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NTB75N06LT4G - Product Overview
Introduction
The NTB75N06LT4G is a power MOSFET belonging to the category of electronic components. This semiconductor device is widely used in various applications due to its unique characteristics and performance.
Basic Information Overview
- Category: Power MOSFET
- Use: The NTB75N06LT4G is commonly used for switching and amplifying electronic signals in power supply circuits, motor control, and other high-power applications.
- Characteristics: This MOSFET exhibits low on-state resistance, high switching speed, and low gate charge, making it suitable for high-efficiency power conversion.
- Package: The NTB75N06LT4G is typically available in a TO-263 package, providing efficient thermal dissipation and mechanical strength.
- Essence: Its essence lies in providing reliable and efficient power management solutions in various electronic systems.
- Packaging/Quantity: It is usually supplied in reels or tubes containing a specific quantity based on the manufacturer's specifications.
Specifications
- Voltage Rating: 60V
- Current Rating: 75A
- On-State Resistance (RDS(on)): 8.5mΩ (max)
- Gate-Source Voltage (VGS): ±20V
- Operating Temperature Range: -55°C to 175°C
- Package Type: TO-263
Detailed Pin Configuration
The NTB75N06LT4G follows the standard pin configuration for a TO-263 package:
1. Source (S)
2. Gate (G)
3. Drain (D)
Functional Features
- Low On-State Resistance: Enables minimal power loss and high efficiency in power conversion applications.
- High Switching Speed: Facilitates rapid switching transitions, suitable for high-frequency operation.
- Low Gate Charge: Allows for efficient control of the MOSFET, reducing drive circuit complexity and power dissipation.
Advantages and Disadvantages
Advantages
- High current-carrying capability
- Low conduction losses
- Fast switching speed
- Suitable for high-frequency applications
Disadvantages
- Sensitivity to static electricity
- Requires careful handling during assembly and operation
Working Principles
The NTB75N06LT4G operates based on the principles of field-effect transistors, where the voltage applied to the gate terminal controls the flow of current between the source and drain terminals. By modulating the gate-source voltage, the MOSFET can efficiently switch high currents with minimal power dissipation.
Detailed Application Field Plans
The NTB75N06LT4G finds extensive use in the following application fields:
- Switched-mode power supplies
- Motor control systems
- DC-DC converters
- Inverters for renewable energy systems
- Automotive powertrain and battery management
Detailed and Complete Alternative Models
- IRF3205
- FDP8870
- STP80NF55-06
In summary, the NTB75N06LT4G power MOSFET offers exceptional performance and reliability in various high-power electronic applications, making it a preferred choice for power management solutions.
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技術ソリューションにおける NTB75N06LT4G の適用に関連する 10 件の一般的な質問と回答をリストします。
What is the maximum drain-source voltage of NTB75N06LT4G?
- The maximum drain-source voltage of NTB75N06LT4G is 60V.
What is the continuous drain current rating of NTB75N06LT4G?
- The continuous drain current rating of NTB75N06LT4G is 75A.
What is the typical on-resistance of NTB75N06LT4G?
- The typical on-resistance of NTB75N06LT4G is 8.5mΩ.
Can NTB75N06LT4G be used in automotive applications?
- Yes, NTB75N06LT4G is suitable for automotive applications.
What is the operating temperature range of NTB75N06LT4G?
- The operating temperature range of NTB75N06LT4G is -55°C to 175°C.
Is NTB75N06LT4G RoHS compliant?
- Yes, NTB75N06LT4G is RoHS compliant.
What type of package does NTB75N06LT4G come in?
- NTB75N06LT4G comes in a D2PAK package.
Does NTB75N06LT4G have built-in protection features?
- NTB75N06LT4G has built-in overcurrent protection and thermal shutdown features.
What are some typical applications for NTB75N06LT4G?
- Typical applications for NTB75N06LT4G include motor control, power supplies, and DC-DC converters.
Is NTB75N06LT4G suitable for high-frequency switching applications?
- Yes, NTB75N06LT4G is suitable for high-frequency switching applications due to its low on-resistance and fast switching characteristics.