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Esd Manager Jobs in Michigan (NOW HIRING)

... ESD, microcontroller and software needs, thermal requirements, PCB/PCBA construction, customer ... Support customer and management cost walks with clear technical explanations of architecture ...

Senior Electronics Cost Estimator

Warren, MI · On-site

$100K - $124K/yr

... ESD, microcontroller and software needs, thermal requirements, PCB/PCBA construction, customer ... Support customer and management cost walks with clear technical explanations of architecture ...

SMT Operator I (Second Shift)

Saline, MI · On-site

$15.75 - $21/hr

Follow all ESD, safety, and company quality procedures Benefits of the Job: * Competitive medical ... A safe and inclusive work environment with team and management support * Employee training and ...

Must adhere to ESD Protocols and wear proper attire in our Material Sorting Facility * Assist the inventory coordinator and shipping manager with tasks * Perform general warehouse duties, such as ...

Must adhere to ESD Protocols and wear proper attire in our Material Sorting Facility * Assist the inventory coordinator and shipping manager with tasks * Perform general warehouse duties, such as ...

... site quality management system. RESPONSIBILITIES The following job functions are a basic ... Familiarity with foreign object debris (FOD) and ESD control (ANSI/ESD S20.20) practices.

New

Familiarity with ESD prevention, IPC-A-610/J-STD workmanship standards, and Quality Management System Standards; ISO 9001 and 13485, and FDA standards knowledge and experience are desirable

New

Electrician

Auburn Hills, MI · On-site

$23.75 - $32.50/hr

This is a large tier one supplier with great beneftis and management. JOB SUMMARY: Set-up and ... Strong working knowledge of electronic assembly industry standards, including ESD practices and ...

New

This is a large tier one supplier with great beneftis and management. ** JOB SUMMARY: Set-up and ... Strong working knowledge of electronic assembly industry standards, including ESD practices and ...

Showing results 21-40

Esd Manager information

What is an ESD manager?

ESD Managers are professionals responsible for overseeing and implementing Electrostatic Discharge (ESD) control programs within organizations, typically in electronics manufacturing or repair environments. Their main duties include developing ESD policies, training staff, monitoring compliance, and ensuring that sensitive equipment is protected from static electricity damage. ESD Managers work to minimize the risk of product defects and failures caused by static discharge, helping maintain product quality and safety.

What are the key skills and qualifications needed to thrive as an ESD manager?

To excel as an ESD (Electrostatic Discharge) Manager, you need a solid understanding of ESD control procedures, standards (such as ANSI/ESD S20.20), and relevant technical backgrounds, often supported by a degree in engineering or a related field. Familiarity with ESD auditing tools, compliance management systems, and certifications like Certified ESD Program Manager (from ESDA) are typically required. Strong leadership, meticulous attention to detail, and effective communication are critical soft skills for training teams and ensuring compliance. These competencies are essential for maintaining product quality, protecting sensitive equipment, and ensuring safety in manufacturing or electronics environments.

What are some typical challenges an ESD manager faces when implementing electrostatic discharge control programs across multiple departments?

As an ESD Manager, one common challenge is ensuring consistent adherence to ESD protocols across various departments, especially when teams have different workflows and priorities. It can be difficult to maintain awareness and compliance among staff who may not be directly involved in electronics manufacturing or handling. Additionally, keeping up with rapidly changing industry standards and training new employees effectively are ongoing concerns. Successful ESD Managers often collaborate closely with quality, production, and facilities teams to address gaps and foster a culture where ESD control becomes second nature.

What is the difference between Esd Manager vs Quality Control Supervisor?

AspectEsd ManagerQuality Control Supervisor
CertificationsESD-specific certifications, quality assurance, industry standardsQuality management certifications, ISO standards
Work EnvironmentElectrostatic discharge-sensitive manufacturing facilitiesManufacturing, production, or laboratory settings
Employer & IndustryElectronics, semiconductor, and tech manufacturingVarious manufacturing sectors including electronics, automotive, and consumer goods

The Esd Manager focuses on preventing electrostatic discharge in sensitive environments, ensuring ESD safety protocols are followed. The Quality Control Supervisor oversees overall product quality, inspections, and compliance with standards. While both roles require quality assurance knowledge, the Esd Manager specializes in electrostatic safety, whereas the Quality Control Supervisor has a broader quality oversight role.

Infographic showing various Esd Manager job openings in Michigan as of August 2026, with employment types broken down into 80% Full Time, 19% Part Time, and 1% Contract. Highlights an 79% Physical, 3% Hybrid, and 18% Remote job distribution.

Senior Electronics Cost Estimator

Warren, MI • On-site

Flex-N-Gate
Manufacturing • 10K+ employees

Full-time

Posted 10 days ago


Flex-N-Gate rating

6.8

Company rating: 6.8 out of 10

Based on 82 frontline employees who took The Breakroom Quiz


Job description

Flex-N-Gate is a leading manufacturer and supplier of components for the automotive industry, recently ranked 10th of the 150 Top North American Suppliers in "Automotive News." A growing and vital company, Flex-N-Gate provides a great opportunity for hard-working and skilled individuals.
Position Summary
The Senior Electronics Cost Estimating Engineer is the corporate subject matter expert for electronics cost estimating, design-to-cost architecture, and competitive electronics benchmarking. This role leads the electronics technical and cost-estimating activities associated with new customer RFQs, engineering changes, awarded programs, competitive teardowns, and reverse-engineering studies. The engineer reviews customer RFQ packages, identifies and interprets applicable electronics requirements, and works with assigned Electronics and Systems Engineers to develop the lowest-cost compliant electronic architecture, preliminary schematic, and costed electronic Bill of Materials (eBOM).
The position requires a senior-level electronics engineer who can move between requirements analysis, system architecture, circuit design, component selection, Altium schematic/eBOM development, component costing, PCB/PCBA manufacturing cost analysis, supplier engagement, reverse engineering, and management-level cost communication. The engineer serves as the primary Electronics Engineering interface between Engineering, Purchasing, global manufacturing teams, and the electronics supplier base for cost and quotation activities.
This engineer is expected to lead estimating workstreams, guide supporting engineers, challenge unnecessary cost and architecture complexity, apply lessons learned from teardown activities, and provide technically defensible cost estimates - often under aggressive RFQ timing, including occasional turnaround requirements of less than 24 hours.
Core Role Pillars
Pillar
Primary Accountability
1. RFQ Design-to-Cost Architecture
Translate customer requirements into the lowest-cost practical electronics architecture, schematic, and eBOM.
2. Electronics Cost Estimating
Own component, PCB, PCBA, manufacturing, and total electronics cost estimates; align engineering estimates with hard quotes.
3. Program Cost Management
Maintain current costed eBOMs, perform design-vintage cost walks, identify cost drivers, and lead cost-reduction recommendations.
4. Competitive Benchmarking & Reverse Engineering
Reverse engineer benchmark designs, estimate their cost, identify architecture lessons learned, and feed findings into future designs.
Essential Duties and Responsibilities
Customer RFQ Requirements & Architecture
  • Review customer RFQ packages, specifications, drawings, interface documents, network files, validation requirements, and customer technical requirements to determine the electronics content required for quotation.
  • Identify and interpret quote-driving electronics requirements including power and transients, connector and pinout requirements, LED performance and derating, driver architecture, CAN/CAN FD/LIN communications, diagnostics, EMC/EMI/ESD, microcontroller and software needs, thermal requirements, PCB/PCBA construction, customer-directed components, functional safety/cybersecurity considerations, programming, end-of-line testing, and validation requirements.
  • Translate customer requirements into a practical electronic architecture suitable for preliminary schematic development and cost estimation.
  • Identify missing, conflicting, or ambiguous customer requirements and coordinate technical clarification with the appropriate internal or customer-facing teams.
  • Lead architecture decisions with a focus on achieving all applicable customer requirements at the lowest practical recurring and non-recurring cost.

Electronics Design & eBOM Development
  • Develop or lead the development of preliminary electronics schematics for new RFQs and design studies.
  • Work directly with assigned Electronics Engineers and Systems Engineers to create quote-level circuits and architectures.
  • Use Altium Designer to develop, review, and modify electronic schematics and generate eBOMs.
  • Review major functional blocks including power input/protection, voltage regulation and conversion, LED drivers, microcontrollers, vehicle communication interfaces, diagnostics, thermal monitoring, connectors, EMC/ESD protection, LEDs, and supporting passive components.
  • Review architectures for unnecessary component count, excess capability, underutilized channels, oversized PCB requirements, avoidable interconnects, and other design-to-cost opportunities.
  • Guide supporting engineers toward standardized, reusable, and cost-efficient architecture solutions where appropriate.

Electronics Cost Estimating
  • Own the development and publication of internal electronics cost estimates for new RFQs, design studies, and major engineering changes.
  • Assign accurate component pricing to engineer-generated eBOMs using direct supplier quotations, Purchasing-negotiated pricing, approved internal pricing, distributor/market pricing, and appropriate volume-based assumptions.
  • Maintain traceability of pricing source, quantity or annual-volume assumptions, manufacturer part number, and quotation basis.
  • Evaluate costs for major electronics commodities including LEDs, MCUs, LED drivers, power ICs, regulators, transceivers, MOSFETs, protection devices, connectors, magnetics, capacitors, resistors, and related components.
  • Evaluate PCB cost drivers including dimensions, layer count, copper weight, material technology, Tg, board thickness, thermal requirements, and manufacturing constraints.
  • Understand PCBA manufacturing cost drivers including SMT, through-hole and back-end processing, labor, programming, test, passivation/coating, packaging, and other manufacturing processes.
  • Produce clear cost-per-PCBA, cost-per-lamp, and cost-per-vehicle estimates as required, with documented assumptions, exclusions, open issues, and quote risks.

Competitive Benchmarking, Teardown & Reverse Engineering
  • Lead or support reverse engineering and competitive teardown activities for customer, competitor, benchmark, and existing production electronic designs.
  • Analyze electronic assemblies, PCBAs, component selections, PCB construction, interconnect strategies, thermal solutions, and system architectures to understand how benchmark designs achieve their functional requirements.
  • Reverse engineer designs sufficiently to identify major circuit functions, power-supply and power-conversion strategies, microcontroller and communications architecture, LED-driver topology, diagnostics/protection strategies, PCB technology and construction, connector strategy, key components, and manufacturing approach.
  • Develop costed reverse-engineered eBOMs using identified components, equivalent components, supplier information, distributor pricing, internal pricing, and manufacturing assumptions.
  • Estimate total electronics and PCBA cost of benchmark designs, including component, PCB, assembly, programming, testing, and manufacturing costs.
  • Compare reverse-engineered designs against FNG designs to identify differences in component count, architecture complexity, PCB size/construction, LED and driver utilization, power-conversion strategy, MCU/communications strategy, interconnect approach, manufacturing complexity, and overall cost.
  • Identify design-to-cost lessons learned from teardown and benchmarking activities and translate them into actionable recommendations for current and future programs.
  • Propose architecture simplifications, component substitutions, circuit consolidation, PCB reductions, manufacturing improvements, and other optimization opportunities based on benchmark findings.
  • Maintain and communicate benchmark findings and lessons learned so effective concepts can be considered in future RFQs and product development while respecting customer requirements, reliability, validation, intellectual-property considerations, and FNG engineering standards.

Global Manufacturing & Hard-Quote Coordination
  • Serve as the primary Electronics Engineering estimating interface with the Treviso, Italy PCBA manufacturing team.
  • Alert Treviso to upcoming RFQs and anticipated PCBA quotation requirements, and maintain approximately bi-weekly quotation synchronization meetings.
  • Coordinate preliminary engineering estimates with Treviso's official manufacturing/hard-quote process and investigate significant deltas between engineering and manufacturing quotations.
  • Coordinate with the Reynosa manufacturing organization and other global FNG manufacturing teams when required.
  • Ensure manufacturing-location, process, labor, and other quote assumptions are applied consistently and accurately.

Awarded Programs, Engineering Changes & Cost Walks
  • Support awarded programs by maintaining current electronics costs as designs mature and by generating updated costed eBOMs as designs change.
  • Perform detailed design-vintage-to-design-vintage cost walks and clearly explain the reasons for cost increases and decreases.
  • Separate cost changes into meaningful drivers such as PCB construction/area, component additions or removals, LED quantity/type, driver architecture, MCU/software architecture, communications/diagnostics, connector/interconnect strategy, manufacturing process or labor, customer-directed requirements, and applicable commercial adders.
  • Reconcile schematic, Altium eBOM, engineering-change documentation, and quote assumptions before releasing cost information.
  • Identify and propose cost-reduction opportunities while maintaining customer requirements, engineering robustness, quality, and validation capability.
  • Support customer and management cost walks with clear technical explanations of architecture changes and their financial impact.

Component Cost, Supplier Expertise & Cost Data Governance
  • Serve as the Electronics Engineering subject matter expert for electronic component cost and cost-efficient architecture.
  • Maintain strong familiarity with major automotive semiconductor, LED, and component manufacturers and their product portfolios.
  • Meet with suppliers to understand new technologies, lower-cost alternatives, product roadmaps, lifecycle status, automotive qualification, availability, and pricing opportunities; share relevant findings with the broader EE team.
  • Act as the primary liaison between Electronics Engineering and Purchasing for component pricing and electronics cost activities.
  • Work with the Electronics Engineering team to maintain accurate component-cost information within Altium Vault / the approved Altium component library and cost database.
  • Help establish consistent component-pricing practices and prevent the use of obsolete, unsupported, or inaccurate cost data.

Technical Leadership, Delegation & Communication
  • Function as the electronics design architect for cost optimization during new quotations and major cost studies.
  • Provide technical direction to Electronics Engineers supporting RFQ and cost-estimating activities and delegate requirements review, schematic development, component selection, eBOM development, and supporting analysis as needed.
  • Review supporting engineers' outputs for technical completeness, requirements compliance, cost efficiency, and consistency with quote assumptions.
  • Serve as the primary point of contact within Electronics Engineering for component-cost and architecture-cost questions.
  • Attend applicable RFQ meetings, internal quote reviews, Tech Review presentations, supplier meetings, and program meetings; present electronics architectures, cost estimates, assumptions, risks, and cost-reduction opportunities when required.
  • Prepare and distribute concise published electronics cost-estimate summaries to Engineering, Purchasing, Sales, Program Management, Manufacturing, and other stakeholders.
  • Communicate complex design and cost information effectively to both technical and non-technical audiences.

ASPICE, Process Improvement & AI-Assisted Engineering
  • Apply working knowledge of Automotive SPICE (ASPICE) processes to support disciplined requirements elicitation, system requirements analysis, architecture definition, traceability, and development handoffs.
  • Continuously improve cost-estimating processes, templates, component-cost databases, estimating accuracy, and engineering workflows.
  • Identify repetitive estimating activities that can be standardized or automated.
  • Use approved AI tools, where beneficial, to accelerate RFQ document review, requirements extraction/classification, traceability, eBOM comparison, cost-delta analysis, supplier/component research, teardown analysis, and engineering summary generation.
  • Technically review and validate AI-assisted outputs before incorporating them into official engineering or quotation deliverables.

Required Qualifications
  • Bachelor of Science in Electrical Engineering (BSEE) or closely related electronics engineering discipline.
  • 5-10+ years of relevant electronics engineering experience, with demonstrated senior-level responsibility in hardware design, system architecture, or electronic product development.
  • Strong hands-on experience designing automotive or similarly high-reliability electronic hardware.
  • Demonstrated ability to read complex customer specifications and translate system-level requirements into electronic architectures and circuit requirements.
  • Strong schematic design and circuit-analysis capability, including the ability to independently create or critique quote-level architectures.
  • Experience with Altium Designer, including schematic capture, component libraries, and eBOM generation.
  • Experience selecting and applying automotive electronic componen

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