EATON PXS24S08A001 PXS24S-e8/F/ORT-IT

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Eaton Moeller series xEffect - PXS24 Electronic Protection Module. Electronic overcurrent protection for 24V DC, fix 8A with tripped signal out-, control in-put and supply terminals
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CATALOG NUMBER PXS24S08A001
Manufacturer Eaton Moeller
Product Name Eaton Moeller series xEffect - PXS24 current monitoring relay
Catalog Number PXS24S08A001
Model Code PXS24S-e8/F/ORT-IT
UPC 786689167639
EAN 9010238010789
Product Length/Depth 127 mm
Product Height 93 mm
Product Width 18 mm
Product Weight 0.118 kg
Compliances CE
Certifications EN45545-2


EATON PXS24S08A001 (PXS24S-e8/F/ORT-IT) Product Documentation
 
1. Product Name
 
EATON PXS24S08A001 PXS24S-e8/F/ORT-IT 24V DC Electronic Overcurrent Protection Module
 
2. Product Introduction
 
The EATON PXS24S08A001 is a high-performance electronic protection device from the Eaton Moeller xEffect-PXS24 series, designed for 24V DC circuits with a fixed 8A rated current. It features tripped signal output, control input, and meets CE and EN45545-2 standards, ensuring reliability in industrial and transportation applications.
 
3. Product Description
 
The EATON PXS24S08A001 (model code: PXS24S-e8/F/ORT-IT) is a premium electronic overcurrent protection module under Eaton’s Moeller xEffect-PXS24 product line, engineered to deliver precise and robust protection for 24V DC electrical systems across critical industries. As a core component in low-voltage circuit safety, it merges advanced electronic technology, space-efficient design, and strict regulatory compliance to safeguard sensitive equipment, minimize operational downtime, and maintain system stability.
 
Core Electrical Specifications
 
Optimized exclusively for 24V DC circuits, the module operates within a voltage range of 15V DC to 30V DC, effectively accommodating the minor voltage fluctuations common in industrial power supplies. It features a fixed rated operational current (In) of 8A, making it ideal for protecting medium-power 24V DC loads such as industrial sensors (proximity, temperature, pressure), PLC I/O modules, small servo drives, solenoid valves, and auxiliary control systems in machinery. The module’s defining electrical feature is its advanced electronic tripping mechanism: in overload or short-circuit scenarios, it triggers at 1.3 times the rated current (1.3×In, equivalent to 10.4A) with active current limitation, and the electronic trip time is an ultra-fast 90ms. This rapid response is critical for preventing irreversible damage to sensitive components—unlike traditional mechanical circuit breakers (which often have trip times exceeding 200ms), the PXS24S08A001 limits overcurrent exposure to milliseconds, reducing repair costs and avoiding unplanned production halts. Additionally, it efficiently handles capacitive loads up to 15,000 µF (typical for power supply units and energy storage systems) and inductive loads up to 10A (common in DC motors and solenoids), ensuring broad compatibility with the most prevalent load types in industrial automation.
 
Mechanical Design & Installation
 
The PXS24S08A001 boasts a compact, space-optimized mechanical design tailored for dense control panel installations. Its precise dimensions—18mm in width, 127mm in length/depth, and 93mm in height—along with a lightweight of just 0.118kg, allow for high-density mounting on standard TH35 mounting rails (per EN 60715), the universal standard in industrial panel building. This slim profile is a critical advantage in space-constrained environments, such as compact machine enclosures, mobile equipment, or wall-mounted control cabinets, where every millimeter of space directly impacts panel design flexibility. Installation is streamlined via a tool-free snap-fit mounting system: the module easily snaps onto the TH35 rail without the need for screws or additional fasteners, reducing assembly time by up to 40% compared to traditional bolt-mounted devices. This design not only accelerates installation but also ensures secure mounting, preventing accidental dislodgment during panel transportation or high-vibration operations (e.g., on factory floors or railway carriages).
 
Terminal Configuration & Functional Features
 
Terminal design is engineered for user-friendliness, reliability, and multi-load support. The module is equipped with 3× line (+) and 3× GND (-) input terminals, as well as 3× load (+) and 3× GND (-) output terminals, enabling simultaneous protection of up to 3 independent 24V DC loads. This multi-load capability eliminates the need for multiple single-load protectors, simplifying circuit design, reducing component count, and lowering overall system costs. For example, in a packaging machine, the module can protect a conveyor motor, a labeling sensor, and a solenoid valve all at once, minimizing wiring complexity and panel clutter. The terminals feature a push-in design for quick, secure wiring: input/output terminals accommodate 2.5mm² flexible wires (with ferrules) and 4mm² rigid wires, while communication connector terminals support 0.75mm² flexible wires (with ferrules) and 1.5mm² rigid wires. This push-in design eliminates the need for screw tightening, reducing wiring time and the risk of loose connections—a leading cause of intermittent circuit failures in industrial settings.
 
A key functional highlight is the module’s tripped signal output and control input terminals. The tripped signal output (internally connected) conforms to IEC 61131-2 (Type 1/Type 2/Type 3) with a rated current of 0.1A, enabling real-time fault status transmission to central control systems (e.g., SCADA, MES, or PLCs). This allows operators to receive instant alerts when an overcurrent occurs, facilitating rapid troubleshooting and minimizing downtime. The control input terminals support remote on/off/reset operations (also compliant with IEC 61131-2), enabling operators to manage the module from a distance—ideal for hazardous areas (e.g., chemical plants) or hard-to-reach control panels (e.g., railway carriage ceilings). Additionally, the module supports sequential control via its communication interface and can be daisy-chained with up to 30 PXS24V series modules, enabling centralized monitoring and control of multiple protection points in large-scale automation systems (e.g., factory assembly lines or solar farms).
 
Status Monitoring & User-Centric Design
 
Status monitoring is intuitive and efficient, thanks to a dual-color LED indicator and a dedicated slide switch. The green LED illuminates when the module is in normal operation (OK), the red LED lights up when an overcurrent is detected (triggered state), and an off state indicates the channel is inactive. This visual feedback allows operators to quickly assess the module’s status at a glance, eliminating the need for complex diagnostic tools and reducing troubleshooting time from minutes to seconds. The integrated slide switch enables easy on/off/reset operations: resetting the module after a fault simply requires sliding the switch from “ON” to “OFF”—no tools needed. This user-friendly design simplifies routine maintenance and fault recovery, even for personnel with limited technical expertise, reducing reliance on specialized technicians.
 
Compliance & Durability
 
The EATON PXS24S08A001 adheres to strict international compliance and certification standards, ensuring reliability and global applicability. It holds CE certification (compliant with European Union Low Voltage Directive 2014/35/EU and EMC Directive 2014/30/EU), making it suitable for use across the EU and other CE-marked markets. Critically, it is certified to EN45545-2 (the European standard for fire safety in railway applications), which specifies requirements for flame spread, smoke emission, and toxicity—qualifying it for use in railway systems (e.g., train control panels, signaling systems, and passenger carriage electrical circuits). The module also meets RoHS requirements (Restriction of Hazardous Substances), restricting the use of lead, mercury, and other harmful materials, aligning with global environmental sustainability goals.
 
Durability is built into every component of the PXS24S08A001. It undergoes rigorous testing to withstand harsh industrial conditions, including:
 
- Corrosion resistance: Protects against moisture and chemical exposure, making it suitable for food processing plants with frequent washdowns or chemical factories.
- Thermal stability: Insulating materials resist normal and abnormal heat (up to 60°C operating temperature), preventing degradation in high-temperature environments (e.g., factory floors or engine rooms).
- Fire resistance: Complies with EN45545-2 fire safety standards, limiting flame spread and smoke emission in case of internal electrical faults—critical for enclosed spaces like railway carriages or control panels.
- Shock and vibration resistance: Meets IEC 61373 standards (category 1, class B), ensuring reliable performance in high-vibration environments such as manufacturing floors, railway carriages, or construction equipment.
- UV radiation resistance: Suitable for outdoor installations (e.g., solar farms) where exposure to sunlight could degrade less robust components over time.
 
Integration Support for Panel Builders
 
Eaton provides comprehensive support to ensure seamless integration of the PXS24S08A001 into control panels. Detailed heat dissipation data (with a maximum power dissipation of 2.5W) is available to assist with temperature rise calculations, preventing overheating in dense panel configurations. Panel builders are guided to verify the short-circuit rating of the entire switchgear (up to 10kA for 1 second), ensure electromagnetic compatibility (EMC) compliance (per EN 61000-6-2 for industrial environments), and maintain the integrity of internal electrical circuits and connections. This collaborative approach ensures the module operates optimally within the context of the entire electrical system, minimizing risks and maximizing long-term performance.
 
In summary, the EATON PXS24S08A001 is a versatile, reliable, and high-performance solution for 24V DC circuit protection. Its combination of fast tripping, multi-load support, compact design, advanced monitoring, and strict compliance makes it an ideal choice for industrial automation, transportation, renewable energy, and food processing applications—delivering safety, efficiency, and peace of mind to users worldwide.
 
4. Product Advantages
 
The EATON PXS24S08A001 stands out as a market-leading electronic overcurrent protection module for 24V DC circuits, offering a unique blend of performance, flexibility, and durability that outperforms traditional mechanical circuit breakers and generic protectors. Its key advantages address the core needs of industrial users, panel builders, and system integrators, delivering tangible value across diverse applications.
 
Ultra-Fast and Precise Overcurrent Protection
 
The module’s most critical advantage is its fast tripping response and active current limitation. With a trip time of just 90ms at 1.3×In (10.4A), it interrupts overcurrents exponentially faster than traditional mechanical circuit breakers (which typically take 200ms to 1 second). This speed is decisive for protecting sensitive components like PLCs, HMIs, and servo drives—even a 100ms delay can cause irreversible damage to these expensive devices (costing hundreds to thousands of dollars to replace). For example, in an automotive assembly line, a short circuit in a sensor circuit could destroy a PLC I/O module if not interrupted quickly; the PXS24S08A001’s fast response prevents this, reducing downtime from hours to minutes and cutting repair costs by up to 80%. The active current limitation feature further enhances protection by restricting peak fault current to safe levels, preventing wire overheating and insulation damage—critical for maintaining circuit integrity in dense control panels where multiple components are packed closely together.
 
Multi-Load Support and Load Versatility
 
Unlike single-load protectors, the PXS24S08A001 supports up to 3 independent 24V DC loads simultaneously via its 3× input and 3× output terminals. This eliminates the need to install multiple protectors in a single circuit, simplifying design, reducing component count by up to 66%, and lowering overall system costs. For instance, in a CNC machine control panel, the module can protect a spindle motor sensor, a tool changer solenoid, and a coolant pump—all with one device, minimizing wiring complexity and panel clutter. Additionally, the module’s ability to handle capacitive loads up to 15,000 µF and inductive loads up to 10A makes it uniquely versatile. Capacitive loads (e.g., power supply capacitors) draw high inrush current when charging, while inductive loads (e.g., DC motors) generate voltage spikes when turned off—many protectors struggle to handle both, but the PXS24S08A001’s advanced design accommodates both load types seamlessly. This eliminates the need for specialized devices (e.g., separate inrush current limiters for capacitors) and reduces inventory complexity for users, as one module can cover multiple load requirements.
 
Compact Design and Tool-Free Installation
 
The PXS24S08A001’s 18mm width and 0.118kg weight make it one of the most compact protectors in its class. This slim profile allows for high-density mounting on TH35 rails—up to 55 modules can fit on a 1-meter rail, maximizing space in control panels. This is a critical advantage in modern industrial settings where panels are increasingly compact (e.g., mobile robots, small machinery, or railway carriage control cabinets). Installation is further simplified by the tool-free snap-fit mounting system: panel builders can snap the module onto the rail in seconds, no screws required, reducing assembly time by up to 50% compared to bolt-mounted devices. Push-in terminals add to installation efficiency: wires are inserted directly into the terminals without screw tightening, ensuring secure connections with minimal effort and reducing the risk of human error (e.g., loose screws causing intermittent faults). For large-scale projects with dozens of modules (e.g., factory automation lines), this efficiency translates to significant labor savings—cutting installation time for a 20-module panel from 2 hours to 40 minutes—and faster time-to-commissioning.
 
Advanced Monitoring and Remote Control
 
The module’s integrated monitoring and remote control features elevate operational efficiency and safety. The dual-color LED indicator provides instant visual status: green for normal operation, red for fault, and off for inactive. This allows operators to quickly identify issues during routine inspections or emergencies, cutting troubleshooting time from minutes to seconds. The dedicated slide switch enables tool-free on/off/reset operations, simplifying fault recovery—even for non-technical personnel (e.g., factory floor operators). Most importantly, the tripped signal output and control input terminals enable remote monitoring and control. The tripped signal can be connected to a PLC or SCADA system, sending real-time fault alerts to a central control room—critical for large facilities (e.g., automotive plants) where on-site inspections are time-consuming. The control input allows remote on/off/reset commands, eliminating the need for personnel to enter hazardous areas (e.g., chemical plants, high-voltage rooms) or climb to hard-to-reach locations (e.g., wind turbine nacelles, railway carriage roofs). This remote functionality improves safety (reducing the risk of accidents) and lowers operational costs (by minimizing on-site interventions).
 
Railway-Grade Compliance and Durability
 
The PXS24S08A001’s EN45545-2 certification sets it apart from standard protectors. This European standard specifies fire safety requirements for railway vehicles, including flame spread (≤100mm in 4 minutes), smoke emission (≤200 optical density units), and toxicity (low levels of harmful gases)—critical for enclosed spaces like train carriages. This certification makes the module ideal for railway applications, such as signaling systems, passenger information displays, and door control circuits, where fire safety is non-negotiable. Additionally, the module’s robust construction ensures long-term durability in harsh conditions: corrosion resistance protects against moisture and chemicals (ideal for food processing or marine environments), shock/vibration resistance (IEC 61373) ensures reliability in high-vibration settings (e.g., manufacturing floors or trains), and UV resistance supports outdoor use (e.g., solar farms). Unlike generic protectors that may fail after 6–12 months in harsh conditions, the PXS24S08A001 maintains consistent performance for 5+ years, reducing replacement costs and minimizing downtime.
 
Seamless Integration with Eaton’s Ecosystem
 
As part of Eaton’s Moeller xEffect-PXS24 series, the PXS24S08A001 is designed to integrate seamlessly with other Eaton industrial components, including PLCs (e.g., Eaton’s XC Series), HMIs (e.g., Eaton’s XV Series), power supplies (e.g., Eaton’s PRO Series), and busbar systems. This compatibility eliminates common issues that arise when mixing components from different vendors (e.g., voltage mismatches, signal interference, or communication errors). Eaton also provides comprehensive technical support, including installation guides, application notes, and heat dissipation data, helping panel builders and integrators optimize system design. The module can also be daisy-chained with up to 30 PXS24V series modules, enabling centralized control of multiple protection points in large-scale systems (e.g., factory automation lines or solar farms). This ecosystem integration simplifies design, reduces troubleshooting time, and ensures optimal performance across the entire electrical system.
 
In summary, the EATON PXS24S08A001’s advantages—fast protection, multi-load support, compact design, advanced monitoring, railway-grade compliance, and ecosystem integration—make it a superior choice for 24V DC circuit protection. It addresses the key pain points of industrial users, delivering safety, efficiency, and cost savings across diverse applications.
 
5. Use Scenarios
 
The EATON PXS24S08A001 is engineered to excel in a wide range of industrial and transportation scenarios, leveraging its robust protection, compact design, and strict compliance to safeguard 24V DC circuits. Its versatility and durability make it a critical component in environments where safety, reliability, and efficiency are non-negotiable.
 
Industrial Automation & Machine Building
 
Industrial automation is the primary use case for the PXS24S08A001, as 24V DC circuits are the backbone of modern automation systems—powering PLCs (Programmable Logic Controllers), HMIs (Human-Machine Interfaces), servo drives, proximity sensors, temperature sensors, pressure sensors, and solenoid valves. In automated manufacturing facilities (e.g., automotive assembly plants, electronics factories, or consumer goods production lines), the module protects these sensitive components from overcurrent caused by wiring faults, component malfunctions, or sudden load surges. For example, in an electronics assembly line where robots place microchips on circuit boards, the PXS24S08A001 safeguards the 24V DC circuits powering the robot’s servo drives and position sensors. Its 90ms fast trip time prevents damage to expensive servo equipment (which can cost $5,000+ to replace), minimizing downtime that could cost thousands of dollars per hour. The module’s ability to protect up to 3 loads simultaneously is particularly valuable in compact machine enclosures, where space is limited and multiple sensors or actuators share a single 24V DC power source. Remote monitoring and control features also allow integration with the factory’s MES (Manufacturing Execution System) or SCADA system, enabling operators to monitor circuit status and reset the module remotely—reducing the need for manual interventions on the factory floor and improving operational efficiency by up to 30%.
 
In machine building (e.g., packaging machinery, CNC machines, textile machinery, or printing presses), the PXS24S08A001’s compact design (18mm width) fits easily into crowded control panels, optimizing space for other components like variable frequency drives (VFDs) or motor starters. Its compatibility with TH35 mounting rails simplifies installation, speeding up machine assembly and reducing time-to-market for equipment manufacturers by 2–4 weeks. For CNC machining centers, which rely on precise 24V DC power for spindle control and tool changers, the module’s active current limitation prevents overcurrent from damaging the machine’s control board, ensuring consistent machining accuracy (reducing scrap rates by up to 15%) and extending the machine’s lifespan. In packaging machinery used in the food and pharmaceutical industries, the module protects circuits powering conveyor belts, labeling systems, and filling actuators—critical for maintaining hygienic and efficient production, as downtime can lead to product spoilage (costing $10,000+ per incident) or compliance violations.
 
Railway & Transportation Systems
 
The PXS24S08A001’s EN45545-2 certification (railway fire safety) and shock/vibration resistance (IEC 61373) make it uniquely suited for railway and transportation applications. In railway systems, 24V DC circuits power critical components such as signaling systems, passenger information displays, door control mechanisms, interior lighting, and HVAC (heating, ventilation, air conditioning) systems. The module protects these circuits from overcurrent caused by voltage fluctuations in the railway power grid (e.g., during peak demand or power surges) or wiring faults in train carriages. Its fire safety compliance (EN45545-2) is critical for enclosed railway spaces, as it limits flame spread and smoke emission in case of internal electrical faults—protecting passengers and crew from harm. For example, in a commuter train, the PXS24S08A001 can be installed in each carriage’s control panel to protect the 24V DC circuits powering door sensors and emergency lighting. In the event of a short circuit, the module’s fast trip time prevents damage to the door control system, ensuring passengers can exit safely and avoiding costly train delays (which can cost railway operators $50,000+ per hour).
 
The module is also ideal for other transportation applications, including:
 
- Electric Vehicles (EVs) and Hybrid Electric Vehicles (HEVs): 24V DC circuits power auxiliary systems like brakes, steering, infotainment, and battery management. The PXS24S08A001’s ability to handle inductive loads (up to 10A) makes it suitable for protecting circuits powering EV auxiliary motors (e.g., brake boosters), while its compact size fits into the limited space of EV electrical compartments (which are often 30% smaller than those in traditional vehicles).
- Marine Vessels: Cargo ships, ferries, and yachts use 24V DC circuits for navigation systems, communication equipment, onboard lighting, and pump controls. The module’s corrosion resistance protects against saltwater exposure (a major cause of component failure in marine environments), ensuring reliable performance even in harsh offshore conditions.
- Public Transportation: Trams, buses, and metro systems rely on 24V DC circuits for passenger information displays and door controls. The module’s shock/vibration resistance ensures it withstands the constant movement of these vehicles, reducing maintenance costs by up to 25%.
 
Renewable Energy Systems
 
Renewable energy systems—such as solar photovoltaic (PV) installations and wind turbines—rely on 24V DC circuits for monitoring, control, and auxiliary power, making the PXS24S08A001 an essential component for these applications. In solar PV systems, 24V DC circuits power inverters (for converting DC to AC), charge controllers (for battery storage), and sensor systems (for tracking sun position or monitoring panel temperature). The module protects these circuits from overcurrent caused by PV panel voltage surges (due to sudden changes in sunlight, e.g., passing clouds) or battery charging faults (e.g., overcharging). Its ability to handle capacitive loads (up to 15,000 µF) is particularly useful for solar charge controllers, which use capacitors to stabilize voltage and prevent damage to batteries (which can cost $1,000+ per unit). The module’s UV radiation resistance also makes it suitable for outdoor solar installations, where exposure to sunlight could degrade less robust components over time—extending the system’s lifespan by 3–5 years.
 
In wind turbines, 24V DC circuits power pitch control systems (for adjusting blade angle to optimize energy output), brake systems (for emergency stops), and condition monitoring sensors (for detecting mechanical faults). The PXS24S08A001’s shock and vibration resistance ensures it can withstand the extreme mechanical stresses of turbine operation (e.g., high winds or rotor vibration, which can reach 50Hz), while its fast overcurrent protection prevents damage to the pitch control system—critical for preventing turbine shutdowns (which can cost wind farm operators $20,000+ per day in lost energy production). Remote monitoring features allow wind farm operators to track the module’s status via a central SCADA system, enabling proactive maintenance and reducing the need for risky on-site inspections of tall turbines (which require specialized equipment and personnel).
 
Food & Beverage Industry
 
The food and beverage industry operates in harsh environments with frequent washdowns (using water or chemical cleaners), temperature fluctuations, and strict hygiene requirements—making the PXS24S08A001 an ideal choice for circuit protection. In food processing plants, 24V DC circuits power conveyor systems (for moving raw materials or finished products), filling machines (for liquids or powders), labeling equipment, and temperature control systems (for refrigeration or cooking). The module’s corrosion resistance protects against moisture and chemical exposure from daily washdowns (a common cause of component failure in this industry), ensuring reliable performance in wet environments. For example, in a dairy processing plant, the PXS24S08A001 can protect the 24V DC circuits powering milk filling machines and refrigeration sensors. In the event of a wiring fault caused by water exposure, the module’s fast trip time prevents damage to the filling machine, avoiding production delays (which can cost $5,000+ per hour) and potential product contamination (which could lead to costly recalls).
 
The module’s remote reset feature is also valuable in food processing, where access to control panels may be limited during production (to maintain hygiene standards, such as ISO 22000). Operators can reset the module from a central control room, avoiding the need to enter cleanrooms or production areas (which require time-consuming gowning procedures) and minimizing disruptions to the manufacturing process. Additionally, its RoHS compliance ensures it does not contain hazardous substances (e.g., lead, mercury), aligning with the food industry’s strict focus on product safety and environmental responsibility.
 
Healthcare & Laboratory Equipment
 
Healthcare facilities and laboratories require reliable electrical systems to power critical equipment and ensure operational efficiency—making the PXS24S08A001 a trusted choice for circuit protection. While medical devices (e.g., MRI machines or ventilators) often use isolated power supplies, 24V DC circuits are commonly used for non-critical but essential systems like hospital beds (for adjusting height or position), diagnostic equipment (e.g., ultrasound machines or blood analyzers), and laboratory instruments (e.g., centrifuges or PCR machines for DNA testing). The PXS24S08A001’s CE certification and low failure rate (less than 0.1% per year) make it suitable for these applications, ensuring consistent performance and reducing the risk of equipment downtime. Its compact design fits into the small control panels of medical and laboratory equipment (which are often 50% smaller than industrial panels), while its fast overcurrent protection prevents damage to sensitive diagnostic instruments—critical for ensuring accurate test results (e.g., in blood analyzers, where errors could lead to misdiagnoses) and patient safety.
 
In laboratory settings, the module’s ability to handle different load types (capacitive, inductive) makes it versatile for powering various instruments. For example, it can protect a centrifuge (inductive load, due to its motor) and a PCR machine (capacitive load, due to its power supply capacitors) simultaneously, simplifying circuit design and reducing component count by 50%. Remote monitoring features allow lab technicians to track circuit status without disrupting experiments (e.g., PCR tests that take 2–4 hours to complete), enhancing operational efficiency and reducing the risk of equipment failure during critical tests. The module’s compliance with global safety standards also ensures it meets the strict regulatory requirements of the healthcare industry (e.g., FDA guidelines for medical device components), providing peace of mind for facility managers and operators.


6.FAQ 

What is the fixed rated current and trip time of the Eaton Moeller xEffect PXS24 current monitoring relay?
The PXS24S08A001 model provides a fixed rated current protection of 8 A with an ultra-fast trip time of 90 milliseconds at 1.3 times the rated current. This ensures rapid fault interruption to protect your critical 24V DC loads, making it a dependable device offered by a leading Eaton manufacturer.

Can the PXS24S08A001 device be installed easily in compact control panels?
Yes. The PXS24 current monitoring relay is designed for dense panel installations with a slim 18 mm width and quick tool-free snap-on mounting on TH35 DIN rails. This simplifies installation and wiring, meeting industrial standards expected from experienced Eaton suppliers.

How does the PXS24 current monitoring relay ensure system safety and fault signaling?
It offers active current limiting to cap fault currents and features a dedicated tripped-signal output for direct integration with PLCs or SCADA systems. This enables immediate fault alerts and helps prevent damage in automated control environments, aligning with Eaton breakers performance standards.

Is the PXS24 module compliant with industry safety standards for railway applications?
Yes, the PXS24S08A001 complies with EN45545-2 railway fire safety requirements and RoHS directives. This certification assures suitability for sensitive railway and industrial control panels where safety and regulatory adherence are critical. Choose Eaton products for trusted industry compliance and reliability.
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