ABB DO562 1SAP230900R0000 S500-eCo Digital Output Module
ABB DO562 1SAP230900R0000 S500-eCo Digital Output Module
ABB DO562 1SAP230900R0000 S500-eCo Digital Output Module
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ABB DO562 1SAP230900R0000 S500-eCo Digital Output Module

  • Manufacturer: ABB

  • Part Number: DO562 1SAP230900R0000

  • Condition:New with Original Package

  • Product Type: Digital Output Modules

  • Country of Origin: Sweden

  • Payment:T/T, Western Union

  • Shipping port: Xiamen

  • Warranty: 12 months

ABB DO562 S500-eCo Digital Output Module

The ABB DO562, also cataloged as the DO562 Digital Output Module, operates as a dedicated hardware component for switching discrete DC loads within AC500-eCo PLC networks. Engineered to convert logical internal commands into physical voltage state changes, the assembly drives field actuators, solenoids, and interposing relays via 16 transistor switching elements configured in a unified electrical group.

Hardware Specifications

Parameter Specification
Model DO562 (Part Number: 1SAP230900R0000)
Brand ABB
Origin China
Weight 0.16 kg net (0.219 kg gross)
Dimensions 34 mm x 135 mm x 75 mm (W x H x D)
Operating Temp 0 to +60 deg C (horizontal mounting), 0 to +40 deg C (vertical mounting)
Power Consumption 1.4 W maximum power dissipation
Channels 16 digital transistor outputs
Output Type Transistor (DC switching, 1-wire configuration)
Output Voltage 24 VDC rated (operating range: 20.4 to 28.8 VDC)
Output Current Maximum 0.5 A per channel
Electrical Isolation Galvanic isolation between output group and logic circuit
Channel Grouping 1 group of 16 channels
Overvoltage Threshold Clamps surge voltages up to 35 VDC for 0.5 seconds
Visual Indicators 1 yellow LED per channel for output state verification
Degree of Protection IP20

Industrial Control and Network Integration Technical Attributes

The module utilizes high-density I/O scaling to compress 16 switching circuits into a 34 mm slim form factor, optimizing spatial efficiency across decentralized automation backplanes. The internal logic communicates directly with the host controller through the S500-eCo bus architecture, verifying firmware flash compatibility profiles during the initial boot sequence.

When integrated into Profinet or EtherNet/IP deterministic networks via an upstream bus coupler, the hardware executes output updates based on fixed bus cycles, eliminating transmission lag. Physical load distribution relies on a single process supply input terminal (UP) referenced to a common zero-volt terminal (ZP). To safeguard the output circuits against overcurrent conditions, you must mount an external 3 A fast-acting fuse in the power loop, which protects the internal solid-state components during direct short-circuit events before thermal degradation occurs.

Frequently Asked Questions

Q: Does the module feature internal short-circuit protection for individual channels?

A: No, the module requires the installation of an external 3 A fast-acting fuse on the 24 VDC process supply line to protect the transistor array. Individual channel electronic fusing is not embedded in this specific S500-eCo hardware architecture.

Q: Can the DO562 outputs be connected in parallel to increase the total current drive capability?

A: No, parcellation of transistor outputs to drive a single high-current load is not supported due to microscopic switching delays between channels, which can cause instantaneous overcurrent failure on the fastest-responding transistor.

Q: What is the impact of vertical DIN-rail mounting on the environmental specifications of this module?

A: Vertical mounting restricts natural convection air circulation across the housing vents. Consequently, you must derate the maximum operating ambient temperature limit to +40 deg C, down from the standard +60 deg C horizontal rating.

Field Installation Guidelines

  • DIN-Rail Mounting Stability: Fix the module firmly onto a standard symmetric TH35 DIN rail. Engage the rear locking slide completely to ensure resistance against mechanical vibration and shock.
  • Shielding and Grounding Standards: Route all DC output signal conductors away from high-voltage AC cabling. Ensure the functional earth connection of the AC500-eCo terminal block connects directly to the central panel earth bar using a low-impedance conductor.
  • Wiring Configurations: Connect field loads using a 1-wire configuration, running the positive switched line from the module terminal and terminating the return side directly at the common ZP distribution block.
  • Thermal Management: Maintain a minimum clear space of 50 mm above and below the module housing to prevent obstruction of natural convection cooling currents.
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