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The IC695PMM345 is a motion controller module within GE Fanuc Emerson's RX3i PacSystem series. This module excels in multi-axis control and supports discrete and synchronous motor control, making it versatile for various applications.
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| Manufacturer | GE Fanuc Emerson |
|---|---|
| Product Line | RX3i PacSystem |
| Part Number | IC695PMM345 |
| Weight | 2.00 lbs (0.91 kg) |
| Module Type | Motion Controller Module |
| Multi-Axis Controller | Yes |
| Discrete Motion Control | Supported |
| Synchronous Motor Control | Supported |
| Supported Servo Types | Analog and Digital |
| Axis Capacity per Backplane | 40 Axes |
| Motion Path Planning Rating | 1 ms |
| Position Update Rate | 500 microseconds |
| Number of Slots Used | 10 |
| Total Power Used at +5V DC | 4.5 A (22.5 W) |
| Total Power Use at +3.3V DC | 11 A (35.3 W) |
| Consistent Motion Update Rate | Supported Regardless of the Number of Axes |
| Advanced CAM Features | Included |
| Distributed Architecture | Yes |
The IC695PMM345 module is designed specifically for operation within the GE Fanuc Emerson RX3i PacSystem framework and serves as a robust motion controller. It supports both analog and digital servo types, which allows for a flexible range of applications in discrete motion control and synchronous motor management.
As a multi-axis controller, this module can handle an impressive capacity of up to 40 axes per backplane. This enables complex motion tasks while ensuring accurate path planning, rated at 1 millisecond. In terms of performance, the position update rate reaches 500 microseconds, providing responsive and precise control during operation.
The IC695PMM345 utilizes 10 slots for installation and requires a total power consumption of 4.5 A from the +5V DC supply, equivalent to 22.5 watts. Additionally, its power usage at +3.3V DC is rated at 11 A, translating to 35.3 watts. This motion controller's distributed architecture guarantees a consistent update rate for motion tasks, independent of the number of axes in use. Moreover, advanced CAM features are included, which enhance its capabilities in complex motion planning and execution.