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Remote Radar Signal Processing Engineer Jobs in Utah

Remote Operations Engineer

Sandy, UT · On-site +1

$66K - $89K/yr

United States - UT - Sandy Remote Operations Engineer Full-Time, Permanent Sandy, UT (In-person ... Make process adjustments in response to, and in anticipation of operational and quality needs. • ...

Process Engineer

Salt Lake City, UT · On-site +1

$35 - $65/hr

They are currently looking for Process Engineers (junior and mid-level). The positions can be based ... Willingness to travel for remote site assignments Preferred Qualifications * Understanding of ...

US - UT - Remote (144200) Job Title: Core Engineering - Design Engineer V PCB Layout Engineer, AR ... Engage with external suppliers and Supplier Quality/Process Engineering (SQE/PE) to resolve DFM ...

Ability to explain signal processing for biosignals, finite element analysis, drug delivery systems, and medical device design principles while preparing students for biomedical engineering ...

Ability to explain signal processing for biosignals, finite element analysis, drug delivery systems, and medical device design principles while preparing students for biomedical engineering ...

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Showing results 1-20

Remote Radar Signal Processing Engineer information

What are the key skills and qualifications needed to thrive as a Remote Radar Signal Processing Engineer, and why are they important?

To thrive as a Remote Radar Signal Processing Engineer, you need a strong background in electrical engineering, digital signal processing, and radar theory, typically supported by a relevant degree. Proficiency with MATLAB, Python, C/C++, and tools like Simulink or FPGA development environments is often required, along with familiarity with simulation and analysis software. Excellent problem-solving, communication, and teamwork skills are crucial for collaborating with remote teams and conveying technical concepts clearly. These competencies are essential for developing effective radar solutions, ensuring system reliability, and supporting innovation in distributed engineering environments.

What are some common challenges faced by Remote Radar Signal Processing Engineers and how can they be addressed?

Remote Radar Signal Processing Engineers often encounter challenges such as managing large volumes of complex data, ensuring reliable communication with distributed teams, and debugging system performance without direct access to hardware. To address these challenges, engineers typically rely on advanced simulation tools, maintain clear and regular communication with hardware teams, and use remote desktop solutions to access necessary systems. Emphasizing strong documentation and version control also helps keep projects organized and collaborative in a remote setting.

What are Remote Radar Signal Processing Engineers?

Remote Radar Signal Processing Engineers are professionals who design, develop, and optimize algorithms and systems for processing radar signals, often while working remotely. They analyze raw radar data to extract meaningful information, such as object detection, tracking, and imaging. These engineers use advanced mathematical models and programming to enhance radar system performance and reliability. Their work is crucial in applications like defense, aviation, weather forecasting, and autonomous vehicles.
What job categories do people searching Remote Radar Signal Processing Engineer jobs in Utah look for? The top searched job categories for Remote Radar Signal Processing Engineer jobs in Utah are:
What cities in Utah are hiring for Remote Radar Signal Processing Engineer jobs? Cities in Utah with the most Remote Radar Signal Processing Engineer job openings:
Senior Analyst, Software Engineering | Software Engineer II

Senior Analyst, Software Engineering | Software Engineer II

Verisk

Lehi, UT • On-site, Remote

$115K - $151K/yr

Full-time

Posted 15 days ago


Verisk rating

7.6

Company rating: 7.6 out of 10

Based on 129 frontline employees who took The Breakroom Quiz

92nd of 213 rated it services


Job description

hackajob is collaborating with Verisk to connect them with exceptional professionals for this role.

Description

The Software Engineer II is an early- to mid-career professional responsible for contributing to the design, development, testing, and delivery of high-quality software solutions that support Verisk Weather Solutions products and services. This role focuses on building reliable, scalable systems that ingest, process, and deliver radar-based and other meteorological data products, with a strong emphasis on correctness, performance, and data integrity.

The individual will work closely with software engineers, product managers, scientists, and software architects to implement well-defined designs and support applications that rely heavily on radar and weather data formats. While the role may interact with data-driven or model-assisted workflows, the primary emphasis is on software engineering excellence and hands-on experience working with radar and meteorological data, rather than AI or model development.

Responsibilities

- Design, implement, test, and maintain software components using Python and C/C++.

- Implement architectural designs and technical patterns defined by senior engineers and software architects.

- Develop and maintain systems that ingest, transform, validate, and serve radar and weather data products.

- Own well-defined features or services from development through deployment and operational support.

- Write clean, maintainable, and well-tested code that meets performance, reliability, and quality standards.

- Participate in technical design discussions and provide implementation-focused input on proposed solutions.

- Work cross-functionally with product managers and scientists to translate domain-specific requirements into technical solutions.

- Contribute to peer code reviews and shared engineering best practices.

Qualifications

- Bachelor’s degree or equivalent practical experience in Computer Engineering, Software Engineering, or a related scientific or engineering discipline such as Atmospheric Science, Meteorology, Hydrology, Physics, Mathematics, or Engineering.

- At least 2 years of professional software engineering experience in an industry environment.

- Professional experience with Python and C/C++.

- Experience working across the full Software Development Lifecycle.

- Familiarity with CI/CD workflows and tools such as GitLab CI, Jenkins, or Bamboo.

- Experience using version control systems (e.g., Git).

- Hands-on professional experience working with radar and weather data.

- Direct experience with one or more weather or radar data formats such as NEXRAD Level II, GRIB2, or NetCDF.

Preferred Qualifications

- Strong experience developing or maintaining systems that process radar data at scale, including real-time or near–real-time pipelines.

- Familiarity with geospatial data concepts and coordinate systems.

- Experience collaborating closely with scientists or domain experts.

- Exposure to data-driven or analytics-enabled systems.

- Experience in high-performance, data-intensive, or scientific computing environments.

Additional Information

- Travel Required: Less than 1%

- Work Environment: Remote


What Verisk employees say

Pay

Benefits

Hours and flexibility

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About Verisk

Sourced by ZipRecruiter

Verisk is a top-tier data analytics organization based in Jersey City, NJ, US, known for its deep industry knowledge and analytical prowess. Operating in the global risk assessment industry, it provides predictive analytics and decision support solutions to a wide range of industries like insurance, natural resources, financial services, government, and health care. Founded in 1971, Verisk operates on a mission of helping customers make superior decisions to minimize risk. With an organic growth strategy, Verisk offers a diverse portfolio of solutions, like risk assessment and decision analytics, that help businesses understand and manage their risks.

Industry

Library and information services

Company size

5,001 - 10,000 Employees

Headquarters location

Jersey City, NJ, US

Year founded

1971

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