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Telecommute Asic Rtl Design Engineer Jobs in Michigan

Software Engineer III

Novi, MI ยท On-site

$90 - $120/hr

Position may telecommute / work remotely 20% of the time. Job Duties: Responsible for embedded ... Design and develop software algorithms to meet software requirements. Work on software integration ...

Lead Firmware Engineer

Grand Rapids, MI ยท On-site

$130 - $170/hr

Design and implement RTL using VHDL and/or Verilog * Apply DO-254 airborne electronic hardware ... Mentor junior engineers and promote engineering best practices * Perform other duties as assigned

C# .NET Developer

West Olive, MI ยท On-site

$55K/yr

  • Medical

  • PTO

Solid Design Simple Solution (SDSS) SDSS is an "At-will" employer. JOB SUMMARY: Solid Design Simple ... Group Healthcare 10 days accrued vacation 6 paid holidays Telecommuting and flexible working hours ...

Customer interface for all software related activities including customer design reviews, clarify ... Embedded software development for various bit micro-controllers and ASIC's. * Knowledge of ...

Customer interface for all software related activities including customer design reviews, clarify ... Embedded software development for various bit micro-controllers and ASIC's. * Knowledge of ...

Facilities Engineer

Dearborn, MI ยท On-site

$128K - $166K/yr

  • Medical

  • Dental

  • Life

  • PTO

... D Autodesk. 2. Performing 3D spatial modeling. 4 years of experience with each of the following ... Note, this is a purely telecommuting/work-from-home position whereby the employee may reside ...

Showing results 21-40

Telecommute Asic Rtl Design Engineer information

What is a telecommute ASIC RTL design engineer?

A Telecommute ASIC RTL Design Engineer is a professional who specializes in designing digital circuits at the Register Transfer Level (RTL) for Application-Specific Integrated Circuits (ASICs), while working remotely. They use hardware description languages like Verilog or VHDL to create and verify circuit designs tailored to specific applications. Their responsibilities often include developing, simulating, and optimizing digital logic, collaborating with cross-functional teams, and ensuring that the final silicon meets design specifications. Since the role is telecommute, all work is performed from a remote location using digital communication and collaboration tools.

What are the key skills and qualifications needed to thrive as a telecommute ASIC RTL design engineer?

To thrive as a Telecommute ASIC RTL Design Engineer, you need a strong background in digital logic design, proficiency in hardware description languages like Verilog or VHDL, and typically a degree in electrical or computer engineering. Familiarity with EDA tools such as Synopsys or Cadence, as well as experience with simulation, synthesis, and debugging environments, is essential. Strong problem-solving abilities, attention to detail, and effective communication skills are crucial for collaborating remotely and ensuring design accuracy. These skills are vital to deliver complex, high-performance ASICs on schedule while working efficiently in a remote setting.

What are some common challenges faced by telecommute ASIC RTL design engineers, and how can they be addressed?

Telecommute ASIC RTL Design Engineers often face challenges like coordinating effectively with remote teams, ensuring version control integrity, and maintaining clear communication on project specifications. These challenges can be mitigated by utilizing robust collaboration tools, adhering to standardized documentation practices, and scheduling regular virtual meetings for design reviews. Additionally, staying proactive in seeking feedback and clarifying requirements helps ensure alignment and prevents costly design iterations.

What is the difference between Telecommute Asic Rtl Design Engineer vs Telecommute Digital IC Design Engineer?

AspectTelecommute Asic Rtl Design EngineerTelecommute Digital IC Design Engineer
CredentialsBachelor's or Master's in Electrical Engineering or Computer Engineering; experience with RTL codingBachelor's or Master's in Electrical Engineering or Computer Engineering; experience with digital circuit design
Work EnvironmentRemote, primarily designing RTL code for ASICsRemote, focusing on digital IC architecture and design
Industry UsageCommon in semiconductor and electronics companies

Both roles often require similar educational backgrounds and work remotely in the semiconductor industry. The main difference lies in their focus: RTL Design Engineers concentrate on writing RTL code for ASICs, while Digital IC Design Engineers work on broader digital circuit architecture. Candidates should choose based on their specific skills and career interests in digital design or RTL coding.

What are the most commonly searched types of Asic Rtl Design Engineer jobs in Michigan?

The most popular types of Asic Rtl Design Engineer jobs in Michigan are:

What cities in Michigan are hiring for Telecommute Asic Rtl Design Engineer jobs?

Cities in Michigan with the most Telecommute Asic Rtl Design Engineer job openings:

Senior Model Based Controls Engineer

LHP Engineering Solutions

Pontiac, MI โ€ข On-site

$96K - $127K/yr

Full-time

This job post hasย expired today.ย Applications are no longer accepted.


Job description

Job Location: 2800 Centerpoint Parkway, Pontiac, Michigan 48341
Duties
LHP Engineering Solutions LLC seeks a Senior Model Based Controls Engineer in Pontiac MI. Telecommuting permitted 100% of time. Duties: apply quality assurance techniques; compile data and define changes required in software and features; conduct software vulnerability assessments of systems; contribute to the delivery of innovative, flexible, and integrated solutions to meet customer's changing business needs; coordinate input from internal and external customers to understand needs and perceptions; perform root cause analysis, error correction, and functional and risk analysis of system level problems (5 Whys, Fishbone); represent the development team in multi-focused team meetings; work with cross-functional teams to architect and implement complex solutions; confirm that new software features integrate with control systems (sensors, electronic control units and actuators that manage vehicle motion, stability, and safety, including propulsion, braking and steering) to meet functionality requirements; controls (steering, braking, acceleration, gear shifting, lighting, climate control, transmission) and model requirements definition, controls architecting (shifting from distributed electronic control units to centralized and zonal architecture to reduce wiring complexity while enhancing computing power for software-defined vehicles), design, analysis, implementation and verification using Model-in-the-Loop (MIL), Software-in-the-Loop (SIL) and Hardware-in-the-Loop (HIL) techniques consistent with design requirements; design and provide technical documents for developed controls; design, model and integrate software functionalities in a real-time embedded environment; develop and analyze requirements; develop controls solutions (electronic systems and software๏ฟฝsuch as powertrain control units, anti-lock brake systems and Advanced Driver-Assistance Systems) using model-based definition techniques; ensure process compliance and configuration management; participate in software reviews and provide technical support, guidance and collaboration for software and hardware implementation activities; work with product development teams to design and develop control algorithms.
Requirements
Bachelor's degree (or foreign equivalent degree) in mechanical engineering, electrical engineering, computer engineering, aerospace engineering, or related field, plus 3 years of experience in any role in which one or more of skills listed below were used or developed. Included within the 3 years of experience, must have experience in all of the following: autocode generation (RTW, Target Link, Embedded Coder, or ADI Beacon); configuration management tools (IBM Rational ClearQuest, IBM Team Concert, IBM Jazz Team Server, or GitLab); Eclipse, C, or C++ programming languages; modelling and simulation using MATLAB, Simulink, Stateflow, LabView or Modelica; version control and requirements management software tools (RTC, DNG, DOORS, Jira, PTC Integrity, or GIT); scripting language (Python or Mscript); verification and validation tools (ETAS INCA, CANalyzer, or CANape); fixed point and double precision data type usage and autocode generation impact; MAAB, MISRA and ISO26262 standards; MBD design guidelines.