SOT-89-5_528AB.jpg
1
152
7625938
ON/NCP694HADJHT1G
7625938
Output Configuration: | Positive |
Output Type: | Adjustable |
Voltage - Input (Max): | 6V |
Voltage - Output (Min/Fixed): | 1V |
Voltage - Output (Max): | 6V |
Voltage Dropout (Max): | 0.18V @ 1A (Typ) |
Current - Output: | 1A |
PSRR: | 70dB (1kHz) |
Control Features: | Enable |
Protection Features: | Over Current, Over Temperature |
Operating Temperature: | -40~C ~ 85~C |
Mounting Type: | Surface Mount |
Package / Case: | SOT-89-5/6 |
Supplier Device Package: | SOT-89-5 |
Introducing ON Semiconductor NCP694HADJHT1G: Power Management Made Effortless
Are you looking for a versatile and efficient power management solution for your electronic devices? Look no further than the ON Semiconductor NCP694HADJHT1G. This innovative power management IC offers a range of features and advantages, making it the ideal choice for a variety of applications.
Features and Advantages
The NCP694HADJHT1G is designed to deliver superior power management performance in a compact package. Here are some of its key features and advantages:
1. High Efficiency: This power management IC boasts high power conversion efficiency, helping to optimize energy usage and extend battery life.
2. Adjustable Output Voltage: The NCP694HADJHT1G allows for adjustable output voltage, making it highly adaptable to different power requirements and device specifications.
3. Wide Input Voltage Range: With a wide input voltage range, this IC can be easily integrated into a variety of electronic systems, providing flexibility and compatibility.
4. Low Dropout Voltage: Featuring low dropout voltage characteristics, the NCP694HADJHT1G ensures stable voltage regulation even under demanding conditions, ensuring reliable performance.
5. Current Limit Protection: This power management solution is equipped with built-in current limit protection, safeguarding your devices from overcurrent and short circuit situations.
Applications
The NCP694HADJHT1G is a versatile power management IC that finds applications in various electronic devices and systems. Some of its common applications include:
1. Mobile Devices: From smartphones to tablets, this IC can efficiently manage the power supply to ensure optimal device performance and longevity.
2. Wearable Technology: The compact form factor and adjustable voltage output make the NCP694HADJHT1G an excellent choice for powering wearable devices such as fitness trackers and smartwatches.
3. IoT Devices: As the Internet of Things (IoT) continues to grow, this power management IC can effectively regulate power in IoT devices, enabling seamless connectivity and efficient operation.
4. Portable Gaming Consoles: With its high efficiency and adjustable voltage output, the NCP694HADJHT1G caters to the demanding power needs of portable gaming consoles, enhancing the gaming experience.
Development Tools
To facilitate easy integration and development, ON Semiconductor provides a range of development tools and resources for the NCP694HADJHT1G. These include:
1. Evaluation Boards: ON Semiconductor offers evaluation boards that allow developers to test and validate the performance of the NCP694HADJHT1G in their specific applications.
2. Software Development Kits (SDKs): SDKs are available to assist developers in programming and configuring the IC for optimal power management functionality.
3. Technical Documentation: Comprehensive technical documentation, including datasheets and application notes, provide detailed information on the NCP694HADJHT1G's features, specifications, and usage guidelines.
With these development tools and resources, engineers and designers can seamlessly incorporate the NCP694HADJHT1G into their projects, reducing time-to-market and ensuring reliable power management capabilities.
Experience the convenience and versatility offered by the ON Semiconductor NCP694HADJHT1G. With its impressive features, wide range of applications, and comprehensive development tools, this power management IC is the go-to solution for efficient and reliable power management in electronic devices.