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The Schneider C400/10/1/1/1/00 is a PacDrive C400 Motion Controller used to coordinate machine control and multi-axis motion functions in automated equipment. It combines machine sequencing with motion coordination, allowing a central controller to manage synchronized movements across servo-driven axes.
The controller is suited to machines where several motion axes must operate according to a coordinated sequence. Typical examples include packaging machinery, material handling systems, assembly equipment, and other automated machines that require precise interaction between motion profiles and machine logic.
Within a PacDrive architecture, the C400 acts as the central control element. It processes the machine application, manages motion commands, and exchanges operating information with connected drives, I/O devices, and other system components.
For machine commissioning and maintenance, the controller is used to coordinate programmed operating sequences and monitor the behavior of the motion system. Correct application configuration, communication, axis setup, and I/O assignment are important when commissioning or replacing the controller.
| Parameter | Specification |
|---|---|
| Manufacturer | Schneider Electric |
| Model | C400/10/1/1/1/00 |
| Product Family | PacDrive C400 |
| Product Type | Motion Controller |
| Primary Function | Machine control and coordinated motion control |
| System Role | Central motion and machine controller |
| Application | Multi-axis machine automation and motion systems |
| Dimensions | 180 × 120 × 75 mm |
| Weight | 3.22 kg |
The C400 operates as the central processing unit of a PacDrive motion-control system. The machine application defines operating sequences, axis movements, synchronization requirements, and interactions with field devices.
Machine Program → C400 Motion Controller → Motion / Drive Network → Servo Drives & Motors → Machine Mechanisms
At the same time, the controller exchanges information with sensors and I/O devices to determine the current machine state. Feedback from the motion system and field devices is processed together with the programmed sequence so that the controller can issue the next machine or motion command.
For coordinated applications, the controller can manage relationships between multiple axes rather than treating each motor as an independent device. This allows machine functions such as synchronized positioning, indexing, coordinated transport, and repeated motion sequences to be handled from the central control application.
The C400 occupies the central controller layer of the PacDrive system. It connects machine logic, motion coordination, drive control, and field-level information into a common automation structure.
Operator / HMI → PacDrive C400 → Motion Network → Servo Drives → Servo Motors / Mechanical Axes
| System Element | Function |
|---|---|
| HMI / Operator Panel | Provides machine commands, status information, and settings |
| PacDrive C400 | Executes machine logic and coordinates motion functions |
| Motion Network | Exchanges control and status information with motion devices |
| Servo Drives | Controls connected servo motors according to controller commands |
| Servo Motors | Produces controlled mechanical movement |
| I/O Modules | Exchanges discrete and process signals with field devices |
| Sensors | Provides machine-position and operating feedback |
| Machine Mechanisms | Performs the physical production or handling operation |
The controller therefore serves as the link between the machine application and the physical motion system, while the drives handle the electrical power conversion required by the motors.
| Application | Typical Use |
|---|---|
| Packaging Machinery | Coordinated servo axes and machine sequencing |
| Filling Machines | Synchronized motion between machine stations |
| Labeling Equipment | Precise positioning and coordinated transport |
| Assembly Machinery | Multi-axis positioning and sequence control |
| Material Handling | Servo-controlled transport and indexing |
| Printing Machinery | Coordinated motion between rollers and mechanisms |
| Automated Production | Centralized machine and motion control |
| Pick-and-Place Systems | Multi-axis positioning and synchronized movement |
| Component | Function |
|---|---|
| Schneider PacDrive Servo Drives | Converts controller commands into motor control |
| Schneider Servo Motors | Provides the mechanical motion for machine axes |
| PacDrive I/O Modules | Interfaces machine sensors and actuators |
| Machine HMI | Provides operator commands and machine status |
| Position Sensors | Provides machine and axis position feedback |
| Safety System | Handles machine safety and protective functions |
| Industrial Communication Network | Exchanges control and diagnostic information |
| Mechanical Transmission | Transfers motor movement to machine mechanisms |
| Model / Product Family | Product Type | Typical Application |
|---|---|---|
| Schneider PacDrive C400 | Motion Controller | Centralized machine and motion control |
| Schneider PacDrive Controller | Motion Controller | Multi-axis automation |
| Schneider PacDrive Servo Drives | Servo Drive | Servo motor control |
| Schneider PacDrive Servo Motors | Servo Motor | Machine-axis motion |
| Schneider PacDrive I/O | I/O System | Machine signal interfacing |
| Schneider PacDrive 3 | Motion Control Platform | Coordinated machine automation |
The C400 is suited to automated machines that require coordinated motion together with conventional machine sequencing, particularly applications using multiple servo-controlled axes.
The controller processes the programmed machine sequence and motion relationships, then communicates the required commands to the associated motion and drive system. This allows multiple axes to operate according to a coordinated machine sequence.
The existing application, axis configuration, communication setup, I/O assignments, and controller configuration should be recorded and verified before commissioning the replacement. The replacement should then be tested progressively, beginning with individual functions and axes.
Unexpected behavior can result from incorrect application configuration, axis parameters, communication settings, I/O assignments, feedback conditions, or drive configuration. These elements should be checked systematically before returning the machine to production.