ABB 7GSP029701R0006 Motor Starters - REACH & WEEE
Part Number: 7GSP029701R0006
Quick Summary
7GSP029701R0006 is a compact ABB combo starter designed for reliable motor control in industrial automation. Many engineers struggle with bulky panels, wiring complexity, and lengthy commissioning, which drives costs and downtime. The 487 Combo Starter consolidates control and protection in a compact unit, easing installation and troubleshooting. Key compliance highlights include REACH information and WEEE classification, helping validate regulatory readiness. In manufacturing environments such as conveyors and pumps, it enables faster deployment, reduced wiring, and improved uptime, while seamlessly integrating with existing ABB starter ecosystems. This translates to lower total cost of ownership and more predictable project timelines for OEMs and end users.
Product Information
Extended Description
7GSP029701R0006 ABB: 487F524ML103306 487 Combo Starter
REACH Information
False - does not contain substances > 0.1 mass percentage
WEEE Category
Product Not in WEEE Scope
UNSPSC
25173900
Compact integrated design reduces panel space and wiring. This directly lowers assembly time and minimizes fault-prone interconnections, delivering faster start-up and simpler maintenance. In conveyors and pumps, where space is tight and downtime is costly, the 487 Combo Starter streamlines installation and enhances reliability. Regulatory compliance is simplified by clear REACH information indicating no substances above 0.1 mass percentage, and WEEE classification showing the product is not in the waste stream. This reduces audit time and accelerates approvals for regulated environments, enabling faster qualification of new lines. Procurement and traceability are aided by the UNSPSC code 25173900, aligning with standard purchasing workflows. The compact unit fits within typical ABB motor starter ecosystems, allowing technicians to reuse familiar components and spares, lowering inventory costs and training time. Reliability and serviceability are supported by the combo design, reducing the number of separate devices required in the control cabinet. Fewer modules translate to easier troubleshooting and lower maintenance overhead, which translates into higher line availability in manufacturing settings. Installation versatility is enhanced by the starter's compatibility with standard panels and mounting arrangements, enabling quick retrofits and scalable deployment across multiple lines. The 487 Combo Starter supports common industrial motor control applications while minimizing modification needs for existing electrical rooms.
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FAQs
The 487 Combo Starter is designed for integration with standard ABB motor starter accessories and common panel layouts, reducing wiring complexity and allowing straightforward retrofits. Its compact form supports quick replacement in existing control cabinets without major rewiring, accelerating commissioning while preserving familiar maintenance procedures.
This combo starter provides integrated control and protection in a single enclosure, delivering a compact footprint and simplified wiring. The design supports faster commissioning, easier troubleshooting, and reliable motor start/stop functions for typical industrial applications such as conveyors and pumps, with reduced risk of wiring faults and higher uptime.
Yes. The product’s material compliance indicates REACH information with no substances exceeding 0.1 mass percentage, and the WEEE classification shows it is not in scope for waste disposal. These attributes streamline regulatory readiness and reduce compliance overhead during audits and installations.
Best suited for conveyors, pumps, and general machine automation where space is at a premium and wiring complexity must be minimized. The integrated design reduces panel depth and simplifies wiring harnesses, enabling faster changeovers, easier maintenance, and improved line availability in high-volume production environments.
By reducing panel space and wiring, installation time is shortened and commissioning risks decline. Fewer separate devices mean fewer potential fault points and lower maintenance overhead, contributing to higher equipment availability and a lower total cost of ownership over the motor control system’s lifecycle.