triz-solver

Guide users through a structured TRIZ model to generate 3–5 breakthrough concepts.

15|Updated Mar 4, 2026
One-click install
npx skills add https://github.com/v0lka/skills --skill triz-solver
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: triz-solver
Source: https://github.com/v0lka/skills/tree/main/research/triz-solver
Command: npx skills add https://github.com/v0lka/skills --skill triz-solver

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

TRIZ Inventive Problem Solver guides users to transform vague design challenges into a structured problem model, enabling systematic generation of breakthrough concepts.

Core Features & Use Cases

  • Problem framing: Convert ambiguous requirements into a concise, testable problem statement.
  • TRIZ tool selection: Choose lightweight tools (contradictions, ARIZ-lite, Su-Field) appropriate to the problem.
  • Concept portfolio: Produce 3–5 TRIZ-oriented solution directions with risks, benefits, and validation ideas.
  • Research augmentation: Integrate current-domain information, standards, patents, and precedents to inform concepts.

Quick Start

Frame the user's problem and select a TRIZ lens to start, then generate 3–5 concept directions with a quick validation plan.

Frequently Asked Questions about triz-solver

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

FAQPage Schema
How do I resolve design contradictions in engineering and product development?

Resolving design contradictions involves structuring trade-offs into a TRIZ problem model, which applies inventive principles to eliminate conflicts rather than compromise. This systematic approach generates 3–5 breakthrough concepts with risk and validation considerations.

What is the best way to turn vague design challenges into testable problem statements?

Framing vague design challenges requires converting ambiguous requirements into a concise, testable problem statement. A structured TRIZ problem model then applies appropriate lightweight tools to generate breakthrough concepts with clear validation ideas.

Can I use TRIZ methods for design optimization across different processes and systems?

TRIZ methods apply to design optimization across diverse products, processes, or systems by modeling trade-offs and generating inventive concepts. Selecting appropriate TRIZ tools like contradictions or Su-Field ensures systematic breakthrough ideation.

How do I generate multiple inventive concepts for an engineering trade-off?

Generating multiple inventive concepts requires applying a structured TRIZ lens to the engineering trade-off. This process produces a concept portfolio of 3–5 TRIZ-oriented solution directions, complete with risks, benefits, and validation plans.

Do I need current domain information and patents to solve inventive design problems?

Current domain information, standards, and patents are required to inform TRIZ-ready concepts. Integrating this research augmentation with clear problem statements and constraints ensures the generated design solutions are grounded in existing precedents.

When should I use ARIZ-lite versus Su-Field modeling for problem-solving?

Choosing between ARIZ-lite and Su-Field modeling depends on the specific design trade-offs within the structured TRIZ problem model. Selecting the appropriate lightweight tool ensures the generated concepts effectively address the engineering contradictions.