ABB 1STQ007594B0000 Power Mgmt & Dist - 5000A

Part Number: 1STQ007594B0000
Manufacturer
ABB
Part number
1STQ007594B0000

Quick Summary

ABB 1STQ007594B0000 is a high-current busbar system for reliable power distribution in industrial switchgear. Engineers often battle bulky layouts, wiring complexity, vibration, and downtime; this solution simplifies connections, reduces fault-prone terminations, and improves overall reliability. It aligns with ETIM EC001522 for Busbar in both ETIM 8 and ETIM 9, and with eClass V11.1 27370303, supporting compliant cataloging and procurement. The system uses copper conductors with clear installation manuals, enabling faster deployment, predictable performance, and lower lifecycle costs in power management and distribution across automation projects.

Product Information

Extended Description

1STQ007594B0000 ABB: N Positione Bbs 5000A, W400/3x60x10
Software Category
A
Material
Copper
WEEE Category
4. Large Equipment (Any External Dimension More Than 50 cm)
WEEE B2C / B2B
Business To Business
Environmental Information
1STC803001D0201
Product Net Weight
4.67 kg
Package Level 1 Units
packet 1 piece
Instructions and Manuals
Instruction Handbook - System pro E power - RBBS Busbar System - N PE Busbar
Data Sheet, Technical Information
1STC803001D0201
ETIM 8
EC001522 - Busbar
ETIM 9
EC001522 - Busbar
eClass
V11.1 : 27370303
High current capability up to 5000A enables main feeders to handle peak loads without resorting to additional busbars, reducing impedance and heat. This improves system reliability and lowers installation costs by avoiding paralleling conductors. In industrial switchgear and panel assemblies, it supports scalable power distribution across multiple lines while maintaining safe fault current pathways. Copper conductor material provides low resistance and better thermal performance, reducing voltage drop and energy losses. This translates to improved efficiency and longer service life for critical distribution paths in automation systems. WEEE Category 4 Large Equipment and B2B orientation ensure sustainability targets and simplify procurement audits across plant sites. Comprehensive installation support, including the Instruction Handbook for System pro E power RBBS Busbar System, reduces commissioning time and field errors. Data sheets and standard mappings (ETIM 8/9 EC001522, eClass 27370303) enhance catalog compatibility, aiding fast sourcing and lifecycle planning. Data sheet 1STC803001D0201 complements clear packaging and unit-level provisioning, supporting repeatable, reliable installations.

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FAQs

Begin with the Instruction Handbook for System pro E power RBBS Busbar System and verify neutral N_PE connections. The unit ships as a single piece (4.67 kg) and should be mounted following the recommended conductor routing and torque specs from the data sheet. Ensure compliance with WEEE and ETIM references during installation to minimize commissioning risk and ensure repeatable performance.
Key specs include a 5000A current rating and copper conductor material for low resistance and efficient heat dissipation. The footprint accommodates W400/3X60X10 dimensions with a unit weight around 4.67 kg and single-piece packaging. These characteristics support high-load main feeders, reduce voltage drop, and provide reliable fault-current pathways in industrial switchgear.
Yes. The product references ETIM 8 EC001522 and ETIM 9 EC001522 for Busbar, and is listed under eClass V11.1 27370303, aligning with common cataloging and sourcing processes. This integration facilitates accurate specifications, supplier qualification, and smoother tendering for corporate power distribution projects.
Yes. The design supports compatibility with the System pro E power RBBS Busbar System, including installation guidance and connector schemes. This ensures consistent terminal layouts, standardized torque settings, and dependable ferrule performance, which simplifies expansion projects and accelerates commissioning in automation and power distribution layouts.
Long-term value comes from reduced resistance losses and high current capability that minimize the need for parallel conductors, lowering energy costs. Copper construction also offers durability, reducing maintenance downtime. Coupled with clear documentation and fast commissioning, this drives faster plant ramp-up, lower total cost of ownership, and improved uptime in high-demand automation environments.