Description
Manufactured by BEGE, a renowned Dutch provider of high-performance drive components, this flanged encoder is engineered for industrial automation, distinguished by reliability, innovation, and robust design expertise.
Incremental Encoder MIG Nova+ is designed for precision speed feedback in automated systems, delivering higher resolution and enhanced signal stability compared to standard encoder solutions.
High signal precision with 64 pulses per revolution per channel, ensuring accurate speed feedback for sensitive control tasks in drive systems and robotics.
Superior signal stability thanks to advanced internal electronics, providing exceptionally consistent and low-noise feedback ideal for process automation and servo applications.
Extended cable length of up to 100 meters allows for flexible installation in large machinery and distributed systems without signal degradation.
Rugged stainless steel construction provides outstanding resistance against corrosion and mechanical wear, making this encoder suitable for demanding industrial environments.
Dual output interface (HTL/TTL, A90°B / A'90°B') ensures broad compatibility with modern PLCs, drive controllers, and monitoring systems.
IP55/IP67 protection class guarantees excellent resistance to dust and water, supporting reliable operation under harsh ambient conditions.
Standardized mechanical dimensions (Flange: Ø200mm, BCD 165mm, Shaft: 24mm, Flange Thickness: 9mm, IEC 90B5) for easy integration into IEC-compliant motor setups.
Typical application areas include precision speed feedback in automated production lines, conveyor systems, robotic solutions, and advanced motion control in industrial plants.
Available encoder variants:
- MIG Basic: Incremental encoder for basic speed feedback in standard automation tasks.
- MIG Nova+: Incremental encoder with higher resolution and improved stability for precise closed-loop control.
- MIG AST: Absolute encoder that retains position after power loss, ideal for position-sensitive and advanced motion control systems.

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