Phoenix Trio-Diode Redundancy Module 2866514 – High-Performance Backup Solution for Industrial Control Systems
The Phoenix Trio-Diode/12-24DC/2×10/1×20 2866514 Redundancy Module is a critical component for enhancing safety and reliability in industrial control systems. It is designed to ensure continuous operation and prevent system failures by providing redundant protection against overvoltage and overcurrent conditions.
Detailed content
Nominal Input Voltage Range:12 V DC to 24 V DC
Nominal Output Current:20 A + 10 A
Power Loss Nominal Load Max:6 W (at IOUT = 10 A)
Net Weight:0.75 kg
Connection Method:Screw Connection
Height:84 mm
Width:62 mm
Depth:102 mm
Certifications:CE, UL, CSA
Engineered with precision for industrial environments, the Phoenix Trio-Diode Redundancy Module 2866514 is a high-performance solution for backup power needs in control systems. It ensures operational continuity by offering a robust dual-channel diode array design, which safeguards against overvoltage and short-circuit events.
With its wide input voltage range of 12V DC to 24V DC, this module is versatile enough to integrate seamlessly with various industrial power sources, enhancing system reliability across different applications.
Featuring a maximum output capacity of 30A (with 20A available from each channel and an additional 10A from one channel), it supports high-demand applications without compromising on performance or safety.
The module’s design incorporates advanced thermal management features, ensuring efficient heat dissipation and maintaining optimal operational temperatures, crucial for long-term reliability and system uptime.
Made from high-quality materials, the Phoenix Trio-Diode Redundancy Module is built to withstand harsh industrial conditions, making it a durable and reliable choice for mission-critical operations.
Easy to install and maintain, the screw connection method allows for quick integration into existing systems without the need for specialized tools or equipment, streamlining installation processes and reducing downtime.