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Welding Design Software Jobs in Rochester, NY (NOW HIRING)

Tool & Die Maker

Webster, NY · On-site

$56K - $65K/yr

Design and develop tool and die components using CAD software such as SolidWorks and AutoCAD ... Familiarity with welding techniques and electrical discharge machining (EDM). * Excellent math ...

... D software for the creation of piping fluid flow network systems is a plus. * Demonstrated ability to creatively solve engineering problems and troubleshoot operational issues. * Knowledge of welding ...

Gleason's product and service offerings include gear and transmission design software, gear ... Align components for assembly manually or with hoist and bolt, screw, dowel, weld or rivet parts ...

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Welding Design Software information

See Rochester, NY salary details

$10

$61

$85

How much do welding design software jobs pay per hour?

As of Sep 4, 2026, the average hourly pay for welding design software in Rochester, NY is $61.99, according to ZipRecruiter salary data. Most workers in this role earn between $54.33 and $69.28 per hour, depending on experience, location, and employer.

What is welding design software?

Welding design software is a specialized type of computer program used by engineers, designers, and fabricators to plan, model, and analyze welded structures. This software assists in creating precise welding drawings, selecting appropriate welding methods, and ensuring compliance with industry standards. It often includes features for stress analysis, joint selection, and cost estimation, which help improve the efficiency and quality of welding projects.

What are the key skills and qualifications needed to thrive as a welding design software specialist?

To thrive as a Welding Design Software Specialist, you need a solid background in welding engineering, design principles, and relevant educational credentials such as a degree in mechanical or welding engineering. Proficiency with industry-standard tools like AutoCAD, SolidWorks, and specialized welding simulation or design software (e.g., WeldPro, Simufact Welding) is essential, and certifications in welding technology or CAD can be advantageous. Strong analytical skills, attention to detail, and effective communication set top performers apart in this role. These skills and qualities are crucial for creating accurate, safe, and cost-effective welding designs that meet industry standards and client requirements.

How does a professional specializing in welding design software typically collaborate with engineering and fabrication teams?

Professionals working with Welding Design Software frequently act as a bridge between design engineers and fabrication teams. They ensure that digital weld designs are both manufacturable and compliant with industry standards, often participating in meetings to review design feasibility and suggest improvements. Daily tasks may include updating models based on feedback, generating detailed welding instructions, and troubleshooting design issues during production. This role requires strong communication skills and a collaborative mindset to align software-driven designs with on-the-floor fabrication processes.

What is the difference between Welding Design Software vs Welding Engineer?

AspectWelding Design SoftwareWelding Engineer
Primary RoleDesigns and simulates welding processes using specialized softwarePlans, oversees, and ensures quality of welding projects in the field or workshop
CredentialsEngineering or technical background, software proficiencyEngineering degree, certifications like CWE or AWS
Work EnvironmentDesign offices, CAD labs, computer-basedConstruction sites, manufacturing plants, workshops
Industry UsageUsed by engineers, designers, and CAD specialistsUsed by welding professionals, project managers, quality inspectors

While Welding Design Software focuses on creating and analyzing welding plans digitally, Welding Engineers apply their expertise in real-world settings to ensure welding quality and safety. Both roles are essential in the welding industry but serve different functions—one in design and simulation, the other in implementation and oversight.

What are popular job titles related to Welding Design Software jobs in Rochester, NY?

For Welding Design Software jobs in Rochester, NY, the most frequently searched job titles are:

Infographic showing various Welding Design Software job openings in Rochester, NY as of August 2026, with employment types broken down into 51% Full Time, 28% Part Time, and 21% Temporary. Highlights an 100% In-person job distribution, with an average salary of $128,939 per year, or $62 per hour.

Controls Hardware Design Engineer II - Relocation Assistance Eligible

Progressive Machine & Design

Victor, NY • On-site

$95K - $115K/yr

Full-time

Re-posted 27 days ago


Job description

Description:

Location: On-site - Victor, NY.  Design it. Build it. See it run.

Relocation Assistance may be available for qualified candidates.   

Salary: $95,000 - $115,000


JOB SUMMARY

Our Controls Engineering Department is growing and we're looking for engineers who have experience in custom automation - no two projects are quite alike! The Controls Hardware Design Engineer II is responsible for providing controls hardware design for turnkey custom automation equipment. At PMD, our engineers don't just design automation systems from a desk.  They work alongside the teams building, integrating and commissioning the machines - from concept through completion. 



ESSENTIAL FUNCTIONS

  • Work independently on medium sized or average complexity projects and/or under direction of more senior engineers on portions of larger or more complex projects.
  • Review customer requirements, PMD proposal, PMD cost estimate, and Federal, State, & Local requirements.
  • In advance of completed Mechanical Engineering design, attend Mechanical Design Reviews to understand machine functionality and incorporate associated Controls Hardware design elements into the Controls Hardware design.
  • Translate device list provided by Mechanical Engineering into Controls Hardware design elements.
  • Utilize AutoCad Electrical for drafting.
  • Use provided symbols & circuits.
  • Develop new symbols & circuits as necessary.
  • Controls Hardware Design
  • AC Power schematics
  • DC Power schematics
  • Safety schematics
  • Servo/Stepper schematics
  • Industrial Network schematics
  • Device schematics
  • Testers, Transducers, Laser Markers, Welders, Robots, etc.
  • I/O schematics
  • Control Enclosure layouts
  • Control Panel layouts
  • Fluid Power Supply schematics
  • Fluid Power Control schematics
  • Bill of Materials
  • Interact with Controls Build personnel to answer questions.
  • Assist Controls Build Technicians, Controls Software Engineers, and Controls Engineers with electrical and fluid power debug.
  • Update design as required throughout the project life cycle.



OTHER DUTIES

  • Maintain a clean and orderly work area.
  • Observe safety procedures.
  • Any other task assigned by management within scope of position, federal and state regulations.




Requirements:

EDUCATION

  • BS in EE, EET, Mechatronics, related engineering field; or demonstrated equivalent experience.


EXPERIENCE (5-10 years) with 4 or more of the following:

  • AutoCad Electrical
  • NFP79, UL508a, CE, CSA standards
  • Power calculations (AC 3phase, AC 1phase, DC 5-90V, Transformers)
  • Enclosure Heat calculations
  • SCCR calculations
  • Fluid Power flow calculations
  • SISTEMA safety calculations


KNOWLEDGE, SKILLS & ABILITIES

  • Effective verbal and written communication.
  • Ability to read, analyze, and interpret general technical procedures.
  • Ability to apply concepts of basic algebra and geometry and to calculate scaling factors, proportions, percentages, rates, and ratios.
  • Organized
  • Detail oriented
  • Ability to work independently or as part of a team
  • Ability to take direction
  • Creative/Innovative
  • Time management skills



PHYSICAL DEMANDS & WORK ENVIRONMENT

The physical demands described here are representative of those that must be met by an employee to successfully perform the essential functions of this job. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.


  • Regularly required to sit; use hands to handle or feel; reach with hands and arms; talk or hear; and smell.
  • Occasionally required to stand, walk, push, pull, lift, stoop, kneel, crouch and crawl.
  • Specific vision abilities include close vision, distance vision, color vision, peripheral vision, depth perception, and ability to adjust focus.
  • Work environment is primarily performed indoors; partially around moving mechanical parts at a moderate noise level.
  • Wear safety equipment, including proper PPE.