ОПИСАНИЕ ПРОДУКТА
SCHNEIDER ELECTRIC XAPE305 - Industrial Control Station Enclosure
The SCHNEIDER ELECTRIC XAPE305 is a robust industrial control station enclosure designed to house and protect Harmony XB4/XB5 series control and signaling units. This component facilitates the integration of pushbuttons, pilot lights, and selector switches into a centralized, protected interface for machine operation, process control, and safety applications. It provides a durable housing solution for critical human-machine interface (HMI) elements in demanding industrial environments.
Technical Specifications:
- SERIES/FAMILY: Harmony XAP (Metal Control Stations)
- COMPONENT TYPE: Industrial Control Station Enclosure
- ELECTRICAL SPECS: The enclosure is passive electrical ratings apply to internal components. Compatible with control and signaling units rated up to 600VAC/DC and 10A (typical for contact blocks).
- MECHANICAL/PHYSICAL:
- MATERIAL: Die-cast zinc alloy or aluminum
- FORM FACTOR: Compact, rectangular enclosure for surface mounting
- OPERATOR CUT-OUTS: Configurable, typically 1 to 5 operator cut-outs (e.g., 22mm or 30mm diameter)
- TORQUE: Not Applicable (passive enclosure)
- SPEED: Not Applicable (passive enclosure)
- SHAFT TYPE: Not Applicable (passive enclosure)
- INTERFACE/CONTROL:
- COMMUNICATION PROTOCOLS: Not Applicable (passive enclosure)
- I/O: Not Applicable (passive enclosure)
- FEEDBACK: Not Applicable (passive enclosure)
- ENVIRONMENTAL/MOUNTING:
- IP RATING: IP65, IP66, IP67, IP69K (depending on specific configuration and installed components)
- NEMA RATING: NEMA 4, 4X, 12, 13 (depending on specific configuration and installed components)
- COOLING METHOD: Natural convection (passive enclosure)
- MOUNTING STYLE: Surface mount via integrated fixing holes
- COMPATIBILITY/APPLICATION: Compatible with SCHNEIDER ELECTRIC Harmony XB4 and XB5 series pushbuttons, selector switches, pilot lights, and emergency stop operators. Suitable for industrial machinery, control panels, process automation, and building management systems requiring local control and signaling.