The LM2679T is a monolithic integrated circuit belonging to the LM2679 series of high-efficiency step-down (buck) switching voltage regulators. Designed to deliver up to 5A of output current, this regulator provides excellent line and load regulation characteristics while maintaining high efficiency (>90%) through the use of a low ON-resistance DMOS power switch.
The device is available in fixed output voltage versions (3.3V, 5V, and 12V) as well as an adjustable output variant, making it versatile for various power supply designs. The LM2679T incorporates several protection features including thermal shutdown and programmable current limiting, ensuring robust operation under fault conditions.
The LM2679T is suitable for a wide range of power conversion applications including:
The LM2679T is available in a TO-220 package with the following mechanical characteristics:
The LM2679T integrates all the necessary components for a complete step-down switching regulator including:
The device operates as a conventional buck converter using pulse-width modulation (PWM) control. The internal power switch turns on at the beginning of each clock cycle, allowing current to flow from the input to the output through an external inductor. When the switch turns off, the inductor current continues to flow through an external Schottky diode.
The output voltage is regulated by adjusting the duty cycle of the power switch based on the feedback signal. The fixed 260kHz switching frequency provides a good balance between efficiency and component size.
Proper selection of external components is critical for optimal performance:
For continuous operation at maximum load current, proper heat sinking is required. The TO-220 package allows for easy attachment of a heatsink. The following thermal considerations apply:
The LM2679T provides a complete, high-efficiency step-down switching regulator solution in a single package. With its high output current capability, precision regulation, and comprehensive protection features, it is well-suited for demanding power conversion applications across various industries. The device's fixed-frequency operation simplifies EMI filter design while its high efficiency minimizes thermal management challenges.