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The D320LNKW from Eaton Cutler-Hammer is a communication interface module designed for use with the D320 PLC series. It facilitates the connection of up to 32 units per loop at a transfer speed of 0.5 Mbps over a distance of 800 meters, making it suitable for extensive control applications.
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| Manufacturer | Eaton Cutler-Hammer |
|---|---|
| Product Type | Communication Interface |
| Product Line | D320 PLC |
| Part Number | D320LNKW |
| Weight | 0.50 lbs (0.23 kg) |
| Number of Units per Loop | 32 units |
| Transfer Speed | 0.5 Mbps |
| Transfer Distance | 800 m |
| Cable Compatibility | Co-axial cable |
| Breakdown Voltage | 1500V AC |
| Minimum Operating Temperature | 0°C |
| Maximum Operating Temperature | 55°C |
| Minimum Storage Temperature | -20°C |
| Maximum Storage Temperature | 70°C |
| Installation Altitude | 1000 m |
| Relative Humidity | 5 to 95% (Non-Condensing) |
The Eaton Cutler-Hammer D320LNKW communication interface is engineered to provide seamless connectivity for control applications within the D320 PLC series. Capable of supporting up to 32 units within a single communication loop, it ensures reliable data transfer rates of 0.5 Mbps. This module is designed to operate efficiently over distances reaching 800 meters, allowing for extensive implementations in large-scale setups.
This interface is optimized for use with coaxial cables, ensuring compatibility and stability in signal transmission. Designed to withstand high voltage conditions, it has a breakdown voltage rating of 1500V AC, making it suitable for various industrial environments. The operational temperature range extends from 0°C to a maximum of 55°C, allowing this module to function effectively across typical industrial environments. For storage, it remains robust in temperatures from -20°C to 70°C.
With a specified installation altitude of up to 1000 meters, this communication interface adapts well to different installation conditions. The D320LNKW is also engineered to maintain performance in relative humidity levels between 5 and 95%, provided that the environment remains non-condensing. It is an essential component for ensuring efficient communication and control in automated systems.