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NCP4200MNR2G
+NomenclatureIC REG CONV PENTIUM 1OUT 40QFN
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FabricantSemi - conducteurs
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Pièce fabricant #NCP4200MNR2G
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Package QFN-40
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En stock2227
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Spécifications
| Attribut | Valeur |
| Package / Case | Tape & Reel (TR),Cut Tape (CT) |
| Part Status | Active |
| Applications | Converter, Intel VR11, VR11.1 |
| Voltage - Input | 1.7V ~ 24V |
| Number of Outputs | 1 |
| Voltage - Output | 0.375V ~ 1.8V |
| Operating Temperature | -40°C ~ 85°C |
| Mounting Type | Surface Mount |
Présentation
Description
Key features of the NCP4200MNR2G include its ability to operate in high-efficiency modes, adaptive voltage positioning, and digital control capabilities through PMBus (Power Management Bus) interface. This interface allows for easy communication and configuration, enabling dynamic adjustments and monitoring of the power system.
The IC is equipped with numerous protection features, such as overcurrent protection, undervoltage lockout, and thermal shutdown, to ensure the safety and reliability of the system. Its compact design and robust performance make it a popular choice for designers aiming to implement efficient and reliable power solutions in modern electronics.
Equivalent
1. TPS40400 by Texas Instruments
2. ISL95831 by Renesas
3. LTC3863 by Analog Devices
4. MAX15462 by Maxim Integrated
These products offer similar functionalities like voltage regulation and control in power management applications. Always compare datasheets and consult with manufacturers to ensure compatibility for specific applications.
Features
1. Output Voltage Control: It provides precise output voltage regulation with an adjustable output range, making it suitable for various applications requiring stable power supply.
2. High-Efficiency Design: Supports synchronous rectification for high efficiency, optimizing power usage and thermal performance.
3. Current Monitoring: Includes integrated current sensing to monitor and protect against overcurrent conditions, enhancing system reliability.
4. Remote Sensing: Offers remote sensing capabilities to compensate for voltage drops across PCB traces, ensuring accurate voltage regulation at the load.
5. Dynamic Voltage Scaling (DVS): Supports dynamic voltage scaling to adjust power supply voltages based on performance requirements, improving power efficiency.
6. Fault Protection: Provides comprehensive protection features such as overvoltage, undervoltage, overcurrent, and thermal shutdown to safeguard the device and connected components.
7. Communication Interface: Compatible with I2C/SMBus for easy integration and remote configuration in complex systems.
These features make the NCP4200MNR2G suitable for applications in computing, telecommunications, and other areas requiring efficient and reliable power management.
Pinout
This device typically comes in a 32-pin QFN (Quad Flat No-Lead) package. Its primary functions include offering a highly configurable multi-phase power control, managing voltage regulation, and supporting various system-level features such as load line programming, adaptive voltage positioning, and fault protection mechanisms.
Key functions include:
1. Voltage Regulation: Ensures stable voltage supply to the load.
2. Phase Control: Supports up to multiple phases for efficiency and reduced component stress.
3. Protection Features: Includes overcurrent, overvoltage, and thermal protection.
4. Interface and Configuration: Provides communication and configuration through PWM outputs and other pins.
For detailed pin configuration and specific functions, it is recommended to consult the datasheet provided by the manufacturer.
Manufacturer
Application
1. Servers and Data Centers: Providing efficient voltage regulation for processors and memory modules.
2. Networking Equipment: Ensuring stable power supply for routers and switches.
3. Telecommunications: Supporting power supply designs in base stations and communication infrastructure.
4. Consumer Electronics: Enhancing power performance in devices like laptops and gaming consoles.
5. Industrial Applications: Used in automation systems requiring precise power management.
Its flexibility in supporting various power architectures makes it suitable for high-performance computing environments.