A second pair of eyes for electrical schematic review

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AI-Powered Electrical Schematic Review

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AI-Powered Electrical Schematic Review<br>Welcome to BV Circuits, your second pair of eyes for schematic review before PCB manufacturing. Our AI identifies design errors and provides instant, actionable improvement suggestions.

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Catch errors before fabrication

Reduce costly PCB respins

Private and secure designs

Supported EDA Tools<br>Seamlessly integrate with your preferred design automation tools. We support all major industry standards.

KiCad

OrCAD

Altium

EasyEDA

The Process

From Files to Insights in 3 Steps<br>Our AI-powered engine reviews your design files against thousands of industry standards, best design practices, and component datasheets to ensure your board is ready for manufacturing.<br>Upload Your Design Files<br>Securely upload your schematics (single PDF with all pages), netlist (Protel2 or KiCad format), and BOM with manufacturer part numbers (CSV/XLSX).

AI Schematic Review<br>Our engine cross-references pin assignments, component compatibility, design rules, and logical errors.

Get a Detailed Report<br>Receive a comprehensive report listing errors, warnings, and optimization opportunities.

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Schematic

Netlist

BOM

BV Circuits AI Engine Rev 2.4<br>AI-Generated Insights<br>Action Required<br>missing decoupling caps<br>Detected in design review

Real Examples of Issues BV Circuits Detects<br>Our AI-powered engine helps identify critical design flaws that may be overlooked during manual review.

Example 1Ex 2Ex 3Ex 4Ex 5Ex 6

Issue 1Missing Pull-Up on Open-Drain Output

The Finding<br>U1 (TL331) output drives LED D1 through a 3.01kΩ resistor, but no pull-up resistor is present.

Technical Reasoning

The TL331 has an open-drain output, which can only pull the output low and cannot source current. Without a pull-up resistor to VCC, the LED will never turn on because no current can flow when the output transistor is off.

Recommendation<br>Add a pull-up resistor from the TL331 output to the supply rail so the LED can be driven when the comparator output is high.

Enterprise-Grade Security<br>Your Data,<br>Protected.<br>We understand how important your design confidentiality is. That’s why we built our platform with security and privacy at its core.

Trusted by hardware teams

Secure cloud storage with strict access controls

Encrypted connections (SSL) for all uploads and data transfers

Automatic file deletion within 7 days of analysis

Your designs remain private, your data is never shared or sold, and NDA options are available.

(See our Privacy Policy for full details.)

What Our Users Say

Vladimir Kostic

Head of Hardware, LopTech

"An essential checkpoint before putting any design into production. BV Circuits acting as a highly reliable automated assistant for hardware verification. With constant improvements being rolled out, the platform is clearly heading in the right direction."

Mario Strano

PCB Designer

"The software identified some known issues and some things that slipped through the review process."

Petr Dvořák

'That KiCad Guy'

"The output of the analysis is legit and legible and of a high quality."

Javier Alcina Espigado

PCB Designer

"It found a lot of mistakes in the design. Definitively, a tool that will become a standard in my design process. GREAT WORK from your team."

Daniel Tamir Nilsson

RF Engineer & CEO, NAES

"The tool has great potential. The process was Great, not too long, very easy to understand."

Vladislav Shokirov

RF & Microwave Engineer

"The AI did not only check connectivity. It tried to understand intent, signal meaning, logic levels, and functional context. Even when a warning was not relevant for my design, the reasoning behind it was often correct."

Oria Yitzhak

Low Voltage Engineer

"I really loved how easy the tool is to use, everything is intuitive for the user, and the price is absolutely worth it."

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Frequently Asked Questions<br>Everything you need to know about our AI-powered schematic review.

How does BV Circuits schematic review work?

What is the accuracy of the analysis?

How is this different from uploading a schematic to ChatGPT?

What should I do to get the best results?

Ready to Improve Your Designs?<br>Join hardware engineers who trust BV Circuits to identify design issues before fabrication.<br>Start Free Analysis

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