triz-skill

Apply TRIZ methodology and 40 inventive principles to resolve technical contradictions.

10|2|Updated Jun 10, 2026
One-click install
npx skills add https://github.com/peterfei/forge-skill --skill triz-skill
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: triz-skill
Source: https://github.com/peterfei/forge-skill/tree/main/methods/triz-skill
Command: npx skills add https://github.com/peterfei/forge-skill --skill triz-skill

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

This Skill solves complex technical contradictions where improving one system parameter leads to the degradation of another, moving innovation from trial-and-error to algorithmic problem-solving.

Core Features & Use Cases

  • Contradiction Analysis: Identifies technical, physical, and management contradictions within a system.
  • Invention Principle Matching: Maps identified contradictions to Altshuller’s 40 Inventive Principles to generate breakthrough solutions.
  • Use Case: If you are designing a product that needs to be both lightweight and highly durable, this Skill helps you identify the specific contradiction and applies principles like Segmentation or Another Dimension to resolve the conflict.

Quick Start

Activate the triz-skill and analyze the technical contradiction between increasing battery capacity and reducing device weight in my current hardware design.

Frequently Asked Questions about triz-skill

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
What is TRIZ methodology for resolving technical contradictions in engineering design?

TRIZ methodology is a systematic approach that resolves technical contradictions by identifying system-level conflicts and applying 40 inventive principles to generate innovative engineering solutions. It shifts innovation from trial-and-error to algorithmic problem-solving.

How do I solve technical contradictions where improving one system parameter degrades another?

To solve technical contradictions where improving one parameter degrades another, you input system parameters and performance metrics to identify the conflict, then match it against Altshuller’s 40 Inventive Principles to derive actionable design improvements.

When do I need to apply inventive principles to system design conflicts?

You need to apply inventive principles to system design conflicts when standard optimization compromises system integrity, such as needing a product to be both lightweight and highly durable. It systematically isolates the contradiction to apply principles like Segmentation or Another Dimension.

How do I analyze a physical contradiction between increasing battery capacity and reducing device weight?

To analyze a physical contradiction between increasing battery capacity and reducing device weight, you structure the input of system parameters and performance metrics to identify the exact conflict, then map it to inventive principles to generate a resolution.

Can I use TRIZ to identify management contradictions within a hardware design project?

Yes, you can use TRIZ to identify management contradictions within a hardware design project. The methodology analyzes technical, physical, and management contradictions to uncover system-level conflicts and apply structured problem-solving.

What are the limitations of using algorithmic problem-solving for engineering challenges?

The main limitation of using algorithmic problem-solving for engineering challenges is the strict requirement for structured input of system parameters and performance metrics to function correctly, demanding comprehensive system data to generate actionable design improvements.