Description
**Product Name:** BEGE Flanged Encoder MIG Nova+ MN-350-48-0016-12
**Key Features & Benefits:**
• High-resolution incremental encoder, optimized for precise speed and position feedback in demanding automation tasks – ensures greater accuracy and effective machine regulation.
• Suitable for advanced motor control, robotics, and conveyor systems where enhanced feedback accuracy leads to improved process stability and efficiency.
• Output: A90°B / A’90°B’ HTL/TTL compatible, facilitating seamless integration with a wide range of industrial controllers and PLC systems.
• Stainless steel housing, outer diameter 350mm, flange BCD 300mm; robust, corrosion-resistant design ideal for harsh and washdown environments in food, pharma, or heavy industry.
• Shaft diameter 48mm and IEC standard 180B5 ensure compatibility with a broad spectrum of industrial motors and machinery.
• Provides 16 pulses per channel per revolution – suitable for applications requiring moderate resolution and reliable incremental feedback.
• Supported cable length up to 50 meters, allowing flexible installation in large automated systems without signal degradation.
• IP55/IP67 protection class: Ensures reliable operation even in dust, moisture, and high-washdown environments.
• Power supply 5–24VDC: Wide voltage compatibility simplifies integration and supports industry-standard applications.
**Application Areas:**
• MIG Basic: Entry-level incremental encoder for standard speed feedback in basic automation systems like conveyors and simple positioning tasks.
• MIG Nova+: High-resolution incremental encoder used for precise speed and position control in advanced automated production lines, packaging, or material handling systems. The improved signal stability is key for dynamic process automation and robotics.
• MIG AST: Absolute encoder variant retains position data even after power loss, making it ideal for precise positioning, safety-crucial applications, and complex closed-loop control systems in robotics, warehouse automation, and more advanced motion control environments.

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