Description
Manufactured by BEGE, a renowned Dutch specialist in high-quality drive technology, known for robust performance and innovative industrial automation solutions.
The MIG Nova+ is an incremental encoder with a high resolution of 1024 pulses per revolution, offering enhanced signal stability for precise control in automated systems.
Equipped with a 160mm outer diameter flange (IEC 71B5) and 14mm shaft, and featuring a 7mm flange thickness and 130mm flange bolt circle diameter (BCD), this encoder supports easy integration into standard industrial motors and machinery.
Constructed with a stainless steel housing, ensuring outstanding resistance to corrosion, mechanical stress, and harsh operating environments, making it suitable for demanding industrial applications.
Provides both HTL (High Transistor Logic) and TTL (Transistor-Transistor Logic) output signals (A90°B / A'90°B'), supporting flexible connection to a wide range of controllers and PLCs for optimal compatibility.
Wide input voltage range (5–24VDC) ensures versatile integration and stable operation, even in electrically noisy environments.
Supplied with a robust 5-meter cable for easy and reliable installation at a distance from the control system, ideal for large machinery or hard-to-reach locations.
Certified to IP55/IP67, the encoder is dust-protected and rated for temporary immersion, suitable for both indoor and outdoor industrial applications.
Application focus: Perfect for precise speed and position feedback in high-accuracy automated systems such as production lines, robotics, conveyor systems, and packaging machinery.
Benefit: The high resolution and signal stability of the MIG Nova+ allow for increased process quality, reduced system downtime, and dependable operation in precision applications.---If you require alternative encoder types: - *MIG Basic* – An incremental encoder for basic speed feedback in standard automation tasks. - *MIG AST* – An absolute encoder that preserves position after power-off, ideal for advanced positioning and control systems.

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