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Yaskawa Sigma 5 JUSP-ACP60GAY1

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JUSP-ACP60GAY1

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The Yaskawa JUSP-ACP60GAY1 is a drivepack converter with a notable output power of 2.8 kW. This device is compatible with Sigma motors and operates on an input voltage range of 200–240 VAC, drawing a rated current of 8 A.

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Technical specifications for JUSP-ACP60GAY1

ManufacturerYaskawa
Product TypeDrivepack converter
Product LineSigma 5
Part NumberJUSP-ACP60GAY1
Output Power2.8 kW
Input Voltage200–240 VAC
Rated Current8 A
Motor CompatibilitySigma motors
Control ModesPulse / analog
CommunicationMECHATROLINK, DeviceNet
ConnectorsCN1, CN3, CN5
CoolingForced air
MountingPanel / rack
Operating Temperature0–55 °C
ProtectionsOC, OH, SC
RegenerationExternal resistor
OptionsOperator, I/O, comm cards

The Yaskawa JUSP-ACP60GAY1 is an efficient drivepack converter primarily designed for use in conjunction with Sigma motors. It operates with an output capacity of 2.8 kW, providing the necessary power for various automation tasks. Compatibility is assured as it operates on an input voltage range of 200 to 240 VAC, with a rated current of 8 A, ensuring reliable performance in typical industrial settings.

Users can choose between pulse and analog control modes, allowing for fine-tuned adjustments based on application requirements. The device facilitates communication using both MECHATROLINK and DeviceNet protocols, essential for integrating with sophisticated control environments. Its connectivity is supported through connectors CN1, CN3, and CN5, ensuring versatile integration capabilities.

For effective thermal management, the unit employs forced air cooling, making it suitable for maintaining optimal operating conditions. The module can be mounted either on a panel or rack, adapting to various installation preferences. The operational temperature range is wide, from 0 to 55 °C, which permits it to function effectively in diverse environments.

Safety features are built in, including overload current (OC), overheat (OH), and short circuit (SC) safeguards, which protect the drive from potential operational hazards. The regenerative capabilities are enhanced with an external resistor, allowing for energy efficient dynamics. Available options include operator interfaces, input/output expansions, and communication cards, providing additional customization possibilities to suit specific application needs.