Part Number:

SERVOSTAR-606-AS

Manufacturer: Kollmorgen
Series: S600 Servo Drive Series
  • Rated 4.4 (29 total ratings)
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The SERVOSTAR-606-AS is a versatile servo amplifier designed for industrial motor drive tasks, featuring multiple communication interfaces. It operates on a supply voltage of 24V (18-36V) and requires external protection with a 4 AT fuse, boasting a maximum starting delay of just 2 ms.

Part Number:

SERVOSTAR-606-AS

Manufacturer: Kollmorgen
Series: S600 Servo Drive Series
  • Rated 4.4 (29 total ratings)
  • Straightforward Pricing: No Rush Fees, No Credit Card Fees
    In-Stock, Ships Fast
  • Call for Expedited Shipping and Product Condition Options
Free Ground Shipping
Worldwide Delivery
Repair Options Available

The SERVOSTAR-606-AS is a versatile servo amplifier designed for industrial motor drive tasks, featuring multiple communication interfaces. It operates on a supply voltage of 24V (18-36V) and requires external protection with a 4 AT fuse, boasting a maximum starting delay of just 2 ms.

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Product Description

The SERVOSTAR-606-AS is an advanced multi-purpose servo amplifier for industrial motor drive tasks including numerous features and communication interfaces. The device runs on supply inputs of 24V (18-36V) pen amperes compliant to IEC 61131 standards where the current is varied depending on the control wiring. There must be a provision of external protection using a 4 AT fuse and the response time has maximum starting delay of 2ms.

A great advantage of this servo amplifier lies in its thermal management which is generally integrated in the motor using a PTC device whereby it operates at a certain temperature and ensures maximal performance. It is able to receive serial digitalized absolute position output with minimum interfaces for the position and has a supply filter which helps in removing unwanted pollutants due to supply cables. The SERVOSTAR 606-AS enables the user to map reachable sections of the machine control system using CANopen, PROFIBUS and SERCOS fieldbus interfaces. The amplifier comes equipped with setpoint ramps which regulate changes in the speed setpoint to an optimum, making the motor effective. The final velocity is integrated to be within ~10 V where even further speed adjustment stability is optimal.

For connections involving motors specifically those with care, a brake is inter connected via X9, the amplifier forms an oscillating circuit with motor supply cable and the motor winding. Such arrangements are prone to factors like cable capacitance, length, motor inductance, and the rate of rise in voltage, which can limit the maximum voltage of the system and the working lifespan of the motor. To alleviate these threats, only motors with class F insulation (following IEC 60085) and above should be applied. In addition, some cabling should fulfill predefined technical conditions in order to avoid safety concerns.

SERVOSTAR-606-AS Technical Specifications

Supply inputs, to IEC 61131: 24V (18 36V) / 100mA plus total current of the outputs (depends on the input wiring of the controls)
Supply filter: Device to divert interference on the power supply cables to PET
Setpoint ramps: Limits for the rate of change of the speed setpoint
CANopen: Supported
PROFIBUS: Supported
SERCOS: Supported
Final speed (limit speed): Maximum value for the speed normalization at ~10 V
Fusing (external): 4 AT
Starting delay (maximum): 2ms
Processor: at least Pentium II or comparable
Processor: At least Pentium II or comparable
Thermal control: Temperature-sensitive device built into the motor winding (usually a PTC)
Tn, I-integration time: Integral component of a control loop
Thermal control: Temperature-sensitive device built into the motor winding (usually a PTC)
SSI-interface: Cyclically absolute, serial position output

Frequently Asked Questions about SERVOSTAR-606-AS


Q: What are the power supply requirements for the SERVOSTAR 606-AS?

A: The SERVOSTAR 606-AS operates on supply inputs of 24V (18-36V), compliant with IEC 61131 standards. The current requirements vary depending on the control wiring, and it is essential to provide external protection using a 4 AT fuse to ensure safe operation.

Q: How does the SERVOSTAR 606-AS manage thermal protection?

A: The amplifier integrates thermal management into the motor using a PTC device. This device monitors and controls the operating temperature, ensuring maximal performance and protecting the motor from overheating, thereby extending its lifespan.

Q: What communication interfaces does the SERVOSTAR 606-AS support?

A: The SERVOSTAR 606-AS supports multiple communication interfaces, including CANopen, PROFIBUS, and SERCOS fieldbus interfaces. These interfaces enable the servo amplifier to integrate seamlessly into various industrial control systems, allowing users to map and control reachable sections of the machine.

Q: How does the SERVOSTAR 606-AS handle speed control and stability?

A: The amplifier features setpoint ramps that regulate changes in the speed setpoint, optimizing motor performance. The final velocity is controlled within a range of ~10V, ensuring stable and effective speed adjustments, even in demanding applications.

Q: What precautions should be taken when connecting motors to the SERVOSTAR 606-AS?

A: When connecting motors, especially those with a brake via X9, it's important to consider the oscillating circuit formed between the motor supply cable and the motor winding. Factors like cable capacitance, length, motor inductance, and the rate of voltage rise can impact system voltage and motor lifespan. To mitigate these risks, it is recommended to use motors with class F insulation or higher, following IEC 60085 standards. Additionally, cabling should meet predefined technical conditions to avoid safety concerns.

Internal Product Review

  • ‘‘The SERVOSTAR-606-AS amplifier supports serial digital absolute position output and includes a supply filter to eliminate interference. It operates on a supply voltage of 24V (18-36V) and requires external protection with a 4 AT fuse, boasting a maximum starting delay of just 2 ms.’’

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