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Yaskawa NX100 ERCR-HP3-AB00

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ERCR-HP3-AB00

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The Yaskawa ERCR-HP3-AB00 is an industrial robot from the NX100 series designed for various applications. It operates with a power requirement of 1.5 kVA at 200-230 volts, featuring a three-phase supply, and is designed for mounting on tables, floors, walls, or ceilings.

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Technical specifications for ERCR-HP3-AB00

ManufacturerYaskawa
Product TypeIndustrial Robot
Product LineNX100
Part NumberERCR-HP3-AB00
Power Requirement1.5 kVA, 200–230V 3-phase
Wrist TypeHollow wrist
MountingTable / Floor / Wall / Ceiling
Payload3 kg
Wrist Torque (S/L/U)6 / 6 / 3.6 Nm
Max Speed (Axis 1–6)250°/s – 500°/s
Reach1373 mm
Axes6
Repeatability±0.03 mm
Protection RatingIP54
Programming LanguageINFORM III
CoolingFan-cooled

The part number ERCR-HP3-AB00 belongs to Yaskawa's NX100 series of industrial robots. Designed for versatility, this robot can be mounted on various surfaces, including tables, floors, walls, and ceilings. It operates within a power range of 1.5 kVA and utilizes a three-phase power supply rated between 200 and 230 volts.

This model features a hollow wrist design, allowing for greater flexibility in workspaces. With six axes, the robot can execute complex tasks and has a maximum payload capacity of 3 kg. The wrist delivers torque values of 6 Nm for both the shoulder and elbow joints, while the wrist joint provides 3.6 Nm of torque as needed.

Maximum speed capabilities reach up to 500°/s across certain axes, with others allowing lower limits starting from 250°/s. Spanning a reach of 1373 mm, this robot can effectively engage with nearby equipment or materials. Weighing 130 kg, it is designed to maintain a repeatability level of ±0.03 mm, ensuring precision in repetitive operations.

The robot's enclosure is rated at IP54, providing protection against dust and water splashes, making it suitable for a variety of industrial environments. Moreover, it employs a fan cooling mechanism to manage heat during operation and runs on the INFORM III programming language for easy integration into automated systems.