Our Development Process

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Our Roadmap

Phase 1: UNDERSTAND

The first and foundational step in our process involves a deep dive into understanding the specific needs and requirements of our clients. This stage is critical for establishing a clear, comprehensive brief that outlines the project's objectives, constraints, and criteria for success. Our team at AMS collaborates closely with clients to gather all necessary information, ensuring that every aspect of the project is meticulously defined. This thorough understanding serves as the bedrock upon which all subsequent design and engineering decisions are made, guaranteeing solutions that are not only innovative but also perfectly aligned with our clients' goals.

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Phase 2: CONCEPTUALIZATION

Following the clear definition of requirements, our team transitions into the concept generation phase. Here, creativity meets engineering prowess as we brainstorm a wide range of solutions. Leveraging our expertise in various engineering disciplines, we explore multiple ideas, considering different approaches and technologies that could be used to meet the project's objectives. This stage is characterized by open-mindedness and innovation, with the aim of producing a diverse set of concepts that can be evaluated for feasibility, performance, and impact. It's a collaborative and dynamic process that taps into the collective knowledge and creativity of our team to pave the way for groundbreaking solutions.

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Phase 3: DOWN SELECT

Once a broad spectrum of concepts has been developed, the down select phase focuses on evaluating these ideas against the project's defined requirements and constraints. This critical analysis involves rigorous assessment criteria, including technical feasibility, cost-effectiveness, scalability, and sustainability, among others. The goal is to narrow down the options to the most promising concepts that offer the best balance of innovation, practicality, and potential for success. This stage ensures that resources are concentrated on developing solutions with the highest likelihood of meeting and exceeding our clients' expectations.

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Phase 4: PROTOTYPE

With the most viable concepts selected, the next step is to bring these ideas to life through prototyping. This phase is all about translating theoretical designs into tangible models that can be tested and evaluated. Prototyping is crucial for identifying any design flaws, assessing the functionality of the product, and gathering feedback for further refinement. It allows for a hands-on approach to problem-solving and innovation, enabling our team at AMS to iterate quickly and efficiently. By the end of this stage, we have a working prototype that demonstrates the feasibility and potential of the proposed solution.

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Phase 5: REFINE

Following prototyping, the refinement phase focuses on optimizing the design based on feedback and test results. This stage involves making adjustments to improve performance, enhance user experience, reduce costs, or address any other identified issues. Our team works meticulously to fine-tune every aspect of the product, ensuring that it not only meets but surpasses the initial requirements. This process of continuous improvement is guided by a commitment to excellence and a deep understanding of engineering principles, ensuring that the final design is robust, efficient, and ready for manufacturing.

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Phase 6: MANUFACTURE

The final step in our process is the transition from refined prototypes to full-scale production. This phase is where our engineering solutions are realized as tangible products, ready for the market. Our manufacturing process is characterized by a strict adherence to quality standards, efficiency, and scalability. We work closely with trusted manufacturing partners to ensure that each product is produced to our exact specifications, using the most suitable materials and technologies. Throughout this stage, we maintain a focus on sustainability and cost-effectiveness, ensuring that our solutions are not only innovative but also accessible and responsible.

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City Trash Can – Urban Product Design

Designed a durable and modern public trash can concept for city deployment. The concept balances utility, ease of servicing, and urban aesthetics, making it ideal for municipalities upgrading street infrastructure.

CNC Lathe Concept – Industrial Machinery Design

Developed concept renderings for an innovative CNC lathe system, emphasizing accessibility, rigidity, and an intuitive operator interface. Designed for modern workshops aiming to increase performance and visual impact.

COLLAPSAR Smart Kitchen Hood – Modern Appliance Concept

Created a futuristic concept design for a collapsible smart kitchen hood. Blended function and form, integrating air purification and lighting in a compact footprint with a sleek, architectural aesthetic.

Avionics Display – Industrial Design Concepts

Provided industrial design concepts for a new avionics display. Prioritized clarity, cockpit ergonomics, and user interface considerations to deliver sleek, functional enclosures suitable for modern aircraft environments.

Living Wall Planters – Custom Product Line

Designed a modular series of planters for a vertical living wall system. Focused on optimizing part geometry for injection molding and wall-mount installation while meeting aesthetic and functional goals for commercial interiors.

MATRIX Smart Home Device – IOT Enclosure Development

Developed an injection-molded enclosure for a smart home automation hub. The design balanced aesthetics with manufacturability and integrated PCB mounting features, allowing for seamless assembly and production scaling.

Drill Bit Sorting Case – Injection Molded Product Development

Took a napkin sketch and turned it into a fully engineered, injection-molded drill bit organizer in under four months. Designed for durability and efficiency, this tool storage solution enables users to easily sort and access bits by size.

Electric Scooter Stand – Product Design & Fabrication

Engineered a high-performance electric scooter maintenance and display stand for secure storage and servicing. This robust steel-frame stand features a modular, adjustable design with locking clamps, making it compatible with a wide range of scooter models. Ideal for garages, repair shops, and showrooms.