The TPS65279VDAPR is a highly integrated power management IC designed by Texas Instruments, tailored to meet the rigorous demands of modern electronic systems. This advanced component incorporates multiple voltage regulators and a plethora of features, making it an ideal solution for applications requiring efficient power distribution and management.
Key Features
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Multi-Channel Regulator: The TPS65279VDAPR includes a combination of step-down converters and LDOs (Low-Dropout Regulators), providing versatile power supply options for various subsystems.
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High Efficiency: The integrated buck converters operate at high efficiency, which is crucial for maintaining thermal performance and prolonging battery life in portable applications.
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Adjustable Outputs: It offers adjustable output voltage levels, allowing designers to fine-tune the voltages according to specific requirements of the target application.
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Power Sequencing: The device supports programmable power sequencing, a vital feature for systems that require specific power-up and power-down procedures to ensure proper operation.
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Protection Features: It includes over-current, over-voltage, under-voltage, and thermal shutdown protection, safeguarding the system against a wide range of fault conditions.
Applications
The TPS65279VDAPR is designed for a diverse array of applications, including but not limited to:
- Embedded Processing Systems
- Industrial Control Units
- Automotive Infotainment and Telematics
- Networking Equipment
- Portable and Battery-Powered Devices
Technical Specifications
The device is offered in a VDAPR package and is characterized by a wide input voltage range, multiple output currents capabilities, and is designed to operate over an extended temperature range. It is compliant with the industry standards and ensures reliability for critical applications.
With its combination of flexibility, efficiency, and protection, the TPS65279VDAPR from Texas Instruments stands out as a comprehensive power management solution for designers looking to optimize their power architecture in compact and high-performance systems.