DFT Architect
TYLsemi · 55 days ago
About the role
We are looking for an experienced DFT Architect to lead Design-for-Test strategy, architecture definition, and implementation for complex ASIC/SOC designs across advanced technology nodes. The ideal candidate will drive end-to-end DFT architecture including scan, MBIST, compression, boundary scan, and at-speed test methodologies while collaborating with cross-functional teams to achieve high test coverage, quality, and silicon bring-up success.
What you'll do
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Define and own SOC-level DFT architecture and test strategy for complex semiconductor designs.
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Lead implementation of scan insertion, ATPG, MBIST, LBIST, boundary scan, and test compression methodologies.
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Drive DFT planning and integration aligned with power, timing, area, and test coverage goals.
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Collaborate with RTL, Physical Design, Verification, and Product Engineering teams for seamless DFT integration and signoff.
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Analyze and resolve DFT-related timing, routing, and testability challenges.
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Support silicon bring-up, debug, diagnosis, yield analysis, and production test optimization.
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Develop and enhance DFT automation flows, methodologies, and reusable infrastructure.
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Mentor junior engineers and provide technical leadership across projects.
What We’re Looking For
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Bachelor’s or Master’s degree in Electronics, Electrical Engineering, VLSI, or related field.
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10+ years of experience in ASIC/SOC DFT implementation and architecture.
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Strong expertise in scan, ATPG, MBIST, JTAG, compression, and low-power DFT methodologies.
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Hands-on experience with industry-standard DFT tools such as Siemens Tessent, Synopsys DFT Compiler/TestMAX, or equivalent.
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Strong understanding of RTL design, timing, physical design constraints, and silicon debug.
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Experience with advanced technology nodes and large SOC integration.
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Strong scripting and automation skills using Tcl, Python, Perl, or Shell.
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Excellent leadership, problem-solving, and cross-functional collaboration skills.
Good to Have
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Experience with automotive safety standards such as ISO 26262.
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Exposure to chiplet-based architectures and 3D IC testing methodologies.
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Knowledge of diagnosis-driven yield improvement and silicon analytics.
Success in This Role Looks Like
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Delivery of robust DFT architectures with high test coverage and efficient manufacturing test cost.
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Successful silicon bring-up with minimal DFT-related issues.
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Improved DFT methodology scalability, automation, and execution efficiency.
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Strong technical leadership and contribution to organization-wide DFT best practices.
