MAD180D-0200-SA-S0-KL2-35-N1
MPN: R911310402
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The MAD180D-0200-SA-S0-KL2-35-N1 is a high-performance 180mm AC servo motor with a rated power of 20 kW. Manufactured by Bosch Rexroth Indramat as part of the MAD IndraDyn A Motors series, it features surface cooling and a protection class of IP65. It operates at 400 V AC and includes a singleturn absolute encoder.
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Product Description:
The MAD180D-0200-SA-S0-KL2-35-N1 is an AC servo motor from the IndraDyn series designed by Bosch Indramat. It uses an axial blower fan for cooling which provide an air flow of 1500 m³/h on average from side B to A and it consumes 242 to 382 VA of power from a 3 x 400V ±15 % or 3 x 480V ±10 % source at 50/60 Hz frequency.
The MAD180D-0200-SA-S0-KL2-35-N1 servo motor provides up to 300 Nm of torque and utilizes 62.8 kW of rated power. It operates at rated speed is 2000 RPM but has the capability to reach up to a peak speed of 6000 RPM with its standard ball bearing. The motor offers a peak turn effect of 768 Nm and at full load it consumes 128.7 kW of power from a 3-phase source. The rating for current is 117.4 A while the maximum amount of current that can be used is 269.7 A. The MAD180D servo motor produces a torques equal to 2.92 Nm when 1 A of current is drawn. It comes with a single-turn absolute encoder that has 512 incremental periods and it produces a sinusoidal signal of 1 Vss. The encoder uses I²C protocol for interface and needs a power supply of 8 V DC to run. The MAD180D servo motor takes 70 minutes for the temperature of the motor to drop by 60% and offers a duty cycle is 10 minutes.
The MAD180D-0200-SA-S0-KL2-35-N1 servo motor operates in an ambient thermal range of 0°C to +40°C with a humidity tolerance up to 90% and at an altitude up to 1000m above sea level. It has a moment of inertia 0.594 kgm² and weighs 403 kg in total. The MAD180D servo motor has a 78 dB(A) sound pressure level and offers an IP65 protection.
Frequently Asked Questions about MAD180D-0200-SA-S0-KL2-35-N1:
Q: Why does the MAD180D-0200-SA-S0-KL2-35-N1 use an axial blower instead of natural cooling?
A: The axial blower provides active cooling, allowing the motor to maintain performance under high thermal loads. This is critical for applications requiring continuous torque output over extended periods.
Q: How does the I²C-based encoder improve the motor's performance?
A: The I²C interface allows for faster and more efficient communication between the encoder and control system. This enhances feedback accuracy and response times in motion control systems.
Q: What are the benefits of using sinusoidal 1 Vss encoder signals in MAD180D-0200-SA-S0-KL2-35-N1?
A: Sinusoidal signals ensure smoother interpolation and reduced signal distortion. This results in finer resolution and more precise positional control.
Q: Why is a 3 x 400V ±15% or 3 x 480V ±10% input range significant?
A: This wide input voltage range increases the motor's compatibility with global power standards. It ensures safe operation under fluctuating voltage conditions.
Q: What role does the 0.594 kgm² moment of inertia play in the MAD180D-0200-SA-S0-KL2-35-N1?
A: It helps stabilize motor rotation during rapid speed and torque changes. This reduces vibration and improves control in high-speed applications.