2

Remote Physical Design Engineer Jobs in Michigan

Hardware Designer

Detroit, MI · On-site +1

  • Medical

  • Dental

  • Vision

  • Retirement

Familiarity with ESD, EMI, and RF design considerations * Ability to use Verilog, RTL, or HLS an asset * Embraces AI as part of a modern engineering toolkit Location and travel : Fully remote role ...

Senior Civil/Structural Engineer

Detroit, MI · On-site +1

$73K - $132K/yr

Experience reviewing substation structure design, rigid bus design, foundation design, oil spill ... If remote, our preference is for candidate to reside in either Eastern or Central time zone. Grow ...

Cloud Platform Engineer (GCP) - Remote

Detroit, MI · Remote

$20 - $300/hr

  • Medical

  • Retirement

  • PTO

Remote - US Job Summary: Join our team as a GCP DevOps Engineer and play a crucial role in ... Key Responsibilities: • Design, implement, and manage scalable cloud infrastructure solutions on ...

Showing results 21-40

Remote Physical Design Engineer information

What is the difference between Remote Physical Design Engineer vs Remote ASIC Design Engineer?

AspectRemote Physical Design EngineerRemote ASIC Design Engineer
Required CredentialsBachelor's/Master's in Electrical Engineering or Computer Engineering, knowledge of EDA toolsBachelor's/Master's in Electrical Engineering or Computer Engineering, knowledge of ASIC design tools
Work EnvironmentDesign teams, EDA tool suites, remote collaborationDesign teams, simulation environments, remote collaboration
Industry UsageSemiconductor, electronics manufacturingSemiconductor, electronics manufacturing
Search & Comparison IntentYesYes

The Remote Physical Design Engineer focuses on the physical implementation of integrated circuits, ensuring layout and timing meet specifications. The Remote ASIC Design Engineer is involved earlier in the design process, focusing on architecture and logic design. Both roles require similar educational backgrounds and often work within the same industry sectors, but their responsibilities differ in the design stages they cover.

What are the key skills and qualifications needed to thrive as a remote physical design engineer, and why are they important?

To thrive as a Remote Physical Design Engineer, you need a solid background in VLSI design, digital circuit fundamentals, and experience with ASIC or FPGA physical implementation, usually supported by a degree in electrical or computer engineering. Expertise in EDA tools like Cadence, Synopsys, or Mentor Graphics, and familiarity with scripting languages such as TCL or Python, are typically required. Strong problem-solving, communication, and time management skills are essential for effective collaboration and project delivery in a remote environment. These competencies ensure efficient design cycles, high-quality silicon, and smooth coordination with distributed teams.

How do remote physical design engineers typically collaborate with cross-functional teams to ensure design accuracy and project alignment?

Remote Physical Design Engineers work closely with circuit designers, verification engineers, and project managers through virtual meetings, shared project management tools, and version-controlled repositories. Effective communication is crucial, as they frequently review design updates, address integration issues, and ensure that deliverables meet timing, power, and area targets. Collaboration tools like Slack, Zoom, and Jira help bridge the distance, while regular design reviews and milestone check-ins keep everyone aligned. This remote setup encourages proactive communication and documentation to maintain project momentum and design integrity.

What is a remote physical design engineer?

A Remote Physical Design Engineer is a professional who specializes in the physical implementation of integrated circuits (ICs) and works from a remote location. Their primary responsibilities include tasks such as floorplanning, placement, routing, and timing closure of semiconductor chips using electronic design automation (EDA) tools. They collaborate with teams across different locations to ensure that the chip layouts meet performance, power, and area requirements. Working remotely, these engineers utilize secure network connections and cloud-based tools to access design environments and communicate with colleagues. This role requires a strong understanding of digital design, VLSI concepts, and proficiency with industry-standard EDA tools.
What are the most commonly searched types of Physical Design Engineer jobs in Michigan? The most popular types of Physical Design Engineer jobs in Michigan are:
What job categories do people searching Remote Physical Design Engineer jobs in Michigan look for? The top searched job categories for Remote Physical Design Engineer jobs in Michigan are:
What cities in Michigan are hiring for Remote Physical Design Engineer jobs? Cities in Michigan with the most Remote Physical Design Engineer job openings:
Infographic showing various Remote Physical Design Engineer job openings in Michigan as of August 2026, with employment types broken down into 88% Full Time, and 12% Contract. Highlights an 100% Remote job distribution.

Solution Architect (Enterprise PLM) REMOTE

PROLIM Global Corporation

Farmington Hills, MI • On-site, Remote

Full-time

Re-posted 2 days ago


Job description

PROLIM (www.prolim.com) is currently seeking for Job Title: Solution Architect - Enterprise PLM Consulting - forone of our top ClientQualified candidates can directly send your updated resume and contact info via email veni.nalla@prolim.com
Location: USA (Remote)
Position Overview:
We are seeking a highly experienced and technically proficient Enterprise PLM Solution Architect. This role will drive the definition, design, and deployment of advanced PLM capabilities across strategic global programs, working closely with Fortune 500 customers, system integrators, and Siemens product domain experts.
The successful candidate will lead solution architecture for complex, multi-domain Siemens PLM implementations, including MCAD Data Management, Part and Classification Management, Multi-domain EBOMs, Manufacturing BOMs, and end-to-end BOM reconciliation. You will provide expert guidance across cross-functional domains such as Document Control, Engineering Change Management (ECM), Requirements Management, and Configuration Management, ensuring seamless integration with design, manufacturing, and quality processes.
Required Qualifications:
  • 10+ years of hands-on experience in PLM solution architecture, with deep technical knowledge of Siemens Teamcenter and related applications.
  • Proven delivery of large-scale implementations involving at least 10 of the following functional domains: MCAD Data Management, Part/Classification, EBOM/MBOM, Change Management, Requirements, Document Control, Configuration Management, Portfolio, Project Management, Supplier Collaboration, Inventor MCAD, Process Planning, Service BOMs, and Quality.
  • Strong working knowledge of Teamcenter platform configurations, Active Workspace, BOM management frameworks, CAD integrations (NX, SolidWorks, Inventor), and manufacturing data flows.
  • Deep understanding of discrete manufacturing industry practices across mechanical, electrical, software, and systems engineering.
  • Experience collaborating with global system integrators (e.g., Accenture, Deloitte, Capgemini) on enterprise-level digital transformation programs.
  • Exceptional communication, stakeholder engagement, and solution selling skills.
  • Bachelor's or Master's degree in Mechanical Engineering, Electrical Engineering, Systems Engineering, Computer Science, or related field.

Key Responsibilities:
  • Architect and lead the delivery of integrated PLM solutions that encompass:
    • MCAD Data Management: Define and implement CAD integrations (e.g., NX, SolidWorks, Inventor), CAD vaulting, check-in/check-out, and data model design for managed assemblies and parts.
    • ECAD Data Management: Define and implement integrations for electrical design tools (e.g., Siemens DxDesigner, Cadence Concept, Altium Designer), enabling ECAD vaulting, symbol and component library management, schematic and PCB data control, and synchronization of logical and physical design artifacts with the product structure.
    • Part Management: Standardize and structure intelligent part numbering, classification schemas, and approval workflows across engineering and manufacturing domains.
    • Multi-domain EBOM Management: Configure authoring environments for mechanical, electrical, software, and simulation data; establish EBOM views and reconciliation frameworks.
    • Document Management: Design secure, workflow-enabled technical document management aligned with product lifecycle stages and compliance needs.
    • Engineering Change Management: Define end-to-end change control processes including ECR/ECO workflows, impact analysis, and cross-domain coordination.
    • Requirements Management: Integrate system-level requirements into the product structure, traceability across BOM and validation artifacts.
    • Product Configuration Management: Model product variants, options, features, rules, and 150% BOMs using product configurators and effectivity models.
    • Product Portfolio Management: Support capability definition for platform strategies, portfolio structures, and product lifecycle phase-gating.
    • End to End BOM Management: Support collaboration between engineering teams using view-based BOM architectures and ECAD-MCAD integration strategies.
    • Program Planning and Schedule Management: Align engineering deliverables and milestones with project schedules; configure templates and dashboards for status visibility.
    • Supplier Collaboration: Define secure supplier exchange models for CAD, documents, and change items via controlled access portals and workflows.
    • Manufacturing BOM & Process Plans: Align EBOM to MBOM using BOM transformation and manufacturing process planning capabilities.
    • Service BOM Management: Define and manage as-maintained/service BOMs derived from EBOM/MBOM, supporting serialization, maintenance kits, and configuration control. Enable traceability and change management for field service operations.
    • Technical Publications: Establish publication pipelines for generating parts catalogs, service manuals, and work instructions. Ensure alignment between PLM data, CAD content, and document outputs.
    • Product Quality: Support closed-loop quality process integration (e.g., FMEA, NCR, CAPA) into product and change management flows.
    • ERP Integration: Enable seamless bidirectional transfer of product data-including parts, BOMs, and change records-from Teamcenter to ERP systems as part of the engineering release and change process.
  • Lead solution definition workshops, drive fit-gap assessments, and oversee architectural governance for program-wide traceability from business requirements to implementation.
  • Provide solution leadership to global delivery teams, mentor consultants and architects, and contribute to reusable templates, best practices, and frameworks within the Siemens Delivery Framework (SDF).
  • Support complex stakeholder environments and communicate effectively at all levels, including technical leads and C-suite executives, to ensure alignment and adoption.

About PROLIM
PROLIM is a leading provider of PLM, IoT and Digital transformation solutions to Global Fortune 1000 companies. With 9 global offices in US, India, and Australia, PROLIM has won 30+ awards and proudly serving over 1200+ customers to innovate and improve their profitability and efficiency. PROLIM was founded in 2005 and is headquartered in Farmington Hills, USA. With the global footprint and expertise in latest technologies, PROLIM can partner with you to speed up your Digital Transformation journey.