Product Details
The ABB DO571 1TNE968902R2202, also cataloged as the DO571 Digital Output Module, operates as a dedicated hardware component for discrete state manipulation within Distributed Automation I/Os networks. Configured for switching physical isolation loops, the hardware routes up to 8 relay outputs operating over mixed electrical potentials. It handles cyclic load processing between host automation logic configurations and external execution points, maintaining a galvanic threshold via integrated structural relays under an explicit internal voltage source.
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | DO571 1TNE968902R2202 |
| Brand | ABB |
| Origin | Germany |
| Weight | 0.138 kg |
| Dimensions | 135 mm x 74 mm x 34 mm |
| Operating Temp | 0 to +60 deg C |
| Power Consumption | 4.5 W |
| Number of Digital Outputs | 8 |
| Output Type | Relay |
| Output Voltage Type | AC / DC |
| Output Voltage Range | 24 to 230 V |
| Output Voltage Maximum | 195.5 to 276 V |
| Output Current | 2 A per channel |
| Connection Type | Pluggable |
| Degree of Protection | IP20 |
| Supply Voltage | 20.4 to 28.8 V DC |
| Storage Temperature | -40 to +70 deg C |
Backplane Bus Communication Velocity Licences and I/O Density Scaling
The internal logic card architecture maps the 8 mechanical contact arrays to independent bit registers within the host PLC chassis. When configuring extensive local nodes demanding high-speed synchronization, system engineering must match module placement profiles with active backplane bus communication velocity licences to maintain fixed scan cycle integrity. This optimization allows flexible I/O density scaling across adjacent eCo-series frames without introducing tracking register propagation delays or disrupting deterministic processing schedules during high-frequency relay state transitions.
Frequently Asked Questions
Q: What are the physical constraints and electrical hazards of hot-swapping the DO571 module?
A: This module does not support live hot-swapping functionality. The primary 20.4 to 28.8 V DC supply lines and all external loop loads up to 240 V AC must be fully isolated before extracting the pluggable terminal blocks to prevent contact arcing, logic errors, or permanent circuit board component degradation.
Q: How does the module react if the external switching voltage reaches the maximum 276 V limit?
A: The module accommodates transient peaks up to 276 V across the open relay poles. Continuous exposure to voltages above this threshold compromises internal trace insulation paths and can induce premature contact welding or dielectric degradation across adjacent channels.
Q: Are the 8 relay channels sharing a single common line or are they isolated from each other?
A: The technical matrix demands referencing the wiring diagrams for grouped commons. Exceeding the combined 2 A current distribution limit per block can trace thermal faults onto the pluggable connection interface.
Field Installation Guidelines
Mount the 0.138 kg assembly onto a standard symmetrical DIN rail secured within an IP20-rated, ventilated industrial panel structure. Ensure that the DIN rail framework is directly bonded to the primary station copper earth bar using a low-impedance connection path to mitigate noise induction. Route all high-voltage inductive output lines (up to 240 V AC) through distinct wireways separated from low-voltage DC communication bus cables to suppress magnetic cross-talk. Maintain standard air spacing above and below the 135 mm x 74 mm x 34 mm housing boundaries to facilitate heat dissipation within the bounded 0 to +60 deg C operational threshold.
Additional Information
- 100% Genuine Parts: All products are original and authentic, ensuring reliable industrial performance.
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