ELAU C600‑10‑1‑1‑1‑00

Product Introduction C600‑10‑1‑1‑1‑00 is a high‑performance PacDrive C600 series programmable automation controller. This hardware integrates logic control, multi‑axis motion control, analog signal processing and digital I/O handling in single unit. It controls multiple MC‑4 series servo drives via SERCOS fiber‑optic bus, supporting complex cam profiling, flying‑shear and multi‑axis interpolation tasks. Original manufacturing is discontinued, and these units serve as critical spare parts for high‑end European packaging and converting machinery.

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Description

ELAU C600‑10‑1‑1‑1‑00

Technical Specifications Maximum SERCOS Controlled Axis Quantity: 16 axes On‑board Digital Inputs: 10 points On‑board Digital Outputs: 10 points On‑board Analog Input: 1 channel On‑board Analog Output: 1 channel Communication Interfaces: SERCOS fiber‑optic interface, Ethernet service port, RS232 serial interface Program Memory: 32MB Data Memory: 16MB Power Supply: DC24V, 1.5A rated consumption Protection Class: IP20 Operating Ambient Temperature: 0℃ to +55℃ Mounting Form: DIN‑rail cabinet installation

Functional Features Merges IEC‑61131‑3 standard logic control and hard‑real‑time motion processing inside unified hardware architecture. Supports electronic cam, dynamic electronic gear ratio, flying‑shear cutting, mark registration and multi‑axis linear‑circular interpolation. SERCOS fiber‑optic communication delivers excellent anti‑interference performance and ultra‑low inter‑axis synchronization offset. Non‑volatile flash memory retains user application program, production recipes and configuration parameters after power loss. Built‑in comprehensive diagnostic system logs bus communication faults, servo axis error codes and analog signal status history. Ethernet interface enables program download, online debugging and production‑data monitoring. Analog input and analog output channels handle process‑variable signal acquisition and analog setpoint output.

Application Scenarios High‑speed multi‑axis packaging production lines; flexible film converting equipment; complex printing register control systems; automated assembly machinery.

Performance Parameters Minimum real‑time motion task cycle reaches 200 microseconds. Inter‑axis synchronization deviation stays below ±1 microsecond. Non‑volatile memory stores large‑volume historical fault records for post‑incident analysis. Deterministic timing performance is maintained under full‑load 16‑axis operation.

Material Composition Aluminum alloy shielding housing, high‑speed FR‑4 multilayer printed circuit boards, dedicated real‑time motion processor chip, fiber‑optic transceiver modules, large‑capacity flash memory chips, plug‑in screw‑lock terminal blocks, LED status indicator components.

Structural Characteristics DIN‑rail‑compatible vertical housing unit. Front panel arranges LED status indicators, Ethernet service port and RS232 serial connector. SERCOS fiber‑optic connection ports are placed on upper housing edge. Lower‑housing pluggable terminal blocks provide connections for digital I/O channels, analog I/O channels and DC24V power supply. Complete part number C600‑10‑1‑1‑1‑00 is printed on metal identification nameplate.

Working Principle User application program stored in internal flash memory executes on dedicated real‑time processor. Logic processing section scans digital input signals, processes analog input values and generates digital‑output and analog‑output actions following machine workflow sequence. Motion‑processing section calculates position command values for each servo axis, transmits command frames over SERCOS fiber‑optic bus to connected MC‑4 servo drives. Status information and fault codes return from servo drives back to controller. On‑board diagnostic modules continuously monitor hardware health, communication link quality and I/O channel integrity. All configuration parameters and user programs persist within non‑volatile flash memory during power‑off events.

Installation Requirements Install controller onto standard DIN‑rail inside properly grounded control cabinet. Keep sufficient surrounding clearance for natural convection heat dissipation. Respect minimum bending‑radius constraints for SERCOS fiber‑optic cables. Separate low‑signal analog‑signal wiring from high‑voltage motor‑power cables. Apply DC24V control‑power supply with strict polarity compliance. Connect protective‑earth terminal to cabinet protective‑ground busbar.

Usage Notes Forbid hot‑plugging SERCOS fiber‑optic connectors under powered state. Create complete backup of user program before firmware upgrade or hardware replacement. Operate within published ambient‑temperature operating range. Wear anti‑static wrist straps during maintenance service. Prevent contamination from conductive dust, heavy oil mist and corrosive industrial vapors.