Robosolder®
Automated Fine Wire Termination
What makes Robosolder® unique?
RoboSolder® is Onanon’s patented robotic soldering technology, engineered for the demands of modern medical devices.
Ultra-Fine Precision – 20–56 AWG wires termination
IPC Class III compliant
Programmable Flexibility – Customizable templates for varied pin layouts
Front-to-Back Soldering – Pins heated front, wires inserted back
Operator-Friendly Design – Workspace table with footpedal activation
Why RoboSolder® Exists
- As connector designs become smaller, denser, and more electrically demanding, traditional hand soldering struggles to keep pace. Variability in operator technique, thermal exposure, and solder volume can compromise signal integrity, high-voltage performance, and long-term durability.
- RoboSolder® was developed to solve these challenges by delivering controlled, automated soldering optimized for ultra-fine conductors and high-density terminations.
Pulse Field Ablation (PFA) & Electrophysiology Systems
- PFA and EP systems require compact, high-pin-count interconnects that combine high voltage delivery with precise sensing.
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RoboSolder® supports:
- Multi-electrode catheter assemblies
- High-voltage conductors paired with low-level sensing lines
- Dense wire bundles in constrained catheter handles
- Repeatable terminations supporting consistent pulse delivery
- Why it matters: Termination quality directly affects dielectric performance, leakage current, and signal stability under repeated high-energy pulses.
Precision Automation for the Smallest, Most Critical Connections
RoboSolder® is Onanon’s proprietary automated wire-termination platform designed to deliver repeatable, high-precision solder joints at wire sizes down to 56 AWG.Developed in-house by Onanon engineers, RoboSolder® enables consistent electrical and mechanical performance in applications where manual soldering introduces variability, risk, and scalability limitations. RoboSolder® is purpose-built for medical, industrial, and advanced electromechanical systems that demand reliability at scale.






