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The PCIe Gen 4 interface supports a robust data rate for PCIe standards ranging from 1.0 through 4.0, achieving up to 16Gbps. With advanced CTLE boosting capabilities, it ensures signal integrity is maintained even at the higher frequencies demanded by modern data scenarios. This is crucial for enhancing bandwidth in data-intensive applications, providing the backbone for high-throughput environments like data centers.
The MIPI C-PHY interface is designed to enhance bandwidth efficiency for the MIPI CSI-2 protocol, providing a data transfer rate of 5.7Gbps per lane. This interface is pivotal for applications demanding higher throughput without the need to increase signaling clocks. By improving data transmission efficiency, it serves critical needs in areas like mobile and augmented reality devices, where effective data handling is crucial to performance.
The TIA Linear Amplifier is designed to handle extensive data transmission rates, supporting single-lane transmission from 25G up to 112G. With capabilities for both limited and unlimited linear amplification, it is fundamental in maintaining signal integrity across expansive bandwidths. These amplifiers are critical in data centers and high-speed communication links where reliable data integrity is non-negotiable.
The MIPI A-PHY interface offers an innovative asymmetric data link layer optimized for long-reach automotive applications. Supporting a daisy-chain or point-to-point topology, it can extend up to 15 meters and accommodate both high-speed data and control data on the same wiring. This interface stands out for its ultra-low packet error rate, enhancing reliability throughout the vehicle's life. The capability to handle multiple speed gears makes it adaptable across various use cases, reducing both cost and complexity in vehicle architecture.
The MIPI D-PHY interface serves as a versatile physical interface for both the CSI-2 and DSI protocols, delivering 2.5Gbps per lane. Its design allows configurations as a transmitter, receiver, or transceiver. A blend of analog and digital interfaces, it ensures seamless management of the electrical level signals and control functions, fitting well into the ecosystem requiring efficient and flexible data transmission.
The Dual-Mode CDR offers high-performance mixed-signal connectivity, supporting both NRZ and PAM4 modulation schemes. It provides single-lane data rates from 25G to 112G, making it a vital component for scenarios demanding rapid, adaptable data handling. Ideal for next-generation data centers and communication systems, it ensures consistent signal fidelity across various bandwidth requirements.
The PLL Frequency Synthesizer operates within a broad frequency range, supporting from 218.75MHz up to 14GHz, and in specialized cases even reaching 13GHz to 15GHz. Essential in applications requiring precise clock management and synchronization, it aligns with the needs of data center operations and various telecommunications applications. Its wide operational flexibility allows it to be tailored for multiple system requirements, ensuring high performance in complex environments.
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