**Senior Design Verification Engineer****About the Role**As a Senior Design Verification Engineer at Analog Devices, you will lead verification planning and execution for next-generation automotive connectivity SoCs based on E2B technology. Working independently with minimal supervision, you will develop advanced verification environments for complex SoCs incorporating embedded microprocessors, communication subsystems, firmware, security functions, and mixed-signal components.**Key Responsibilities****Functional Safety Verification:** Support verification of safety mechanisms, fault injection campaigns, requirements traceability, and verification activities associated with ISO 26262-compliant automotive products.**Must-Have Skills**Expert-level knowledge of SystemVerilog and the Universal Verification Methodology, with experience developing reusable verification environments for complex digital designs.**SoC Verification:** Strong experience verifying complex SoCs that include embedded microprocessors, memories, buses, peripherals, interrupts, and communication subsystems.Hands-on experience developing C/SystemVerilog DPI interfaces and integrating C models or reference models into verification environments.**Verification Planning:** Proven ability to convert architecture, design, and product requirements into detailed verification plans, test scenarios, functional coverage, and sign-off criteria.Strong experience with constrained-random verification, functional coverage, code coverage, and assertion-based verification.**Hardware-Software Integration:** Experience developing firmware-driven tests and debugging interactions between embedded software and RTL.Strong analytical and debugging skills across SystemVerilog/UVM testbenches, RTL, embedded C code, and system-level environments. Proficiency in Python, TCL, Perl, shell scripting, or similar languages for regression management, result analysis, and workflow automation.**Communication and Collaboration:** Ability to work effectively across architecture, design, firmware, functional safety, validation, and applications teams.Ability to independently lead verification activities, conduct technical reviews, mentor less-experienced engineers, and influence verification methodology adoption.**Preferred Skills**Experience verifying SoCs incorporating **RISC-V processors**. Experience with ARM or other embedded processor architectures is also valuable.Experience with automotive communication technologies, in-vehicle networking, or E2B technology.Experience verifying communication protocols, packet-based interfaces, control channels, diagnostics, and error-recovery mechanisms.Knowledge of automotive functional safety development and ISO 26262 verification practices.Experience with fault injection, safety-mechanism verification, requirements traceability, and functional safety evidence generation.Experience with emulation, FPGA prototyping, virtual platforms, or pre-silicon firmware development.Knowledge of formal verification, clock-domain crossing, reset-domain crossing, low-power verification, or gate-level simulation.Experience working with analog behavioral models or mixed-signal verification environments.Familiarity with automotive cybersecurity concepts and secure communication mechanisms.Experience with continuous integration, regression automation, and verification dashboards.**Preferred Education and Experience**4-8 years of relevant digital or mixed-signal IC verification experience.Experience verifying processor-based SoCs and delivering designs through verification closure.Experience with automotive semiconductor products or communication SoCs is preferred. At Analog Devices, you will be part of a collaborative and innovative team developing next-generation automotive connectivity solutions. You will work with experienced architects, designers, firmware developers, functional safety engineers, and validation teams to solve challenging system-level problems and deliver robust semiconductor products.We offer an environment focused on professional growth, technical innovation, collaboration, and continuous learning. Your work will contribute to technologies that enable reliable, efficient, and high-performance communication inside the vehicles of the future.