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Tool Designer Jobs in Utah (NOW HIRING)

... Software/Tool Proficiency • Experience with OPC/Mask simulation tools: • Mentor Graphics ... designs based on customer/internal feedback • Ability to read and understand English technical ...

Sr. Applied AI Engineer

Salt Lake City, UT

$101K - $138K/yr

Designed LLM strategies covering tool calling, structured outputs, prompt engineering, and context window management * Implemented AI safety and evaluation pipelines covering bias detection, PII ...

Sr. Applied AI Engineer

Salt Lake City, UT · On-site

$101K - $138K/yr

Designed LLM strategies covering tool calling, structured outputs, prompt engineering, and context window management * Implemented AI safety and evaluation pipelines covering bias detection, PII ...

Senior AI Security Engineer

Salt Lake City, UT · On-site +1

$110K - $151K/yr

This role is designed for someone who understands how models are attacked and how to harden them ... Lead security architecture reviews for MCP (Model Context Protocol) integrations - evaluating tool ...

Engineer - Mfg

Ogden, UT

$71K - $92K/yr

This position also will include creating estimated process plans, part detail designs (blue prints), manufacturing process plans, performing process development, NC programming, tool design, and ...

Engineer - Mfg

Ogden, UT

$71K - $92K/yr

This position also will include creating estimated process plans, part detail designs (blue prints), manufacturing process plans, performing process development, NC programming, tool design, and ...

Showing results 41-60

Tool Designer information

See Utah salary details

$21

$34

$46

How much do tool designer jobs pay per hour?

As of Aug 17, 2026, the average hourly pay for tool designer in Utah is $34.68, according to ZipRecruiter salary data. Most workers in this role earn between $28.46 and $40.48 per hour, depending on experience, location, and employer.

What is a tool designer?

Tool Designers are professionals who specialize in creating designs and specifications for tools, dies, jigs, fixtures, and other equipment used in manufacturing processes. They use engineering principles and computer-aided design (CAD) software to ensure that tools are efficient, durable, and tailored to the production requirements of a specific product or process. Tool Designers work closely with engineers, machinists, and production teams to optimize manufacturing efficiency and product quality.

What does a tool designer do?

A tool designer works in a machine shop or factory using a variety of methods to conceptualize and construct forms referred to as dies. In this role, you may work with blueprints or computer software such as CAD to create products and equipment according to customer specifications. Your responsibilities include the manufacturing of fixtures, molds, and jigs for die casting or molding other materials. Your duties also involve complying with the company’s safety policies and any regulations that may apply when using the equipment. The nature of this job is hazardous, making the use of protective gear imperative.

What are the key skills and qualifications needed to thrive as a tool designer, and why are they important?

To thrive as a Tool Designer, you need strong skills in mechanical design, CAD software proficiency, and an understanding of manufacturing processes, usually backed by a degree in engineering or a related field. Familiarity with industry-standard tools like SolidWorks, AutoCAD, and knowledge of GD&T are commonly required, along with relevant certifications such as Certified SolidWorks Professional (CSWP). Attention to detail, problem-solving abilities, and effective communication are crucial soft skills in this role. These competencies ensure that tools are designed for optimal functionality, manufacturability, and collaboration with cross-functional teams.

What are some common challenges tool designers face when collaborating with manufacturing teams?

Tool Designers often need to balance innovative design concepts with the practical constraints of manufacturing processes and deadlines. Communication with machinists and production engineers is essential to ensure that tools are not only functional but also manufacturable and cost-effective. Challenges can include adapting designs based on feedback, managing changes during prototyping, and ensuring all safety and quality standards are met. Building strong relationships with the manufacturing team and staying open to iterative improvements are key to overcoming these challenges.

What is the difference between Tool Designer vs Machinist?

AspectTool DesignerMachinist
CredentialsTechnical degree or certification in manufacturing or engineeringHigh school diploma or equivalent; technical training often preferred
Work EnvironmentDesign offices, CAD software, collaborative teamsMachine shops, manufacturing floors, workshop settings
Industry UsageUsed in manufacturing, engineering, product developmentUsed in machining, fabrication, production
Primary FocusDesigning tools, fixtures, and jigsOperating machines to produce parts

Tool Designers focus on creating and developing tools and fixtures using CAD software, working mainly in design environments. Machinists operate manufacturing equipment to produce parts based on specifications. While both roles are essential in manufacturing, Tool Designers concentrate on design, whereas Machinists focus on production and operation of machinery.

What are popular job titles related to Tool Designer jobs in Utah?

For Tool Designer jobs in Utah, the most frequently searched job titles are:

What job categories do people searching Tool Designer jobs in Utah look for?

The top searched job categories for Tool Designer jobs in Utah are:

What are popular job titles related to Tool Designer jobs in UT?

For Tool Designer jobs in UT, the most frequently searched job titles are:

Infographic showing various Tool Designer job openings in Utah as of August 2026, with employment types broken down into 87% Full Time, 9% Part Time, 3% Contract, and 1% Nights. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution, with an average salary of $72,142 per year, or $34.7 per hour.

Senior Layout Extraction Engineer

PDF Solutions

Midvale, UT • On-site

$120K - $160K/yr

Full-time

Re-posted 17 days ago


Job description

Overview

PDF is seeking an experienced Layout (FIRE) Extraction Engineer to join the DFI team, who is responsible for Apps Support. The Layout (FIRE) Extraction Engineer is an organized and highly motivated team player with strong initiative and communication skills and possesses the drive to deliver quality results on time in a dynamic, multi-disciplined, intensive and highly productive small team environment.

Among the products of PDF Solutions is eprobe, an electron beam inspection machine with unique capabilities. This machine especially benefits from layout information for quality and throughput. The task is to apply the inhouse PDF layout software to extract the information needed by eprobe, ranging from simply running existing setups to make modifications, checking correctness of the results and optimizing w.r.t. throughput goals.


Responsibilities
  • Running Layout (FIRE) Extraction on client site to support onsite inspection application development.
  • Remote support Layout (FIRE) Extraction for the R&D and Demo Application development.
  • Gathering information from customers on their needs
  • Contribute to customer presentations
  • Translate abstract descriptions of geometries into software configurations/scripts
  • For new software configuration, design testcases and run tests to make sure it works as intended

Qualifications

Bachelor’s Degree or higher in electrical engineering. Degrees, such as statistics or IT-related discipline may work, depending on work experience.

Skill Set

o Core Technology & Knowledge

· Theoretical and practical experience in OPC/RET (Resolution Enhancement Technology)

· Comprehensive understanding of CMOS process flow

· Knowledge of mask fabrication and design rules (DRC)

o Software/Tool Proficiency

· Experience with OPC/Mask simulation tools:

· Mentor Graphics Calibre OPC/ILT

· Synopsys Sentaurus/Litho

· ASML Brion Tachyon

· Layout processing tools:

· Cadence, Synopsys, or KLayout

· Scripting & Programming:

· Hands-on experience with Linux

· Python, Perl, Tcl, Shell scripting

· Experience in large-scale data processing and automation

o Algorithm & Data Processing Skills

· Understanding of pattern matching, shape transformation, and data optimization

· Experience in OPC optimization using Machine Learning / AI (preferred)

o Analytical & Problem-Solving Skills

· Analysis and improvement of discrepancies between layout and actual pattern

· Experience analyzing SEM/E-beam inspection data

· Experience optimizing process window (PW) and depth of focus (DOF)

o Collaboration & Work Skills

· Experience collaborating with Design, Lithography, and Fab Process teams

· Experience modifying and optimizing designs based on customer/internal feedback

· Ability to read and understand English technical papers/datasheets and write reports


Pay Range
USD $120,000.00 - USD $160,000.00 /Yr.Qualifications:

Bachelor’s Degree or higher in electrical engineering. Degrees, such as statistics or IT-related discipline may work, depending on work experience.

Skill Set

o Core Technology & Knowledge

· Theoretical and practical experience in OPC/RET (Resolution Enhancement Technology)

· Comprehensive understanding of CMOS process flow

· Knowledge of mask fabrication and design rules (DRC)

o Software/Tool Proficiency

· Experience with OPC/Mask simulation tools:

· Mentor Graphics Calibre OPC/ILT

· Synopsys Sentaurus/Litho

· ASML Brion Tachyon

· Layout processing tools:

· Cadence, Synopsys, or KLayout

· Scripting & Programming:

· Hands-on experience with Linux

· Python, Perl, Tcl, Shell scripting

· Experience in large-scale data processing and automation

o Algorithm & Data Processing Skills

· Understanding of pattern matching, shape transformation, and data optimization

· Experience in OPC optimization using Machine Learning / AI (preferred)

o Analytical & Problem-Solving Skills

· Analysis and improvement of discrepancies between layout and actual pattern

· Experience analyzing SEM/E-beam inspection data

· Experience optimizing process window (PW) and depth of focus (DOF)

o Collaboration & Work Skills

· Experience collaborating with Design, Lithography, and Fab Process teams

· Experience modifying and optimizing designs based on customer/internal feedback

· Ability to read and understand English technical papers/datasheets and write reports

Education:UNAVAILABLEEmployment Type: FULL_TIME