Product Development Services:
- Design Concept Development – Make your idea a reality! We evaluate the intended functionality of your idea and produce a description of a product which can achieve the functionality.
- CAD Model Design – produce 3D model of design to visualize the end product, materials, finish, and usability.
- Prototype – a physical part representative of the product including basic functionality and design features.
Design Review Services:
Raydi Engineering ensures your product meets or exceeds all customer expectations with in-depth supporting analyses:
- Requirements – create compliance matrix, determine design goals, validate, and verify requirements
- Kinematic Analysis – evaluate product for desired dynamic functionality, find position, velocity, and acceleration, simulated animation
- Materials – evaluate material selection based on critical properties including strength, corrosion, wear, thermal, electrical, stiffness, finish
- Stress Analysis – determine load at failure, margin of safety, deformation under load, and fatigue life for structural elements of product
- Human Factors and Ergonomics – reduce user error and cognitive workload, design for improved user experience, improve safety
- Assembly Review – control tolerance stackup, reduce assembly errors, assembly time, and part count
- Manufacturability – evaluation of detail design tolerances, manufacturing process review, cost reduction opportunities
- Drawing Review – review drawings for conformity to various industry drawing standards
- Solid Model & Drawing Conformity – detailed analysis of drawing and model conformity to reduce manufacturing errors
- Reverse Engineering – engineering design and drawing package detailing legacy products
- Systems Analysis – System Modeling, Use Case descriptions, Interface definition, FMEA, Trade Studies
- Engineering Test – written plan and procedure, test fixture design, equipment requirement definition, report data and analysis
- Optimization – evaluate design to multiple requirements while optimizing based on critical need (e.g.mass reduction, performance improvement, or cost reduction)