AMS Spice Verification Engineer
Position/Role: AMS Spice Verification Engineer
Experience: 5-10 years
Education: BE/BTech or MS/MTech in ECE,CSE and EEE or Related
Location: Bengaluru
Work Mode: WFO
Interview Mode: F2F
Date when required: Immediately
Job Description:
- We are seeking an experienced AMS Verification Engineer with strong expertise in Analog/Mixed-Signal (AMS) SPICE simulation and verification.
- The ideal candidate should have hands-on experience in verifying complex analog and mixed-signal designs at the block, subsystem, and chip-top levels, along with strong debugging and problem-solving skills.
Key Responsibilities:
- Perform Analog/Mixed-Signal (AMS) SPICE simulations at block, subsystem, and chip-top levels.
- Develop and execute AMS verification plans, testbenches, and self-checking test cases.
- Verify complex mixed-signal SoC designs involving analog and digital interactions.
- Analyze and debug simulation failures, convergence issues, and AMS boundary-related challenges.
- Optimize simulation environments for improved runtime and performance.
- Collaborate closely with analog design, digital design, system architecture, and verification teams to ensure design quality and functionality.
- Support verification activities for analog IPs such as PLLs, ADCs, DACs, Bandgap References, Oscillators, Clocking Circuits, Power Management Blocks, and SerDes.
Required Skills & Qualifications:
- Significant experience in Analog/Mixed-Signal (AMS) SPICE simulation and verification.
- Experience with complex SoC integrations involving Power Management, PLL/Synthesizers, ADC/DAC, Bandgap References, Oscillators/Clocking, SerDes, and associated digital control systems.
- Hands-on experience in AMS verification planning, SPICE testbench development, and debugging.
- Expertise in Cadence Virtuoso for schematic capture and waveform analysis tools such as SimVision and Verisium.
- Strong experience with SPICE/Fast-SPICE simulators including Spectre, APS, XPS, and UltraSim.
- Experience using digital simulators such as Cadence Xcelium and DMSO.
- Proven ability to resolve complex AMS simulation challenges, including convergence issues, analog-digital integration problems, loading effects, stability concerns, and simulation environment setup issues.
