SIH26029 · Ministry of Consumer Affairs, Food & Public Distribution

Automated High-Current Short-Circuit Test System for IEC 60898-1:2015 MCB Compliance.

Hardware Moderate Disaster Management 10 KCT slots National: 0/500
IoT & Embedded HardwareRobotics, Drones & Automation

💡 Before you commit — think it through

Guided
How is this solved today?

List the current tools/products/manual methods people use for this. Judges want to see you know the landscape.

Where's the real gap?

What do today's solutions get wrong or miss? That gap is your opening.

Who actually feels this?

Name a real person or place near you affected by this. Plan to talk to them.

What would make yours different?

One angle no other team would take. This is what wins the pitch.

  • Hardware edition — plan for a physical prototype, not just slides.

The problem

Background: The safety of electrical installations hinges on reliable Miniature Circuit Breakers (MCBs). IEC 60898-1:2015 mandates rigorous short-circuit breaking capacity tests, crucial for ensuring MCBs perform correctly under severe fault conditions. Existing Problem: Current manual or semi-automated testing methods for MCBs introduce significant challenges. These include imprecise R (resistive) and XL (inductive) circuit configurations, increased test times, and elevated safety risks for personnel during high-energy fault current generation (up to 10,000A). This impacts test accuracy, repeatability, and overall safety in the MCB certification process. Detailed Description: This proposal outlines an automated machine to precisely control test currents, voltages, and circuit impedance, executing high-current short-circuit tests on single pole, SPN, DP, TP, and FP MCBs (0.5A-63A) per IEC 60898-1:2015. It features an Automated R and XL Circuit Combination Module with high-power, automatically switched banks for precise power factor control. A High-Current Power Source (transformer-based) delivers up to 10,000A. The Test Station includes universal MCB mounting and a critical arc chute for safety A sophisticated Control and Data Acquisition System (PLC/Industrial PC) manages tests captures high-speed waveforms, and analyzes data (Ip, I2t). A user-friendly HMI allows parameter input and automatic report generation. Comprehensive safety systems are integrated. Expected Solution: The automated machine will perform MCB breaking capacity tests with unprecedented accuracy and repeatability, fully adhering to IEC 60898-1:2015. This automation will ensure precise parameter control, significantly reduce test times, and enhance safety by minimizing human intervention during high-energy fault conditions. This state-of- he-art facility will provide a reliable platform for MCB certification, contributing directly to electrical safety and quality assurance.

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