8EI8X8MWT30.01ZZ-1

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The 8EI8X8MWT30.01ZZ-1 is an inductive proximity sensor with a PNP, Normally Open (NO) output type and a sensing distance of 8mm. Manufactured by B & R Automation under the 8EI Servo Drives series, it features a nickel-plated brass cylindrical threaded body. The sensor operates at 10-30 VDC with IP67 protection.

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Product Description:

The 8EI8X8MWT30.01ZZ-1 Servo Drive is manufactured by B & R Automation, and its housing is designed for standard industrial cabinets where space optimization and modular alignment are essential. This drive comes with a single-width ACOPOS P3 front cover, painted B&R dark gray.

The structure of this drive offers front access and enclosure protection to provide stable performance in panel-mounted applications. The 8EI8X8MWT30.01ZZ-1 drive supports an input voltage of 3x 200–230 VAC or 1x 200–230 VAC with both three-phase and single-phase input configurations. This versatility makes this drive possible to work in a wide variety of power infrastructures without the need for external adapters or transformers. This servo drive has an input frequency of 50 / 60 Hz, which makes it possible to connect directly to power grids used worldwide without the need for conversion equipment. This drive’s power rating is 5 kVA, which is ideal for medium-level servo applications that demand stable power delivery. The output voltage of this servo drive is 3x 0–230 VAC to provide precise voltage control. The output current range of 0 to 8.8 A makes this servo drive capable of supporting motors with changing torque and load profiles.

A wide frequency range of 0 to 598 Hz output provides this drive with precise motor speed control needed for positioning operations. This servo drive meets Pollution Degree 2, according to EN 61800-5-1, to specify it for use in non-conductive pollution environments. This rating provides insulation protection and long-term reliability in industrial control panels. The environmental requirements for 8EI8X8MWT30.01ZZ-1 include a storage temperature of -25°C to 55°C and a transport temperature of -25°C to 70°C to ensure unharmed storage and shipping. This drive functions between 5% to 85% humidity, non-condensing, which ensures no internal moisture buildup.

Front cover
ACOPOS P3 cover, B&R dark gray, single-width
Input Frequency
50 / 60 Hz
Input Voltage
3x 200–230 VAC / 1x 200–230 VAC
Operational humidity
5 to 85%, non-condensing
Output Current
0 – 8.8 A
Output Frequency
0 – 598 Hz
Output Voltage
3x 0–230 VAC
Pollution degree per EN 61800-5-1
2 (non-conductive pollution)
Power Rating
5 kVA
Storage temperature
-25 to 55°C
Transport temperature
-25 to 70°C

Frequently Asked Questions about 8EI8X8MWT30.01ZZ-1:

Q: How does the high 598 Hz output frequency enhance motor performance in 8EI8X8MWT30.01ZZ-1?

A: It enables precise control over high-speed servo motors without mechanical adjustments. This is critical for applications requiring rapid acceleration and fine resolution.

Q: Why is current loop tuning essential in the 8EI8X8MWT30.01ZZ-1 drive?

A: Proper tuning ensures optimal torque response and minimizes overshoot. It improves stability in closed-loop systems under varying load conditions.

Q: How does the drive’s PWM switching frequency impact motor efficiency?

A: Higher PWM switching allows smoother motor operation and reduced torque ripple. This enhances accuracy in precision positioning systems.

Q: Why is low inductance motor compatibility important in 8EI8X8MWT30.01ZZ-1?

A: It allows fast current changes without overshooting setpoints. This helps maintain precise dynamic torque control in fast-response systems.

Q: How does the internal DC bus design affect energy recovery?

A: It enables shared energy usage across axes during deceleration. This reduces external braking resistor requirements and improves system efficiency.


Internal Product Review

  • ‘‘The 8EI8X8MWT30.01ZZ-1 Servo Drive offers precise motor control with its 5 kVA power rating and 0–598 Hz output frequency. Its 0–8.8 A current range handles fluctuating torque demands with ease. The dual input voltage makes it adaptable for different power systems, essential for motion control tasks needing speed precision.’’

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