8F1I01.AA66.0000-1

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The 8F1I01.AA66.0000-1 from B & R Automation is part of the ACOPOStrak Systems and functions as an inductive proximity sensor. It operates at 10-30 V DC, has a maximum switching frequency of 40 kHz, and an 8 mm sensing distance. Offering IP67 enclosure protection, it features a nickel-plated brass housing.

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Product Description:

The 8F1I01.AA66.0000-1 is a straight segment in the B & R Automation ACOPOStrak range. It offers superior reliability in guiding shuttles along uninterrupted linear paths, supporting seamless, high-speed transport. Designed to enable precision coordination between multiple process stations, this segment plays a vital role in applications such as modular production lines, cleanroom-compatible environments and scalable assembly operations. It offers 0.66 meters for shuttle movement for smooth and uninterrupted motion.

This straight segment features a DC bus capacitance of 1.48 mF ±20%, ensuring stable electrical performance during high-speed shuttle movements. This capacitance functions as an energy buffer, smoothing voltage fluctuations that result from regenerative braking and rapid changes in current draw. This segment is built to allow a connection distance of up to 30 meters between two stations. This distance provides flexibility in system layout, making it easier to accommodate larger or more complex production setups. This generous line length also enables wider spacing between functional stations, enhancing scalability for future expansion or reconfiguration of the ACOPOStrak system.

The 8F1I01.AA66.0000-1 operates at a switching frequency of 40 kHz, enabling fast and precise control of the electromagnetic fields used to drive the shuttle movement. This high switching frequency ensures smoother motion, reduced torque ripple and minimal audible noise. This segment offers optimal energy utilization and is rated for a maximum power dissipation of 40 W. This minimal power loss ensures reliable performance under continuous operation and prevents overheating in compact installations. This segment is designed with a single enable input with a sink-type circuit. The input supports a nominal voltage of 24 VDC and can tolerate up to 30 VDC. To reduce the risk of electrical faults, the input is electrically isolated from the ACOPOStrak system.

Connection Type
M12 Connector
Enclosure Rating
IP67
Housing Material
Nickel-plated Brass
Led Status Indication
Yes
Maximum Switching Frequency
40 kHz
Mounting Type
Flush
Operating Temperature Range
-25°C to +70°C
Operating Voltage
10-30 V DC
Output Current
200 mA max
Output Type
PNP, Normally Open (NO)
Reverse Polarity Protection
Yes
Sensing Distance
8 mm
Short-circuit Protection
Yes
Type
Inductive Proximity Sensor

Frequently Asked Questions about 8F1I01.AA66.0000-1:

Q: What is the workspace length provided by the 8F1I01.AA66.0000-1?

A: The 8F1I01.AA66.0000-1 features a workspace length of 0.66 meters, offering a defined track length for shuttle travel and accurate product handling during motion phases.

Q: What type of fieldbus does the 8F1I01.AA66.0000-1 use?

A: The 8F1I01.AA66.0000-1 utilizes the POWERLINK V2 protocol with a 3-port hub, which supports high-speed, deterministic communication for synchronized operation across segments.

Q: Does the 8F1I01.AA66.0000-1 include electrical isolation?

A: Yes, the 8F1I01.AA66.0000-1 provides electrical isolation between the input and the ACOPOStrak system, which enhances safety and minimizes signal interference.

Q: What switching frequency is supported by the 8F1I01.AA66.0000-1?

A: The 8F1I01.AA66.0000-1 supports a switching frequency of 40 kHz, enabling fast and precise motor control essential for high-performance transport applications.

Q: What is the power dissipation of the 8F1I01.AA66.0000-1 during operation?

A: The 8F1I01.AA66.0000-1 has a maximum power dissipation of 40 W, which ensures stable thermal performance even under continuous-duty operation.


Internal Product Review

  • ‘‘The 8F1I01.AA66.0000-1 offers enhanced throughput thanks to its precise shuttle control. Its compact design makes layout optimization easy without sacrificing performance. However, initial setup requires careful attention to fieldbus configuration.’’

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