SERVOSTAR-610-AS-FAN

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The SERVOSTAR-610-AS-FAN is a high-performance servo amplifier designed to provide precise control over electromechanical drives in industrial settings. The servo amplifier prioritizes safe and efficient operation.

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Product Description:

The SERVOSTAR-610-AS-FAN is a high-performance and advanced servo amplifier that allows precise control of electromechanical drives in industrial applications with additional features for efficient operation and safety respectively. It works on windows and has to have a graphics adapter for colored display. Information of the structure works in speeds of 125 kbit, 250 kbit, and 500 kbit, protection being provided by an external fuse of 4 AT. The specific addressing time of the system is 4 ms, which makes it suitable for real time applications.

Using a processor equivalent to at least Pentium II, the SERVOSTAR 610-AS-FAN has the capability of thermal control by means of a temperature sensitive device commonly found in the windings in this device: a PTC (positive temperature coefficient) to avoid excessive heat build-up and damage to the windings causing premature winding failure. In that control loop, Tn, I-integration time, and Tn are incorporated in the am. The device has capabilities of supporting an SSI-interface for cyclically absolute, serial position output which is very important in processes that require positional output feedback modules.

The supply filter routes off the interference coming from power supply cables and ensures that a clean as well as stable power is supplied to circuits, whereas setpoint ramps control how much the pre-established speed setpoint can be increased or decreased with time, hence allowing smooth and controlled acceleration and deceleration. Ipeak, which is the effective value of the peak current is the maximum instantaneous current that the amplifier design will withstand and to provide it with such components as 120-ohm resistor, which has a tolerance of 1% metal film and power 0.25 W to insure and processor wop signal accuracy.

Addressing time (min)
4 ms
Bit rates
125, 250, 500 kbit/s
External fuse rating
4 A
Power rating
0.25 W
Resistance
120 Ω
SSI interface
cyclically absolute serial position output
Thermal control
PTC sensor in motor winding
Tolerance
±1%

Frequently Asked Questions about SERVOSTAR-610-AS-FAN:

Q: What are the speed options and protection features of the SERVOSTAR 610-AS-FAN?

A: The amplifier supports speeds of 125 kbit, 250 kbit, and 500 kbit, with protection provided by an external 4 AT fuse, ensuring reliable operation in industrial environments.

Q: How does the SERVOSTAR 610-AS-FAN manage thermal control?

A: The amplifier uses a PTC (Positive Temperature Coefficient) device in the motor windings to prevent excessive heat build-up, protecting the windings from damage and extending the motor's lifespan.

Q: What role does the SSI-interface play in the SERVOSTAR 610-AS-FAN?

A: The SSI-interface provides cyclically absolute serial position output, which is crucial for processes requiring precise positional feedback, enhancing control accuracy in industrial applications.

Q: How does the SERVOSTAR 610-AS-FAN ensure stable power supply?

A: The amplifier includes a supply filter that removes interference from power supply cables, ensuring that clean and stable power is delivered to the circuits, which is essential for smooth operation.

Q: What is the significance of Ipeak in the SERVOSTAR 610-AS-FAN?

A: Ipeak represents the maximum instantaneous current the amplifier can handle. It is supported by components such as a 120-ohm resistor with 1% tolerance and 0.25W power rating to ensure signal accuracy and reliable performance.


Internal Product Review

  • ‘‘Equipped with a processor at least equivalent to a Pentium II, the SERVOSTAR-610-AS-FAN features thermal control via a PTC device to prevent overheating. Setpoint ramps allow for smooth acceleration and deceleration, while Ipeak indicates the maximum instantaneous current the amplifier can handle, supported by a 120-ohm metal film resistor for signal accuracy.’’

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