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Yaskawa XRC ERCR-UP130-RB05

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ERCR-UP130-RB05

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The Yaskawa ERCR-UP130-RB05 is a versatile robot controller tailored for general-purpose applications. It supports a maximum input current of 5 A, managing motion for up to 6 axes and operating within a voltage range of 100 to 240 VAC.

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Technical specifications for ERCR-UP130-RB05

ManufacturerYaskawa
Product TypeRobot Controller
Product LineXRC
Part NumberERCR-UP130-RB05
Input CurrentMax 5 A
Motion AxesUp to 6 axes
ApplicationGeneral-purpose robotic control
I/O ArchitectureIntegrated I/O & fieldbus support
Cooling MethodForced air
Display InterfaceTeach pendant compatible
Storage Temperature−20 °C to 60 °C
Humidity≤ 95% RH non-condensing
AltitudeUp to 2000 m
EnvironmentIndoor industrial automation
Input Voltage100–240 VAC

The Yaskawa ERCR-UP130-RB05 serves as a robust robot controller within the XRC series. This unit is capable of controlling up to 6 axes, making it suitable for a variety of applications in general robotic control. It operates with an input voltage spanning from 100 to 240 VAC and has a maximum input current of 5 A, ensuring flexible power compatibility across different setups.

For connectivity, the controller features an advanced I/O architecture with integrated I/O and support for fieldbus systems. This facilitates easy communication with other devices and systems in automated setups. Thermal management is maintained through a forced air cooling method, ensuring optimal performance during operation.

The controller is compatible with a teach pendant, allowing for intuitive interaction and programming. It has an indoor operational design, suitable for industrial automation environments. Additionally, it can withstand storage conditions ranging from -20 °C to 60 °C, as well as operating humidity levels up to 95% relative humidity without condensation. The unit is designed for installations at altitudes of up to 2000 meters, thereby expanding its versatility for various industrial applications. Overall, the Yaskawa ERCR-UP130-RB05 is a reliable choice for those looking to implement efficient robotic control within automated systems.