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Intern Distributed Systems Engineer Jobs in Frisco, TX

Control System Engineer

Dallas, TX ยท On-site

$90K - $100K/yr

Control System Engineer Point of contact: Angela Gray Address: 10925 Miller Rd., Dallas, TX, 75238 ... Familiarity with low-voltage distribution systems: single-phase, split-phase, and three-phase ...

Control System Engineer

Dallas, TX ยท On-site

$90K - $100K/yr

Control System Engineer Point of contact: Angela Gray Address: 10925 Miller Rd., Dallas, TX, 75238 ... Familiarity with low-voltage distribution systems: single-phase, split-phase, and three-phase ...

Senior Video Systems Engineer

Flower Mound, TX ยท Hybrid

$101K - $168K/yr

... distribution pipelines, and/or camera systems, sensors, optics, illumination, and image quality ... Working knowledge of requirements management and systems engineering tools (e.g., DOORS, Jama, Jira ...

Configure and manage Ignition gateways, projects, and modules to support distributed control ... Collaborate with internal engineering teams on system design, deployment, and troubleshooting ...

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Intern Distributed Systems Engineer information

See Frisco, TX salary details

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How much do intern distributed systems engineer jobs pay per hour?

As of Aug 6, 2026, the average hourly pay for intern distributed systems engineer in Frisco, TX is $18.08, according to ZipRecruiter salary data. Most workers in this role earn between $15.10 and $19.57 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as an intern distributed systems engineer?

To thrive as an Intern Distributed Systems Engineer, you typically need a strong background in computer science fundamentals, programming (often in languages like Java, C++, or Go), and an understanding of distributed computing concepts. Familiarity with technical tools such as Docker, Kubernetes, cloud platforms (AWS, GCP, Azure), and version control systems like Git is commonly expected. Strong analytical thinking, effective communication, and a willingness to learn make candidates stand out in this role. These skills and qualities are crucial for solving complex distributed problems, collaborating with teams, and adapting to rapidly evolving technology environments.

What is the difference between Intern Distributed Systems Engineer vs Intern Software Engineer?

AspectIntern Distributed Systems EngineerIntern Software Engineer
Required CredentialsTypically pursuing a degree in Computer Science or related field, familiarity with distributed systems conceptsSimilar educational background, focus on general software development skills
Work EnvironmentFocus on designing, implementing, and testing distributed systems and networked applicationsDeveloping various software applications, often in different domains
Employer & Industry UsageUsed in tech companies working on cloud, big data, or scalable systemsCommon across many industries including tech, finance, and startups
Search & Comparison IntentPeople comparing internship roles in distributed systems and software development

Intern Distributed Systems Engineers focus on distributed architectures and networked systems, while Intern Software Engineers work on a broader range of software projects. Both roles require similar educational backgrounds but differ in specific technical focus and project types.

What types of projects and tasks can an intern distributed systems engineer expect to work on?

As an Intern Distributed Systems Engineer, you can expect to work on collaborative projects involving the design, implementation, and testing of scalable, fault-tolerant systems. Your tasks may include optimizing data pipelines, contributing to microservices architecture, or participating in performance benchmarking. Interns often work closely with senior engineers, gaining exposure to cutting-edge technologies such as cloud platforms, container orchestration, and distributed databases. This hands-on experience, combined with mentorship and code reviews, provides valuable insights into best practices and industry standards, supporting both your technical and professional growth.

What does an intern distributed systems engineer do?

An Intern Distributed Systems Engineer assists in designing, developing, and maintaining large-scale distributed systems that enable applications to run reliably across multiple computers. Their work often involves writing and testing code, debugging issues, and collaborating with experienced engineers to solve technical challenges related to scalability, efficiency, and data consistency. Interns may also help with system monitoring and performance analysis, learning best practices for building robust and fault-tolerant systems. This role is a valuable opportunity to gain hands-on experience with cutting-edge technologies and real-world distributed computing problems.
What are popular job titles related to Intern Distributed Systems Engineer jobs in Frisco, TX? For Intern Distributed Systems Engineer jobs in Frisco, TX, the most frequently searched job titles are:
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What cities near Frisco, TX are hiring for Intern Distributed Systems Engineer jobs? Cities near Frisco, TX with the most Intern Distributed Systems Engineer job openings:
Infographic showing various Intern Distributed Systems Engineer job openings in Frisco, TX as of August 2026, with employment types broken down into 85% Full Time, 9% Part Time, 5% Contract, and 1% Nights. Highlights an 89% Physical, 3% Hybrid, and 8% Remote job distribution, with an average salary of $37,601 per year, or $18.1 per hour.

Control System Engineer

Scout Talent Group

Dallas, TX โ€ข On-site

$90K - $100K/yr

Full-time

Re-posted 19 days ago


Job description

Company: Unitron Power Systems

Role: Control System Engineer

Point of contact: Angela Gray

Address: 10925 Miller Rd., Dallas, TX, 75238

Salary:Salary Range: 90-100K Onsite required. Small manufacturing facility.


Position Title: Control Systems Engineer

Department: Engineering

Reports To: Engineering Manager

Position Summary:

The Control Systems Engineer, as part of a cross-functional team, will be responsible for designing, debugging, characterizing, and releasing control systems for power conversion equipment, including rectifiers, converters, and inverters. The role will focus on developing control algorithms, optimizing software in C programming, and conducting extensive laboratory work to analyze and improve power electronic hardware performance. The power conversion equipment ranges from 3.5 kVA to 250 kVA in power.

Principal Duties and Responsibilities:

Design, develop, and implement control algorithms and software for power electronics, including rectifiers, converters, and inverters.

Perform testing, verification, and troubleshooting of control algorithms and software on power conversion hardware.

Develop specifications and requirements for control software in relation to the electrical characteristics of power conversion equipment.

Document the algorithm and software development process within relevant software tools.

Create and maintain written reports documenting laboratory testing processes and results.

Develop and improve validation plans for evaluating control software performance within power conversion equipment.

Integrate control software with other software functions within the power conversion equipment.

Stay informed on the latest developments in control systems theories, techniques, and technologies.

Education and Experience Requirements:

BS Degree in Electrical Engineering from an ABET-accredited institution (MS preferred).

3-5 years of related experience in power electronics engineering and applying control systems theory.

Strong knowledge of control system theory and its applications, including system modeling and simulation.

Proven hands-on troubleshooting skills at both the control loop and power conversion system levels.

Solid understanding of advanced power electronics topologies.

Experience with pulse width modulation (PWM) techniques, including sinusoidal PWM and space vector PWM.

Experience with power conditioning techniques, including nonlinear, unbalanced, and harmonic compensation.

Proficient in power electronics modeling and simulation tools such as LTspice, MATLAB, Simulink, and PSIM.

Familiarity with DSPs (Digital Signal Processors), especially TI DSPs.

Experience developing control systems for MCUs and DSPs in C programming.

Knowledge of communication protocols such as SPI, CAN, I2C, and Modbus TCP/IP.

Experience using software management systems and version control tools (e.g., GitHub or GitLab).

Familiarity with test equipment such as oscilloscopes, digital multimeters, power analyzers, and spectrum analyzers.

Familiarity with low-voltage distribution systems: single-phase, split-phase, and three-phase systems up to 600VAC and frequencies ranging from 50 to 800 Hz.

Basic understanding of PCB design tools such as Altium, PADS, EAGLE, or KiCAD.

Excellent oral and written communication skills with the ability to collaborate effectively across disciplines.

Ability to take personal responsibility for complex design and development tasks, seeing projects through to completion.

Required:

Documented US citizenship or legal permanent resident status.

Physical Requirements:

Must be able to perform tasks such as climbing stairs, sitting, standing, keyboarding, seeing, hearing, and fluently reading and speaking English.