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Signal Integrity Jobs in Minnesota (NOW HIRING)

Signal Integrity, Schematic Modeling, Cadence, Mentor Xpedition, Mentor PADS, Altium Designer, Other Layout tools, Tolerance Analysis, Power Integrity * SCHEMATIC DESIGN/SIGNAL INTEGRITY: EE-Digital ...

Railroad Signal Maintainer Technician Incentives Include: * Company vehicle, laptop, and cell phone ... SAFETY, PEOPLE, INTEGRITY, ACCOUNTABILITY, AND EXCELLENCE * Demonstrate and attain CDL Core Focus:

Railroad Signal Maintainer Technician for the Minneapolis, MN area. Incentives Include: * Company ... SAFETY, PEOPLE, INTEGRITY, ACCOUNTABILITY, AND EXCELLENCE * Demonstrate and attain CDL Core Focus:

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A Cohu RF Product Development Engineer requires experience in RF and signal integrity to design, optimize, characterize and support hardware for semiconductor test interfaces. The primary ...

A Cohu RF Product Development Engineer requires experience in RF and signal integrity to design, optimize, characterize and support hardware for semiconductor test interfaces. The primary ...

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Signal Integrity information

See Minnesota salary details

$124.9K

$165K

How much do signal integrity jobs pay per year?

As of Aug 5, 2026, the average yearly pay for signal integrity in Minnesota is $162,880.00, according to ZipRecruiter salary data. Most workers in this role earn between $163,600.00 and $163,600.00 per year, depending on experience, location, and employer.

What is the difference between Signal Integrity vs Signal Integrity Engineer?

AspectSignal IntegritySignal Integrity Engineer
CredentialsKnowledge of high-speed digital design, basic electrical engineeringSame as Signal Integrity, often with additional certifications or degrees
Work EnvironmentDesign teams, R&D labs, manufacturingDesign and analysis teams, R&D labs, manufacturing
Industry UsageFocuses on principles and analysisApplies principles to design, testing, and troubleshooting
Search IntentUnderstanding signal integrity conceptsFinding professionals or job roles in signal integrity

Signal Integrity refers to the principles and analysis of maintaining signal quality in electronic systems. A Signal Integrity Engineer applies these principles in designing, testing, and troubleshooting high-speed digital circuits. While the concepts are similar, the role of a Signal Integrity Engineer involves practical application and problem-solving in real-world projects.

What are the key skills and qualifications needed to thrive as a signal integrity engineer?

To thrive as a Signal Integrity Engineer, you need a solid background in electrical engineering principles, high-speed digital design, and electromagnetic theory, typically supported by a relevant engineering degree. Familiarity with simulation tools like HyperLynx, Cadence Sigrity, and oscilloscopes, as well as knowledge of industry standards and PCB layout software, is crucial. Strong problem-solving skills, attention to detail, and effective communication set top professionals apart in this field. These skills and qualities are vital to ensure reliable high-speed data transmission and prevent costly design issues in electronic systems.

What is signal integrity and why is it important?

Signal integrity refers to the quality and reliability of electrical signals as they travel through circuits, especially at high speeds. Ensuring good signal integrity is crucial because poor signal integrity can cause data errors, timing issues, or complete circuit failure. Signal integrity engineers work to minimize issues like noise, crosstalk, reflections, and electromagnetic interference by carefully designing circuit layouts, selecting appropriate materials, and using simulation tools. This is particularly important in high-speed digital and RF systems, where even small distortions can have significant impacts.

What are common challenges faced by signal integrity engineers when working on high-speed PCB designs?

Signal Integrity engineers frequently encounter challenges such as managing crosstalk, minimizing electromagnetic interference, and ensuring signal quality over high-frequency transmission lines. Working closely with PCB layout designers and hardware engineers, they analyze and resolve issues related to impedance mismatches and timing delays. Staying updated with evolving standards and simulation tools is crucial, as continuous collaboration and troubleshooting are essential parts of the role.
What cities in Minnesota are hiring for Signal Integrity jobs? Cities in Minnesota with the most Signal Integrity job openings:
Infographic showing various Signal Integrity job openings in Minnesota as of July 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $162,880 per year, or $78.3 per hour.

Electrical Design Engineer

Celestica

Maple Grove, MN • On-site

Other

Posted 26 days ago


Celestica rating

8.8

Company rating: 8.8 out of 10

Based on 8 frontline employees who took The Breakroom Quiz

14th of 156 rated electronics manufacturers


Job description

Summary

The Staff Engineer, Electrical Design develops new electrical systems/circuits for various applications. Research system ideas and draw up plans for these systems, and capture them in schematics and system specifications. Test, simulate, validate and qualify their systems and make adjustments as needed. Provide support throughout the manufacturing of the electrical systems they have designed.


The Staff Engineer, Electrical Design works in cross functional teams with other designers, customers, manufacturing engineering and project leadership to ensure robust and high quality product development. Enhance designs with feedback from reviews in areas such as manufacturing, test, supply chain, reliability, industrial design and simulations.

This role will be focused in the A&D space with consultation in Health Tech, Energy, and Industrial.


Detailed Description

Performs tasks such as, but not limited to, the following:

  • Lead the design, development and implementation of technical solutions for complex projects, involving multiple domains. Participate in project planning and scheduling.
  • Provides technical leadership and direction to a sizable team of engineers. May be a recognized expert (go to person) in one or more technical areas
  • Takes responsibility for non-technical elements of an engineering project (people, financials etc.).
  • Reviews and interprets customer requirements/specifications and may act as primary customer contract.
  • Analyze trade-offs in complex systems and recommend solutions. Develops deployment strategies and plans.
  • Leads the deployment of strategic complex programs and coordinates site-wide deployment efforts.
  • May manage relationships with key vendors/partners.
  • Design, modify and implement systems that meet customer and Celestica needs. E.g. creation of Schematics, Bills of material, diagrams, drawings, etc.
  • Testing, simulation and measuring (including troubleshooting) the performance of systems
  • Keep up to date with relevant industry knowledge and regulations
  • Solve complex problems
  • Liaison with suppliers, customers, contractors, and other internal teams.
  • Analyze and interpret data and information
  • Recommend modifications for systems
  • Create reports, minutes and updates
  • May be a recognized expert (go to person) in one or more technical areas.


Knowledge/Skills/Competencies

Enabling Competencies:

  • Project Management - Ability to manage/lead complex, multiple line engineering projects that may also involve other functions. Demonstrate solid understanding of the technical, financial and people aspects of the project. Able to create a project/change management plan and ensure that the project is delivered within the assigned time and budget. Ability to recognize project barriers and develop mitigation plans.
  • Leadership - Demonstrate "People & Team Leadership Behaviors" as per Celestica Leadership Imperatives.
  • Financial Acumen / Business Planning - Ability to create financial plans for your projects, align them internally with your line of management and other functions and externally if needed. Create project plans, profitability calculations, risk and sensitivity analysis, able to recognize barriers and mitigate profitability risks. Fully knowledgeable about internal and external financial reporting, accounting and tax requirements relevant to your area of expertise.
  • The following competencies may also be required: Coaching/Mentoring; Communication/Negotiation/Presentation; Creative Problem Solving; Customer Interaction/Stakeholder Management; Quality & Lean; Working Effectively with Others; D/PFMEA; 8D/Corrective Action; Equipment Safety; Design of Experiments (DOE).
  • Aerospace & Defense Experience – Ability to lead projects compliant with AS9100D, identify and design to MIL-STDs for various designs


Technical Competencies:

The following are the associated Technical Competencies that are required for the various Standard Jobs within the Design Engineering Electrical career stream. This list is for illustrative purposes and may not be inclusive of all skills.

  • DIGITAL/LOGIC : EE-Embedded, FPGA, DSP, Static Timing, Tolerance Analysis, EE-Digital, EE-Power Point of Load supplies, EE-Battery, Signal Integrity, Schematic Modeling, Power Integrity, ESD Controls & Standards
  • POWER : EE-Power Switching Supply, EE-Point of Load Supplies, EE-Battery, Power Integrity-CoreSim, Tolerance Analysis, EE-Analog, Schematic Modeling
  • PCB/LAYOUT : Signal Integrity, Schematic Modeling, Cadence, Mentor Xpedition, Mentor PADS, Altium Designer, Other Layout tools, Tolerance Analysis, Power Integrity
  • SCHEMATIC DESIGN/SIGNAL INTEGRITY: EE-Digital, EE-Analog, Tolerance Analysis, Static Timing, Schematic Modeling
  • ANALOG : EE-Analog, Tolerance Analysis, RF Design(<5Ghz), High Frequency (>20Ghz) RF Design


Typical Experience

  • 7 to 10 years of related experience; Experience in similar job roles



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