Description
BEGE is a renowned manufacturer of high-quality drive components and automation solutions. Known for innovation, precision, and durability, BEGE encoders are trusted in demanding industrial applications worldwide, offering reliable performance and robust construction for advanced automation systems.**Key Features and Advantages – BEGE Flange Encoder MIG Nova+ MN-080-09-2048-7**
Incremental encoder with high resolution, delivering 2048 pulses per revolution per channel for superior speed and position feedback.
Enhanced signal stability ensures precise and consistent output, minimizing errors in complex automated systems.
Robust stainless steel housing and shaft (outer diameter: 80mm; shaft diameter: 9mm) guarantee long-term durability and resistance to corrosion, ideal for harsh industrial environments.
Compliant with IEC 56B14 and a flange BCD of 65mm, ensuring seamless integration with standardized motor and machinery setups.
Dual IP rating (IP55/IP67) provides excellent protection against dust and water ingress, suited for both indoor and outdoor applications.
Wide input voltage range (5–24VDC) increases compatibility with a variety of control systems and industrial electronics.
HTL/TTL output signals (A90°B / A’90°B’) deliver versatile interfacing options for motion controllers, PLCs, and automation modules.
Supplied with a 20-meter cable, this encoder is adaptable for installations in large-scale machinery and allows flexible placement within factory layouts.
Flange thickness of 7mm assures robust mounting and alignment, supporting reliable feedback under intensive mechanical loads.**Application Possibilities:**
MIG Basic – Incremental encoder for basic speed feedback in standard automation tasks such as conveyor systems, packaging lines, and simple motor drives.
MIG Nova+ – High-resolution incremental encoder optimal for precise speed regulation, robotics, advanced conveyor systems, and packaging machinery requiring improved signal accuracy and stability.
MIG AST – Absolute encoder maintains position information even after power loss, enabling accurate position control in robotics, CNC machines, and sophisticated positioning and safety systems.

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