Rockwell A-B 440H-S34015 Guardmaster Sprite Hinge Switch
The Rockwell Automation Guardmaster Sprite Hinge Switch 440H-S34015 is an essential safety device designed for industrial applications. It ensures operator safety by detecting unauthorized access to guarded areas, thereby preventing accidents and ensuring compliance with safety standards.
Switch Type:Safety Interlock Switch
Model Number:440H-S34015
Brand:Rockwell Automation
Operating Voltage:24 VDC
Contact Configuration:Normally Open (NO)
Material:Stainless Steel
IP Rating:IP67
Switch Action:Positive Opening Mechanism (POM)
Environmental Operating Temperature:-20°C to +80°C
Certifications:CE, UL, CSA
The Rockwell Automation 440H-S34015 Guardmaster Sprite Hinge Switch is meticulously engineered to meet the stringent demands of industrial safety requirements. With its robust construction featuring a stainless steel housing and a polyamide actuator, it ensures durability and reliability even in harsh environmental conditions.
This hinge switch is designed to provide accurate and consistent performance, making it an ideal choice for safeguarding machinery and equipment. Its IP67 protection rating guarantees that it can withstand dust and water ingress, making it suitable for use in a wide range of applications including food processing, automotive manufacturing, and more.
The switch operates within a broad temperature range from -25°C to +60°C, ensuring optimal functionality in both cold and hot environments. It supports input voltages between 10-24 VDC and can handle up to 1 A of output current, providing flexibility for various industrial setups.
Installation of this hinge switch is straightforward, thanks to its easy-to-mount design. The normally open configuration allows for seamless integration into existing safety circuits, enhancing the overall safety and productivity of your operations.
Trust in Rockwell Automation’s reputation for quality and innovation. Choose the 440H-S34015 Guardmaster Sprite Hinge Switch to protect your workers and optimize your production processes.












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