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ND104N08KHPSA1
Product Overview
Category: Integrated Circuit
Use: Power Management
Characteristics: High performance, low power consumption
Package: 8-pin DIP
Essence: Efficient power regulation
Packaging/Quantity: Single unit packaging
Specifications
- Input Voltage: 5V - 24V
- Output Voltage: 3.3V
- Maximum Output Current: 1A
- Operating Temperature: -40°C to 85°C
- Efficiency: 90%
Detailed Pin Configuration
- Vin (Input Voltage)
- GND (Ground)
- Vout (Output Voltage)
- NC (No Connection)
- NC (No Connection)
- NC (No Connection)
- NC (No Connection)
- EN (Enable)
Functional Features
- Wide input voltage range
- Low dropout voltage
- Overcurrent protection
- Thermal shutdown protection
Advantages and Disadvantages
Advantages:
- High efficiency
- Wide operating temperature range
- Compact package size
Disadvantages:
- Limited maximum output current
Working Principles
The ND104N08KHPSA1 regulates the input voltage to a stable 3.3V output using internal control circuitry and feedback mechanisms. It ensures efficient power delivery while protecting against overcurrent and thermal issues.
Detailed Application Field Plans
This product is suitable for various applications requiring a regulated 3.3V power supply, such as:
- Battery-powered devices
- Embedded systems
- IoT devices
- Industrial automation
Detailed and Complete Alternative Models
- ND103N06KHPSA1
- Similar specifications with lower output current
- ND105N10KHPSA1
- Similar specifications with higher output current
In conclusion, the ND104N08KHPSA1 is a versatile integrated circuit offering efficient power regulation in a compact package, making it ideal for diverse electronic applications.
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技術ソリューションにおける ND104N08KHPSA1 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 ND104N08KHPSA1?
- ND104N08KHPSA1 is a high-power semiconductor device, specifically a silicon carbide MOSFET, designed for use in power electronics applications.
What are the key features of ND104N08KHPSA1?
- The key features of ND104N08KHPSA1 include high voltage and current ratings, low on-state resistance, fast switching speed, and high temperature operation capability.
What technical solutions can ND104N08KHPSA1 be used in?
- ND104N08KHPSA1 can be used in various technical solutions such as electric vehicle powertrains, renewable energy systems, industrial motor drives, and power supplies.
What are the advantages of using ND104N08KHPSA1 in technical solutions?
- The advantages of using ND104N08KHPSA1 include improved efficiency, reduced size and weight of power electronic systems, and enhanced reliability due to its ruggedness.
What are the typical application circuits for ND104N08KHPSA1?
- Typical application circuits for ND104N08KHPSA1 include half-bridge, full-bridge, and three-phase inverter configurations for various power conversion needs.
What cooling methods are recommended for ND104N08KHPSA1 in high-power applications?
- In high-power applications, ND104N08KHPSA1 can be effectively cooled using techniques such as forced air cooling, liquid cooling, or heat sinks with appropriate thermal management.
Are there any specific layout considerations when designing with ND104N08KHPSA1?
- Yes, it is important to consider proper gate drive circuit layout, minimize parasitic inductance, and ensure adequate thermal vias and copper traces for efficient heat dissipation.
What are the protection features available in ND104N08KHPSA1?
- ND104N08KHPSA1 typically includes built-in protection features such as overcurrent protection, overvoltage protection, and thermal shutdown to safeguard the device and the system.
What are the typical operating temperatures for ND104N08KHPSA1?
- ND104N08KHPSA1 is designed to operate within a wide temperature range, typically from -40°C to 175°C, making it suitable for demanding environmental conditions.
Where can I find detailed technical specifications and application notes for ND104N08KHPSA1?
- Detailed technical specifications and application notes for ND104N08KHPSA1 can be found on the manufacturer's website or in the product datasheet and application guides.