Engineered Precision, Delivered
For Texas Instruments’ RSLK MAX robotics platform, I transformed engineering CAD models into polished 3D visualizations designed to clearly communicate the robot’s components, assembly, and functionality.
Working in Cinema 4D, I prepared and developed the supplied CAD assets for visualization and created the 3D presentation of the system. Final compositing and 2D animation were completed in After Effects.
I also created an exploded visualization of the RSLK MAX that allows the individual components and their relationships to be examined from multiple angles. This visualization was used on university websites as part of the educational presentation of the robotics platform. View RSLK MAX OVER VIDEO here.
CLIENT Texas Instruments | ROLE Producer, Writer, Editor and 3D Artist / Technical Visualization | TOOLS Cinema 4D, After Effects | FOCUS CAD Visualization, Robotics, Animation
RSLK MAX Overview Animation
For Texas Instruments’ RSLK MAX robotics platform, I transformed a supplied 3D model into a polished technical visualization. In Cinema 4D, I formatted the model, applied materials and textures, developed the lighting, and animated the exploded view. In After Effects, I created animated callouts using expressions to connect technical information to specific points on the robot in 3D space. The exploded visualization was also adapted for interactive use on university websites, allowing students to explore how the individual components fit together.
Technical motion graphic created in After Effects, using JavaScript expressions to dynamically connect text callouts to specific components of the RSLK MAX robot in 3D space.
RSLK MAX technical visualization combining Cinema 4D rendering with After Effects motion graphics and JavaScript expressions for component-specific callouts in 3D space.
RSLK MAX motion design combining 2D and 3D animation with JavaScript expressions in After Effects to create dynamic navigation through a map-based environment.

