Eaton PXM3000MA15-2B4AS7 Enclosed Meter - NEMA12, 480V
Part Number: PXM3000MA15-2B4AS7
Quick Summary
The Eaton enclosed meter delivers precise energy measurement for industrial power systems. Facilities often struggle with meters that don’t fit tight spaces or integrate smoothly with BAS and 480V distribution networks. This model features a rugged NEMA 12 enclosure and supports BACnet/IP and Modbus RTU/TCP for reliable automation connectivity. By consolidating two meters into a single, faceplate-ready package with CT shorting blocks and provisions for future expansion, it reduces installation time and ongoing maintenance. Engineers gain clearer visibility into energy usage, improved control of load profiles, and a scalable path for energy-management initiatives across facilities.
Product Information
Extended Description
PXM3000MA15-2B4AS7 Eaton: 2-PXM3000(MA15,No Opt I/O),Provisions for 2-PXM3k,NEMA12(480V),1-480V 3PH/4W Main Fuse Disconnect(PXM3k#1),1-208V 3PH/4W MFD(PXM3k#2),2-480V 3PH/4W MFD(future PXM3k),4-Door mounted ETH Jack,CT Shorting Blocks
Product Name
Eaton enclosed meter
Catalog Number
PXM3000MA15-2B4AS7
UPC
786689857912
Product Length/Depth
12 in
Product Height
24 in
Product Width
20 in
Product Weight
100 lb
Voltage rating
480V
Power supply
480V
Enclosure
NEMA 12
Enclosure size
24inH x 20inW x 12inD
Number of meters
2
Display
Meter Faceplate
Frequency rating
50/60 Hz
Communication
BACnet/IP Modbus RTU/TCP
Degree of protection
NEMA 12
Two meters in a single enclosure provide space-efficient, cost-reducing metering for mid-size facilities, enabling faster commissioning and simplified field wiring. The rugged NEMA 12 housing protects sensitive electronics in dusty or damp environments, reducing downtime and service calls while meeting common industrial protection standards. BACnet/IP and Modbus RTU/TCP communications enable seamless BAS integration, enabling real-time energy visibility and control across manufacturing floors and data centers, lowering total cost of ownership. The 24 in x 20 in x 12 in enclosure footprint, with a faceplate display and 4-door ETH Jack, simplifies installation in traditional electrical rooms and retrofit projects. CT shorting blocks and expansion provisions for 2-PXM3k support scalable metering as facility needs grow. This design mitigates objections about future-proofing, ensuring compatibility with existing and evolving control architectures while delivering measurable efficiency gains.
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FAQs
The PXM3000MA15-2B4AS7 is designed for 480V, 50/60 Hz systems and supports BACnet/IP and Modbus RTU/TCP, enabling straightforward integration with common Building Automation Systems. Its two-meter capability and standard 24x20x12 in NEMA 12 enclosure simplify retrofit work, while CT shorting blocks and a faceplate display streamline commissioning and ongoing monitoring in existing plant rooms.
Key specs include 480V voltage rating, 50/60 Hz frequency, two meters in one enclosure, NEMA 12 enclosure protection, 24 in H x 20 in W x 12 in D dimensions, and a weight of approximately 100 lb. It supports 1-480V 3P/4W main fuse disconnect and planned MFD configurations for 208V and 480V inputs with future expansion.
Yes. The device provides BACnet/IP and Modbus RTU/TCP communications, enabling direct integration with BAS platforms. This supports centralized energy monitoring, load profiling, and demand management across facilities, improving operational visibility and decision-making without additional interface equipment.
Resource downloads include Eaton’s enclosed meter family brochures and a dedicated overview PDF, plus a video overview of Eaton’s enclosed meters. These assets support specification confirmation, wiring diagrams, and installation guidance, helping accelerate project timelines and reduce commissioning risk.
The dual-meter design saves enclosure space and reduces wiring complexity, lowering initial material costs and installation time. With BACnet/IP/Modbus connectivity, facilities gain better energy visibility, enabling faster fault detection and energy-management improvements, which translate to reduced energy waste and predictable maintenance planning over the system’s lifecycle.