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Plastic Cnc Jobs in Racine, WI (NOW HIRING)

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Plastic Cnc information

See Racine, WI salary details

$13

$22

$31

How much do plastic cnc jobs pay per hour?

As of Aug 7, 2026, the average hourly pay for plastic cnc in Racine, WI is $22.17, according to ZipRecruiter salary data. Most workers in this role earn between $18.46 and $25.24 per hour, depending on experience, location, and employer.

What is the difference between Plastic Cnc vs Plastic Machinist?

AspectPlastic CncPlastic Machinist
CredentialsTypically requires CNC operator certifications or technical trainingRequires machining experience, often with certifications in machining or manufacturing
Work EnvironmentManufacturing facilities with CNC machines, focused on programming and operationWorkshop or factory setting, performing manual or semi-automated machining tasks
Industry UsageUsed in industries producing plastic components via CNC machiningEmployed in various manufacturing sectors for plastic part fabrication

Plastic Cnc operators focus on programming and operating CNC machines to produce plastic parts, while Plastic Machinists perform manual or semi-automated machining tasks. Both roles require technical skills and are integral to plastic manufacturing, but Plastic Cnc roles are more automated and computer-driven, whereas Plastic Machinists often handle setup and manual adjustments.

What cities near Racine, WI are hiring for Plastic Cnc jobs? Cities near Racine, WI with the most Plastic Cnc job openings:
Infographic showing various Plastic Cnc job openings in Racine, WI as of August 2026, with employment types broken down into 87% Full Time, 4% Part Time, 3% Contract, and 6% Nights. Highlights an 97% Physical, and 3% Remote job distribution, with an average salary of $46,117 per year, or $22.2 per hour.

Mechanical Product Designer

TiltEdge Solutions LLC

Milwaukee, WI • On-site

Full-time

Re-posted 26 days ago


Job description

Position: Mechanical Product Designer – Automotive Key Fob (10–13 Yrs Experience)
Work Location: Milwaukee, WI 53209
Duration: Fulltime/Direct Hire 

Job Description
 
Important Must‑Have Technical Skills
  • Advanced Creo CAD for A‑Class surface & compact housing design – Accurately translates OEM styling data into production‑ready geometry.
  • PCB Keep‑In/Keep‑Out packaging & antenna clearance definition – Maintains RF integrity and component fit within tight envelopes.
  • Snap‑fit, multi‑shot & insert‑molded plastic part design – Delivers robust, sealed enclosures without secondary fasteners.
  • Silicone rubber domes & tactile switch integration – Ensures consistent actuation force and IP67 sealing.
  • Light pipe/guide and LED back‑lighting design – Provides uniform graphic illumination and brand signature.
  • Decorative finish planning (paint + laser etch, IML/IMD, metalizing) – Meets OEM Color‑Material‑Finish targets and wear durability.
  • Tolerance stack‑up & GD&T analysis at assembly level – Guarantees fit, feel, and manufacturability across volume production.
  • Metal die‑cast component integration (key blade, bezel) – Adds structural strength and premium tactile/aesthetic appeal.
  • Mold‑flow & lighting simulation interpretation – Enables early gating, rib, and wall adjustments to prevent defects.
  • Materials knowledge: Plastics (PC/ABS, PBT), rubber, metals
  • Ingress Protection (IP65/IP67) design principles
  • PCBA packaging and component layout understanding
  • Antenna placement – Wireless & Electronics Integration for RF performance optimization (UWB, BLE, LF, RKE, RFID, NFC)
  • Battery integration (e.g., CR2032, Li-ion)
  • 2D detailed drawings with full GD&T annotations and BOM.
 Desirable Technical Skills
  • Experience with Keyless Entry / Passive Entry & Go systems
  • Mechanism/kinematic simulation (Creo Mechanism, View Reps) – Accelerates evaluation of button travel and latch forces.
  • Drop/shock & environmental robustness design – Improves reliability under real‑world automotive abuse.
  • Fixture & gauge design for prototype validation – Shortens testing cycles and ensures dimensional control.
  • DFMEA & DFM collaboration with tooling suppliers – Mitigates manufacturing risk before hard‑tool kick‑off.
  • Material stack‑up for capacitive/touch‑sensor readiness – Future‑proofs platform for digital key and HMI evolution.
  • PLM (Windchill) data management proficiency – Secures revision control and traceability across global teams.
  • EMI/EMC shielding techniques
  • Connector design knowledge
  • Hands-on electromechanical bench testing
  • Rapid prototyping using 3D printing/CNC
  • Understanding of validation tests: thermal, vibration, drop, chemical, salt spray
  • Coordination with Electrical teams
 OK‑to‑Have Technical Skills
  • Basic EMC/EMI mechanical shielding familiarity – Supports efficient hand‑offs with RF/Electrical teams.
  • Surface quality assessment & neutral model delivery – Streamlines OEM studio and supplier approvals.
  • Cosmetic durability test knowledge (Taber, chemical, UV) – Informs finish selection during early design stages.
  • Soft tooling & rapid prototyping experience – Enables agile iterations prior to production tooling.
  • Cost reduction & continuous improvement mindset – Contributes to competitive BOM without sacrificing quality.
  • Supplier and manufacturing liaison capabilities
  • Flex PCB knowledge