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Ltspice Jobs in Wisconsin (NOW HIRING)

Embedded Engineer

Waukesha, WI · On-site

$85 - $110/hr

Use engineering tools such as LTspice, Altium, Git, MATLAB/Simulink, Embedded C, IDEs, debuggers, and software validation and verification processes. * Partner with internal teams and external ...

Schematic capture, simulation, layout (not a huge emphasis) * They're using Orcad, Altium, LTSpice but prior tool experience is flexible. * Simulation, thermal, EMI/EMC understanding - there will be ...

WI · On-site

$115 - $130/hr

Circuit simulation tools (PLECS, LTspice) and MRP/ERP systems (Made2Manage or similar) are a plus How you work * Documentation discipline. Clear, precise, production-ready, every phase. * Able to ...

WI · On-site

$80 - $100/hr

LTspice/PSpice (or equivalent), Cadence OrCAD/Allegro, SolidWorks - advantage* Knowledge of aerospace/defense standards and practices (e.g., AS9100 processes; MIL‐STD‐883/202/750 methods where ...

Ltspice information

What is LTspice?

LTspice is a powerful, free software tool developed by Analog Devices for simulating electronic circuits. It allows engineers and hobbyists to design, test, and analyze analog and digital circuits using SPICE-based simulation. LTspice provides a user-friendly interface for building schematics, running simulations, and visualizing waveforms, making it a popular choice for circuit design and troubleshooting. It is widely used in both educational and professional settings.

What are the key skills and qualifications needed to thrive as an LTspice simulation engineer, and why are they important?

To thrive as an LTspice Simulation Engineer, you need strong knowledge of electrical engineering principles, circuit analysis, and simulation techniques, typically backed by a relevant engineering degree. Proficiency in using LTspice software, alongside familiarity with schematic capture tools and possibly other simulation platforms, is crucial in this role. Attention to detail, problem-solving skills, and effective communication help you interpret simulation results and collaborate with design teams. These skills ensure accurate circuit modeling, efficient problem resolution, and successful integration into the product development process.

What are some common challenges electrical engineers face when using LTspice in collaborative projects?

One common challenge when using LTspice in team environments is ensuring consistency in simulation models and circuit schematics, especially when multiple engineers contribute to a project. Differences in simulation settings or library management can lead to discrepancies in results, making version control and clear documentation essential. Teams often establish standardized file naming conventions and shared repositories to streamline collaboration. Open communication and regular cross-checks help in identifying and resolving simulation conflicts early in the design process.

What is the difference between Ltspice vs PCB Designer?

AspectLtspicePCB Designer
Primary FocusElectrical circuit simulation and analysisPrinted circuit board layout and design
Required SkillsCircuit theory, SPICE simulation, electronicsElectrical engineering, PCB layout, CAD tools
Work EnvironmentEngineering labs, design officesDesign studios, manufacturing facilities
CertificationsNone mandatory, but electronics certifications helpfulECE degree, PCB design certifications

While Ltspice is used for circuit simulation and analysis, PCB Designer focuses on creating physical layouts for printed circuit boards. Both roles require electrical engineering knowledge but serve different stages of product development. Ltspice helps validate circuit functionality, whereas PCB Designer ensures the physical implementation of the circuit is manufacturable and efficient.

What cities in Wisconsin are hiring for Ltspice jobs?

Cities in Wisconsin with the most Ltspice job openings:

$85 - $110/hr

Other

Posted 4 days ago


Key responsibilities

  • Support the design, development, testing, troubleshooting, and launch of embedded hardware and software solutions.

  • Build and troubleshoot wire harnesses, test fixtures, printed circuit board assemblies, and prototype hardware.

  • Create and improve documentation, test methods, troubleshooting processes, and validation activities.


Job description

Snapshot of the Role

As an Embedded Engineer I, you will support the design, development, testing, troubleshooting, and launch of embedded hardware and software solutions for off‑highway market equipment. This is a highly hands‑on role with a strong hardware focus, including circuit debugging, wire harness builds, PCB rework, test fixture development, supplier support, and light coding for test scripts.

What You’ll Be Doing:
  • Support embedded hardware and software development, testing, debugging, deployment, and product launch activities.
  • Build and troubleshoot wire harnesses, test fixtures, printed circuit board assemblies, and prototype hardware using tools such as oscilloscopes, multimeters, test probes, and soldering equipment.
  • Create and improve documentation, standard operating procedures, test methods, troubleshooting processes, DFMEAs, simulations, and validation activities.
  • Use engineering tools such as LTspice, Altium, Git, MATLAB/Simulink, Embedded C, IDEs, debuggers, and software validation and verification processes.
  • Partner with internal teams and external suppliers to support prototype and production run‑offs, supplier development, and project execution.
What You’ll Need:
  • Bachelor’s degree in Computer Engineering, Electrical Engineering, or a related engineering field; hands‑on co‑op, internship, project, or club experience may be especially helpful for recent graduates.
  • Experience or strong interest in embedded hardware and software, including Embedded C, circuit debugging, electrical schematics, and lab tools such as oscilloscopes, multimeters, power supplies, and soldering equipment.
  • Comfort working in a hands‑on, hardware‑focused role with the ability to learn quickly, take direction, troubleshoot independently, and make sound decisions with limited or ambiguous information.
  • Strong communication, teamwork, documentation, and follow‑through skills with the ability to collaborate across engineering, manufacturing, quality, and supplier teams.
  • Preferred experience includes MATLAB/Simulink, Git, Altium, LTspice, PCB rework, soldering, IPC certification, CANbus, RTOS, SPI, I2C, DMA, ARM microprocessors, software requirements, test plans, and FMEA processes.
  • Authorized to work in the United States.
What We Offer:
  • A hands‑on engineering role where you can build, test, troubleshoot, and see your work directly support customer solutions.
  • The opportunity to grow from a hardware‑focused role into broader embedded software, project engineering, senior technical, or leadership paths based on your interests and strengths.
  • A collaborative, fast‑paced environment where you will learn from experienced engineers, contribute to process improvements, and support innovative products with real‑world impact.
Who We Are:

Imagine a place where your career can soar, where innovation meets excellence, and where your contributions truly matter. Welcome to Husco.

Here, you’ll find the freedom to shape your work and leave a lasting impact. We believe in empowering you to grow personally and professionally, continuously enhancing your skills and knowledge.

Your role at Husco goes beyond the ordinary – you’ll be at the forefront of supporting teams that develop innovative hydraulic and electro‑mechanical systems that enhance efficiency and performance. These products make a real difference globally, building the communities we live in, growing the food that feeds us, and enhancing transportation around the world.

Join our vibrant, industry‑leading team and experience a culture that values your creativity, dedication, and drive. Together, we’re not just achieving goals; we’re resetting new standards and making a positive impact every day.

(HUSCO IS PROUD TO BE AN EQUAL OPPORTUNITY EMPLOYER.)

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