Peak Kinematics:
Engineering the Future

Peak Kinematics is a premier engineering firm dedicated to shaping the future of complex ground and space-based systems. We specialize in the design, development, manufacturing, and testing of mechanical systems tailored for defense and NASA missions. Our expert engineering team transforms conceptual designs into robust robotic systems that are engineered to operate in extreme environments while ensuring reliability and scalability. Leveraging nearly four decades of experience in electric aviation, precision instrumentation for advanced telescopes, and cutting-edge cancer treatment medical devices, our team excels at pioneering innovative, scalable prototypes that integrate custom advancements with proven technologies. Driven by a passion for engineering, Peak Kinematics drives innovation and technical excellence to empower limitless possibilities for tomorrow’s challenges.

Engineering the Future of Space Construction

At Peak Kinematics, we’re redefining the boundaries of motion, robotics, and human-environment interaction through precision engineering and biomechanical innovation. With roots in advanced kinematic analysis, we’re now applying our expertise to one of the most ambitious frontiers—automated extraterrestrial construction.


Modular Assembly Robot for Planetary Structures

Our latest venture, the Modular Assembly Robot, aims to revolutionize how we build and sustain infrastructure beyond Earth. Designed for modular deployment, this mission-ready system features:

  • A custom-engineered rover platform

  • An innovative robotic end effector for precision assembly

  • Durable, interlocking panel structures with a novel seal design

Combining space-grade materials and medical-inspired actuation, this robot is built for long-duration operation in extreme environments. It supports scalable, sustainable construction on the Moon, Mars, and beyond, while addressing broader technology gaps in robotics architecture, component sourcing, and in-situ resource utilization.