EtherCAT Terminal, 2-channel digital output, 24 V DC, 2 A, TwinSAFE, TwinSAFE Logic EL2912

ZAR 0.00
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SKU
EL2912
Connection technology: 1-/2-wire Number of outputs: 2 Max. output current: 2 A Protocol: TwinSAFE/Safety over EtherCAT Fault response time: ≤ watchdog time (parameterizable) Current consumption power contacts: load-dependent Current consumption E-bus: typ. 200 mA Installation position: horizontal Safety standard: EN ISO 13849-1: 2015 (Cat. 4, PL e) and EN 61508: 2010 (SIL 3) Weight: approx. 55 g IP protection rating: IP20 Design form: compact terminal housing with signal LEDs Material: polycarbonate Dimensions (W x H x D): 12 mm x 100 mm x 68 mm Installation: on 35 mm DIN rail, conforming to EN 60715 with lock Side by side mounting by means of: double slot and key connection Marking: labeling of the BZxxx series Wiring: solid conductor (e), flexible conductor (f) and ferrule (a): spring actuation by screwdriver Connection cross-section: s*: 0.08…2.5 mm², st*: 0.08…2.5 mm², f*: 0.14…1.5 mm² Connection cross-section AWG: s*: AWG 28…14, st*: AWG 28…14, f*: AWG 26…16 Stripping length: 8…9 mm Current load power contacts: Imax: 10 A
The EL2912 TwinSAFE component is a digital output terminal. It has two fail-safe outputs with up to 2 A. The outputs are controlled by a TwinSAFE Logic-capable component via FSoE. The EL2912 has safety parameters to specifically adapt the functionality to the respective safety requirements. Thus, for example, a test of the outputs can be configured with fine granularity in order to be able to detect cross-circuits among other things and to react appropriately. In addition, standard outputs can be activated for the EL2912. As a result, corresponding standard outputs are available in parallel and internally ANDed with the safe outputs of the EL2912. The safe output signals, which are controlled by a TwinSAFE Logic, thus issue the safe release for the standard signals, which can then be triggered by the non-safety oriented control system independently of the cycle of the safety controller and FSoE. This allows faster switching times of the outputs, provided that the safety controller issues the necessary release for the output. The safety parameters are not stored directly on the component, but are transmitted to the input terminal via a TwinSAFE Logic-capable component when the safety application is started. This simplifies service procedures, because in this case the component can simply be replaced. The safety-relevant parameters are transferred to the new component when the safety application is restarted. A further highlight of the EL2912 is the integration of the functionality of the EL6910 TwinSAFE Logic. The EL2912 can thus also be used as a safety controller at any time. Thus, for example, the output signals can be prepared directly on the EL2912 before they are actually output. The range of functions corresponds to that of the EL6910. The only difference at this point is the limitation of the number of possible safe connections to 128. Apart from that, all the advantages of the new generation of safety controllers can be used (see EL6910 customizing, incremental download, analog value processing, etc.). Special features EL2912: 2 safe outputs with 2 A integrated TwinSAFE Logic (functionality similar to the EL6910) up to 128 safe connections fine granular configuration of the test pulses of the individual output channels standard outputs can be activated with automatic ANDing with a safe output signal For applications without integrated TwinSAFE Logic, the EL2912-2200 can be used. Special features EL2912-2200: 2 safe outputs with 2 A fine granular configuration of the test pulses of the individual output channels standard outputs can be activated with automatic ANDing with a safe output signal TwinSAFE Logic not integrated
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