Precision fasteners engineered in Indonesia, serving industries worldwide

Millions of cycles,
zero maintenance.

Humanoid and industrial robots multiply the number of joints per machine - and none of them may loosen, wear or demand a technician. Fastening for robotics is micro in size and lifelong in duty.

M1-M4High-strength joints
AntiLoosening designs
CustomPins & plungers
CyclicLoad proven
Sector 06 · Robotics & embodied intelligence

Joints that must outlast the warranty by years

An actuator screw carrying cyclic load for millions of revolutions cannot be re-torqued on a schedule - there is no schedule inside a dexterous hand. The fastener must not loosen, must not wear its seat, and must fit in assemblies with zero room for rework. We answer with high-strength micro joints, patented anti-loosening geometry and ultra-precision pins and plungers built for compact, high-density actuation.

  • M1-M4 high-strength micro joints for hollow-cup motors and dexterous hands
  • Patented anti-loosening designs hold clamp through millions of cycles
  • Ultra-precision pins, plungers and custom parts for compact assemblies
  • Development support for maintenance-free actuation programs
Custom cold-headed part
Where they go

Joints inside the machine

Actuators, motors & reducers

High-strength micro screws and anti-loosening joints in the densest part of the drivetrain.

Dexterous hands & sensors

M1-class fasteners with the precision miniature mechanisms demand.

Industrial robot frames & covers

Structural aluminum joints and inserts that survive factory duty cycles.

Recommended families

The fasteners this sector asks for most

Micro precision screws

M0.5-M2.0 precision for sensor and hand assemblies.

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Sleeves & custom parts

Custom pins, plungers and micro-joint hardware engineered to your mechanism.

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Thread inserts & bushings

Serviceable threads in aluminum housings and gear cases.

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FAQ

Robotics fastening questions we hear most

Stronger than most teams expect: cold-headed micro screws in alloyed steel reach strength classes that carry real actuator loads, and rolled threads give fatigue life that cut threads cannot match. We share test data per joint so your simulation starts from measured values.

Geometry first - patented anti-loosening designs and correct preload - then materials and, where specified, pre-applied locking. The aim is a joint that does not need a maintenance plan at all.

Yes - that is the standard path. Send the mechanism envelope and load spectrum; we return a formed-part proposal with prototypes and test data.

Building a robot that cannot afford a loose screw?

Send the joint list and duty cycle - we will propose the micro joints, pins and locking strategy to match.

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