Warner Electric 7105-448-007 MCS-626-2 Diffuse Reflective Photoelectric Sens 7105448007
Warner Electric 7105-448-007 MCS-626-2 Diffuse Reflective Photoelectric Sens 7105448007
Description:
The Warner Electric 7105-448-007 Photoelectric Sensor is used in industrial sensing and machine detection systems requiring reliable object detection and automation control functions. Commonly installed in conveyor equipment, packaging machinery, material handling systems, and automated production equipment. Maintenance teams, OEM manufacturers, panel builders, and system integrators use this photoelectric sensor for replacement, retrofit, and dependable industrial sensing performance.
Applications:
The Warner Electric 7105-448-007 Photoelectric Sensor is designed for industrial automation applications requiring diffuse reflective sensing, object detection, and machine control functions. It is commonly used in conveyor systems, processing equipment, packaging machinery, assembly systems, and production lines where reliable detection, positioning, and equipment monitoring are required.
Technical Specifications:
• Brand: Warner Electric
• Manufacturer Part Number (MPN): 7105-448-007
• Product Type: Photoelectric Sensor
• Model: MCS-626-2
• Sensing Principle: Diffuse Reflective
• Sensing Range: 0.1 to 6 ft.
• Input Voltage: 12–18 VDC
• Switching Function: LA/DA (Light Activated / Dark Activated)
• Output Type: NPN Open Collector
• Maximum Cycle Rate: >250 Hz
• Output Current: 250 mA
• Housing Material: Heavy-Duty Zinc Die Cast
• Protection Rating: NEMA 1, NEMA 12
• Connection Type: Integral 10 ft. Cable
• Operating Temperature Range: -22°F to +158°F (-30°C to +70°C)
• Function: Object Detection and Position Sensing
• Industrial Use: Automation and Machine Control Systems
• OEM Component: Genuine Warner Electric Replacement Part
Common Replacements:
• Warner Electric 7105-448-011 MCS-636-2 Photoelectric Sensor
• Warner Electric 7105-448-002 MCS-626 Photoelectric Sensor
• Warner Electric 7115-448-003 MCS-627 Photoelectric Sensor
Share
