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Beckhoff EL3314-0010 EtherCAT Terminal 4-Channel High-Precision Thermocouple Input Module

Beckhoff EL3314-0010 EtherCAT Terminal 4-Channel High-Precision Thermocouple Input Module

Only 10 item(s) left in stock
  • Manufacturer: BECKHOFF

  • Product No.: EL3314-0010

  • Country of origin:Germany

  • Product Type: EtherCAT Terminals

  • Payment: T/T, Western Union

  • Weight: 2000g

  • Dimensions: 12 mm x 100 mm x 68 mm

  • Shipping port: Xiamen

  • Warranty: 12 months

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Description

Processing high-accuracy temperature measurements within distributed control networks requires robust sensor interfacing and absolute electrical isolation. The Beckhoff EL3314-0010 is a high-precision 4-channel analog input terminal designed to interface standard thermocouples directly with the EtherCAT I/O system. Featuring a high-resolution 24-bit delta-sigma analog-to-digital converter, this module delivers exceptionally fine measurement granularity, digital filtering, and software-configurable parameters. The compact 12 mm form factor interfaces seamlessly on standard DIN rails, drawing power directly from the integrated E-bus while isolating sensitive field signals from system electronics.

Features

  • Four independent, differential analog input channels dedicated to thermocouple temperature measurement.
  • High-accuracy 24-bit digitization resolution with adjustable firmware-based filtering.
  • Universal thermocouple support accommodating sensor types B, C, E, J, K, L, N, R, S, T, and U.
  • Integrated cold junction compensation (internal or external configuration) for stable measurements under varying ambient conditions.
  • Channel-by-channel open-circuit (wire break) detection to ensure operational integrity and system safety.
  • Low-latency E-bus communication interface for real-time PLC processing.

Applications

  • Precision thermal profile management in semiconductor and industrial furnace systems.
  • Multi-zone temperature tracking in chemical reactor vessels and plastic extrusion lines.
  • Real-world diagnostic monitoring in engine testing cells and environmental simulation chambers.
  • Automated HVAC and building management subsystems requiring reliable central loop temperature feedback.

Technical Specifications

Manufacturer Beckhoff Automation
Article Number / SKU EL3314-0010
Number of Inputs 4 channels
Signal Type Differential
Technology Type Temperature Measurement (Thermocouple)
Thermocouple Types Supported Types B, C, E, J, K, L, N, R, S, T, U (Default: Type K)
Voltage Measurement Range +/-78 mV
Voltage Uncertainty < +/-0.06% (at +/-78 mV, 23 degC ambient)
Resolution 24-bit (configurable representation: 0.1 / 0.01 / 0.001 degC or 10 nV per digit)
Input Filter Frequency Typ. 1 kHz
Conversion Time ~1.6 seconds to 5 milliseconds (configurable, default is ~110 milliseconds)
E-bus Current Consumption Typ. 200 mA
Electrical Isolation 500 V (E-bus / signal voltage)
Wiring Connection 2-wire method, cage clamp spring actuation
Solid Wire Section 0.08 to 2.5 mm² (AWG 28-14)
Ferruled Wire Section 0.14 to 1.5 mm² (AWG 26-16)
Stripping Length 8 to 9 mm
Operating Temperature 0 to +55 degC
Storage Temperature -25 to +85 degC
Relative Humidity 95%, non-condensing
Protection Rating IP20
Approvals / Compliance CE, UL, ATEX (II 3 G Ex nA IIC T4 Gc)
Dimensions (W x H x D) 12 mm x 100 mm x 68 mm
Net Weight 60 g
Shipping Weight (Calculated) 0.15 kg

Empirical Engineering Insights

Alternative Models & Compatibility

The EL3314-0010 features high-precision calibration over the standard EL3314, making it suitable for applications where thermal gradients must be limited to sub-degree deviations. Ensure that the controller’s TwinCAT configuration profile is set to target the specific "-0010" XML hardware definition file. Older firmware versions may read this module as a standard EL3314, disabling the 24-bit extended parameter representation.

Application Pitfalls & Engineering Notes

While the internal cold junction compensation is highly stable, placing the module adjacent to high-heat-generating units, such as system power supplies or bus couplers on the DIN rail, will introduce localized thermal drift. For absolute accuracy, insert a physical spacer terminal (such as an EL9011 or passive barrier) between the EL3314-0010 and high-load modules to ensure stable ambient air circulation.

Commissioning & Wiring Tips

Always use twisted-pair thermocouple extension cable of the matching alloy class. Run sensor cabling away from variable-frequency drive (VFD) power cables. Although the terminal incorporates a 1 kHz analog limit filter, electromagnetic noise can still bypass the delta-sigma integrator if lines are run in parallel with high-current AC paths over long distances.

Installation Guidelines

CRITICAL WARNING: Ensure the entire DIN rail system is completely de-energized before mounting, relocating, or removing any module. Working on hot-swappable networks without verified isolations can damage sensitive 5V logic contacts along the E-bus and permanently impair thermocouple calibration circuits.
1
Align the side tongue-and-groove connections of the EL3314-0010 with the adjacent EtherCAT terminal on the 35 mm DIN rail.
2
Press firmly downward until the locking mechanism securely latches onto the DIN rail profile. Verify that the bus contacts have made a clean connection.
3
Strip the thermocouple wire ends to exactly 8 or 9 mm. Insert a small screwdriver into the wire release slot to actuate the spring-loaded cage clamp.
4
Insert the conductor, release the spring tension, and pull gently on the wire to confirm physical retention. Repeat for all required channels.

Which thermocouple types are supported by the EL3314-0010?

It supports types B, C, E, J, K, L, N, R, S, T, and U, with Type K active as the default factory configuration.

What is the primary operational difference between the EL3314-0010 and the standard EL3314?

The EL3314-0010 is optimized for high-precision thermal applications, utilizing a 24-bit resolution compared to lower resolution variants, allowing for sub-millidegree digital representation.

Does this terminal require an external cold junction sensor?

No, it features internal cold junction compensation. However, external cold junction sensors can be configured via CoE parameters if required by the application layout.

How is the module powered and what is the current draw?

The module is powered directly through the E-bus (backplane) of the EtherCAT rack, drawing a typical operating current of 200 mA.

Global Express Shipping

  • Standard Delivery: 4-6 Business Days via DHL, FedEx, and UPS.
  • Express Dispatch: Same-day dispatch for in-stock orders placed before 2:00 PM (GMT+8).
  • Worldwide Coverage: Serving over 150 countries, including rapid delivery to Saudi Arabia and UAE.

Returns & Warranty

  • 30-Day Guarantee: Returns accepted for in-stock products in original, factory-sealed packaging.
  • 12-Month Warranty: Every industrial component is backed by our professional technical warranty.

Orders are processed and delivered Monday-Friday (excluding public holidays).


For full eligibility, restocking fees, and international return details, please view our official Refund & Return Policy .

TECHNICAL SPECIFICATIONS

Country of origin
Germany

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