The MC10EL11DR2G is a differential receiver device designed by ON Semiconductor, which is renowned for its high performance and reliability in the electronic components industry. This product is part of ON Semiconductor's ECLinPS MAX™ family, which is a range of devices known for their speed and precision in signal processing.
At the core of the MC10EL11DR2G's functionality is its ability to receive a differential signal, which is a method of signal transmission that uses two complementary signals to improve noise immunity and signal integrity. This makes the MC10EL11DR2G particularly suitable for high-speed data communication and processing applications where signal quality is paramount.
The device operates with a supply voltage of -4.2V to -5.5V, which is typical for ECL (Emitter Coupled Logic) technology. This allows for rapid switching speeds and less propagation delay compared to other logic families. The MC10EL11DR2G features a maximum propagation delay of only 170ps, ensuring that it can handle high-frequency signals effectively.
Furthermore, the MC10EL11DR2G offers a differential input threshold that remains constant over the entire supply voltage range, which is essential for maintaining signal fidelity over varying operational conditions. The device is also equipped with PECL (Positive Emitter Coupled Logic) mode by connecting the VBB pin to the data input for single-ended use, providing flexibility in interfacing with different logic levels.
This component is provided in an 8-pin SOIC package, which is a small and surface-mountable form factor, making it suitable for use in compact electronic assemblies. The MC10EL11DR2G is also characterized for operation over the full military temperature range of -55°C to +125°C, ensuring reliable performance in extreme environments.
In summary, the MC10EL11DR2G from ON Semiconductor is a high-speed differential receiver that offers excellent signal integrity, low propagation delay, and operational flexibility. It is an ideal choice for applications that require fast and reliable data transmission, such as telecommunications, data centers, and advanced computing systems.