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Planejando o sistema de design

Defina o escopo do seu sistema de design, incluindo a taxonomia de tokens, o inventário de componentes e as ferramentas de documentação que você usará.

Planejando o sistema de design é uma aula grátis de Tailwind CSS Academy no CoddyKit. Esta é a aula 1 de 4. Você pode ler a aula completa abaixo gratuitamente — depois pratica ao vivo no navegador com um editor de código integrado e um tutor de IA 24/7. Faz parte do caminho de aprendizado de Tailwind CSS Academy, e seu progresso é sincronizado entre a web e o app CoddyKit. O curso de Tailwind CSS Academy inclui 4 aulas no total.

Partes desta aula ainda não foram traduzidas e aparecem em inglês.

What Is a Design System

A design system is a collection of reusable components, design tokens, guidelines, and documentation that enables teams to build consistent user interfaces efficiently. In a Tailwind context, the design system includes the token configuration in tailwind.config.js, a library of styled components, written conventions, and documentation tooling so the whole team uses the system rather than reinventing solutions.

Defining the System Scope

Before writing any code, define the scope of your design system. Answer three questions: Which products does it serve? (one app, multiple apps, third-party consumers). Which component categories does it cover? (typography, forms, layout primitives, complex patterns). Who maintains it? (dedicated team, distributed contributors). Scope drives every subsequent decision about complexity and governance.

/* Design System Scope Document (example) */

Products:
  - Web marketing site
  - Admin dashboard
  - Mobile web app (responsive)

Component inventory:
  - Primitives: Button, Input, Badge, Icon
  - Layout: Stack, Grid, Container
  - Composite: Card, Modal, Dropdown, Toast
  - Complex: DataTable, DatePicker, Combobox

Maintainers:
  - Design System team (2 engineers, 1 designer)
  - Contributors: any engineer via PR

Token Taxonomy Planning

Design tokens are the atomic values the system is built from. Plan a two-tier taxonomy: primitive tokens are raw values (like blue-500: #3b82f6), and semantic tokens are purpose-driven references (like color.primary: blue-500). Semantic tokens are what components consume; primitive tokens are what semantic tokens reference. This indirection enables theme switching without touching components.

/* Token taxonomy plan */

/* Tier 1 — Primitives (raw values) */
/* color.blue.500 = #3b82f6 */
/* color.red.500  = #ef4444 */
/* spacing.4      = 1rem    */

/* Tier 2 — Semantic tokens (purpose-driven) */
/* color.primary     = color.blue.500 */
/* color.danger      = color.red.500  */
/* color.surface     = color.white    */
/* spacing.component = spacing.4      */

Choosing Documentation Tooling

Pick your documentation approach early because it shapes how you write components. Common options: Storybook for interactive component sandboxes and visual regression testing, Docusaurus for written documentation with code samples, or a custom Next.js documentation site using your own design system (eating your own dog food). Each has trade-offs in setup cost and maintenance burden.

/* Documentation tool comparison */

Storybook:
  + Visual sandbox for every component
  + Addon ecosystem (a11y, viewport, interactions)
  - Setup and maintenance overhead
  - Separate from your app, can drift

Custom docs site:
  + Uses your actual design system live
  + No tooling drift
  - More initial build work

Docusaurus:
  + Markdown-driven, easy to write
  - No interactive component sandbox by default

Component Inventory and Prioritization

List every component your products need and prioritize them by frequency of use and impact on consistency. Buttons appear everywhere — build them first. DataTables are used rarely and complex — defer until later iterations. A simple spreadsheet with columns for component name, priority (high/medium/low), and status (planned/in-progress/done) is sufficient to track the build-out.

/* Component inventory (simplified) */

Priority HIGH (build in sprint 1-2):
  Button, Input, Label, Badge, Icon, Spinner

Priority MEDIUM (sprint 3-4):
  Card, Modal, Dropdown, Toast, Tooltip, Avatar

Priority LOW (sprint 5+):
  DatePicker, Combobox, DataTable, RichTextEditor

Accessibility Standards Planning

Decide on your accessibility target level before building any components. WCAG 2.1 AA is the standard most organizations target. Document which ARIA patterns each component type must implement: buttons need type attributes, modals need focus trapping, dropdowns need role='listbox', etc. Including accessibility in the planning phase costs far less than retrofitting it later.

/* Accessibility checklist per component type */

Button:
  [ ] aria-label when icon-only
  [ ] disabled state with aria-disabled
  [ ] focus-visible ring

Modal:
  [ ] aria-modal + role='dialog'
  [ ] aria-labelledby pointing to title
  [ ] Focus trap on open
  [ ] Escape key closes
  [ ] Return focus to trigger on close

Dropdown:
  [ ] role='listbox' + aria-expanded on trigger
  [ ] role='option' + aria-selected on items
  [ ] Keyboard navigation (up/down/enter/escape)

Naming Conventions for Components

Establish naming conventions before writing a single component. Choose a style for component names (PascalCase), variant prop names (variant: primary | secondary | danger), and size prop names (size: sm | md | lg). Document this in your contributing guide so all contributors produce predictable, discoverable APIs without needing code review for naming disagreements.

/* Component API convention examples */

/* Variant prop: primary, secondary, ghost, danger */
<Button variant='primary'>Save</Button>
<Button variant='ghost'>Cancel</Button>

/* Size prop: sm, md, lg */
<Button size='sm'>Compact</Button>
<Button size='lg'>Large CTA</Button>

/* State props: boolean adjectives */
<Button loading={true}>Saving...</Button>
<Button disabled={true}>Unavailable</Button>

Planning the Repository Structure

Lay out the repository structure before coding. A typical design system package contains a src/components/ directory (one subfolder per component), a src/tokens/ directory, a src/index.ts barrel export, and a tailwind.config.js. Storybook stories live alongside their components in ComponentName.stories.tsx files for proximity.

packages/ui/
├── src/
│   ├── components/
│   │   ├── Button/
│   │   │   ├── Button.tsx
│   │   │   ├── Button.test.tsx
│   │   │   └── Button.stories.tsx
│   │   └── Card/
│   │       ├── Card.tsx
│   │       └── Card.stories.tsx
│   ├── tokens/
│   │   ├── colors.ts
│   │   └── typography.ts
│   └── index.ts      # barrel export
├── tailwind.config.js
└── package.json

Governance and Contribution Process

A design system without governance degrades into inconsistency. Define a contribution process: how engineers propose new components (RFC document or issue template), who reviews them (design system team + one other designer), and what the acceptance criteria are (WCAG AA, TypeScript types, Storybook story, unit test). Write this in a CONTRIBUTING.md at the package root.

# CONTRIBUTING.md

## Proposing a new component
1. Open a GitHub issue with the Component Proposal template
2. Tag @design-system-team for review
3. Await approval before implementing

## Component acceptance criteria
- [ ] TypeScript props with JSDoc
- [ ] All variants documented in Storybook
- [ ] WCAG AA accessibility (checked with axe-core)
- [ ] Unit tests for behavior
- [ ] Changelog entry

Versioning and Breaking Change Policy

Version the design system using Semantic Versioning: patch for bug fixes, minor for new components or additive changes, major for breaking changes to existing APIs. Publish a machine-readable changelog with each release. Establish a policy for how long deprecated APIs are supported before removal — typically two major versions — so consumers have time to migrate without being stranded.

/* Versioning policy */

Patch (1.0.x) — non-breaking:
  Bug fixes, accessibility improvements, style tweaks

Minor (1.x.0) — non-breaking:
  New components, new optional props, new variants

Major (x.0.0) — breaking:
  Removed props, renamed components, changed APIs
  Deprecate 2 minor versions before removal
  Provide codemod where possible

Design Handoff and Token Synchronization

Keep design tokens synchronized between your Figma files and the code. Tools like Style Dictionary or Tokens Studio can export Figma design tokens directly to a JSON format that populates the Tailwind config. This single source of truth prevents the classic scenario where designers update colors in Figma but the code still uses old hex values weeks later.

# Style Dictionary: transforms design tokens to Tailwind-compatible output

# tokens/raw/colors.json (from Figma export)
{
  "brand": {
    "blue": { "500": { "value": "#3b82f6" } }
  }
}

# After running Style Dictionary:
# tokens/tailwind/colors.js
module.exports = {
  brand: { blue: { 500: '#3b82f6' } }
};

# Consumed in tailwind.config.js:
colors: { ...require('./tokens/tailwind/colors') }

Quick Check

Test your understanding of Tailwind CSS Mastery concepts from this lesson.

Lesson Recap

In this lesson you learned: defining system scope including products, component inventory, and maintainership, planning a two-tier token taxonomy with primitive and semantic tokens, and establishing governance with contribution processes, versioning policy, and design-to-code token synchronization. Next up we implement the token and config layer.

Perguntas Frequentes

A aula “Planejando o sistema de design” é grátis?

Sim — o texto completo de “Planejando o sistema de design” é grátis para ler aqui na web. Para praticá-la interativamente (um editor de código integrado e um tutor de IA 24/7) e desbloquear o restante do curso de Tailwind CSS Academy, atualize para CoddyKit PRO. O curso de Tailwind CSS Academy inclui 4 aulas no total.

O que vou aprender em “Planejando o sistema de design”?

Defina o escopo do seu sistema de design, incluindo a taxonomia de tokens, o inventário de componentes e as ferramentas de documentação que você usará. Você pratica Tailwind CSS Academy com código prático que executa diretamente no navegador, e um tutor de IA 24/7 responde suas dúvidas enquanto trabalha na aula.

Preciso ter experiência prévia para começar Tailwind CSS Academy?

Nenhuma experiência prévia é necessária. Tailwind CSS Academy no CoddyKit é estruturado para alunos iniciantes até avançados, então você pode começar aqui ou desde o início e aprender no seu ritmo. Esta é a aula 1 de 4.

Quanto tempo leva a aula “Planejando o sistema de design”?

A maioria das aulas CoddyKit leva cerca de 5–10 minutos. Cada uma é compacta e interativa, então você faz progresso constante e retoma exatamente de onde parou entre web e app.

Posso escrever e executar código nesta aula de Tailwind CSS Academy?

Sim. Cada aula de Tailwind CSS Academy inclui um editor de código integrado, então você escreve e executa código real direto no navegador e recebe feedback de IA instantaneamente — nenhuma configuração local necessária.

Todas as aulas deste curso

  1. Planejando o sistema de design
  2. Criando a camada de tokens e configuração
  3. Construção da biblioteca de componentes
  4. Documentação e transferência para a equipe
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