Isochronic develops advanced pick & place robotic systems utilizing simultaneous part transfer technology for increased efficiency. These systems feature proprietary robot kinematics and control algorithms to handle both heavy-duty and small-parts applications. The technology significantly boosts throughput while reducing floorspace and energy consumption in automated manufacturing.
Funding
$3.1M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Traditional pick and place robotic systems in automated manufacturing rely on sequential part transfers, leading to inefficiencies due to empty-handed return strokes and discontinuous movement. This results in reduced throughput, increased energy consumption, and underutilization of production floorspace.
Solution
Isochronic provides robotic systems leveraging simultaneous part transfer technology to overcome the limitations of conventional pick and place automation. Their systems enable continuous movement of multiple parts without empty-handed return strokes, significantly increasing operational efficiency. By combining innovative robot kinematics with proprietary control algorithms, Isochronic's solutions enhance throughput, minimize floorspace requirements, and reduce energy consumption across diverse industries. The systems are available in configurations for both heavy-duty and small-parts applications and can be integrated into existing manufacturing setups.
Target Audience
Isochronic's primary customers include system integrators, OEMs, and manufacturers across various industries seeking to enhance the efficiency and throughput of their automated pick and place processes.
Features
- Simultaneous part transfer technology enabling continuous movement of multiple parts
- Modular, standardized components for flexible system design and integration
- Proprietary robot control algorithms for optimized performance
- Solutions for both heavy-duty laser automation and small-parts handling
- Intuitive Human Machine Interfaces (HMIs) for ease of operation
- Advanced robot grip heads for handling diverse part sizes and complexities
- Reduced footprint and energy consumption compared to traditional systems