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Associate Software Development Engineer Jobs in Saint Paul, MN

Sr. ERP Developer

Saint Paul, MN · On-site

$95K - $120K/yr

... SDET - ERP Systems Location: Vadnais Heights, MN - Hybrid What is IP Corporation? IP Corporation is a privately held, family-owned chemical manufacturing organization with more than 70 years of ...

Sr Software Development Eng

Saint Paul, MN · On-site

$123K - $163K/yr

This role is designed for a top-tier engineer who combines deep technical expertise with strong ... AI Assisted Development: Use agentic AI tools throughout the software development lifecycle (SDLC ...

Showing results 21-40

Associate Software Development Engineer information

See Saint Paul, MN salary details

$19

$42

$99

How much do associate software development engineer jobs pay per hour?

As of Aug 16, 2026, the average hourly pay for associate software development engineer in Saint Paul, MN is $42.58, according to ZipRecruiter salary data. Most workers in this role earn between $30.77 and $45.10 per hour, depending on experience, location, and employer.

What is an associate software development engineer?

Associate Software Development Engineers are entry-level professionals who assist in designing, developing, testing, and maintaining software applications. They typically work under the guidance of senior developers, contributing to coding, debugging, and documenting software projects. This role serves as a foundational position in a software engineering career, providing opportunities to learn industry best practices and collaborate with experienced team members. Associate Software Development Engineers often participate in code reviews, troubleshoot issues, and help ensure that software meets quality and performance standards.

What are the key skills and qualifications needed to thrive as an associate software development engineer?

To thrive as an Associate Software Development Engineer, you need a solid grasp of programming languages (such as Java, Python, or C++), algorithms, and data structures, often supported by a bachelor's degree in computer science or a related field. Familiarity with integrated development environments (IDEs), version control systems like Git, and basic software development lifecycle methodologies is typically required. Strong problem-solving skills, a willingness to learn, and effective teamwork set standout candidates apart. These skills and qualities are vital for building reliable software, adapting to evolving technologies, and collaborating in dynamic development teams.

What are some common challenges faced by associate software development engineers when joining a new team?

Associate Software Development Engineers often encounter challenges such as adapting to established codebases, understanding team workflows, and getting acquainted with company-specific development tools. It can take time to become comfortable with version control systems, code review processes, and agile methodologies commonly used by development teams. Building effective communication with senior engineers and learning to balance independent problem-solving with seeking guidance are also key aspects of the initial learning curve.

What is the difference between Associate Software Development Engineer vs Software Development Engineer?

AspectAssociate Software Development EngineerSoftware Development Engineer
Required CredentialsBachelor's degree in CS or related field, some internshipsBachelor's or higher in CS, more experience preferred
Work EnvironmentEntry-level, team-based projects, training programsMore complex projects, increased responsibility
Employer & Industry UsageTech companies, startups, large corporationsSame as Associate role, with more senior positions
Search & Comparison IntentEntry-level roles, career progressionMid-level roles, career growth

The main difference between an Associate Software Development Engineer and a Software Development Engineer lies in experience and responsibility. The Associate role is typically entry-level, focusing on learning and supporting projects, while the SDE has more experience and handles more complex tasks. Both roles are common in tech companies and serve as stepping stones in a software engineering career.

What cities near Saint Paul, MN are hiring for Associate Software Development Engineer jobs?

Cities near Saint Paul, MN with the most Associate Software Development Engineer job openings:

Infographic showing various Associate Software Development Engineer job openings in Saint Paul, MN as of August 2026, with employment types broken down into 1% As Needed, 72% Full Time, 25% Part Time, and 2% Contract. Highlights an 91% Physical, 3% Hybrid, and 6% Remote job distribution, with an average salary of $88,567 per year, or $42.6 per hour.

Software Development Engineer II

NextEra Energy

Saint Paul, MN • On-site

Full-time

Re-posted 12 days ago


NextEra Energy rating

8.3

Company rating: 8.3 out of 10

Based on 54 frontline employees who took The Breakroom Quiz

23rd of 53 rated energy and utility


Job description

Requisition ID:  95447 

NextEra Analytics offers energy consulting services using industry-leading scientific analysis for planning, siting, forecasting and optimizing all forms of energy projects. Our optimization and analytics platforms integrate open-source technologies to leverage massive, diverse sets of utility operating data. This enables rapid development of operational solutions. Applying expertise in advanced mathematics, data and physical sciences, we solve some of the hardest problems facing the energy industry.
 

Position Specific Description

We are seeking a high-caliber Software Development Engineer II to join a team building customer-centric solutions for the business. This role is designed for a top-tier engineer who combines deep technical expertise with strong product intuition and business acumen. You will tackle ambiguous challenges, rapidly prototype solutions directly with stakeholders, and architect scalable, secure systems. You operate with high autonomy, acting as the critical technical bridge that turns business objectives into high-performing software.

Key Responsibilities & Expectations

1. Engineering & System Design

  • Architect in Ambiguity: Translate loosely defined business problems into clean, robust architectures while anticipating edge cases.
  • Rapid Prototyping: Where applicable, build functional prototypes with stakeholders to validate ideas instantly and accelerate the feedback loop.
  • Full-Stack Delivery: Own features end-to-end across services, data, and UI, making pragmatic technology choices and avoiding unnecessary complexity.

2. Engineering Productivity with AI

  • AI-Assisted Development: Use agentic AI tools throughout the SDLC to move faster, while maintaining full accountability for code quality, correctness, and security.
  • Feedback Loops for Coding Agents: Design quality gates, spec-driven workflows, and deterministic checks that catch agent errors before humans do.
  • Critical Adoption: Evaluate AI tools and patterns critically, adopting what improves the team's output and discarding what doesn't.

3. Reliability & DevSecOps

  • Security-First Mindset: Embed security and compliance into the core of the development lifecycle, proactively mitigating vulnerabilities through secure design.
  • Production Standards: Build well-tested, maintainable software. Implement CI/CD pipelines to ensure systems are resilient, scalable, and optimized for an exceptional end-user experience.
  • Operational Readiness: Make production behavior measurable, debuggable, and recoverable by building observability, alerting, runbooks, and recovery paths into systems from the start.

4. Execution & Business Ownership

  • Drive Outcomes: Take ownership of delivering meaningful business results, managing scope responsibly, and communicating technical risks early.
  • Technical Translation: Partner closely with Product Managers and business leaders. Articulate complex architectural decisions and tradeoffs in clear, outcome-oriented terms.
  • Partnering Across Functions: Engage security, risk, compliance, and platform teams early, communicate technical tradeoffs clearly, and make the case when a project calls for a different approach.

5. Culture

  • High Performance: We value high standards, continuous learning, and collaborative problem solving, creating an environment where talented individuals can thrive alongside exceptional teammates.
  • Ownership & Accountability: Team members are trusted to take ownership of their work, exercise thoughtful judgment, and follow through on commitments.
  • Collaborative Autonomy: Teams operate with a high degree of trust and autonomy while working together to make decisions aligned with business, customer, and operational goals.

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