LTC6906CS6#TRMPBF - Precision Silicon Oscillator
The LTC6906CS6#TRMPBF is a high-performance, precision silicon oscillator from Linear Technology, designed to offer a compact and robust timing solution for a wide array of electronic applications. This oscillator is part of a family of easy-to-use, programmable frequency devices that require no external components for operation.
With its adjustable frequency range from 1kHz to 20MHz, the LTC6906 can be tuned precisely to your desired frequency with the use of a single resistor (RSET). The frequency of the oscillator can be set using a simple equation that relates the value of RSET to the desired output frequency, providing users with an easy method to achieve the exact clocking speeds needed for their specific application.
The LTC6906CS6#TRMPBF comes in a compact SOT-23 package, making it an ideal choice for space-constrained applications. It operates over a single supply voltage ranging from 2.7V to 5.5V, which allows for flexibility in different system designs and ensures compatibility with both 3.3V and 5V logic levels. Additionally, its low supply current makes it suitable for battery-powered devices.
This oscillator also features a proprietary on-chip circuitry that ensures high frequency accuracy and stability over temperature, supply variations, and initial accuracy. The output is a square wave with a duty cycle of 45% to 55%, which is suitable for clock generation, microcontroller clocking, and as a replacement for ceramic resonators or crystal oscillators where higher reliability is desired.
Linear Technology's LTC6906CS6#TRMPBF oscillator is available in a tape and reel package, denoted by the TRMPBF suffix, which is ideal for automated production environments. This product is designed for applications in communications, portable electronics, computers, and industrial systems where a stable and reliable clock source is critical.
Overall, the LTC6906CS6#TRMPBF offers a versatile and dependable solution for generating precise clock frequencies in a wide range of electronic systems, providing both ease of integration and exceptional performance.