About JRAD

JRAD is an engineering research company investigating whether magnetic conveyance can be made more reliable through a paired architecture: active magnetic coils onboard the conveyance platform interacting with engineered ferromagnetic rails as the reaction partner. Our work focuses on stability, reliability, and long‑duration performance in contactless motion.

JRAD’s architecture is grounded in closed derivations and validated physics. The coil–rail interaction, lift margin, and propulsion requirements have all been quantified and shown to be viable with comfortable engineering margin. What remains open is prototyping — determining whether an AI‑assisted magnetic conveyance system can outperform conventional DCV reliability in real‑world operation.


Our Vision

To explore a future where industrial mobility is quieter, cleaner, and more reliable — where contactless conveyance reduces wear, minimizes downtime, and delivers predictable performance through intelligent monitoring and engineered magnetic interaction.

JRAD’s vision is not defined by speculative propulsion or unbounded claims. It is defined by disciplined engineering, validated physics, and a commitment to building systems that improve reliability in environments where uptime matters.


Our Architecture

JRAD’s magnetic conveyance architecture is built on three foundational pillars:
Paired Magnetic Interaction Active coil arrays onboard the conveyance platform interact with ferromagnetic rails engineered for predictable magnetic response.

Distributed Magnetic Control Rotational coil duty cycles, load redistribution, and multi‑coil field shaping support stable levitation and guidance.

AI‑Driven Reliability Management Continuous monitoring of magnetic field strength, coil health, thermal load, and gap stability enables automated restoration triggers and predictive adjustments.

This architecture is designed to investigate whether magnetic conveyance can achieve lower failure rates, reduced wear, and more stable operation compared to conventional mechanical systems.


Our Commitment

JRAD is committed to engineering clarity, scientific transparency, and disciplined experimentation. We do not claim that magnetic conveyance is solved — only that the physics is validated and the engineering is tractable.

Our work now focuses on prototyping, testing, and evaluating whether AI‑assisted magnetic conveyance can deliver measurable improvements in reliability, uptime, and operational life.

JRAD’s mission is to pursue that question with rigor, honesty, and a full‑stack engineering approach — from coil arrays to ferromagnetic rails to the AI systems that monitor them.