Product Overview
- Military-Grade Motion Engine
Dual-core DSP+FPGA architecture supports 128-axis synchronization with ±0.1μm positioning accuracy and ±1μs cycle jitter, ideal for nanometer-scale machining. - Universal Protocol Compatibility
Native integration of 15+ industrial protocols (EtherCAT, PROFINIRT, CANopen), seamless connectivity with robots, servos, and vision systems. - Hard Real-Time Kernel
1kHz closed-loop control cycle, 20ns command latency, PLCopen-certified for zero-error operation in high-speed SMT placement and laser cutting. - Extreme Environment Resilience
Operates in -40°C to 85°C with 50G vibration resistance (IEC 61800-3 certified), built for harsh metalworking environments. - Smart Ecosystem Integration
MATLAB/Simulink co-simulation and Python SDK support, paired with CLN Motion Studio for 80% faster graphical programming deployment.
Key Advantages
🎯 Nanoscale Motion Accuracy
- 24-bit encoder interfaces with linear/circular/spiral interpolation
- Dynamic error compensation: ≤5μm trajectory deviation @1m/s
⚡ Full-Axis Control Capacity
- 128-axis control per card + G-code direct parsing
- 16x high-speed differential I/O, ±10V analog output for servo/stepper/linear motors
🛡️ Industrial-Grade Protection
- 2500Vrms isolation + Level 4 surge protection
- IP65-rated M12 gold-plated connectors for oily/dusty/EMI-heavy environments
🔧 Zero-Barrier Development
- Multi-language SDK (C/C++/Python) + ROS/CODESYS compatibility
- 20+ preloaded algorithms: vibration damping, collision detection
🌐 Distributed Scalability
- 16-card cascading for 2048-axis mega systems
- Optional fiber-optic sync module achieves ns-level multi-device synchronization
Applications
- 🏭 Precision Manufacturing: Semiconductor wafer dicing, 3C high-speed dispensing
- 🤖 Smart Robotics: 6-axis cobot trajectory planning, Delta robot sorting
- 🚀 Advanced Machinery: 5-axis CNC machining, photovoltaic laser etching
- 📦 Packaging Systems: Rotary filler synchronization, high-speed labeler tension control
CLN Series | Redefining Motion Precision Boundaries with Cutting-Edge Control Algorithms