Free UPS Ground on All Orders!
+1 (919) 205-4392
Yaskawa XRC ERCR-UP165-RB10

Product image is representative; revision or series may vary. Contact us to request a specific version.

ERCR-UP165-RB10

|

The Yaskawa ERCR-UP165-RB10 robot controller, part of the XRC series, is designed for indoor industrial automation. It supports up to six axes of motion and is suitable for heavy-duty robotic applications, operating on an input voltage of 200 to 240 VAC with a maximum current capacity of 8 A.

Call for an immediate quote
2 Year DO Supply Warranty
Available
Ships from Raleigh, NC
Not an Authorized Distributor: DO Supply is not an authorized distributor for listed manufacturers or tradenames and therefore the manufacturer's warranty does not apply. All of our products come with DO Supply's 2-year warranty.
Learn more

Technical specifications for ERCR-UP165-RB10

ManufacturerYaskawa
Product TypeRobot Controller
Product LineXRC
Part NumberERCR-UP165-RB10
AltitudeUp to 2000 m
EnvironmentIndoor industrial automation
Input Voltage200–240 VAC
Max Current8 A
Motion AxesUp to 6 axes
ApplicationHeavy-duty industrial robotics
I/O ArchitectureFieldbus & modular I/O support
Cooling MethodForced air
Display InterfaceTeach pendant compatible
Storage Temp−20 °C to 60 °C
Humidity≤ 95% RH non-condensing

The Yaskawa ERCR-UP165-RB10 is an advanced robot controller suited for robust industrial environments. Operating on an input voltage range of 200 to 240 VAC, this controller can handle a maximum current of 8 A. Designed to accommodate up to six axes of motion, it is particularly effective for heavy-duty industrial robotics tasks.

For environmental adaptation, the controller is rated for operation in indoor settings and can function at altitudes as high as 2000 meters. It maintains performance in temperature conditions ranging from −20 °C to 60 °C and can endure humidity levels up to 95% relative humidity, provided condensation is avoided.

The I/O architecture of the ERCR-UP165-RB10 offers both fieldbus and modular I/O support, providing flexibility for integration into various automation systems. Additionally, the controller utilizes forced air as its cooling method to ensure stable operation under intensive tasks. It is compatible with teach pendant interfaces, enhancing ease of use and operation.