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Emi Design Engineer Jobs in Texas (NOW HIRING)

The E3 Engineer is responsible for electromagnetic interference/electromagnetic compatibility (EMI ... Specific areas of expertise will include experience in the design and verification analysis of EMI ...

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Emi Design Engineer information

How does an EMI design engineer typically collaborate with other engineering teams during product development?

As an EMI Design Engineer, you will work closely with hardware, PCB layout, and mechanical engineering teams throughout the product development cycle. Your primary role is to identify potential electromagnetic interference (EMI) issues early on and recommend design modifications to ensure compliance with regulatory standards. Collaboration often involves reviewing schematics, participating in design reviews, and coordinating EMI testing with the broader engineering team to troubleshoot and resolve complex interference problems. This cross-functional teamwork is crucial for integrating EMI solutions without impacting product performance or timelines.

What is the difference between Emi Design Engineer vs EMI Engineer?

AspectEmi Design EngineerEMI Engineer
CredentialsBachelor's in Electrical/Electronic Engineering, relevant certificationsBachelor's in Electrical/Electronic Engineering, relevant certifications
Work EnvironmentDesign labs, R&D departments, product development teamsTesting labs, R&D, manufacturing facilities
Industry UsageProduct design, circuit development, system integrationEMC compliance, interference mitigation, testing
Common Search IntentDesigning electronic components, circuit developmentReducing electromagnetic interference, testing EMI

Emi Design Engineers focus on creating electronic systems and components, ensuring they meet design specifications. EMI Engineers specialize in testing and mitigating electromagnetic interference to ensure product compliance. While both roles require electrical engineering knowledge, Emi Design Engineers are more involved in the design process, whereas EMI Engineers focus on testing and compliance.

What are the key skills and qualifications needed to thrive as an EMI design engineer, and why are they important?

To excel as an EMI Design Engineer, you need a solid background in electrical engineering, electromagnetic compatibility (EMC) principles, and circuit design, typically supported by a relevant engineering degree. Familiarity with simulation tools like CST Studio Suite or Ansys HFSS, and certifications such as iNARTE EMC Engineer, are commonly required. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills help engineers address complex interference issues. These skills and qualifications are crucial for ensuring products comply with regulatory standards and function reliably in electromagnetic environments.

What is an EMI design engineer?

An EMI Design Engineer is a professional who specializes in managing and mitigating electromagnetic interference (EMI) in electronic systems and devices. Their work involves designing circuits, components, and enclosures to ensure compliance with electromagnetic compatibility (EMC) standards. They use simulation tools, perform tests, and develop shielding or filtering solutions to prevent unwanted electromagnetic disturbances that could affect device performance or safety. EMI Design Engineers often work closely with hardware engineers and compliance teams throughout the product development process.
What cities in Texas are hiring for Emi Design Engineer jobs? Cities in Texas with the most Emi Design Engineer job openings:

Sr Mechanical Design Engineer

Rochester Sensors LLC

Coppell, TX • On-site

$83K - $115K/yr

Full-time

Medical, Life, Retirement, PTO

Re-posted 28 days ago


Job description

ABOUT ROCHESTER SENSORS

Rochester Sensors, an Amphenol Company, develops sensors in many different industries including industrial, heavy vehicle, power generation and storage. Rochester is increasing its range of sensor know-how and in-house technologies to create engineered solutions for its customers. We are a multi-national company headquartered in Dallas, Texas, with manufacturing facilities in Coppell, Texas USA; Mexico City, Mexico; Brussels, Belgium; Warwick, United Kingdom, Shannon, Ireland and Shanghai, China.

Rochester builds Quality, Accuracy, and Reliability into all of our products. New designs and technologies are being introduced to further enhance your satisfaction with our products.

All of our products are constructed of quality materials to ensure durability and longevity. Rochester products are sold to original equipment manufacturers (OEMs) & distributors in the following markets:


Agricultural • Aircraft • Automotive • Refrigeration • Industrial • LP Gas Marine • Heavy Truck • Off-Road • Construction •

Locomotive Petrochemicals • Process Equipment

MUST BE LOCATED IN THE DFW AREA. THIS IS NOT A REMOTE POSITION

SENIOR MECHANICAL DESIGN ENGINEER

OVERVIEW

We are looking for an exceptional Senior Mechanical Design Engineer to architect and develop the mechanical systems for next-generation liquid level sensing technologies used in the world’s most demanding heavy equipment environments. This role is intended for a deep technical engineer who thrives on difficult engineering challenges. The products developed in this position must operate reliably in extreme temperatures, high vibration environments, and harsh industrial conditions where failure is not acceptable. The ideal candidate has previously designed rugged electromechanical products from concept through production, with strong expertise in sensor packaging, vibration-resistant design, sealing strategies, and harsh-environment electronics integration. Sensors developed in Dallas will be deployed globally across construction, agriculture, mining, and commercial vehicle platforms.

RESPONSIBILITIES

  • Design the mechanical architecture for advanced liquid level sensing systems, including: guided wave radar probes, capacitive sensing structures, and ultrasonic sensor housings.
  • Develop sensor designs capable of surviving years of operation in extreme duty cycles.
  • Create mechanical systems that withstand: severe vibration and mechanical shock, extreme temperature ranges (– 40°C to +125°C+), fluid exposure and chemical attack, and dust, contamination, and pressure variations.
  • Focus on areas including: structural integrity, sealing and environmental protection, electronics packaging, probe and waveguide design, and material selection for durability and corrosion resistance
  • Perform deep failure analysis and root cause investigations.
  • Solve problems related to: vibration-induced fatigue, thermal expansion mismatches, fluid interaction with sensing structures, long-term reliability of ruggedized electronics packaging •
  • Design and perform FEA analysis on designs for rapid failure analysis
  • Own the mechanical design from concept through production.
  • Lead prototype development, testing, and design iteration.
  • Drive design decisions balancing performance, reliability, manufacturability, and cost.
  • Work within automotive-grade development systems including: APQP, DFMEA / PFMEA, design verification and validation testing
  • Support development processes aligned with IATF 16949 quality systems.

REQUIRED EXPERIENCE

  • Bachelor’s or Master’s degree in Mechanical Engineering.
  • 10–15+ years of experience designing rugged industrial or automotive products.
  • Proven track record developing mechanical systems for electronic sensors or instrumentation.
  • Strong experience in several of the following areas: harsh environment product design, ruggedized electronics packaging, vibration and fatigue-resistant mechanical systems, fluid-contact sensor structures, sealing systems and ingress protection, and materials engineering for extreme environments
  • Advanced experience with 3D CAD systems.
  • Experience using FEA tools for structural, vibration, and thermal analysis.
  • Experience working within automotive-grade product development systems, including: APQP, DFMEA / PFMEA, environmental validation testing, and IATF 16949 environments.

PREFERRED

  • Mechanical design of liquid level sensors
  • Experience with guided wave radar probes or instrumentation
  • Heavy vehicle, construction equipment, or agricultural machinery development
  • EMI/EMC-conscious electronics packaging
  • Design for IP67 / IP69K environmental protection
  • Experience designing products for long service life in high vibration environments
  • A hands-on mechanical architect, not just a CAD designer
  • Comfortable solving complex physics and materials problems
  • Experienced designing products that survive in extreme environments
  • Motivated to create highly reliable sensor systems used worldwide


TRAVEL REQUIREMENTS

Up to 10% travel may be required

PHYSICAL REQUIREMENTS

While performing the duties of this job, employees may be required to walk for prolonged periods of time, occasionally bending, climbing, rotating, squatting, reaching, kneeling, or stooping, lifting up to 40 pounds, and periods of computer use.

Employee may be frequently exposed to heat/cold, heights, gases, vibration, dust, chemicals, odors, dampness, fumes, and noises.

REASONABLE ACCOMODATIONS

Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions of the position.

WHAT'S NICE ABOUT WORKING FOR ROCHESTER

  • Comprehensive Health Insurance
  • Paid Time Off and Holidays
  • Life, AD&D, short/long term disability insurance
  • Casual workplace with an unbelievable feeling of energy
  • 401K Retirement program with company match

Rochester Sensors is an equal opportunity-affirmative action employer and considers all qualified applicants for employment based on business needs, job requirements and individual qualifications, without regard to race, color, religion, sex, age, disability, sexual orientation, gender identity or expression, marital status, past or present military service or any other status protected by the laws or regulations in the locations where we operate.

Any unsolicited resumes or candidate profiles submitted in response to our job posting shall be considered the property of Rochester Sensors. and its subsidiaries and are not subject to payment of referral or placement fees if any such candidate is later hired by Rochester Sensors unless you have a signed written agreement in place with us which covers the applicable job posting.

If you are a person with a disability needing assistance with the application process, please call (214) 529 -8055 or email us at lonnie.golden@rochestersensors.com.

Equal Employment Opportunity Posters | U.S. Department of Labor (dol.gov)