Technology

Bioreactor & fermenter for research
and development

The optimal cultivation environment completed
through CNS technology

To manufacture highly efficient microorganism fermenters,
CNS introduced Korea’s first indirect sterilization method.

Optimized for high-cell-density cultivation, this system combines advanced precision control of pH, DO, gas, and temperature to deliver superior performance and exceptional reliability.

Technology

Fermenter Based on Optimized Design

  • Designed to ASME-BPE standards
  • Verification based on modeling / simulation / performance testing
Smart Bio-Control &
Monitoring System

CNS provides patented automation and HMI-based control technologies to ensure reliable and efficient cultivation in smart bio-manufacturing facilities.
Based on its patents, CNS provides an intuitive HMI-based interface and an advanced control system to maximize the reliability and efficiency of cultivation processes.

Key Features
  • Enhanced real-time monitoring and control via a pre-validated HMI system
  • Improved system safety through interlock functions between processes
  • Increased process efficiency with optimized transfer system design
  • User-friendly operation enabled by a user-centric interface
  • Controlled system access through user-level security management
Diaphragm valve flow control method
(Patent No.10-1491711)

Prevents backflow and leakage by implementing interlocks between processes

Motor-driven rotary diaphragm valve
(Patent No.10-1604978)

Automatic transfer under aseptic conditions, minimizing cross-process contamination

Aseptic metering device and aseptic valve
(Patent No.10-2230047)

Quantitative transfer in an aseptic environment to maintain cultivation cleanliness

PLC-based distributed control +
DCS integrated management system
(Distributed Control System +
Local PLC Architecture)

Hybrid control architecture combining real-time local PLC control with DCS-based centralized monitoring, ensuring process stability, scalability, and maintainability

  • Direct local PLC control ensures stable operation even during communication failures
  • Centralized monitoring and optimized control of multiple PLCs
  • Ethernet-based remote monitoring, control, and program updates
  • Scalable and maintainable architecture based on standardized hardware and modular software
→ A hybrid system combining distributed PLC control with DCS-level integrated management, ensuring high reliability and flexibility in complex process environments.
Distributed Control System +
Local PLC Architecture

CNS builds trust through technology.

Next-generation cultivation systems, driven by data and innovation.

Design and Verification
  • 3D modeling and simulation-based design minimize process interference
  • Performance testing ensures a highly reliable system
2D / 3D Design & Manufacture

2D Drawing

3D Model

Real Product

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