Maximum current (ID):** 45A, indicating the maximum drain current that the device can withstand. . 4. **On-resistance (RDS(ON)):** 24mΩ @ VGS=10V, VGS=20V, this is the drain-source resistance in the on-state at different gate voltages . . 5. **Gate threshold voltage (Vth):** 1.8V, which is the minimum gate voltage required to put the device into a conductive state. . . **Application Introduction:**. 16N05-VB is an N-channel field effect transistor (MOSFET) commonly used in power switching and regulation applications. Its low on-resistance, high current characteristics, and moderate voltage tolerance make it useful in a variety of power supply and switching circuits. . . **Application fields:**. 1. **Power switch:** Used in power switching circuits, including switching power supplies and DC-DC converters. . 2. **Motor Control:** Suitable for motor control circuits, such as DC motor control and stepper motor drive. . 3. **Lighting Application:** Can be used as switching power supply and lighting control in LED lighting systems. . 4. **Automotive Electronics:** Power management and control units in automotive electronic systems. . . **Usage Precautions:**. 1. **Maximum Ratings:** Do not exceed the maximum current and voltage values specified in the device specifications. . 2. **Heat dissipation:** For high power applications, proper heat dissipation is required to ensure that the device operates at normal operating temperature. . 3. **Electrostatic protection:** When handling and installing devices, please take electrostatic protection measures to prevent damage to the device caused by electrostatic discharge. . 4. **Application circuit design:** When designing the circuit, please refer to the data sheet and application notes provided by the manufacturer to ensure the correct power supply and control circuit. . . The above information is general advice based on the parameters provided and general experience. For practical applications, always refer to the specific data sheets and application guides provided by the manufacturer.
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