Skip to content

What are you looking for?


You may also like

Schneider Electric ABL8RPS24050 Regulated Switch Mode Power SupplySchneider Electric ABL8RPS24050 Regulated Switch Mode Power SupplySchneider Electric ABL8RPS24050 Regulated Switch Mode Power Supply
Schneider Electric ABL8RPS24050 Regulated Switch Mode Power Supply
Schneider Electric ABL8RPS24050 Regulated Switch Mode Power Supply
Schneider Electric ABL8RPS24050 Regulated Switch Mode Power Supply

Schneider Electric ABL8RPS24050 Regulated Switch Mode Power Supply


Only 10 left - Selling fast

PRODUCT SKU : ABL8RPS24050

PRODUCT TYPE : Power Supplies

PRODUCT VENDOR : Schneider


  • 100% Genuine Parts – Risk-Free 30-Day Returns
  • 1-Year Warranty & Expert Support for Every Order

Product Details

The Schneider Electric ABL8RPS24050, also cataloged as the ABL8RPS24050 Regulated Switch Mode Power Supply, operates as a dedicated hardware component for continuous direct current voltage regulation and short-circuit protection within Modicon Power Supply platforms.

Hardware Specifications

Parameter Specification
Model ABL8RPS24050
Brand Schneider Electric
Origin France
Weight 0.7 kg
Dimensions 143 mm x 56 mm x 125 mm (H x W x D)
Operating Temp -25 to 50 deg C (without derating), 50 to 60 deg C (with derating)
Power Consumption 15.5 W (Power Dissipation)
Output Voltage 24 VDC (Adjustable 24...28.8 VDC)
Output Current 5 A
Rated Power 120 W
Nominal Input Voltage 100...120 VAC single phase (N-L1), 200...500 VAC phase-to-phase (L1-L2)
Input Voltage Limits 85...132 VAC, 170...550 VAC
Inrush Current 30 A
Efficiency 87 %
Temporary Boost 1.5 x In (for 4 s)
Dielectric Strength 4000 V (Input to Output), 3500 V (Input to Ground), 500 V (Output to Ground)
Protection Rating IP20 conforming to IEC 60529
Mounting Support 35 x 7.5 mm or 35 x 15 mm symmetrical DIN rail

Industrial Control & Deterministic Backplane Characteristics

The unit integrates internal firmware flash compatibility and filtering mechanisms aligned with high-density backplane bus communication velocity specifications across Modicon system architecture. Designed to sustain stable power delivery across distributed I/O density scaling racks and EtherNet/IP deterministic networks, the power stage features integrated Power Factor Correction conforming to IEC 61000-3-2. Low frequency harmonic current suppression maintains clean input power quality, preventing ripple noise interference from perturbing sensitive backplane bus communication lines and digital logic modules.

Frequently Asked Questions

Q: How does the power supply handle temporary overcurrent conditions during inductive load startup?

A: The module provides a permissible temporary current boost of 1.5 times the nominal rated current (7.5 A output) for up to 4 s before entering thermal or overcurrent protection state.

Q: What are the thermal derating constraints for mounting orientation?

A: The rated output of 5 A is fully available without derating between -25 deg C and 50 deg C in vertical mounting position A at altitudes up to 2000 m. Operating between 50 deg C and 60 deg C requires application of the thermal derating factor.

Field Installation Guidelines

Mount the module strictly in the vertical operating position on a 35 x 7.5 mm or 35 x 15 mm symmetrical DIN rail to ensure adequate natural thermal convection across the heat dissipation fins. Maintain minimum clearance above and below the unit for unobstructed airflow.

Wiring connections must follow terminal assignments: execute 3-wire input wiring (L1-L2 or N-L1 plus dedicated earth ground) using 0.5 to 4 mm2 (22 AWG to 12 AWG) copper conductors torque-tightened to screw terminals. Ensure output connections and output ground connection lines use separate rated wiring up to 4 mm2. Diagnostic relay contacts must be connected via the removable screw terminal block (2 x 2.5 mm2 maximum). Verify that input ground terminal impedance meets local electrical code requirements to guarantee proper SELV isolation performance and 3500 V dielectric insulation strength.

Additional Information

  • 100% Genuine Parts: All products are original and authentic, ensuring reliable industrial performance.
  • 30-Day Refund Guarantee: Return any in-stock item within 30 days in original, unopened packaging for a full refund (excluding shipping and fees).
  • 12-Month Warranty: Covers defects in materials or workmanship; excludes misuse, normal wear, or unauthorized modifications.
  • Worldwide Shipping: We ship via USPS, UPS, FedEx, and DHL. Delivery times vary by country and may be subject to customs or import fees.
  • Support & Contact: Technical and warranty assistance is available anytime. Contact us here: Contact.
  • Purchase Guidance: Check product specifications and compatibility carefully before ordering to ensure proper application.




Recently Viewed Products

Tech & Buying Guide

Technical Insights, Installation Guides, and Buying Tips
Safety Relays in Industrial Automation: Fundamentals, Design Standards, and Fail-Safe Architecture

Safety Relays in Industrial Automation: Fundamentals, Design Standards, and Fail-Safe Architecture

Safety relays form the bedrock of functional safety in modern factory automation, preventing catastrophic equipment failure and protecting plant personnel. While standard electromechanical relays handle basic load switching, they lack the redundant diagnostics required for high-risk industrial environments. Modern industrial automation platforms—including programmable logic controllers (PLCs) and distributed control systems (DCS)—rely on specialized safety relays to monitor field devices and isolate hazards instantly.

Read more
Voice-Activated Industrial Automation: Integrating Speech Control into PLC and DCS Architectures

Voice-Activated Industrial Automation: Integrating Speech Control into PLC and DCS Architectures

Industrial automation integrates speech recognition, IIoT protocols, and NLP with PLCs and DCS to streamline operations. By leveraging advanced edge computing, engineers enable real-time, hands-free control—allowing personnel to manage smart factory processes safely away from hazardous equipment.

Read more
Modern Industrial Automation: Transforming Safety and Efficiency in Mining Operations

Modern Industrial Automation: Transforming Safety and Efficiency in Mining Operations

Industrial automation has evolved from a simple manufacturing tool into the operational backbone of high-risk sectors. Modern mining operations increasingly rely on advanced control systems, programmable logic controllers (PLCs), distributed control systems (DCS), and artificial intelligence to address deep-underground hazards. By replacing manual labor in high-risk zones, factory automation technologies protect personnel while significantly boosting operational throughput.

Read more