LTM8050IY#PBF - A Robust µModule Regulator from Linear Technology
The LTM8050IY#PBF is a highly efficient, micro-module (µModule) step-down regulator designed by Linear Technology, a brand renowned for its high-performance analog integrated circuits. This compact power management solution integrates a switching regulator, inductor, power switches, filters, and all the necessary support components in a single package, making it an ideal choice for space-constrained applications.
Capable of delivering up to 2A of continuous output current, the LTM8050IY#PBF operates over a wide input voltage range of 6V to 36V, making it versatile for a variety of systems. The output voltage is adjustable from 0.8V to 10V, which allows this regulator to be used with common logic levels and other low voltage power rails.
The device features Silent Switcher® architecture, which minimizes electromagnetic interference (EMI), a critical factor for sensitive electronic applications. This makes the LTM8050IY#PBF particularly suitable for noise-sensitive signal processing applications, including those in the automotive, industrial, and telecommunications sectors.
With its robust design, the LTM8050IY#PBF can operate in harsh environments, as indicated by its 'I' grade designation. It is specified for operation from -40°C to +125°C, ensuring reliable performance in extreme conditions. The module also includes over-temperature protection, further enhancing its resilience and longevity in the field.
For ease of use, the LTM8050IY#PBF requires only a few external components to set the switching frequency and compensation, simplifying the design process and accelerating time-to-market. Its compact, surface-mount LGA package measures just 9mm x 11.25mm x 4.92mm, providing a space-saving power solution that can be easily integrated into a wide range of electronic systems.
In summary, the LTM8050IY#PBF from Linear Technology is a powerful, efficient, and reliable µModule regulator that offers a compact, EMI-friendly solution for delivering regulated power in space-constrained and noise-sensitive applications across a broad spectrum of industries.