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HV52S12019003207005The BEGE flange encoder MIG Nova+ MN-120-19-0032-7, 32 pulses, 5m cable, stainless steel is an incremental encoder designed for precise speed feedback and improved signal stability in automated systems. Key attributes: Flange outer diameter: 120mm; Flange BCD: 100mm; Shaft diameter: 19mm; Flange thickness: 7mm; Motor standard: IEC 80B14; Input voltage: 5-24VDC; Output: A90°B / A'90°B' HTL/TTL; Pulses per revolution: 32 per channel; Cable length: 5m; Material: Stainless steel; IP classification: IP55/IP67. Suitable for industrial automation where controlled speed and stability are required.
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€511.00
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More Information
IP classification
IP55 / IP67
Outer diameter (mm)
120
Flange thickness (mm)
7
Encoder Material
Stainless steel
Cable length (m)
5
Shaft diameter (mm)
19
IEC norm
80B14
BCD norm
100
HS-Code
90292038.000000
Encoder supply
5-24VDC
Encoder signals
A90°B / A'90°B' HTL/TTL
Pulses
32
Description

**Product: BEGE Flange Encoder MIG Nova+ MN-120-19-0032-7 (32 pulses, 5m cable, stainless steel)**
Incremental encoder providing high resolution with 32 pulses per revolution per channel, enabling fine speed feedback and improved control accuracy in automated machinery.
Features advanced signal stability (A90°B / A'90°B', HTL/TTL output), minimizing interference and ensuring reliable data transmission even in complex industrial environments.
Robust stainless steel construction guarantees long-term durability and resistance to corrosion, making it ideal for harsh and demanding applications.
Designed with a standard flange (Ø120mm, flange BCD 100mm, 7mm thickness), and compatible with IEC 80B14 motors and a 19mm shaft, ensuring seamless integration with a broad range of drive systems.
Supports wide input voltage range (5-24VDC), increasing versatility for different power infrastructures in industrial settings.
Offers flexible installation via a generous 5-meter cable length, accommodating various machine layouts and simplifying wiring.
IP55/IP67 protection ratings safeguard the encoder against dust, water, and industrial contamination, supporting reliable operation in both standard and washdown environments.
Ideal applications include precise motor speed regulation, conveyor systems, automated production lines, packaging machinery, and other automation tasks requiring accurate incremental feedback.
Compared to MIG Basic (suitable for standard automation with basic speed feedback) and MIG AST (absolute encoder for exact positioning and advanced motion control), MIG Nova+ excels when enhanced precision and signal quality are priorities.
Incremental encoder providing high resolution with 32 pulses per revolution per channel, enabling fine speed feedback and improved control accuracy in automated machinery.
Features advanced signal stability (A90°B / A'90°B', HTL/TTL output), minimizing interference and ensuring reliable data transmission even in complex industrial environments.
Robust stainless steel construction guarantees long-term durability and resistance to corrosion, making it ideal for harsh and demanding applications.
Designed with a standard flange (Ø120mm, flange BCD 100mm, 7mm thickness), and compatible with IEC 80B14 motors and a 19mm shaft, ensuring seamless integration with a broad range of drive systems.
Supports wide input voltage range (5-24VDC), increasing versatility for different power infrastructures in industrial settings.
Offers flexible installation via a generous 5-meter cable length, accommodating various machine layouts and simplifying wiring.
IP55/IP67 protection ratings safeguard the encoder against dust, water, and industrial contamination, supporting reliable operation in both standard and washdown environments.
Ideal applications include precise motor speed regulation, conveyor systems, automated production lines, packaging machinery, and other automation tasks requiring accurate incremental feedback.
Compared to MIG Basic (suitable for standard automation with basic speed feedback) and MIG AST (absolute encoder for exact positioning and advanced motion control), MIG Nova+ excels when enhanced precision and signal quality are priorities.
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