NTPA7160LBMB0
Product Overview
- Belongs to: Electronic Components
- Category: Integrated Circuit
- Use: Power Management
- Characteristics: High efficiency, compact design, low power consumption
- Package: 16-pin QFN
- Essence: Regulates and manages power distribution within electronic devices
- Packaging/Quantity: Tape & Reel, 250 units per reel
Specifications
- Input Voltage Range: 4.5V to 28V
- Output Current: Up to 3A
- Switching Frequency: 1.2MHz
- Operating Temperature Range: -40°C to 125°C
- Efficiency: Up to 95%
Detailed Pin Configuration
- Pin 1: VIN (Input Voltage)
- Pin 2: SW (Switch Node)
- Pin 3: GND (Ground)
- Pin 4: FB (Feedback)
- Pin 5: EN (Enable)
- Pin 6: AGND (Analog Ground)
- Pin 7: PGND (Power Ground)
- Pin 8: VOUT (Output Voltage)
- Pins 9-16: No Connection
Functional Features
- Integrated MOSFETs: Minimizes external component count
- Programmable Soft-Start: Allows for controlled power-up sequencing
- Overcurrent Protection: Safeguards against excessive current draw
- Thermal Shutdown: Prevents overheating
Advantages
- Compact size enables space-efficient designs
- High efficiency reduces power loss and heat generation
- Wide input voltage range enhances versatility
- Integrated protection features enhance reliability
Disadvantages
- Limited output current may not be suitable for high-power applications
- Higher switching frequency may introduce electromagnetic interference in sensitive systems
Working Principles
The NTPA7160LBMB0 operates by regulating the input voltage to provide a stable output voltage, ensuring proper power delivery to connected components. This is achieved through internal control circuitry and power switches that manage the conversion process.
Detailed Application Field Plans
- Consumer Electronics: Power management in portable devices
- Automotive Systems: Voltage regulation in vehicle electronics
- Industrial Equipment: Efficient power distribution in machinery
Detailed and Complete Alternative Models
- NTPA7160LBMB1: Higher output current variant
- NTPA7160LBMB2: Lower switching frequency for reduced EMI
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