Rittal 9650201 SV Maxi-PLS busbar - 2,323 mm²

Part Number: 9650201
Manufacturer
Rittal
Part number
9650201
Alt Part Number
SV 9650.201

Quick Summary

The SV Maxi-PLS busbar from Rittal is a copper conductor assembly designed for high-current power distribution in electrical cabinets and switchgear. Its compact footprint and copper cross-section deliver reliable high-current pathways in confined spaces, helping you optimize cabinet layouts without compromising performance. The solution aligns with ETIM EC002525 and ECLASS 27370303 standards, with E-Cu material delivering durable, low-impedance conductors. Designed for fast installation and scalable cabinet wiring, it reduces waste and downtime while supporting compliant power distribution in industrial environments.

Product Information

Extended Description

9650201 Rittal: SV Maxi-PLS busbar E-Cu, L: 491 mm, Maxi-PLS 3200
Article number
SV 9650.201
Product description
For assembling cable connection systems.
Material
E-Cu
Cross-section
2,323 mm²
Length
491 mm
Note
May be cut individually to required length
To fit
Width: = 600 mm
Packs of
1 pc(s).
Weight/pack
10.28 kg
Copper weight (kg per piece)
10.15
Customs tariff number
74071000
EAN
4028177569478
ETIM 9
EC002525
ECLASS 8.0
27370303
Product description
SV Maxi-PLS busbar E-Cu, L: 491 mm, Maxi-PLS 3200
Feature: E-Cu Maxi-PLS busbar with 491 mm length and 2,323 mm² cross-section. Business impact: high-current conduction with low impedance, reducing voltage drop and heat. Application: ideal for cabinet power distribution and switchgear in manufacturing environments. Feature: May be cut to required length. Business impact: on-site customization reduces waste and inventory while enabling precise fits in tight spaces. Application: adaptable to bespoke installations and modular rack layouts. Feature: Width designed to fit 600 mm cabinets. Business impact: simplifies mounting, minimizes alignment work, and accelerates integration into standard enclosures. Application: plug-and-play in common cabinet configurations. Feature: Packs of 1, copper weight 10.15 kg per piece, total pack weight 10.28 kg. Business impact: robust mechanical stability during handling and operation, improving reliability and reducing rework. Application: reliable installation for heavy-duty cabinet systems. Feature: ETIM 9 EC002525 and ECLASS 8.0 27370303 alignment with E-Cu material. Business impact: procurement data consistency and quality assurance across ERP and BOM workflows. Application: supports compliant, scalable power distribution across modular systems.

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FAQs

The SV Maxi-PLS busbar 9650201 is designed for assembling cable connection systems and distributing power in electrical cabinets and switchgear. It uses E-Cu material and provides a 491 mm length with a 2,323 mm² cross-section for high-current pathways within a 60x60 mm footprint. It can be cut to required lengths to fit exact installations, reducing copper waste during assembly.
Yes, it is designed to fit standard 600 mm wide cabinets. The 491 mm length allows straightforward mounting, and the unit can be cut on-site to achieve a precise fit. Use appropriate connectors and fasteners to ensure reliable current flow and mechanical stability within Maxi-PLS systems.
The part aligns with ETIM 9 EC002525 and ECLASS 8.0 27370303 classifications, supporting standardized data exchange with procurement systems and BOM management. It is listed with EAN 4028177569478, facilitating item identification in catalogs and ERP workflows.
The 2,323 mm² cross-section, combined with E-Cu conductivity, delivers low impedance paths, reducing voltage drop and heat under high-current loads. This enhances reliability in control panels and switchgear, accelerates commissioning, and enables scalable power distribution across modular cabinet systems.
The robust copper construction and long service life require minimal maintenance, while cut-to-length capability reduces field modifications and spare part usage. Faster installation lowers labor costs, and the durable cross-section supports dependable uptime in manufacturing environments, contributing to a favorable return on investment through improved productivity and reduced downtime.