60BA03FXS01

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The 60BA03FXS01 is a servo amplifier manufactured by Sanyo Denki. Part of the BL Super Servo Amplifiers series, it features pulse/direction output control and an overload capability of 150% of the nominal load. The amplifier operates with forced-air cooling and weighs approximately 2.5 kg.

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Product Description:

The 60BA03FXS01 is a BL super servo amplifier manufactured by Sanyo Denki for fast and reliable servo response. It has a 7-segment display and LED to indicate operating status/alarm codes. The 60BA servo amplifier is housed in a robust metal enclosure designed for vertical panel mounting.

The servo amplifier 60BA03FXS01 operates with an input voltage ranging from 200 to 240 VAC at frequencies of 50 or 60 Hz for single-phase and three-phase power supply. A continuous output current at 3 A can be delivered by the amplifier. Control functions of this servo amplifier can be reached through a ±10 V differential analog signal that enables velocity and torque control capabilities. It utilizes 5 V TTL incremental encoder input with A, B and Z channels for feedback and includes Hall sensor inputs for motor commutation. The 60BA servo amplifier’s internal architecture features high-speed IGBT devices configured in a three-phase inverter bridge that is driven by gate ICs. A PWM switching method is used to achieve real-time monitoring. It has a high-voltage electrolytic capacitor to provide DC bus filtering and energy buffering. The 60BA servo amplifier has multiple protections for overcurrent, overvoltage, undervoltage, short circuit and thermal shutdown via integrated thermistor sensors.

The 60BA03FXS01 super servo amplifier features designated B1 and B2 terminals that can be connected to external regenerative resistor for energy dissipation during deceleration. It has a black aluminum heatsink and uses forced cooling. The rated ambient temperature is 0°C to 50°C and the allowable ambient humidity is 20% to 90%. The 60BA servo amplifier’s wiring is connected through CN1 for analog command, alarm output and control signals while with CN2 for encoder and Hall sensor input. Its main AC input and motor output are connected via a front-facing screw terminal block.

Communication interface
Analog/digital I/O for motion control
Control signal type
±10 V differential analog input
Cooling method
Forced‑air cooling (internal fan, heatsink)
Efficiency
95% (typical)
Ingress protection
IP20
Internal switching device
High‑speed IGBT
Operating temperature range
0 °C to 50 °C
Output control mode
Pulse/direction control
Overload capability
150% of nominal for short durations
Physical dimensions
150 x 100 x 70 mm (L×W×H)
Protection functions
Overcurrent, overtemperature, undervoltage
PWM switching frequency
10 kHz
Rated current
3.0 A
Rated voltage
200 V AC/DC
Weight
2.5 kg

Frequently Asked Questions about 60BA03FXS01:

Q: How does the high-speed IGBT architecture in 60BA03FXS01 enhance servo performance?

A: The high-speed IGBT architecture allows rapid switching and precise control, enhancing motor responsiveness and reducing energy loss.

Q: Why does the 60BA03FXS01 use a ±10 V analog signal for control?

A: The ±10 V analog control allows fine-grained torque and speed modulation, ideal for real-time analog feedback applications.

Q: Why are TTL incremental encoders used in 60BA03FXS01 instead of absolute encoders?

A: TTL incremental encoders offer simpler implementation and sufficient resolution for high-speed motion control tasks in 60BA03FXS01.

Q: What is the significance of forced cooling in 60BA03FXS01's thermal design?

A: Forced cooling improves heat dissipation, enabling the 60BA03FXS01 to maintain performance within a 0°C to 50°C range.

Q: How does the 60BA03FXS01 ensure real-time monitoring through its PWM switching method?

A: PWM switching enables the 60BA03FXS01 to modulate output efficiently while providing fast, real-time system diagnostics.


Internal Product Review

  • ‘‘The 60BA03FXS01 servo amplifier stands out with its ±10 V analog control, 3 A continuous current, and robust overvoltage/thermal protection. Its PWM switching and TTL encoder support ensure accurate feedback. Ideal for precision-driven systems needing reliable servo response and fast braking capability.’’

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