Description
Directly integrating into decentralized automation architectures, the Beckhoff ER2028-0001 provides robust 8-channel digital output processing in a cabinet-free form factor. This EtherCAT Box module switches 24 V DC signals with a continuous capacity of up to 2.0 A per channel, making it ideal for driving heavier actuators, solenoid valves, contactors, and indicators in aggressive industrial environments. Encased in a rugged zinc die-cast housing, the device connects directly to the high-speed EtherCAT network via shielded M8 screw-type interfaces, ensuring low-latency communication and high noise immunity without requiring an additional protective enclosure.
Key Features
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High-Current Capacity: Delivers up to 2.0 A per channel, engineered to handle ohmic, inductive, and lamp loads.
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Rugged Die-Cast Enclosure: Cast-zinc housing provides superior mechanical stability and resistance to chemicals and coolants compared to standard plastic housings.
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Robust Environmental Protection: IP65, IP66, and IP67 ingress ratings permit direct field installation in wet, dusty, or high-vibration environments.
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Short-Circuit Protection: Outputs are fully protected against short-circuits, featuring a typical limit of 15 A to protect control infrastructure.
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Efficient Field Cabling: M8 standard connections for both network and power simplify layout, installation, and field service routines.
Applications
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Machine Tooling & CNC Machining: Direct mounting on axis slides or near high-pressure coolant pumps.
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Robotic Tooling & End-Effectors: Compact profile minimizes weight on robot arms while driving pneumatic valves and vacuum grippers.
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Automotive Assembly Lines: Decentralized signal processing on conveyors, welding cells, and pneumatic manifolds.
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Packaging & Material Handling: Localized control of high-current sorting gates, diverters, and heavy-duty actuators.
Technical Specifications
| Parameter |
Specification Value |
| Manufacturer |
Beckhoff Automation |
| Model Number |
ER2028-0001 |
| Protocol / Interface |
EtherCAT |
| Number of Outputs |
8 digital outputs |
| Nominal Output Voltage |
24 V DC (-15 % / +20 %) |
| Max. Output Current |
2.0 A per channel (short-circuit proof) |
| Switching Times |
typ. TON: 200 us, typ. TOFF: 200 us |
| Short-Circuit Current Limit |
typ. 15 A |
| Current Consumption (from Us) |
120 mA |
| Auxiliary Power Current (Up) |
typ. 20 mA + load |
| Electrical Isolation |
500 V (channel/bus) |
| Protection Rating |
IP65 / IP66 / IP67 (conforms to EN 60529) |
| Operating Temperature |
-25 to +60 degC |
| Storage Temperature |
-40 to +85 degC |
| Housing Material |
Zinc die-cast |
| Dimensions (W x H x D) |
30 mm x 126 mm x 26.5 mm |
| Module Weight |
approx. 265 g |
| Shipping Weight (Calculated) |
2.0 kg |
| Approvals |
CE, UL |
Connections and Interfaces
| Interface Type |
Connector / Pin Configuration |
Functional Assignment |
| EtherCAT Bus |
2 x M8 socket, shielded, screw type |
1 x EtherCAT Input, 1 x EtherCAT Output |
| Digital Outputs |
8 x M8 x 1, 3-pin, A-coded |
Channels 1 through 8 digital output pathways |
| Power Feed-In |
1 x M8 male socket, 4-pin |
Control voltage Us (24 V DC) & Auxiliary voltage Up for load |
| Power Downstream |
1 x M8 female socket, 4-pin |
Power daisy-chain feed-through to next EtherCAT Box |
Empirical Engineering Insights
Alternative Models & Compatibility
The zinc die-cast ER2028-0001 is functionally equivalent to the plastic-housing EP2028-0001 module. For harsh operating setups containing cutting oils, weld splatter, or heavy mechanical exposure, the ER series is the direct physical upgrade path. Firmware integrations in TwinCAT remain identical, permitting straightforward drop-in exchanges in the System Manager without rebuilding the configuration tree.
Application Pitfalls & Engineering Notes
When switching inductive loads without integrated protection diodes, ensure to size the external flyback suppression correctly if cycling at high frequencies. While each channel is short-circuit proof up to 15 A peak, continuous cumulative load across all channels must not exceed the current carrying capacity of the 4-pin M8 power feed connector, which is typically capped at 4 A total. Exceeding this limit will trigger localized overheating on Pin 2 and Pin 4 of the supply plug.
Commissioning & Wiring Tips
To guarantee the IP67 sealing specification, all unused M8 ports must be sealed using industrial-grade, threaded protective caps (Beckhoff ZS3101-0001 or equivalent). During TwinCAT system configuration, verify that the auxiliary voltage supply (Up) is active; if Up is lost, the module will remain visible on the EtherCAT ring but outputs will not energize, throwing standard diagnostic flags in the TwinCAT PLC process image.
Installation Guidelines
CRITICAL WARNING: De-energize all primary control (Us) and auxiliary (Up) power supplies prior to mounting, wiring, or servicing this module. Failure to isolate power can result in accidental actuator activation, equipment damage, or electrical fault conditions.
1
Mount the zinc die-cast housing onto a flat machine surface using the two integrated 3.5 mm mounting holes. Use M3 screws tightened to a maximum torque of 1.2 Nm.
2
Securely connect the shielded M8 EtherCAT cables to the green network ports. Hand-tighten the coupling rings to secure the internal O-rings.
3
Connect the 4-pin M8 power cable supplying Us and Up. Daisy-chain to downstream nodes using the female M8 output power socket if applicable.
4
Wire the physical field loads to the 3-pin A-coded output sockets (Channels 1-8). Confirm all unused connections are capped before energizing.