Eaton P3BHKD3400N Power Management & Distribution - N/A

Part Number: P3BHKD3400N
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Manufacturer
Eaton
Part number
P3BHKD3400N

Quick Summary

Eaton P3BHKD3400N is a power management module designed for robust distribution in industrial panels. Engineers often confront downtime, wiring complexity, and integration gaps when scaling automation systems. In typical deployments, CE compliance, IP ratings, and SIL suitability influence safe, reliable operation. This module aligns with Eaton’s broader power management ecosystem to help panel builders improve reliability, streamline maintenance, and reduce lifecycle costs in manufacturing and process environments. By focusing on modularity, ease of integration, and consistent performance, P3BHKD3400N supports a clear path to higher uptime and lower total cost of ownership for industrial facilities.

Product Information

Feature → Business Impact → Application: The P3BHKD3400N offers a modular approach to power distribution that simplifies panel design and expansion, reducing wiring mistakes and installation time. This translates to shorter commissioning windows and lower labor costs on new lines and retrofits in process automation environments. Application: ideal for manufacturing cells and control panels where space is at a premium and changes are frequent. Feature → Business Impact → Application: Seamless interoperability with Eaton’s power management ecosystem enables centralized monitoring and easier diagnostics, improving overall equipment effectiveness (OEE) and reducing unscheduled downtime. Application: suitable for line-side panels and distribution blocks requiring unified data and control. Feature → Business Impact → Application: Built-in safety and fault-tolerance concepts improve uptime and operator protection, supporting compliance with industry electrical standards while lowering risk exposure. Application: critical process lines and packaging areas with strict reliability requirements. Feature → Business Impact → Application: Fast installation on DIN rails with standardized connections cuts installation time, improving project lead times and enabling scalable growth in automation programs. Application: new plant rollouts and retrofits in automotive, food & beverage, and general manufacturing. Feature → Business Impact → Application: Flexible configurations and modular add-ons address common objections about future expansion, enabling cost control and predictable capex. Application: evolving lines and smart factories. Long-tail keywords embedded: industrial power distribution modules, DIN rail power module, panel-mounted power management, process automation panels, energy management in manufacturing, industrial electrical standards.

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FAQs

Install on a standard DIN rail with correctly rated circuit connections. Use Eaton-compatible terminal blocks for clean, color-coded wiring and consistent conductor sizing. Verify clearance for heat dissipation and ensure panel enclosure is rated for your environment. These practices minimize wiring errors and speed up commissioning while maintaining safety margins.
The device is designed to provide reliable power management within industrial panels, enabling predictable distribution for automated sections. Expect improved continuity of service, easier fault isolation, and streamlined maintenance through centralized monitoring and modular configuration, which supports consistent performance in process automation tasks.
Yes. Its modular design and integrability with Eaton’s power management ecosystem make it appropriate for manufacturing and process automation environments that require dependable distribution, scalable upgrades, and simplified field maintenance across multiple line stations.
Check for CE marking and other regional electrical standards as applicable to your site, alongside any IP ratings relevant to enclosure protection and SIL suitability for safety-critical applications. If in doubt, confirm with the supplier that the specific unit meets the standards required for your installation and jurisdiction.
By enabling modular growth, centralized monitoring, and easier maintenance, the unit can reduce downtime and maintenance labor, leading to lower overall operating costs. The up-front investment is often offset by faster commissioning, longer mean time between failures (MTBF), and simpler upgrades aligned with an evolving smart factory strategy.