Precision in Motion. Built for Robotics.
BoldX delivers ultra-precise components and subassemblies for next-gen robotics—supporting innovators in automation, medtech, defense, and beyond.
High-Performance Robotics
Robotic systems demand more than tight tolerances—they demand complete reliability, integration, and repeatability.
At BoldX, we specialize in machining and assembling precision components for robotic arms, actuators, end effectors, and motion control systems that power innovation across industries.
Our engineering team works directly with your designers to optimize parts for function, manufacturability, and performance. From miniature shafts and housings to complex multi-part mechanisms, we help bring robotic designs to life with speed and accuracy—whether you're iterating on a prototype or scaling for production.

Repeatable Accuracy. Scalable Speed.
BoldX builds mechanical components and integrated assemblies that support robotic movement, sensing, and precision control.
- CNC and Swiss-type machining for complex geometries
- Multi-part subassemblies with precision fits and alignments
- Micron-level tolerances for shafts, pins, and bearing housings
- Materials include stainless steel, aluminum, titanium, and polymers
- Full traceability and in-process quality verification
In-house prototyping, short runs, and scalable production
From surgical robots to automated logistics systems, we deliver parts that keep innovation in motion.

Built for Robotic OEMs and Innovators Who Need More Than a Vendor
Collaborative. Consistent. Ready to Scale. BoldX supports robotic engineers, system integrators, and product teams with agile manufacturing and hands-on partnership.
- Engineering support for tight-tolerance component design
- Collaborative prototyping and fast-turn quoting
- U.S.-based machining, finishing, and assembly
- Secure supply chain with on-time delivery and documentation
- Scalable from pilot projects to high-volume production
When you’re building the future of automation, BoldX gives you the precision, speed, and support to get there faster.