High-Speed Communication Interface Development for Compact SerDes Logging Adapter
Project Title: Development of a Compact, High-Speed SerDes Logging Adapter with Optimized Signal Integrity and Thermal Management
Objective: Design and develop a compact SerDes Logging Adapter, ensuring high-speed communication reliability, effective thermal management, and seamless integration with existing systems, particularly focusing on Serializer and Deserializer components.
Key Responsibilities and Achievements:
- Component Verification and Testing:
- Established direct communication with suppliers to acquire development boards for Serializer and Deserializer components.
- Conducted detailed testing focusing on data link stability, range, current and voltage capabilities, and thermal performance, ensuring components met required specifications and performed reliably under operational conditions.
- Compact Design and Thermal Management:
- Led discussions with project management and mechanical engineering teams to achieve a compact form factor (as small as a cigarette box) while accommodating power-hungry components like FPGA, SerDes chips, Ethernet controllers, and 8-channel connectors.
- Conducted power calculations and optimized component placement to enhance passive cooling and minimize heat concentration.
- PCB Design and Signal Integrity:
- Utilized Altium Designer for schematic creation and LTspice for circuit simulation, ensuring accurate representation and functionality under various conditions.
- Employed PCB Toolkit software to calculate impedance control parameters, maintaining signal integrity and reliability across high-speed communication interfaces.
- High-Speed Communication Optimization:
- Optimized PCB layout for high-speed communication protocols (up to 6 Gbps) including RGMII, MIPI CSI-2, SPI, and I2C.
- Implemented impedance matching and noise filtering strategies to ensure minimal signal degradation, jitter, and error-free data transmission.
- Hardware Bring-Up and Testing:
- Developed a robust electrical testing protocol, using high-speed oscilloscopes and probes to capture performance metrics like eye diagrams and jitter for evaluating digital signal quality.
- Created detailed heat maps using thermal imaging tools to identify and optimize hot spots on the PCB.
- Electromagnetic Compatibility (EMC) Enhancements:
- Addressed EMC challenges by rerouting clock signals, revising decoupling capacitor placements, and minimizing parasitic inductance, significantly reducing noise and interference.
- Improved the design by shielding critical signals and optimizing the PCB layout to meet stringent EMC requirements.
- On-Site Integration and Customer Collaboration:
- Travelled to the customer’s site for the initial bring-up of the SerDes Logging Adapter, making intricate adjustments to optimize performance.
- Developed configuration scripts to streamline SLA settings for various operational conditions, ensuring seamless integration with the customer’s system.
Outcome:
Successfully developed a compact and robust SerDes Logging Adapter, achieving reliable high-speed communication, effective thermal management, and compliance with EMC standards. The project demonstrated my ability to handle complex hardware challenges, collaborate across teams, and deliver a high-performance product ready for real-world applications.
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