Product Overview: LT1963AEFE#TRPBF
The LT1963AEFE#TRPBF is a high-performance, low-dropout linear regulator from Linear Technology, designed to deliver a continuous output current up to 1.5A with a dropout voltage of just 340mV at full load. This regulator is part of the LT1963 series, which is known for its fast transient response and low noise characteristics, making it an ideal choice for sensitive applications requiring a stable and clean power supply.
The device operates over a wide input voltage range from 1.8V to 20V, providing flexibility in various power supply designs. It features an adjustable output voltage from 1.21V to 20V, allowing designers to customize the output to meet specific requirements. The LT1963AEFE#TRPBF also offers excellent regulation characteristics, with a line regulation of 0.015% and load regulation of 0.1%, ensuring a consistent output even under varying input conditions and load changes.
One of the key benefits of the LT1963AEFE#TRPBF is its low noise performance, with an output noise as low as 40µV RMS over a 10Hz to 100kHz bandwidth. This makes it an excellent choice for noise-sensitive applications such as precision instrumentation, high-end audio equipment, and RF circuits. Additionally, it features over-temperature and over-current protection, enhancing system reliability and safety.
The regulator is available in a thermally efficient TSSOP-16 package, which is suitable for space-constrained applications. Its thermal performance is further improved by an internal power dissipation capability of 2W, allowing it to operate reliably over an industrial temperature range of -40°C to +125°C.
In summary, the LT1963AEFE#TRPBF from Linear Technology is a versatile and reliable linear regulator that offers high performance in terms of load and line regulation, low noise, and excellent thermal characteristics. Its wide input voltage range, adjustable output voltage, and robust protection features make it well-suited for a broad array of applications requiring a high-quality power supply.