PWR-AKM-006M-MCS-000-14-6H

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The PWR-AKM-006M-MCS-000-14-6H cable is designed for use with Kollmorgen servo systems, featuring an inrush current of 4A for 10ms. Manufactured by Kollmorgen for their Servo Cables series, it provides 28 to 60 joules of energy absorption with a 460v motor and 230v line input. This model includes a typical input wattage of 17W.

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Product Description:

When it comes to industrial applications, the Kollmorgen Servo Cables model PWR-AKM-006M-MCS-000-14-6H is designed to guarantee that high-end servo systems have the connection they require.

The module's efficient power management is demonstrated by its 17W power and 700mA input current need. To guarantee that the system can readily withstand the abrupt bulk loading without sacrificing its stability, the inrush current capacity is restricted to 4A for 10ms. There are two choices for the DC bus's capacitance: 110μF and 240μF. This allows for better filtering of the DC supply voltage and gives choices based on system requirements. The shunt switch threshold is distinctive at 780VDC which makes the unit very safe from over-voltage conditions. These cables have different capacitance of energy absorption depending on the model; 3 to 7 joules when the motor operates with a 230V line input, 28 to 60 joules when the motor operates at 460V but with a 230V line input, and 10 to 22 joules with a 460V line input, thus effectively managing the energy surges to prevent damage to the system. The maximum shunt resistor current is 5.9A AC with a minimum shunt resistor of 130Ω and maximum shunt resistor power of 4.5kW to 5 kW, which is essential for safe and efficient dissipation of excess energy.

The internal holding brake driver enables 0.5A of maximum current throughput and provides an extra layer of control for braking functions. The PWR-AKM-006M-MCS-000-14-6H has excellent voltage regulation with ±1% variations under normal load conditions due to precise engineering. It also has over-voltage, under-voltage, and thermal overload protection to protect the servo systems from electrical faults that may cause damage and hence ensure that the systems are safe and reliable.

DC bus capacitance (internal)
110 μF
DC bus capacitance (internal) variant
240 μF
Energy absorption (230 V input)
3–7 J
Energy absorption (460 V input)
10–22 J
Energy absorption (460 V motor + 230 V input)
28–60 J
Inrush current
4 A, 10 ms
Internal holding brake driver current (max)
0.5 A
Minimum shunt resistor
130 Ω
Protection features
Over-voltage, under-voltage, thermal overload protection
Shunt resistor current (max)
5.9 A AC
Shunt resistor power (at minimum resistance)
4.5–5 kW
Shunt switch threshold
780 VDC
Typical input current
700 mA
Typical input power
17 W
Voltage regulation
±1%

Frequently Asked Questions about PWR-AKM-006M-MCS-000-14-6H:

Q: What are the input specifications for PWR-AKM-006M-MCS-000-14-6H?

A: The cable requires an input current of 700mA and consumes 17W of power, showcasing its efficient power management capabilities.

Q: How does PWR-AKM-006M-MCS-000-14-6H manage energy surges?

A: It features a shunt switch threshold of 780VDC and energy absorption capacities ranging from 3 to 60 joules, depending on motor operation conditions, ensuring protection against over-voltage and surges.

Q: What is the maximum shunt resistor capability of PWR-AKM-006M-MCS-000-14-6H?

A: It has a maximum shunt resistor current of 5.9A AC, a minimum shunt resistor of 130Ω, and a maximum shunt resistor power of 4.5kW to 5kW, enabling safe energy dissipation.

Q: What safety features does PWR-AKM-006M-MCS-000-14-6H offer?

A: The cable includes over-voltage, under-voltage, and thermal overload protection, ensuring the safety and reliability of connected servo systems.

Q: How does PWR-AKM-006M-MCS-000-14-6H enhance braking control?

A: It features an internal holding brake driver with a maximum current of 0.5A, providing additional control and safety during braking operations.


Internal Product Review

  • ‘‘The PWR-AKM-006M-MCS-000-14-6H is a high-performance solution for industrial servo systems. With its efficient power management, advanced energy dissipation, and comprehensive safety features, it ensures precise and reliable operation in demanding environments.’’

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