PMIC - Energy Metering

Image Part Number Description / PDF Quantity Rfq
78M6618-IMR/F

78M6618-IMR/F

Maxim Integrated

IC PWR MEASUREMENT OCTAL 68-QFN

0

78M6618-M/F/P1

78M6618-M/F/P1

Maxim Integrated

IC PWR MEASUREMENT OCTAL 68QFN

0

71M6541FT-IGTR/F

71M6541FT-IGTR/F

Maxim Integrated

IC ENERGY METER 64-LQFP

0

78M6612-IGT/F

78M6612-IGT/F

Maxim Integrated

IC POWER MEASUREMENT AC 64-LQFP

0

78M6610+PSU/C01

78M6610+PSU/C01

Maxim Integrated

IC ENERGY MEASUREMENT 16TSSOP

0

78M6613-IMR/F/PSP

78M6613-IMR/F/PSP

Maxim Integrated

IC PWR MEASUREMENT 1PH AC 32SQFN

0

71M6543GT-IGT/F

71M6543GT-IGT/F

Maxim Integrated

IC ENERGY METER 100-LQFP

0

71M6545HT-IGTR/F

71M6545HT-IGTR/F

Maxim Integrated

IC ENERGY METER 64-LQFP

0

78M6631-IM/F/P2

78M6631-IM/F/P2

Maxim Integrated

IC POWER MEAS/MON 3 PHASE 56TQFN

0

MAX71313LECB+

MAX71313LECB+

Maxim Integrated

IC SOC 64K FLASH 64LQFP

0

71M6541GT-IGT/F

71M6541GT-IGT/F

Maxim Integrated

IC ENERGY METER 64-LQFP

0

71M6541GT-IGTR/F

71M6541GT-IGTR/F

Maxim Integrated

IC ENERGY METER 64-LQFP

0

MAX78615+LMU/A01T

MAX78615+LMU/A01T

Maxim Integrated

IC ENERGY MEAS PROC LMU TQFN

0

78M6631-IMR/F/P48

78M6631-IMR/F/P48

Maxim Integrated

IC ENERGY MEAS 3PHASE SOC 56TQFN

0

78M6613-IMR/F

78M6613-IMR/F

Maxim Integrated

IC AC PWR MON APPLIANCES 32-QFN

0

71M6513-IGT/F

71M6513-IGT/F

Maxim Integrated

IC ENERGY METER 3PH 100-LQFP

0

71M6542FT-IGTR/F

71M6542FT-IGTR/F

Maxim Integrated

IC ENERGY METR SGL PHASE 100LQFP

0

71M6542GT-IGT/F

71M6542GT-IGT/F

Maxim Integrated

IC ENERGY METER 100-LQFP

0

MAX78615+PPM/A03T

MAX78615+PPM/A03T

Maxim Integrated

IC ENERGY MEAS PROC 3PH TQFN

0

78M6610+PSU/B00

78M6610+PSU/B00

Maxim Integrated

IC ENERGY MEASURMENT 1PH 24TQFN

0

PMIC - Energy Metering

1. Overview

Power Management Integrated Circuits (PMICs) with Energy Metering functionality are specialized semiconductor devices designed to monitor, measure, and manage electrical energy consumption in real-time. These ICs integrate analog front-ends (AFEs), high-precision analog-to-digital converters (ADCs), and digital signal processing units to quantify parameters like voltage, current, power, and energy (Wh/VAh). They play a critical role in modern energy-efficient systems, enabling precise energy auditing, load optimization, and compliance with regulatory standards (e.g., IEEE 1459, IEC 62053). Applications span smart grids, industrial automation, and IoT devices.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Single-Phase Energy Metering ICsMeasure voltage/current in single-phase AC systems, support 24-bit ADC, harmonic analysisResidential smart meters, home energy monitors
Three-Phase Energy Metering ICsMulti-channel measurement, phase imbalance detection, 0.1% accuracyIndustrial power distribution systems, EV charging stations
Isolated Energy Metering ICsGalvanic isolation up to 5kV, integrated DC/DC convertersHigh-voltage motor drives, grid-tied inverters
Low-Power Energy Metering ICsSub-10 A standby current, integrated energy accumulation registersBattery-powered sensors, portable diagnostics tools

3. Structure and Components

A typical PMIC - Energy Metering device comprises:

  • Analog Front-End (AFE): Differential amplifiers for current/voltage sensing
  • ADC Module: High-resolution (24-bit ) converters for signal digitization
  • DSP Core: Real-time computation of RMS values, THD, and energy accumulation
  • Communication Interfaces: SPI, I2C, UART for host connectivity
  • Calibration Logic: Digital registers for gain/offset compensation
The physical package ranges from QFN (4x4 mm) for low-power variants to HTSSOP for high-channel-density designs.

4. Key Technical Specifications

ParameterDescriptionImportance
Measurement AccuracyTypically 0.1% to 0.5% over temperatureDetermines billing accuracy in utility meters
Dynamic Range1000:1 to 3000:1 current/voltage ratioEnables detection of micro-leakage currents
Harmonics SupportUp to 21st order harmonic analysisCritical for power quality assessment
Temperature Stability 50ppm/ C drift compensationEnsures reliability in harsh environments
Communication ProtocolModbus, DLMS/COSEM, proprietary protocolsAffects system integration complexity

5. Application Fields

Main industries and equipment:

  • Energy Infrastructure: Smart electricity meters, grid analyzers
  • Industrial Automation: Motor control systems, programmable logic controllers (PLCs)
  • Consumer Electronics: Smart plugs, energy-efficient appliances
  • Data Centers: Server rack power monitoring, UPS systems
  • Renewables: Solar inverters, wind turbine condition monitoring
Case Study: Texas Instruments' AMC1304M25 is used in EV charging stations for 0.25% accuracy energy billing.

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Analog DevicesAD7768-124-bit ADC, 256kSPS, integrated digital filter
STMicroelectronicsSTPM34Three-phase metering, IEC 62053-23 compliant
Silan MicroelectronicsSM2301Low-cost single-phase IC with UART interface
NXP SemiconductorsMCZ3301Automotive-grade, 0.05% accuracy for HEV/PHEV

7. Selection Guidelines

Key considerations:

  • Accuracy Requirements: 0.1% for utility-grade meters vs. 1% for diagnostics
  • Environmental Conditions: Industrial (-40 C to +85 C) vs. commercial (0 C to 70 C)
  • Integration Level: Standalone ICs vs. System-on-Chip (SoC) with MCU cores
  • Cost Constraints: Discrete ADC+MCU solutions vs. dedicated energy metering SoCs
Recommendation: For solar inverters, prioritize isolation ratings (>2.5kVRMS) and temperature stability.

8. Industry Trends

Future directions include:

  • AI-enhanced metering: On-chip machine learning for anomaly detection
  • Wireless integration: PMICs with BLE/Zigbee for IoT edge devices
  • Wide Bandgap Compatibility: GaN/SiC FET co-design for EV applications
  • Standardization: Unified firmware stacks for IEC 61850-10 compliance
Market growth is projected at 8.2% CAGR (2023-2030), driven by smart grid deployments and data center energy mandates.

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