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Remote Design Verification Engineer Jobs in Iowa

The Design Engineer is responsible for creating optimal solutions for Level 2 and 3 projects and ... Verification of the on-site conditions to ensure the correct layout design * You will present and ...

Senior Structural Engineer

Dubuque, IA · On-site +1

$94.80K - $128.70K/yr

Remote working opportunities may also be available. Origin Design emphasizes training and ... Serve as Engineer of Record for structural projects. * Serve as project manager for multiple ...

Project Civil Engineer - Site Design

Des Moines, IA · On-site +1

$83K - $110.80K/yr

Prepares planning and design documents in appropriate engineering discipline. * Performs process ... This role offers flexible work options, including remote and hybrid opportunities, to accommodate ...

Project Civil Engineer - Site Design

Des Moines, IA · On-site +1

$83K - $110.80K/yr

We engineer and design solutions that improve the world around us. As a company, we promise to ... This role offers flexible work options, including remote and hybrid opportunities, to accommodate ...

We engineer and design solutions that improve the world around us. As a company, we promise to ... As a Remote Geotechnical Engineer, you will perform geotechnical engineering design, project ...

Perform common design tasks and calculations for several projects at a time * Receive and ... Dollar for dollar 401K match of 6%. * Flexible work hours, hybrid schedules with remote work ...

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Remote Design Verification Engineer information

What are the key skills and qualifications needed to thrive as a Remote Design Verification Engineer, and why are they important?

To thrive as a Remote Design Verification Engineer, you need a solid background in digital design, verification methodologies (such as UVM or SystemVerilog), and a relevant engineering degree. Proficiency in simulation tools (like VCS or ModelSim), scripting languages (Python or Perl), and version control systems is typically required. Exceptional problem-solving abilities, attention to detail, and strong communication skills are crucial for effective collaboration in a remote environment. These competencies ensure accurate verification, efficient workflow, and high-quality deliverables in complex hardware development projects.

What are some common challenges faced by Remote Design Verification Engineers, and how can they be addressed?

Remote Design Verification Engineers often encounter challenges related to communication and collaboration, especially when working with global teams across different time zones. Maintaining clear and frequent communication through project management tools and regular video meetings is essential. Additionally, ensuring access to secure and reliable simulation environments can be a hurdle, so familiarity with remote access protocols and cloud-based verification tools is beneficial. Proactively documenting verification processes and results also helps keep everyone aligned and facilitates smoother project progress.

What are Remote Design Verification Engineers?

Remote Design Verification Engineers are professionals who work from a remote location to ensure that hardware designs, such as integrated circuits or systems on a chip (SoC), function correctly according to their specifications. They use simulation and verification tools to test digital designs, identify bugs, and work closely with design teams to resolve issues. Their responsibilities often include writing test benches, developing verification plans, and automating tests to improve efficiency. This role requires a strong background in hardware description languages like Verilog or VHDL, as well as experience with verification methodologies such as UVM or SystemVerilog.

What is the difference between Remote Design Verification Engineer vs Remote Test Engineer?

AspectRemote Design Verification EngineerRemote Test Engineer
CredentialsBachelor's in Electrical Engineering, Computer Engineering, or related field; knowledge of verification toolsBachelor's in Electrical Engineering, Computer Engineering, or related field; testing certifications beneficial
Work EnvironmentDesign labs, simulation environments, collaboration with design teamsTesting labs, field testing, collaboration with verification teams
Industry UsageSemiconductors, integrated circuits, hardware design companiesElectronics, hardware manufacturing, embedded systems companies

The Remote Design Verification Engineer focuses on verifying hardware designs through simulation and analysis before manufacturing, ensuring design correctness. In contrast, the Remote Test Engineer primarily tests finished products or prototypes to validate functionality and performance. Both roles require technical expertise and collaboration but differ in their project stages and focus areas.

What are the most commonly searched types of Design Verification Engineer jobs in Iowa? The most popular types of Design Verification Engineer jobs in Iowa are:
What are popular job titles related to Remote Design Verification Engineer jobs in Iowa? For Remote Design Verification Engineer jobs in Iowa, the most frequently searched job titles are:
What job categories do people searching Remote Design Verification Engineer jobs in Iowa look for? The top searched job categories for Remote Design Verification Engineer jobs in Iowa are:
What cities in Iowa are hiring for Remote Design Verification Engineer jobs? Cities in Iowa with the most Remote Design Verification Engineer job openings:

Sr. FPGA Engineer (Remote) -JR-067726

Futran Tech Solutions Pvt. Ltd.

Cedar Rapids, IA • On-site, Remote

$127.70K - $164.10K/yr

Full-time

Posted 26 days ago


Job description

Position: Sr. FPGA Engineer
location: Cedar Rapids, IA (Remote work, there may be travel required once in a quarter)
Contract Type: Fulltime
Job Description
The Electrical Engineer designs, tests and documents safety-critical hardware. Responsible for developing and supporting FPGA/CPLD designs through all phases of design and system integration for high-reliability embedded aerospace and ground-based vehicle systems applications.
Responsibilities:
  • Perform activities such as requirements generation, design, RTL-synthesis, test bench development and design simulation, static timing and power analysis, and requirements-based design verification.
  • Prototype evaluation, design-to-cost tradeoffs, design reviews, qualification test support, system integration support, production and obsolescence support tasks.
  • Bachelor's Degree and 10-12+ years' work experience or master's degree and 8+ years of work experience.

Required Skills:
  • 10-12+ years of circuit design experience, with the demonstrated ability to design HDL-based FPGAs and CPLDs.
  • Knowledge of digital electronic devices and circuit design principles. Experience using design/analysis tools, such as Timing Designer and Hyperlynx a plus.
  • Hands-on hardware build, test, and integration experience.
  • Motivated self-starter with the ability to effectively work in a team environment.
  • Excellent problem-solving skills, judgment, and analytical capability, along with follow-up and monitoring skills.
  • Strong written and oral presentation skills.
  • Experience with Matlab and Simulink for auto-generation of FPGA code
  • Familiarity with FPGA integration into digital circuit card designs to ensure electrical integrity of FPGA design in embedded applications.
  • 10-12 years' work experience
  • Up to 25% Travel
  • Minimum Training/Education: BSEE

Preferred Skills and Education:
  • Experience with any of the following is a plus:
  • Design experience with Microprocessor/Microcontroller interfaces such as I2C, SPI, CAN bus ARINC-825, memory interfaces such as SDRAM controllers, Flash, SRAM; serial interfaces (MIL-STD-1553, ARINC-429, RS422, RS485, AFDX ARINC-664) and FPGA design using Microsemi, Xilinx, Lattice, Altera, etc.
  • Familiarity with RTCA/DO-254 hardware development objectives
  • Design tools such as Synplify, ModelSim, Questasim
  • Experience with high-speed Digital circuit card design, including part placement and routing, constraint generation, and signal integrity analysis.
  • Experience with VHDL, System Verilog designs and UVM test benches
  • Experience with state machines, code coverage
  • Experience with Requirements Management tools (i.e. DOORS), Configuration Management, and Problem Reporting tools.