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The 1783-ETAP2F is an industrial Ethernet/IP tap module built for reliable network communication. It features a single 10/100 Mbps auto-negotiating RJ45 copper port alongside dual 100 Mbps full-duplex fiber optic interfaces. For flexible enclosure mounting, this device can be installed horizontally or vertically on standard DIN rails.
Allows for a high-performance ring capability (make/break < 3 ms), complete with diagnostics and fast recovery to lower downtime
Supports IEEE 1588 precision time protocol for precise time synchronization and Quality of Service to help prioritize data transmission
Includes open standard technology which is available to 3rd party vendors and allows EtherNet/IP interoperability
1783-ETAP2F is a completely independent network device that does not install to any specific chassis backplane and naturally does not draw any current from it. The system operation of this tap module relies entirely on a separate external power supply. The device supports a nominal input voltage of 24 Volts DC, with a wide rated allowable voltage fluctuation range from 20.4 to 27.6 Volts DC. Under standard power supply conditions, the maximum current consumption is 260 milliamps, and its corresponding maximum power consumption and maximum power dissipation are strictly locked within 6.24 Watts, delivering extremely high energy utilization efficiency and reducing heat generation inside the control cabinet.
This device supports flexible 35 millimeter DIN rail mounting, or it can be directly mounted to an enclosure plate using panel screws. The device itself has no orientation limitations, supporting flexible placement in both horizontal and vertical directions, which brings great convenience to compact field space planning. To ensure proper operation of the module and quality of connection, specific installation clearances must be strictly followed on site.
Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description.
Allen Bradley 1783-ETAP2F 3 Port EtherNet/IP Tap Manuals, Datasheets, Drivers, Link
Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description.
Automotive Manufacturing
Connects robotic welding cells on assembly lines to ensure continuous uptime during communication line breaks.
Oil and Gas Refining
Monitors critical pipeline valves and storage tank levels safely in hazardous environments prone to electromagnetic interference (EMI).
Pharmaceutical Production
Integrates cleanroom packaging machinery and batching systems while maintaining strict data integrity and network logging.
Chemical Processing
Manages safety instrumented systems (SIS) and reactor monitoring equipment across large, sprawling plant layouts.
Power Generation and Utilities
Links wind turbine towers or solar array tracking systems to a central control room over extended distances.
Pulp and Paper Mills
Connects continuous drying machines and paper rollers where long cable runs and moisture require fiber optic insulation.
An external, independent power supply providing 20.4 to 27.6 Volts DC must be strictly provided, and never attempt to connect the device to a chassis backplane. While it allows flexible horizontal or vertical mounting, you must ensure an open clearance of at least 7.62 centimeters on the bottom and 2.54 centimeters on all remaining sides for proper heat dissipation and wiring.
For multi mode fiber connections, a straight clearance of at least 5.08 centimeters must be reserved in front of the optical ports to comply with the cable bending radius, and the insertion loss per connection must be kept within 0.75 dB to guarantee signal quality over the maximum 2 kilometer transmission distance. Additionally, operate the device within its rated open enclosure temperature range of minus 25 to plus 60 degrees Celsius, and utilize the physical surface DIP switches to accurately configure the desired network mode.
Allen Bradley 1783-ETAP2F is a 3 port EtherNet/IP network tap module introduced by Rockwell Automation specifically for harsh industrial environments. This device serves as a core component within the Allen-Bradley industrial network architecture. It is primarily used to address the challenge where traditional single port industrial equipment such as variable frequency drives, servo drives, distributed I/O, and legacy PLCs cannot directly connect to high reliability ring networks. Through this module, users can achieve seamless integration with advanced industrial Ethernet architectures without the need to replace their non-ring devices.
What kind of device is the CP515 1783-ETAP2F commonly used on industrial floors?
This is a 3 port industrial Ethernet network tap module built for harsh industrial environments, primarily used to seamlessly connect single port industrial equipment into an industrial Ethernet backbone network.
What network interfaces do we need to confirm when purchasing the CP515 1783-ETAP2F?
This device features one copper local port supporting 10 to 100 megabits per second auto negotiation and two multi mode fiber optic interfaces supporting 100 megabits per second full duplex mode.
How should engineers use products like the CP515 1783-ETAP2F during network configuration?
Users can connect the module in series to the main ring network of a control system through its dual fiber interfaces, and then route a network cable from the single local copper port to connect local field equipment such as variable frequency drives.
What field communication issues does configuring the CP515 1783-ETAP2F in a control system primarily resolve?
It addresses the challenge where traditional single port field industrial equipment cannot directly participate in high reliability circular redundancy networks, eliminating the need for users to replace existing non ring devices.
Which network topologies does the CP515 1783-ETAP2F support during field topology planning?
This device supports device level ring topologies, and it can also be perfectly applied in traditional linear daisy chain topologies and star topologies.
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