Home › Companies › B03CC71D1A106205AED7D89F9185F960 › Automation Engineer
Automation Engineer
B03CC71D1A106205AED7D89F9185F960 · Nashotah, WI 53058; N44 W33341 Watertown Plank Rd, Nashotah, WI, 53058, USA · Active · Paycom ATS
Job facts
| Field | Value |
|---|---|
| Company | B03CC71D1A106205AED7D89F9185F960 |
| Title | Automation Engineer |
| Normalized title | - |
| Department / team | - |
| Location | Nashotah, WI, United States |
| Work model | - |
| Employment type | Full Time |
| Salary | - |
| Status | active |
| ATS provider | Paycom ATS |
| Posted / first seen | 2026-02-27 / 2026-05-31 |
| Changed / last seen | 2026-05-31 / 2026-06-06 |
Related slices
| Page | What it contains | Open |
|---|---|---|
| Company jobs | Active postings from B03CC71D1A106205AED7D89F9185F960. | Open |
| Company breakdowns | Role, location, ATS, and work model facets for this company. | Open |
| ATS provider jobs | Active postings observed through Paycom ATS. | Open |
| Provider filtered search | The same provider as a filtered job collection. | Open |
| City jobs | Active postings in Nashotah. | Open |
| Lifecycle events | Open, update, close, and reopen events for this posting. | Open |
| Original posting | Canonical source or apply URL captured from the ATS. | Open |
Linked records
| Company | B03CC71D1A106205AED7D89F9185F960 |
| Source | c50550b5-9db4-4b87-b903-baf4f967e82d |
| ATS provider | Paycom ATS |
Description
Automation Engineer
NEXXTA is a U.S.-based manufacturing partner with four Great Lakes facilities delivering precision, speed, and scale. We serve industry leaders across transportation, energy, medical, and defense, offering tariff-free production, open capacity, and rapid ramp-up. With in-house R&D and engineering, we help customers strengthen supply chains and build confidently in America.
SUMMARY OF POSITION:
This Automation Engineer will focus on automation implementation for injection molding, owning the troubleshooting of secondary ops and establishing/executing assembly processes and equipment.
JOB DUTIES & ESSENTIAL FUNCTIONS:
Implement automation objectives on the molding floor (cobots, pickers, conveyance, etc.) to reduce costs and increase operational efficiencies.
Provide a lead role in the development, installation, and programming of robotic work cells from concept to postproduction turn-over.
Own troubleshooting of secondary ops (pad printing, laser engraving, sonic welding, etc.).
Consult at the estimating phase for assembly opportunities & automation opportunities as directed and then implement the quoted process in manufacturing upon release.
Effectively communicate solutions to end-users as appropriate. Provide a highly visible customer focus.
Lead development of in-house robotic integration projects for new or continuous improvement projects.
Present and modify concepts for team understanding and approval.
Work with outside vendors to determine necessary parts and estimated budgets for projects.
Maintain and provide appropriate documentation regarding drawings, bills of material, budget tracking, safety, and program changes.
Understand and implement the integration of safety circuits, machine interfaces (SPI Interface, etc.), and peripheral controls and devices.
Work as a liaison with outside integrators and vendors as needed for special projects or programs.
Train and mentor production technicians and maintenance personnel regarding troubleshooting issues and documentation.
Assist with inspections, projects, or modifications at other facilities as needed.
This list of duties and responsibilities is not all inclusive and may be expanded to include other duties and responsibilities, as management may deem necessary from time to time.
Qualifications
QUALIFICATIONS (KNOWLEDGE, SKILLS & ABILITIES):
BS/BA degree in a related Engineering or technical field, or equivalent experience.
Proficient knowledge in the following key areas: Hardware Architecture (performance testing, monitoring, operations), Hardware Benchmarking (program management, network management), Design (compliance, security), Network Engineering (planning, provision).
Knowledge of infrastructure technology and basic programming languages or database management systems (e.g., Java, PERL, Python).
Self-starter who can work with minimum or little supervision.
Proficient in Microsoft Office software (Word, Excel, PowerPoint, Project, etc.).
Requires strong electrical and mechanical skills with the ability to think logically and analytically.
Ability to think creatively to deliver solutions through continuous improvement.
Above-average communication and listening skills required.
Exceptional written and oral communication skills.
Strong organizational skills.
Highly self-motivated and directed.
Exceptional customer service orientation.
Demonstrated commitment to continuous learning and self-development.
Programming of Robots – Capable of high-level robotic programming for Motoman robots. Models being used are the Motoman XRC, NX100, and DX100 controllers.
Programmable Logic Controllers (PLC) – Understand and perform ladder logic programming for Allen-Bradley PLCs.
Human Machine Interfaces (HMI) – Understand operation and basic programming of HMI terminals.
Vision Systems – Understand and program various vision systems for part inspection and verification. Systems presently being used are Keyence, Cognex, and Dalsa.
Safety Controller / PLC – Have a strong understanding of robotic cell safety controllers, safety PLCs, or safety interlocks.
Ability to use AutoCAD / AutoCAD LT for development of electrical prints, end-of-arm tool designs, and cell layouts.
Ability to use 3D CAD (Solid Edge) to develop end-of-arm tools, fixtures, and tooling.
Understand, follow, and implement current robotic industry safety standards and guidelines in the development of robotic work cells.
The ability to identify and correct safety issues with current or future robotic work cells.
Full job record
| Job ID | 5a05cba7ec03c5a6dbbd81f80205aabc9711e4c9 |
| Org ID | ca3b6821-b7fc-46bc-90e8-caf2970f896f |
| Source ID | c50550b5-9db4-4b87-b903-baf4f967e82d |
| Board ID | c50550b5-9db4-4b87-b903-baf4f967e82d |
| Provider | paycom |
| Provider Job Key | 408170 |
| Title | Automation Engineer |
| Normalized Title | — |
| Status | active |
| Active | yes |
| Location Text | Nashotah, WI 53058; N44 W33341 Watertown Plank Rd, Nashotah, WI, 53058, USA |
| Department | — |
| Team | — |
| Employment Type | full_time |
| Workplace Type | — |
| Remote Policy | — |
| Country | United States |
| Region | WI |
| City | Nashotah |
| Salary Raw | Automation Engineer NEXXTA is a U.S.-based manufacturing partner with four Great Lakes facilities delivering precision, speed, and scale. We serve industry leaders across transportation, energy, medical, and defense, offering tariff-free production, open capacity, and rapid ramp-up. With in-house R&D and engineering, we help customers strengthen supply chains and build confidently in America. SUMMARY OF POSITION: This Automation Engineer will focus on automation implementation for injection molding, owning the troubleshooting of secondary ops and establishing/executing assembly processes and equipment. JOB DUTIES & ESSENTIAL FUNCTIONS: Implement automation objectives on the molding floor (cobots, pickers, conveyance, etc.) to reduce costs and increase operational efficiencies. Provide a lead role in the development, installation, and programming of robotic work cells from concept to postproduction turn-over. Own troubleshooting of secondary ops (pad printing, laser engraving, sonic welding, etc.). Consult at the estimating phase for assembly opportunities & automation opportunities as directed and then implement the quoted process in manufacturing upon release. Effectively communicate solutions to end-users as appropriate. Provide a highly visible customer focus. Lead development of in-house robotic integration projects for new or continuous improvement projects. Present and modify concepts for team understanding and approval. Work with outside vendors to determine necessary parts and estimated budgets for projects. Maintain and provide appropriate documentation regarding drawings, bills of material, budget tracking, safety, and program changes. Understand and implement the integration of safety circuits, machine interfaces (SPI Interface, etc.), and peripheral controls and devices. Work as a liaison with outside integrators and vendors as needed for special projects or programs. Train and mentor production technicians and maintenance personnel regarding troubleshooting issues and documentation. Assist with inspections, projects, or modifications at other facilities as needed. This list of duties and responsibilities is not all inclusive and may be expanded to include other duties and responsibilities, as management may deem necessary from time to time. Qualifications QUALIFICATIONS (KNOWLEDGE, SKILLS & ABILITIES): BS/BA degree in a related Engineering or technical field, or equivalent experience. Proficient knowledge in the following key areas: Hardware Architecture (performance testing, monitoring, operations), Hardware Benchmarking (program management, network management), Design (compliance, security), Network Engineering (planning, provision). Knowledge of infrastructure technology and basic programming languages or database management systems (e.g., Java, PERL, Python). Self-starter who can work with minimum or little supervision. Proficient in Microsoft Office software (Word, Excel, PowerPoint, Project, etc.). Requires strong electrical and mechanical skills with the ability to think logically and analytically. Ability to think creatively to deliver solutions through continuous improvement. Above-average communication and listening skills required. Exceptional written and oral communication skills. Strong organizational skills. Highly self-motivated and directed. Exceptional customer service orientation. Demonstrated commitment to continuous learning and self-development. Programming of Robots – Capable of high-level robotic programming for Motoman robots. Models being used are the Motoman XRC, NX100, and DX100 controllers. Programmable Logic Controllers (PLC) – Understand and perform ladder logic programming for Allen-Bradley PLCs. Human Machine Interfaces (HMI) – Understand operation and basic programming of HMI terminals. Vision Systems – Understand and program various vision systems for part inspection and verification. Systems presently being used are Keyence, Cognex, and Dalsa. Safety Controller / PLC – Have a strong understanding of robotic cell safety controllers, safety PLCs, or safety interlocks. Ability to use AutoCAD / AutoCAD LT for development of electrical prints, end-of-arm tool designs, and cell layouts. Ability to use 3D CAD (Solid Edge) to develop end-of-arm tools, fixtures, and tooling. Understand, follow, and implement current robotic industry safety standards and guidelines in the development of robotic work cells. The ability to identify and correct safety issues with current or future robotic work cells. |
| Salary Min | — |
| Salary Max | — |
| Salary Currency | — |
| Salary Period | — |
| Source URL | https://www.paycomonline.net/v4/ats/web.php/jobs/ViewJobDetails?job=408170&clientkey=B03CC71D1A106205AED7D89F9185F960 |
| Apply URL | https://www.paycomonline.net/v4/ats/web.php/jobs/ViewJobDetails?job=408170&clientkey=B03CC71D1A106205AED7D89F9185F960 |
| First Seen At | 2026-05-31 19:07:07Z |
| Last Seen At | 2026-06-06 09:56:58Z |
| Last Checked At | 2026-06-06 09:56:58Z |
| Last Changed At | 2026-05-31 19:07:07Z |
| Inactive At | — |
| Source Posted At | 2026-02-27 00:00:00Z |
| Source Updated At | — |
| Raw Payload Uri | s3://job-postings-prod-raw-590183727216/raw/provider=paycom/board=B03CC71D1A106205AED7D89F9185F960/date=2026-06-06/2026-06-06T09-56-56-958Z-b7227e2a67b08a0c504cfcbd85cc48ff063da2c64d1f1c5b0500978f8594049e.json |
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Systems presently being used are Keyence, Cognex, and Dalsa.\\r\\n\\tSafety Controller / PLC – Have a strong understanding of robotic cell safety controllers, safety PLCs, or safety interlocks.\\r\\n\\tAbility to use AutoCAD / AutoCAD LT for development of electrical prints, end-of-arm tool designs, and cell layouts.\\r\\n\\tAbility to use 3D CAD (Solid Edge) to develop end-of-arm tools, fixtures, and tooling.\\r\\n\\tUnderstand, follow, and implement current robotic industry safety standards and guidelines in the development of robotic work cells.\\r\\n\\tThe ability to identify and correct safety issues with current or future robotic work cells.\\r\\n\\r\\n\",\"responsibilities\":\"\\r\\nNEXXTA is a U.S.-based manufacturing partner with four Great Lakes facilities delivering precision, speed, and scale. We serve industry leaders across transportation, energy, medical, and defense, offering tariff-free production, open capacity, and rapid ramp-up. With in-house R&D and engineering, we help customers strengthen supply chains and build confidently in America.\\r\\n\\r\\n \\r\\n\\r\\n\\r\\nSUMMARY OF POSITION:\\r\\n\\r\\n\\r\\n \\r\\n\\r\\nThis Automation Engineer will focus on automation implementation for injection molding, owning the troubleshooting of secondary ops and establishing/executing assembly processes and equipment.\\r\\n\\r\\nJOB DUTIES & ESSENTIAL FUNCTIONS:\\r\\n\\r\\n\\r\\n\\tImplement automation objectives on the molding floor (cobots, pickers, conveyance, etc.) to reduce costs and increase operational efficiencies.\\r\\n\\tProvide a lead role in the development, installation, and programming of robotic work cells from concept to postproduction turn-over.\\r\\n\\tOwn troubleshooting of secondary ops (pad printing, laser engraving, sonic welding, etc.).\\r\\n\\tConsult at the estimating phase for assembly opportunities & automation opportunities as directed and then implement the quoted process in manufacturing upon release.\\r\\n\\tEffectively communicate solutions to end-users as appropriate. Provide a highly visible customer focus. \\r\\n\\tLead development of in-house robotic integration projects for new or continuous improvement projects.\\r\\n\\tPresent and modify concepts for team understanding and approval.\\r\\n\\tWork with outside vendors to determine necessary parts and estimated budgets for projects.\\r\\n\\tMaintain and provide appropriate documentation regarding drawings, bills of material, budget tracking, safety, and program changes.\\r\\n\\tUnderstand and implement the integration of safety circuits, machine interfaces (SPI Interface, etc.), and peripheral controls and devices.\\r\\n\\tWork as a liaison with outside integrators and vendors as needed for special projects or programs.\\r\\n\\tTrain and mentor production technicians and maintenance personnel regarding troubleshooting issues and documentation.\\r\\n\\tAssist with inspections, projects, or modifications at other facilities as needed.\\r\\n\\tThis list of duties and responsibilities is not all inclusive and may be expanded to include other duties and responsibilities, as management may deem necessary from time to time.\\r\\n\\r\\n\\r\\n\",\"employmentType\":\"FULL_TIME\",\"hiringOrganization\":{\"@type\":\"Organization\",\"name\":\"Techniplas US LLC dba Nexxta\",\"logo\":\"https://www.paycomonline.net/v4/ats/web.php/application/style/logo?clientkey=B03CC71D1A106205AED7D89F9185F960\"},\"jobLocation\":{\"@type\":\"Place\",\"address\":{\"streetAddress\":\"N44 W33341 Watertown Plank Rd\",\"addressLocality\":\"Nashotah\",\"addressRegion\":\"WI\",\"postalCode\":53058,\"addressCountry\":\"USA\"}},\"qualifications\":\"QUALIFICATIONS (KNOWLEDGE, SKILLS & ABILITIES):\\r\\n\\r\\n\\r\\n\\tBS/BA degree in a related Engineering or technical field, or equivalent experience.\\r\\n\\tProficient knowledge in the following key areas: Hardware Architecture (performance testing, monitoring, operations), Hardware Benchmarking (program management, network management), Design (compliance, security), Network Engineering (planning, provision).\\r\\n\\tKnowledge of infrastructure technology and basic programming languages or database management systems (e.g., Java, PERL, Python).\\r\\n\\tSelf-starter who can work with minimum or little supervision.\\r\\n\\tProficient in Microsoft Office software (Word, Excel, PowerPoint, Project, etc.).\\r\\n\\tRequires strong electrical and mechanical skills with the ability to think logically and analytically.\\r\\n\\tAbility to think creatively to deliver solutions through continuous improvement.\\r\\n\\tAbove-average communication and listening skills required.\\r\\n\\tExceptional written and oral communication skills.\\r\\n\\tStrong organizational skills.\\r\\n\\tHighly self-motivated and directed.\\r\\n\\tExceptional customer service orientation.\\r\\n\\tDemonstrated commitment to continuous learning and self-development.\\r\\n\\tProgramming of Robots – Capable of high-level robotic programming for Motoman robots. Models being used are the Motoman XRC, NX100, and DX100 controllers.\\r\\n\\tProgrammable Logic Controllers (PLC) – Understand and perform ladder logic programming for Allen-Bradley PLCs.\\r\\n\\tHuman Machine Interfaces (HMI) – Understand operation and basic programming of HMI terminals.\\r\\n\\tVision Systems – Understand and program various vision systems for part inspection and verification. Systems presently being used are Keyence, Cognex, and Dalsa.\\r\\n\\tSafety Controller / PLC – Have a strong understanding of robotic cell safety controllers, safety PLCs, or safety interlocks.\\r\\n\\tAbility to use AutoCAD / AutoCAD LT for development of electrical prints, end-of-arm tool designs, and cell layouts.\\r\\n\\tAbility to use 3D CAD (Solid Edge) to develop end-of-arm tools, fixtures, and tooling.\\r\\n\\tUnderstand, follow, and implement current robotic industry safety standards and guidelines in the development of robotic work cells.\\r\\n\\tThe ability to identify and correct safety issues with current or future robotic work cells.\\r\\n\\r\\n\",\"experienceRequirements\":\"QUALIFICATIONS (KNOWLEDGE, SKILLS & ABILITIES):\\r\\n\\r\\n\\r\\n\\tBS/BA degree in a related Engineering or technical field, or equivalent experience.\\r\\n\\tProficient knowledge in the following key areas: Hardware Architecture (performance testing, monitoring, operations), Hardware Benchmarking (program management, network management), Design (compliance, security), Network Engineering (planning, provision).\\r\\n\\tKnowledge of infrastructure technology and basic programming languages or database management systems (e.g., Java, PERL, Python).\\r\\n\\tSelf-starter who can work with minimum or little supervision.\\r\\n\\tProficient in Microsoft Office software (Word, Excel, PowerPoint, Project, etc.).\\r\\n\\tRequires strong electrical and mechanical skills with the ability to think logically and analytically.\\r\\n\\tAbility to think creatively to deliver solutions through continuous improvement.\\r\\n\\tAbove-average communication and listening skills required.\\r\\n\\tExceptional written and oral communication skills.\\r\\n\\tStrong organizational skills.\\r\\n\\tHighly self-motivated and directed.\\r\\n\\tExceptional customer service orientation.\\r\\n\\tDemonstrated commitment to continuous learning and self-development.\\r\\n\\tProgramming of Robots – Capable of high-level robotic programming for Motoman robots. Models being used are the Motoman XRC, NX100, and DX100 controllers.\\r\\n\\tProgrammable Logic Controllers (PLC) – Understand and perform ladder logic programming for Allen-Bradley PLCs.\\r\\n\\tHuman Machine Interfaces (HMI) – Understand operation and basic programming of HMI terminals.\\r\\n\\tVision Systems – Understand and program various vision systems for part inspection and verification. Systems presently being used are Keyence, Cognex, and Dalsa.\\r\\n\\tSafety Controller / PLC – Have a strong understanding of robotic cell safety controllers, safety PLCs, or safety interlocks.\\r\\n\\tAbility to use AutoCAD / AutoCAD LT for development of electrical prints, end-of-arm tool designs, and cell layouts.\\r\\n\\tAbility to use 3D CAD (Solid Edge) to develop end-of-arm tools, fixtures, and tooling.\\r\\n\\tUnderstand, follow, and implement current robotic industry safety standards and guidelines in the development of robotic work cells.\\r\\n\\tThe ability to identify and correct safety issues with current or future robotic work cells.\\r\\n\\r\\n\",\"validThrough\":\"-0001-11-30\",\"workHours\":\"1st Shift\",\"educationRequirements\":\"2 Year Degree\"}",
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"qualifications": "<p><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\"><strong>QUALIFICATIONS (KNOWLEDGE, SKILLS & ABILITIES):</strong></span></span></p>\r\n\r\n<ul>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">BS/BA degree in a related Engineering or technical field, or equivalent experience.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Proficient knowledge in the following key areas: Hardware Architecture (performance testing, monitoring, operations), Hardware Benchmarking (program management, network management), Design (compliance, security), Network Engineering (planning, provision).</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Knowledge of infrastructure technology and basic programming languages or database management systems (e.g., Java, PERL, Python).</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Self-starter who can work with minimum or little supervision.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Proficient in Microsoft Office software (Word, Excel, PowerPoint, Project, etc.).</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Requires strong electrical and mechanical skills with the ability to think logically and analytically.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Ability to think creatively to deliver solutions through continuous improvement.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Above-average communication and listening skills required.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Exceptional written and oral communication skills.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Strong organizational skills.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Highly self-motivated and directed.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Exceptional customer service orientation.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Demonstrated commitment to continuous learning and self-development.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Programming of Robots – Capable of high-level robotic programming for Motoman robots. Models being used are the Motoman XRC, NX100, and DX100 controllers.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Programmable Logic Controllers (PLC) – Understand and perform ladder logic programming for Allen-Bradley PLCs.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Human Machine Interfaces (HMI) – Understand operation and basic programming of HMI terminals.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Vision Systems – Understand and program various vision systems for part inspection and verification. Systems presently being used are Keyence, Cognex, and Dalsa.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Safety Controller / PLC – Have a strong understanding of robotic cell safety controllers, safety PLCs, or safety interlocks.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Ability to use AutoCAD / AutoCAD LT for development of electrical prints, end-of-arm tool designs, and cell layouts.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Ability to use 3D CAD (Solid Edge) to develop end-of-arm tools, fixtures, and tooling.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">Understand, follow, and implement current robotic industry safety standards and guidelines in the development of robotic work cells.</span></span></li>\r\n\t<li><span style=\"color:#000000\"><span style=\"font-family:Verdana,Geneva,sans-serif\">The ability to identify and correct safety issues with current or future robotic work cells.</span></span></li>\r\n</ul>\r\n",
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