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Computer Integrated Machining Jobs in Pennsylvania

CAD Designer

Philadelphia, PA · On-site

$27.25 - $37.50/hr

Standard Bots' robots are trusted by organizations ranging from independent machine shops to NASA ... Integration Design * Develop full 3D cell layout models that account for robot reach envelopes ...

As a CAD/CAM Technician, you'll be at the center of our Service Parts manufacturing automation ... machining, and working with integrated software systems. You'll also partner with the Customer ...

As a CAD/CAM Technician, you'll be at the center of our Service Parts manufacturing automation ... machining, and working with integrated software systems. You'll also partner with the Customer ...

Integration Engineer

Pittsburgh, PA · On-site

$101K - $135K/yr

Existing Pick and Place machines are expensive and can require high-pressure air and three phase ... This includes designing mechanical parts in CAD, designing circuit boards, writing firmware and ...

Integration Engineer

Pittsburgh, PA · On-site

$101K - $135K/yr

Existing Pick and Place machines are expensive and can require high-pressure air and three phase ... This includes designing mechanical parts in CAD, designing circuit boards, writing firmware and ...

TEAM, Inc. is a global leader in integrated asset integrity solutions, offering high-quality ... machinery with extreme noise levels. • Able to wear safety equipment for any task and as required ...

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Computer Integrated Machining information

See Pennsylvania salary details

$33.1K

$65.1K

$95.7K

How much do computer integrated machining jobs pay per year?

As of Jun 12, 2026, the average yearly pay for computer integrated machining in Pennsylvania is $65,130.00, according to ZipRecruiter salary data. Most workers in this role earn between $50,600.00 and $80,200.00 per year, depending on experience, location, and employer.

What is the definition of a computer?

A computer is an electronic device used in computer integrated machining to process data, control machinery, and perform calculations based on programmed instructions. It typically involves hardware components like processors, memory, and input/output devices, and requires knowledge of software and automation tools. Proficiency in computer operation is essential for programming CNC machines and managing manufacturing processes.

What are some common challenges faced by professionals in Computer Integrated Machining, and how can they be addressed?

Professionals in Computer Integrated Machining often face challenges such as adapting to rapidly evolving technology, maintaining precision under tight deadlines, and troubleshooting complex CNC equipment. Staying current with software updates and industry certifications, as well as collaborating closely with engineers and quality control teams, can help overcome these obstacles. Additionally, strong organizational skills and attention to detail are crucial for ensuring the accuracy and efficiency of machined parts, while continuous learning helps professionals stay competitive in the field.

What is Computer Integrated Machining?

Computer Integrated Machining (CIM) refers to the use of computer technology to control and automate manufacturing processes in machining. It combines traditional machining techniques, such as milling, turning, and drilling, with computer-aided design (CAD) and computer-aided manufacturing (CAM) software. This integration allows for increased precision, efficiency, and consistency in producing metal or plastic parts. CIM professionals are skilled in operating both manual and computer-controlled machinery, programming CNC machines, and interpreting technical blueprints.

Is it better to shut down or sleep?

For a Computer Integrated Machining technician, shutting down equipment when not in use can prevent unnecessary wear and save energy, while sleep mode allows quick resumption of work but may still consume some power. Choosing between the two depends on the machine's operational schedule and maintenance requirements. Proper power management helps ensure equipment longevity and efficiency in a manufacturing environment.

What is the difference between Computer Integrated Machining vs CNC Machinist?

AspectComputer Integrated MachiningCNC Machinist
CredentialsTechnical training, certifications in CAD/CAM softwareHigh school diploma, technical training, CNC certification
Work EnvironmentManufacturing floors with automated machinery, computer stationsWorkshop or manufacturing floor operating CNC machines
Industry UsageUsed in automated, high-volume manufacturing settingsCommon in custom, small-batch, or precision machining
Job FocusDesign, programming, and overseeing automated machining processesOperating and setting up CNC machines to produce parts

Computer Integrated Machining involves managing automated manufacturing systems with a focus on programming and overseeing production processes, often requiring knowledge of CAD/CAM software. CNC Machinists operate and set up CNC machines directly, focusing on manual operation and adjustments. Both roles are essential in manufacturing but differ in scope, automation level, and technical requirements.

What is a good inexpensive computer to buy?

For a Computer Integrated Machining role, a budget-friendly computer with at least an Intel i5 or AMD Ryzen 5 processor, 8GB of RAM, and a solid-state drive (SSD) is suitable for running CAD/CAM software and basic design tasks. Prioritizing reliability and compatibility with industry tools ensures efficient workflow without high costs.

What are the key skills and qualifications needed to thrive as a Computer Integrated Machining professional, and why are they important?

To excel in Computer Integrated Machining, you need a solid understanding of machining principles, blueprint reading, and mathematics, often backed by a diploma or certificate in machining or manufacturing technology. Proficiency with CNC machines, CAD/CAM software, and measuring instruments like calipers and micrometers is essential. Attention to detail, problem-solving, and effective communication are key soft skills that set top professionals apart. These competencies ensure precise manufacturing, efficient workflow, and the ability to adapt to evolving production demands.

What is the best home computer to buy?

For a computer integrated machining professional, a reliable desktop or high-performance laptop with a fast processor, ample RAM, and a dedicated graphics card is ideal for CAD software and machining simulations. Consider systems with robust build quality and compatibility with industry-standard tools, and ensure it meets the specifications required for your specific machining applications and certifications.
Infographic showing various Computer Integrated Machining job openings in Pennsylvania as of June 2026, with employment types broken down into 1% As Needed, 94% Full Time, 3% Part Time, 1% Contract, and 1% Nights. Highlights an 95% Physical, 4% Hybrid, and 1% Remote job distribution, with an average salary of $65,130 per year, or $31.3 per hour.
CAD Designer

CAD Designer

Standard Bots

Philadelphia, PA • On-site

$27.25 - $37.50/hr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 13 days ago


Job description

About Standard Bots
Standard Bots is a New York-based robotics company building AI-powered six-axis robot arms designed and manufactured in the United States. Founded to make industrial automation more accessible and affordable, Standard Bots takes a vertically integrated approach - developing its own hardware, software, vision system, and electronics - so manufacturers of all sizes can deploy robots without specialized expertise or coding skills. Standard Bots' robots are trusted by organizations ranging from independent machine shops to NASA and Lockheed Martin. Standard Bots is the largestU.S. industrial robotics company by robots shipped and one of the fastest-growing in the industry.
Location
This role is onsite 5 days/week onsite in our South East PA shop
Role overview
As a Machine Designer on the Implementation team, you will be the mechanical design authority behind Standard Bots' custom automation solutions. You'll take customer requirements and site survey data and transform them into fully engineered cell layouts, end-of-arm tooling, custom fixturing, and fabrication-ready drawing packages - while collaborating closely with Automation Engineers from project kickoff through successful customer handoff. You're comfortable leading design reviews with internal engineers and presenting CAD models directly to customer manufacturing teams. You hold yourself to high standards on precision, manufacturability, and documentation clarity.
What you'll do
Mechanical Design & Engineering
  • Create 3D models and detailed fabrication drawings for robotic automation cells, end-of-arm tooling (EOAT), custom fixtures, machine guards, and structural support using SolidWorks
  • Design to manufacturing constraints for sheet metal, welded fabrications, and machined components
  • Manage bills of materials (BOMs) for sourcing and procurement
  • Apply GD&T; principles to ensure designs are manufacturable, inspectable, and repeatable across production runs
  • Conduct FEA on structural and load-bearing components to validate safety margins before releasing drawings to fabrication

Cell Layout & Integration Design
  • Develop full 3D cell layout models that account for robot reach envelopes, collaborative safety zone clearances, operator access paths, and equipment footprint
  • Define and document EOAT specifications, interface plates, quick-change systems, and tool change architectures in coordination with Automation Engineers
  • Collaborate on I/O routing, pneumatic manifold placement, cable management, and sensor mounting within the mechanical assembly design
  • Review installation sequences and identify design-for-assembly improvements that simplify field deployment

Customer-Facing Design Support
  • Present concept designs, CAD models, and layout drawings to customer operations and engineering teams for review and approval
  • Incorporate customer feedback and site constraints - including ceiling height, floor load ratings, aisle clearances, and existing equipment interfaces - into design iterations
  • Produce complete, accurate as-built documentation packages upon project handoff, including drawings, BOMs, and design notes

Design Standards & Continuous Improvement
  • Build and maintain a reusable component library of standard fixturing elements, EOAT components, quick-change tooling, and cell design building blocks
  • Define and enforce internal design standards, drawing templates, revision control protocols, and file management procedures
  • Identify recurring design challenges and propose standardized solutions that reduce engineering time on future projects

What you'll bring
  • 3-5 years of hands-on CAD design experience in an industrial automation, robotics integration, or custom manufacturing environment
  • Portfolio of completed automation or equipment designs taken from concept through fabrication and installation
  • Demonstrated experience designing EOAT, fixtures, or custom automation components for collaborative or industrial robots

Technical Skills
  • Expert proficiency in SolidWorks; familiarity with AutoCAD for 2D layouts and wiring diagrams
  • Strong GD&T; knowledge and experience creating production-ready drawing packages for external fabrication shops• Design experience across common manufacturing processes: sheet metal, welded structural steel, machined parts, and 3D-printed components
  • Familiarity with robotic reach envelopes, collaborative safety zone requirements, and machine guard design standards
  • Experience selecting and specifying off-the-shelf automation components: pneumatic actuators, quick-change tool changers, linear rails, force/torque sensors, and vision system mounts
  • Working knowledge of electrical conduit routing, cable management, and pneumatic line placement within mechanical assemblies

Soft Skills & Mindset
  • Meticulous attention to detail
  • Collaborative, communicative, pragmatic, and fast-moving
  • Self-directed with the ability to manage your own project workload

Nice to have
  • SolidWorks certification
  • Experience with robot simulation or offline programming tools (e.g., RoboDK, DELMIA, or similar) for verifying reach and clearance in 3D environments
  • Background in machine tending, palletizing, welding automation, or assembly applications
  • Familiarity with ANSI and CE machine safety design requirements
  • Experience designing for regulated industries
  • OSHA courses or equivalent manufacturing safety training
  • Associate's or Bachelor's degree in Mechanical Engineering, Mechanical Design Technology, or equivalent practical experience

Compensation and Benefits
The salary range for this role is $80,000 to $130,000. We are open to a variety of seniority levels for this role and will build compensation packages that are commensurate with seniority and skill level. Base salary is just one part of the overall compensation at Standard Bots. All Full-Time Employees are eligible for Employee Stock Options. We also offer a package of benefits including paid time off, medical/dental/vision insurance, life insurance, disability insurance, and 401(k) to regular full-time employees.