Prototyping Engineer (BDM)

Everstar
Full-timeโ€ขKyiv, Ukraine

๐Ÿ“ Job Overview

Job Title: Prototyping Engineer (BDM)

Company: Everstar

Location: Kyiv, Kyiv, Ukraine

Job Type: FULL_TIME

Category: Engineering / Research & Development

Date Posted: 2026-08-26

Experience Level: Mid-Level (2-5 years)

Remote Status: Hybrid

๐Ÿš€ Role Summary

  • This role is within a BDM (Business Development and Manufacturing) team focused on the development and production of real-world technical equipment and electronic solutions for the MilTech sector.

  • The Prototyping Engineer will be instrumental in the rapid scaling and process refinement of a fast-growing company, directly contributing to technological advancements.

  • The position involves hands-on creation and mechanical refinement of experimental samples, with potential for solutions to be implemented in large-scale product deployments.

  • A key aspect of the role includes the integration of electronics into prototype housings, requiring skills in soldering and wiring.

๐Ÿ“ Enhancement Note: While the core title is "Prototyping Engineer," the context of "BDM" and "MilTech" suggests a strong focus on practical application, manufacturing feasibility, and potentially defense-related technologies. The emphasis on "real field of battle" and "technological advantage of Ukraine" points to a mission-driven environment with tangible impact.

๐Ÿ“ˆ Primary Responsibilities

  • Execute the complete 3D printing lifecycle, including model slicing, printer setup, maintenance for FDM/SLA technologies, and post-processing of printed parts.

  • Design and mechanically refine enclosures, mounts, and fixtures for test benches using SolidWorks or Fusion 360.

  • Create and modify experimental samples to meet specific design and functional requirements.

  • Integrate electronic components into prototype housings, performing necessary soldering, wire routing, and debugging for functional circuits.

  • Develop and maintain technical documentation, including assembly instructions and process guides for prototypes.

  • Collaborate with the BDM team to ensure prototype designs are manufacturable and meet project timelines.

  • Conduct basic testing and validation of prototypes to ensure functionality and adherence to specifications.

  • Contribute to the continuous improvement of prototyping processes and workflows.

๐Ÿ“ Enhancement Note: The responsibilities highlight a blend of digital design (CAD), physical fabrication (3D printing, manual tools), and electrical integration (soldering, wiring). The "BDM" context implies a need for an engineer who understands not just the technical creation but also the practicalities of production and deployment.

๐ŸŽ“ Skills & Qualifications

Education: While not explicitly stated, a Bachelor's degree in Mechanical Engineering, Electrical Engineering, Industrial Design, or a related technical field is typically expected for this level of role. Equivalent practical experience will also be considered.

Experience: 2-5 years of experience in a prototyping, mechanical design, or product development role, with a strong emphasis on hands-on creation and problem-solving.

Required Skills:

  • Proficient in 3D modeling software, specifically SolidWorks or Fusion 360 (assembly modeling, drawing creation).

  • Strong understanding of 3D printing materials, FDM/SLA printing processes, and preparation of models for manufacturing.

  • Practical experience with hand tools and common workshop equipment.

  • Demonstrated ability in soldering and understanding of electronic component layout within enclosures.

  • Meticulous attention to detail in task execution and quality control.

  • Ability to create and maintain technical documentation and assembly guides.

  • Familiarity with basic circuit wiring and debugging. Preferred Skills:

  • Direct experience operating and maintaining FDM and SLA 3D printers.

  • Experience using measurement instruments and laboratory equipment (e.g., multimeters, oscilloscopes).

  • Understanding of how design choices impact cost, complexity, and assembly processes.

  • Familiarity with MilTech or defense industry product development cycles.

  • Basic knowledge of circuit board design principles.

๐Ÿ“ Enhancement Note: The experience level suggests someone who has moved beyond entry-level tasks and can independently manage prototype development cycles, including design, fabrication, and basic integration. The "MilTech" focus implies a preference for candidates who can grasp complex technical requirements and work in a regulated or demanding environment.

๐Ÿ“Š Process & Systems Portfolio Requirements

Portfolio Essentials:

  • Showcase of 3D-printed prototypes, detailing the design process from concept to finished product.

  • Examples of CAD models (SolidWorks/Fusion 360) for enclosures, mounts, or complex assemblies, demonstrating design intent and technical drawings.

  • Case studies illustrating the integration of electronic components into custom housings, highlighting problem-solving for space constraints or thermal management.

  • Documentation samples (e.g., assembly instructions, process flows) that demonstrate clear communication of technical information.

  • Projects that highlight an understanding of material properties and their impact on 3D printing and final product performance. Process Documentation:

  • Evidence of creating and maintaining clear, step-by-step instructions for assembly and post-processing of prototypes.

  • Examples of workflow documentation for the 3D printing process, from slicing to final part finishing.

  • Documentation demonstrating an understanding of design for manufacturability (DFM) principles as applied to prototypes.

๐Ÿ“ Enhancement Note: Given the hands-on nature of the role and the emphasis on creating tangible solutions, a portfolio demonstrating practical skills and a structured approach to prototyping is crucial. Candidates should be prepared to discuss the design decisions, challenges, and outcomes of their past projects.

๐Ÿ’ต Compensation & Benefits

Salary Range: Based on the location (Kyiv, Ukraine), experience level (Mid-Level, 2-5 years), and industry (MilTech/Engineering), a competitive salary range for a Prototyping Engineer would typically fall between 30,000 UAH to 60,000 UAH per month gross. This estimate considers the demand for skilled engineering talent in Ukraine, the specialized nature of MilTech, and the hybrid work arrangement.

Benefits:

  • Full-time employment with transparent cooperation through Diia.City and Labor Code (ะšะทะŸะŸ).

  • Annual leave: 24 calendar days of vacation per year, plus an additional day for your birthday.

  • Flexible work format: Flexible working hours and the option to work remotely for up to 10 days per year.

  • Medical insurance: Comprehensive coverage from a top insurance company, active after the probationary period.

  • Development and learning: Compensation for professional training, courses, and access to a corporate library.

  • Mental health support: Company-paid consultations with a psychologist.

  • Competitive compensation: Market-level remuneration, with bonuses and performance-based awards.

  • Military service deferment support: Assistance with registration for eligible military personnel, provided current documents are available.

  • Relocation assistance: Financial support for candidates relocating from other cities or countries.

  • Office in Kyiv: A modern workspace on the Right Bank, equipped with coffee, snacks, and dedicated areas for work and team meetings.

Working Hours: The standard working hours are 40 hours per week, with a flexible schedule allowing for remote work up to 10 days annually. This hybrid model supports work-life balance while ensuring project continuity.

๐Ÿ“ Enhancement Note: The benefits package is robust and tailored to the Ukrainian market, emphasizing both professional development and employee well-being, including unique provisions like military service deferment support and relocation assistance, reflecting the company's commitment to its employees in the current geopolitical context. Salary is estimated based on market rates for comparable roles in Kyiv.

๐ŸŽฏ Team & Company Context

๐Ÿข Company Culture

Industry: MilTech (Military Technology). The company operates within a high-stakes, innovation-driven sector focused on developing and producing advanced technical equipment and electronic solutions for real-world battlefield applications. This industry demands precision, reliability, and a commitment to technological superiority.

Company Size: While not explicitly stated, the mention of rapid scaling, process building, and team strengthening suggests a company that is past its startup phase and is maturing into a more established, growth-oriented organization. This likely places them in the medium to large enterprise category, with potential for significant growth.

Founded: The founding date is not provided, but the company's focus on building processes and scaling indicates a relatively established entity that is actively expanding its capabilities and market reach.

Team Structure:

  • The Prototyping Engineer will join the BDM (Business Development and Manufacturing) department, which is responsible for the practical development and production of hardware.

  • The team is expanding, indicating growth and an evolving organizational structure.

  • Collaboration is expected with other engineers, designers, and potentially project managers within the R&D and BDM functions. Methodology:

  • Data-Driven Prototyping: Emphasis on creating and testing prototypes that are grounded in real-world requirements and data from the field.

  • Agile Development: The company's rapid scaling and process building suggest an agile or iterative approach to product development and manufacturing.

  • Continuous Improvement: A focus on refining processes, improving efficiency, and adapting to new technologies and challenges.

Company Website: https://everstar.ai

๐Ÿ“ Enhancement Note: The "MilTech" context is critical. It implies a culture that values precision, resilience, innovation under pressure, and a strong sense of purpose. The company's focus on "real field of battle" suggests a pragmatic, results-oriented approach rather than purely theoretical development.

๐Ÿ“ˆ Career & Growth Analysis

Operations Career Level: This role is positioned at a Mid-Level (2-5 years of experience). It requires independent work on assigned tasks, the ability to manage prototyping projects from design to functional sample, and a growing understanding of manufacturing considerations. It's a step beyond junior roles, offering significant responsibility and impact.

Reporting Structure: The Prototyping Engineer will likely report to a Lead Engineer, R&D Manager, or Head of the BDM department. The team structure is expanding, suggesting potential for evolving reporting lines and team dynamics.

Operations Impact: The Prototyping Engineer's work has direct and tangible impact. Their solutions are intended for "hundreds of thousands of products," suggesting a high volume of production and a significant contribution to Ukraine's technological advantage. Successful prototypes directly influence the company's ability to develop and deploy critical MilTech equipment.

Growth Opportunities:

  • Technical Specialization: Deepen expertise in advanced 3D printing technologies, materials science, complex CAD design, and electronics integration for MilTech applications.

  • Project Leadership: Progress to leading prototyping efforts for specific product lines or complex projects, managing timelines and resources.

  • Process Improvement: Take on roles focused on optimizing the company's prototyping and R&D workflows, driving efficiency and innovation.

  • Cross-Functional Mobility: Potential to move into roles focused on R&D management, manufacturing engineering, or product development management within the expanding BDM department.

๐Ÿ“ Enhancement Note: The growth path is strongly tied to the company's expansion in the MilTech sector. Opportunities will likely arise from the need to scale production, develop new product lines, and refine existing processes, all of which require skilled engineers who can translate concepts into functional hardware.

๐ŸŒ Work Environment

Office Type: The company offers a physical office space located in Kyiv on the Right Bank. This suggests a traditional office environment that supports in-person collaboration, with amenities like coffee, snacks, and meeting areas.

Office Location(s): Kyiv, Ukraine (Right Bank). This location offers access to a major urban hub with transportation links and a skilled talent pool. Specific details on accessibility or proximity to public transport are not provided but can be assumed to be standard for a city office.

Workspace Context:

  • Collaborative Environment: The office provides dedicated spaces for meetings and team interaction, fostering a collaborative atmosphere essential for engineering and product development teams.

  • Tools and Technology: Access to necessary prototyping equipment, including FDM/SLA 3D printers, hand tools, and potentially lab equipment, along with CAD workstations.

  • Team Interaction: Opportunities for direct interaction with colleagues in the BDM department and other R&D teams, facilitating knowledge sharing and problem-solving.

Work Schedule: The hybrid model allows for a flexible schedule, with the ability to work remotely for up to 10 days per year. This provides a balance between structured office-based work, crucial for hands-on prototyping and team collaboration, and personal flexibility.

๐Ÿ“ Enhancement Note: The hybrid nature of the role, combined with a physical office in Kyiv, indicates a company that values both in-person collaboration for hands-on work and flexibility for employee well-being. The "Right Bank" location is a common descriptor in Kyiv, implying a central or well-established business district.

๐Ÿ“„ Application & Portfolio Review Process

Interview Process:

  • Initial Screening: A review of your CV and portfolio to assess technical skills, experience, and alignment with the role's requirements.

  • Technical Interview: This will likely involve in-depth discussions about your experience with SolidWorks/Fusion 360, 3D printing processes, electronics integration, and problem-solving scenarios. Expect questions about specific projects you've worked on.

  • Practical Assessment/Case Study: You may be asked to complete a small design challenge, a CAD modeling task, or discuss a complex prototyping project in detail, demonstrating your practical skills and thought process.

  • Team/Cultural Fit Interview: An opportunity to meet with potential team members and hiring managers to assess collaboration style, communication skills, and alignment with Everstar's mission and values.

  • Final Interview: A discussion with senior leadership to confirm fit and discuss compensation and benefits.

Portfolio Review Tips:

  • Showcase Impact: Prioritize projects that demonstrate tangible outcomes, problem-solving, and successful integration of components. Quantify results where possible (e.g., reduced assembly time, improved durability).

  • Detail the Process: For each project, clearly outline the problem, your design approach, the tools and techniques used (CAD, 3D printing specifics, soldering), challenges encountered, and solutions implemented.

  • Highlight Key Skills: Ensure your portfolio prominently features examples of your proficiency in SolidWorks/Fusion 360, FDM/SLA printing, and electronics integration.

  • Technical Documentation: Include examples of assembly instructions or process guides you've created, demonstrating your ability to communicate technical information effectively.

  • Tailor to MilTech: If possible, include projects that demonstrate an understanding of durability, reliability, or performance under demanding conditions, relevant to the MilTech sector.

Challenge Preparation:

  • CAD Proficiency: Be ready to demonstrate your skills in SolidWorks or Fusion 360, potentially involving quick modeling tasks or complex assembly scenarios.

  • 3D Printing Knowledge: Prepare to discuss material properties, slicing parameters, common print failures, and post-processing techniques.

  • Electronics Integration: Review basic circuit concepts, soldering techniques, wire management, and debugging methods for embedded systems.

  • Problem-Solving: Think about how you approach technical challenges, break down complex problems, and develop practical solutions under constraints.

๐Ÿ“ Enhancement Note: The interview process will heavily focus on practical, hands-on skills. A strong portfolio that visually and textually demonstrates your ability to design, build, and integrate prototypes is essential for success. Be prepared to discuss your thought process and problem-solving approach in detail.

๐Ÿ›  Tools & Technology Stack

Primary Tools:

  • 3D Printing Technologies: FDM (Fused Deposition Modeling) and SLA (Stereolithography) printers. Proficiency in slicing software (e.g., Cura, PrusaSlicer, Lychee Slicer) is expected.

  • CAD Software: SolidWorks or Fusion 360 for 3D modeling, assembly design, and creating technical drawings.

  • Hand Tools & Workshop Equipment: A wide array of manual tools for assembly, modification, and finishing of parts.

Analytics & Reporting:

  • While not a primary data analytics role, understanding how to use measurement tools (multimeters, oscilloscopes) for prototype validation falls under this category.

  • Documentation tools for creating technical guides and reports. CRM & Automation:

  • Not directly applicable to this role, but an understanding of how prototypes feed into broader product development and manufacturing pipelines managed by BDM teams is beneficial.

  • Familiarity with project management tools might be advantageous for tracking prototype development progress.

๐Ÿ“ Enhancement Note: The technology stack is centered around the physical creation of prototypes. Proficiency in specific CAD software and 3D printing technologies is paramount. Experience with electronics integration tools like soldering irons and basic diagnostic equipment is also key.

๐Ÿ‘ฅ Team Culture & Values

Operations Values:

  • Innovation & Impact: A strong drive to create cutting-edge technology that has a tangible impact on real-world applications, particularly in the MilTech sector.

  • Precision & Reliability: Commitment to high standards of quality, accuracy, and dependability in all aspects of design and manufacturing, crucial for defense applications.

  • Adaptability & Resilience: Ability to thrive in a dynamic environment, overcome technical challenges, and adapt to evolving project requirements and technological advancements.

  • Pragmatism & Efficiency: Focus on practical solutions that are manufacturable, cost-effective, and meet performance objectives, aligning with the BDM focus.

Collaboration Style:

  • Cross-Functional Integration: Close collaboration with other engineers, designers, and potentially manufacturing specialists within the BDM department to ensure seamless prototype development and transition to production.

  • Problem-Solving Focus: A culture that encourages open discussion of technical challenges and collaborative efforts to find effective solutions.

  • Knowledge Sharing: Encouragement of sharing best practices, lessons learned from prototyping, and technical insights across the team to foster collective growth and efficiency.

๐Ÿ“ Enhancement Note: The company's mission in MilTech shapes its culture. Expect a professional environment that values technical excellence, a strong sense of purpose, and a collaborative spirit to achieve ambitious goals in a demanding sector.

โšก Challenges & Growth Opportunities

Challenges:

  • Rapid Development Cycles: The need to quickly iterate on designs and produce functional prototypes under potentially tight deadlines, common in fast-paced R&D and MilTech environments.

  • Technical Complexity: Working with advanced technologies and integrating sophisticated electronic systems into compact and robust housings.

  • Material and Process Optimization: Finding the optimal balance between material properties, printing processes, and cost for specific applications.

  • Adapting to Evolving Requirements: The ability to quickly adapt designs and prototypes based on feedback, testing results, or changing project scopes.

Learning & Development Opportunities:

  • Advanced Prototyping Techniques: Gaining expertise in next-generation 3D printing materials, multi-material printing, and advanced post-processing methods.

  • MilTech Product Development: Deeper understanding of the specific requirements, standards, and challenges of developing products for the defense industry.

  • Electronics Integration & Debugging: Enhancing skills in embedding complex electronics, signal integrity, and system-level debugging.

  • Design for Manufacturing (DFM): Developing a more profound understanding of how prototype designs translate to scalable and cost-effective mass production.

๐Ÿ“ Enhancement Note: This role offers significant opportunities for hands-on learning and skill development in a critical and rapidly evolving industry. The challenges are inherent to pushing technological boundaries and developing high-performance equipment.

๐Ÿ’ก Interview Preparation

Strategy Questions:

  • "Describe a complex prototype you designed and built. What were the key challenges, and how did you overcome them?" (Focus on the process, tools used, and problem-solving approach.)

  • "How do you approach balancing design requirements with manufacturing constraints and cost considerations in a prototyping phase?" (Demonstrate an understanding of DFM and practical implementation.)

  • "Walk me through your process for integrating electronics into a custom enclosure. What steps do you take to ensure reliability and ease of assembly?" (Highlight your soldering, wiring, and debugging experience.) Company & Culture Questions:

  • "What interests you about working in the MilTech sector, specifically with Everstar?" (Research Everstar's mission and recent developments, connect your passion for technology with their impact.)

  • "How do you handle constructive criticism or feedback on your designs from team members?" (Emphasize your collaborative and open-minded approach to feedback.)

  • "Describe a time you had to work under a tight deadline to deliver a prototype. How did you manage your time and priorities?" (Showcase your time management and ability to deliver under pressure.) Portfolio Presentation Strategy:

  • Storytelling: Structure your portfolio presentation around the narrative of your projects โ€“ the problem, your solution, the process, and the outcome.

  • Visuals are Key: Use high-quality images and videos of your prototypes, CAD models, and any relevant testing setups.

  • Highlight Technical Details: Be prepared to discuss specific software settings, material properties, soldering techniques, and circuit diagrams.

  • Quantify Success: Where possible, use metrics to illustrate the impact of your work (e.g., "reduced weight by 15%," "improved thermal dissipation by 10ยฐC").

  • Address Challenges Directly: Be honest about challenges and demonstrate your learning and problem-solving capabilities through them.

๐Ÿ“ Enhancement Note: Interviews for technical roles like this will heavily scrutinize your practical skills and problem-solving abilities. Your portfolio is your primary tool for demonstrating this; be ready to discuss every aspect of it in detail.

๐Ÿ“Œ Application Steps

To apply for this Prototyping Engineer position:

  • Submit your application through the provided link on Breezy HR.

  • Tailor your CV: Highlight specific experience with SolidWorks/Fusion 360, FDM/SLA 3D printing, soldering, and electronics integration. Use keywords from the job description.

  • Curate your Portfolio: Select 2-3 of your most relevant projects that showcase your design, prototyping, and integration skills. Ensure clear documentation and high-quality visuals.

  • Prepare for Technical Questions: Review your understanding of CAD principles, 3D printing materials and processes, basic electronics, and common prototyping challenges.

  • Research Everstar: Familiarize yourself with Everstar's mission in MilTech and their focus on creating real-world technological solutions. Understand their values and company culture.

โš ๏ธ Important Notice: This enhanced job description includes AI-generated insights and operations industry-standard assumptions. All details should be verified directly with the hiring organization before making application decisions.


Application Requirements

Candidates must be proficient in SolidWorks or Fusion 360 and have a strong understanding of 3D printing materials and manufacturing processes. Practical experience with manual tools, soldering, and component assembly is essential for this position.