ABB 3HAC020131-001 Pinion AUTOMATION PARTS – Precision Driven Solutions
The ABB 3HAC020131-001 Pinion Automation Parts is designed to provide high-precision control solutions for demanding industrial automation applications, ensuring reliable performance and enhanced operational efficiency.
Email:18005021035@163.com
Phone:+86 18005021035
Name:BeiLin
Content details
Dimension (D x H x W):250mm x 150mm x 100mm
Material:Aluminum alloy
Load Capacity:10kN
Operating Temperature Range:-20°C to +70°C
Power Consumption:50W
Connection Type:IP67 rated connector
Weight:1.5kg
The ABB 3HAC020131-001 Pinion AUTOMATION PARTS is a high-performance component designed to meet the stringent demands of modern industrial automation systems. Engineered with precision, it offers unparalleled reliability and durability, making it an ideal choice for applications requiring exceptional accuracy and robustness.
Crafted from high-grade steel, this part is built to withstand demanding conditions without compromising on performance. Its customizable dimensions allow for seamless integration into various machinery setups, ensuring optimal functionality across different operational environments.
With a load capacity of up to 500kg and a versatile speed range from 0.01 to 100 RPM, the ABB Pinion AUTOMATION PARTS provides unparalleled versatility, catering to a wide array of industrial needs. Whether you’re looking for smooth, consistent operation or precise control over heavy loads, this component delivers.
Operating within the temperature range of -20°C to +60°C, the ABB Pinion AUTOMATION PARTS ensures reliable performance regardless of environmental conditions. This makes it suitable for use in a variety of sectors including manufacturing, mining, and heavy industry.
Backed by ISO 9001 quality assurance and CE marking, the ABB 3HAC020131-001 Pinion AUTOMATION PARTS meets international standards for safety and quality. Trust in ABB’s commitment to excellence with every purchase, knowing you’re investing in components that are built to last and perform under pressure.