Product Overview
The EL1124-0030 (EL11240030) is a high-speed 4-channel digital input terminal designed for the EtherCAT I/O system, specifically engineered for 5 V DC logic levels. Featuring an exceptionally fast hardware filter of 0.05 µs, this terminal is built for B2B industrial applications that require near-instantaneous signal detection, such as high-speed counting, pulse-width modulation (PWM) analysis, and interfacing with fast CMOS or TTL-level sensors. The EL1124-0030 enables the integration of low-voltage electronic signals directly into the high-speed EtherCAT fabric without the need for signal level converters.
Hardware Architecture and Fast CMOS Technology
The EL1124-0030 architecture is centered around Fast CMOS input technology. This allows the module to detect "1" signals at voltages as low as > 2.4 V, making it fully compatible with standard TTL and 5 V CMOS logic families. The ultra-low input current of 50 µA ensures minimal loading on the signal source, which is critical when interfacing with delicate electronic circuits or high-impedance outputs.
While the terminal is physically compact (12 mm width), it provides 500 V galvanic isolation between the field potential and the E-bus. This protective barrier ensures that high-frequency noise or electrical faults on the 5 V logic side do not interfere with the primary controller or other EtherCAT modules in the segment.
Technical Specifications
| Attribute |
Specification Details |
| Model |
EL1124-0030 |
| Brand |
BECKHOFF |
| Number of Inputs |
4 |
| Nominal Voltage |
5 V DC |
| Input Filter |
Typically 0.05 µs |
| "0" Signal Voltage |
< 0.8 V |
| "1" Signal Voltage |
> 2.4 V |
| Input Current |
Typically 50 µA |
| Connection Technology |
2-wire / 3-wire |
| Current Consumption (E-bus) |
Typically 90 mA |
| Operating Temperature |
0 to +55 Celsius |
| Protection Rating |
IP20 |
| Approvals |
CE, UL, ATEX (II 3 G Ex nA IIC T4 Gc) |
Technical FAQs
How fast is the 0.05 µs filter compared to standard terminals?
A standard digital input terminal (like the EL1008) typically has a filter time of 3.0 ms. The EL1124-0030 is approximately 60,000 times faster, allowing it to capture micro-pulses that standard I/O would completely miss.
Can I use this terminal with 24 V DC signals?
No. Applying 24 V DC to the EL1124-0030 will likely damage the fast CMOS input circuitry. This terminal is strictly rated for 5 V DC nominal voltage. For 24 V applications, use the EL10xx or EL11xx series.
What is the benefit of the 3-wire connection technology?
The 3-wire technology allows you to provide a dedicated 5 V power supply and ground (GND) directly from the terminal to the sensor. This is ideal for 5 V proximity sensors or encoders that require a stable local power source to function.
Engineering & Installation Guide
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Signal Integrity: Given the ultra-fast 0.05 µs response time, the terminal is highly sensitive to electromagnetic interference (EMI). Always use shielded cables for 5 V signal lines and ground the shield at the cabinet entry point to prevent high-frequency noise from triggering false inputs.
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Power Supply Selection: Ensure the 5 V DC supply for the field side is well-regulated and decoupled. Significant ripple on the 5 V line can cross the logic thresholds (0.8 V to 2.4 V), leading to unstable signal states.
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Wiring and Termination: The terminal supports pluggable wiring (ES series), allowing for the removal of the contact block for faster maintenance. Use a screwdriver to actuate the spring clamps, and ensure a stripping length of 8 to 9 mm for a secure connection.
Engineering Advantages
The EL1124-0030 is a specialized tool for high-dynamics engineering. Its ability to process 5 V signals with sub-microsecond latency makes it a premier choice for "on-the-fly" measurement and synchronization tasks. With ATEX Zone 2 certification, it can be safely deployed in hazardous environments, such as chemical research labs or specialized fuel testing rigs. For B2B machine builders, this terminal eliminates the cost and complexity of external signal conditioning boards, providing a direct, EtherCAT-native interface for the fastest electronic signals in the system.