ENGINEERING TOOLS

Practical Engineering Tools for PCB and Mini-ITX Design

Accurate, easy-to-use calculators and checkers to help you make better design decisions. From PCB trace sizing to power planning and Mini-ITX system configuration.

PCB engineering platform

Trace Width Calculator

Current 2.0 A
Copper Weight 1 oz
Temperature Rise 10 °C
0.48 mm

Voltage Drop Calculator

Voltage 12 V
Current 3.0 A
Voltage Drop 0.28 V

Engineering Tools Overview

Interactive calculators and utilities to support PCB and Mini-ITX design.

PCB Trace Width Calculator

Calculate trace width based on current, copper weight and temperature rise.

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PCB Voltage Drop Calculator

Determine voltage loss based on length, current and resistance.

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PCB Copper Weight Converter

Convert copper thickness between common PCB specifications.

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PCB Via Current Calculator

Estimate via current capability for PCB power routing.

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Industrial PC MTBF Calculator

Calculate allowable mismatch for high-speed differential pairs.

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Mini-ITX Power Supply Calculator

Estimate system power requirements for Mini-ITX platforms.

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Mini-ITX Size & Clearance Checker

Check dimensions and mechanical clearance requirements.

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PCB Impedance Calculator

Estimate controlled impedance for high-speed PCB designs.

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Need Help With Platform Selection or Design Review?

Our engineering team provides support for hardware selection, layout review, thermal design and validation.

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How Our Tools Support Design Decisions

Electrical Planning

Improve early decisions with accurate power and signal calculations.

PCB Design Validation

Review critical PCB parameters before fabrication.

System Integration

Evaluate Mini-ITX mechanical, power and thermal requirements.

Frequently Asked Questions

The calculator provides estimated trace width recommendations based on current, copper weight and temperature rise. Final PCB decisions should also consider layer structure, thermal conditions and manufacturing requirements.
No. These tools support early-stage design decisions. Detailed simulation, prototype testing and system validation are still recommended for critical applications.
They provide initial electrical estimates for power planning. Engineers should verify actual loads, connectors, copper thickness and thermal conditions before deployment.
Important factors include processor performance, power input, expansion requirements, operating environment, thermal constraints and lifecycle expectations.
Our engineering team can help review Mini-ITX configurations, customization requirements, thermal considerations and deployment constraints.