DMC2 50412P-CAN

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The DMC2 50412P-CAN motion controller boasts a peak current of 12 A, an input voltage of 3-phase 400 VAC (+10% / -20%), and a continuous power of 1.9 kW at 40C. As part of the DMC Motion Controllers series by Danaher, it features a speed range of 1:9000 and a switching frequency of 4 kHz for precise performance.

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Product Description:

The DMC Motion Controllers range offers the top variant DMC2 50412P-CAN. At 40C, it gives a continuous power of 1.9 kW and supports demanding industrial loads safely. The phase‑phase inductance has a minimum value of 10 mH which shows a fast current change in dynamic motor systems. At continuous current, the device’s efficiency reaches 95%. When operating at 40C, it maintains a constant current of 4A without degrading over time. The display will be powered by a constant current of 2.2 A.

The three-phase, 400 VAC input voltage is defined, with tolerances of 10% and 20%, and speed linearity of less than 1% is maintained. The torque linearity is equal to ±2% of the command value plus ±1% of the whole scale. Bracketed at 2 kHz, the current open loop bandwidth allows quick response to control adjustments. Peak capacity is 12 A and the peak current keeps this deliverance of transient surge very effective. Reliable functioning in a variety of climates is ensured by the operating temperature range, which includes ambient temperatures between 0C and 60C and storage temperatures between -20C and 80C. Its actual measurements are 160 mm in width, 227 mm in depth, and 234 mm in height. With a weight of 6.8 kg, its small size facilitates simple control panel integration. This module has a protection grade of IP20.

Additionally, Danaher's > has a system response latency of less than 8 ms and allows Ethernet/IP connection at 100 Mbps. With tolerances of +10% and -20%, the DC bus voltage is 570 VDC; these high voltages enable reliable power conversion. The operating voltage range for shunt regulation (on) is 675 to 700 VDC. Between 700 and 725 VDC is the range of the shutdown DC bus voltage. With a speed range of 1:9000, fine control over modest to high speeds is possible. The switching frequency of the drive is 4 kHz, which facilitates fast control and effective power modulation.

Continuous Current (rms) At 40c
2.2 A
Continuous Current At 40c
4 A
Continuous Power At 40c
1.9 kW
Current Open Loop Bandwidth
2 kHz
Dc Bus Voltage
570 VDC (+10% / -20%)
Efficiency At Continuous Current
95 %
Input Voltage
3 phase 400 VAC (+10% / -20%)
Minimum Motor Inductance (phase-phase)
10 mH
Peak Current
12 A
Shunt Regulation (on)
675 - 700 VDC
Shutdown Dc Bus Voltage
700 - 725 VDC
Speed Linearity
< 1 %
Speed Range
1:9000
Switching Frequency
4 kHz
Torque Linearity
±1 % of full scale plus ±2 % command value

Frequently Asked Questions about DMC2 50412P-CAN:

Q: How does the specified 3‑phase 400 VAC input voltage enhance DMC2 50412P-CAN?

A: It ensures compatibility with standard industrial power systems and provides a stable energy supply for consistent performance.

Q: What is the impact of the 12 A peak current in DMC2 50412P-CAN?

A: It manages transient load surges effectively and ensures the controller withstands short-term high-current demands.

Q: How does the current open loop bandwidth of 2 kHz benefit DMC2 50412P-CAN?

A: The current open loop bandwidth of 2 kHz allows rapid adjustments in current control. It also supports swift response to dynamic system changes.

Q: What benefit does a minimum motor inductance of 10 mH offer in DMC2 50412P-CAN?

A: This motor inductance supports fast current changes in the motor circuit and enhances dynamic performance during rapid operation.

Q: How does the 1.9 kW continuous power at 40C benefit DMC2 50412P-CAN?

A: This 1.9 kW continuous power provides ample energy for high-demand industrial processes. The model ensures reliable operation under sustained load conditions.


Internal Product Review

  • ‘‘The DMC2 50412P-CAN controller from Danaher includes robust 1.9 kW continuous power and exceptional 95% efficiency. The low 10 mH phase-phase inductance enables fast current changes, ensuring dynamic motor responsiveness. Its reliable performance and innovative design make this module a standout solution.’’

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