Description
BEGE Flanged Encoder MIG Nova+ MN-120-09-0064-7Key Features and Benefits:
• Incremental encoder with high resolution and superior signal stability for precise control in automated industrial systems.
• Offers 64 pulses per revolution per channel, enabling accurate speed monitoring and position feedback in dynamic applications.
• Broad supply voltage range (5–24 VDC) ensures flexible integration with a wide array of controllers and PLC systems.
• Dual output (A90°B / A'90°B') supports both HTL and TTL interfaces, providing compatibility across modern industrial signal standards.
• Durable aluminium housing (outer diameter: 120 mm) for optimized thermal management and robust mechanical protection even in harsh environments.
• IP55/IP67 protection ensures reliable operation under dust, water jets, or temporary immersion, ideal for demanding factory and process automation.
• 15-meter shielded cable allows for flexible installation over extended distances without compromising signal integrity.
• Standardized mechanical interfaces (Flange BCD: 100 mm, Flange thickness: 7 mm, Shaft: 9 mm, IEC norm: 56B5) guarantee straightforward assembly on motors and geared units. Application Possibilities:
• Suited for high-precision speed and position feedback in conveyors, robotics, packaging machines, and automated production lines.
• Enhanced signal stability and resolution make it ideal for synchronization tasks and high-performance servo drive feedback.
• Reliable performance even in challenging industrial settings thanks to rugged aluminium construction and high ingress protection ratings.
• Perfect for sectors requiring detailed motion control and uptime in automation, such as material handling, food processing, and logistics. Encoder Types Overview:
• MIG Basic: Incremental encoder for basic speed feedback in standard automation tasks.
• MIG Nova+: Incremental encoder with high resolution and enhanced signal stability, suitable for precise regulation in automated systems.
• MIG AST: Absolute encoder that retains position after power loss, used for exact positioning and advanced control setups.

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