Eaton PXM350MA6321-4A1A Enclosed Meter - C12.20 0.2%
Part Number: PXM350MA6321-4A1A
Quick Summary
Eaton enclosed meter PXM350MA6321-4A1A provides precise energy measurement for industrial panels and electrical rooms. This compact, NEMA 4X enclosure is designed to withstand moisture, dust, and rugged conditions while delivering reliable 120-240 VAC metering for 3-phase, 4-wire systems. Engineers often struggle with meters that are slow to install or fail in harsh environments; this unit simplifies procurement through a single, rugged solution. It carries ANSI/IEEE Std C12.20 (0.2% accuracy), ANSI/IEEE Std C62.41 performance, IEC 687 compliance, and CE marking for global use. By pairing robust construction with flexible ModbusRTU and BACnet MSTP communication, it supports modern energy management systems and streamlines commissioning in industrial automation and building controls.
Product Information
Extended Description
PXM350MA6321-4A1A Eaton: Eaton enclosed meter, PXM350(MA6321),NEMA4X,NoCPT(120/240V), 3PH/4W Main Fused Disconnect,Control Power Fused Disconnect
Product Name
Eaton enclosed meter
Catalog Number
PXM350MA6321-4A1A
UPC
786689647353
Product Length/Depth
16 in
Product Height
8 in
Product Width
24 in
Product Weight
100 lb
Compliances
CE Marked
Certifications
ANSI/IEEE Std C12.20 (0.2% accuracy) ANSI/IEEE Std C62.41 IEC 687 (0.2% accuracy)
Voltage rating
120-240 V
Power supply
120-240VAC
Enclosure
NEMA 4X
Enclosure size
24”H x 16”W x 8”D
Number of meters
1
Display
Meter Faceplate
Frequency rating
50/60 Hz
Communication
ModbusRTU,BACnet MSTP
Eaton's enclosed meter family
Eaton's enclosed meter family
Eaton's Enclosed Meters
Eaton Specification Sheet - PXM350MA6321-4A1A
Environmental protection and rugged enclosure: The PXM350MA6321-4A1A arrives in a NEMA 4X enclosure that seals against water, dust, and corrosive exposure, reducing field maintenance and unplanned downtime. This design keeps critical meters functioning in washdown zones, outdoor panels, and aggressive industrial environments where reliability is essential. By selecting a meter with proven enclosure integrity, maintenance teams report fewer field service calls and longer mean time between failures in continuous process applications. Wide voltage compatibility and straightforward wiring: The meter operates from 120-240 VAC and supports 50/60 Hz systems, enabling direct integration with most exchange-ready power designs. This reduces transformer needs, simplifies panel layouts, and speeds commissioning in retrofit projects. For retrofit and new-build deployments, the unit minimizes wiring complexity and supports rapid, error-free installations.
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FAQs
Installers should mount the 24”H x 16”W x 8”D enclosure in a suitable electrical room, connect the 120-240 VAC supply within the main panel, and wire the meter to a 3-phase, 4-wire system as specified. Use the faceplate display for initial readings and configure ModbusRTU or BACnet MSTP communication through the standard terminals. The rugged NEMA 4X enclosure supports washdowns and outdoor locations, reducing field rework and rerouting.
The device operates on 120-240 VAC with 50/60 Hz frequency and delivers ANSI/IEEE C12.20 accuracy at 0.2%, IEC 687 at 0.2%, and ANSI/IEEE C62.41 surge performance. It includes a single meter in a NEMA 4X enclosure, 16 in depth, 24 in width, and 8 in height, with a 100 lb weight, suitable for robust industrial applications.
Yes. The PXM350MA6321-4A1A is designed for 3-phase, 4-wire systems and main fused disconnect configurations, making it a strong fit for industrial facilities that require reliable, centralized energy measurement and reporting across multiple feeders.
The meter is CE marked and compliant with ANSI/IEEE Std C12.20 (0.2% accuracy), ANSI/IEEE Std C62.41, and IEC 687 (0.2% accuracy), ensuring regulatory alignment and accurate energy data suitable for audits, billing, and energy analytics.
The rugged enclosure and high-accuracy metering reduce maintenance frequency and data errors, while ModbusRTU and BACnet MSTP support streamline integration with EMS/SCADA systems. This leads to faster fault isolation, improved energy visibility, and potentially lower operating costs over the life of the installation.