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ADI Solution Webinar for Power Grid Stabilization
In the AI and EV era, precision measurement is the key to power grid stabilization
The power grid is now facing new load conditions driven by the proliferation of AI data centers, EVs, and smart factories. As high-load and high-volatility demands overlap with aging infrastructure, stable power supply and precise power quality management have emerged as critical challenges.
This webinar introduces core products and design considerations applicable to IED, FRTU, Merging Unit, Smart Meter, Power Quality Meter, EV Charger, and DC Metering, centered on ADI's Power Grid semiconductor solutions.
In particular, we will address practical design issues from an engineer's perspective that are necessary for power grid stabilization, including harmonic analysis, lossless waveform capture, heat and drift in DC measurement, isolation design, and highly integrated miniaturization.

Key webinar topics
1. Understanding power grid changes and design environment
• Increased load and sharp power fluctuations due to expansion of AI data centers and EV charging infrastructure
• Limitations of traditional AC-centric power grids and the rationale for expanding DC transmission and distribution
• Understanding the structural issues of power instability that arise when integrating renewable energy and ESS

2. Power grid system architecture and design considerations
• Roles of IED, FRTU, and Merging Unit, and actual data flow within systems
• Complete measurement-control architecture from voltage and current measurement to control
• Requirements for Smart Meter and Power Quality Meter
→ Accurate RMS calculation
→ Power quality (harmonic, distortion) measurement structure
• In EV Charger and DC Metering systems
→ High-current measurement structure
→ Stable measurement methods in DC environments
3. Core technologies for precision measurement design
• High-speed sampling and FFT-based data processing structure for harmonic analysis
• Lossless Waveform Capture concept for acquiring signals without data loss
• Considerations when selecting ADC
→ Sampling accuracy
→ Inter-channel synchronization (simultaneous sampling)
→ Noise impact
4. Practical design issues in DC measurement
• Principle of measurement error caused by heat generated in shunt resistors
• Drift problems due to temperature changes and compensation methods
• Strategy for ensuring measurement stability in long-duration operating environments
5. Isolation and safety design
• Necessity of isolation for protecting control circuits in high-voltage environments
• Isolation technology structure for safely transmitting data and power simultaneously
• Design considerations for compliance with international safety standards
6. Competitive advantage through highly integrated design
• Direct Interface design approach for connecting sensors directly to ADCs
• Minimization of external filters and amplifiers for
→ Reduced PCB area
→ Reduced design complexity
→ Reduced signal interference
• Resulting improvement in product reliability and manufacturability
Recommended for these professionals
• Design engineers for transmission and distribution IED, FRTU, and Merging Unit
• Developers of energy meters and Power Quality Meters
• Designers of EV Chargers, DC Metering, and residual current monitors
• Field engineers requiring high-precision sampling, isolation safety, and power quality design
If you are a field engineer considering power grid modernization and next-generation measurement and control system development,
this webinar will be an excellent opportunity to review ADI solution application points at a glance.

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- 강*성 (2026-03-25 오후 3:55:38)
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