New to Claude Skills? Learn how to install them →

wshobson on GitHub

Web Component Design

Free

Craft reusable UI components with modern frameworks.

by wshobson38.7k stars on wshobson/agents
4 views
Updated Jul 18, 2026
Get this skill

Free · Opens the source repo

What Web Component Design does

The Web Component Design skill provides guidance on building reusable and maintainable UI components using popular frameworks like React, Vue, and Svelte. It emphasizes clean composition patterns and various CSS-in-JS approaches, making it a valuable resource for developers and designers looking to implement effective component architectures. This skill is particularly useful for those involved in creating component libraries, designing component APIs, or establishing frontend design systems.

By leveraging this skill, users can learn about important concepts such as compound components, render props, and slots, which facilitate the development of complex UI structures. Additionally, the skill covers various CSS-in-JS solutions, helping developers choose the right styling approach for their projects, whether it's using utility-first frameworks like Tailwind CSS or scoped CSS with CSS Modules.

The skill also delves into best practices for component API design, ensuring that components are intuitive and easy to use. It provides practical examples and code snippets to illustrate these concepts, enabling users to apply them directly to their projects. Overall, this skill is designed for frontend developers and designers who want to enhance their component design capabilities and create robust, accessible user interfaces.

When to use it

Use this skill when developing component libraries, implementing complex component patterns, or refactoring legacy components to modern standards.

When not to use it

This skill may not be suitable for simple projects that do not require reusable components or for developers not using React, Vue, or Svelte.

What you can build with it

Designing a Component Library

Utilize this skill to create a comprehensive library of reusable UI components that adhere to best practices.

Implementing Compound Components

Learn how to structure related components that work together seamlessly, enhancing user experience.

Refactoring Legacy UI

Apply modern component patterns to update and improve existing UI components for better maintainability.

How to install Web Component Design

View source

1. Install with the skills CLI

npx skills add wshobson/agents/web-component-design --agent claude-code

2. Or install it manually

Download the skill folder and drop it into ~/.claude/skills/ for all projects, or .claude/skills/ to scope it to one repo. Restart Claude Code so it picks up the new skill.

Anthropic's agentic coding CLI, and the reference implementation of Agent Skills. Drop a skill folder into ~/.claude/skills and Claude Code loads it automatically whenever a task matches the skill's description. Claude Code docs

Inside SKILL.md

Written by wshobson

Web Component Design

Build reusable, maintainable UI components using modern frameworks with clean composition patterns and styling approaches.

When to Use This Skill

  • Designing reusable component libraries or design systems
  • Implementing complex component composition patterns
  • Choosing and applying CSS-in-JS solutions
  • Building accessible, responsive UI components
  • Creating consistent component APIs across a codebase
  • Refactoring legacy components into modern patterns
  • Implementing compound components or render props

Core Concepts

1. Component Composition Patterns

Compound Components: Related components that work together

// Usage
<Select value={value} onChange={setValue}>
  <Select.Trigger>Choose option</Select.Trigger>
  <Select.Options>
    <Select.Option value="a">Option A</Select.Option>
    <Select.Option value="b">Option B</Select.Option>
  </Select.Options>
</Select>

Render Props: Delegate rendering to parent

<DataFetcher url="/api/users">
  {({ data, loading, error }) =>
    loading ? <Spinner /> : <UserList users={data} />
  }
</DataFetcher>

Slots (Vue/Svelte): Named content injection points

<template>
  <Card>
    <template #header>Title</template>
    <template #content>Body text</template>
    <template #footer><Button>Action</Button></template>
  </Card>
</template>

2. CSS-in-JS Approaches

SolutionApproachBest For
Tailwind CSSUtility classesRapid prototyping, design systems
CSS ModulesScoped CSS filesExisting CSS, gradual adoption
styled-componentsTemplate literalsReact, dynamic styling
EmotionObject/template stylesFlexible, SSR-friendly
Vanilla ExtractZero-runtimePerformance-critical apps

3. Component API Design

interface ButtonProps {
  variant?: "primary" | "secondary" | "ghost";
  size?: "sm" | "md" | "lg";
  isLoading?: boolean;
  isDisabled?: boolean;
  leftIcon?: React.ReactNode;
  rightIcon?: React.ReactNode;
  children: React.ReactNode;
  onClick?: () => void;
}

Principles:

  • Use semantic prop names (isLoading vs loading)
  • Provide sensible defaults
  • Support composition via children
  • Allow style overrides via className or style

Quick Start: React Component with Tailwind

import { forwardRef, type ComponentPropsWithoutRef } from "react";
import { cva, type VariantProps } from "class-variance-authority";
import { cn } from "@/lib/utils";

const buttonVariants = cva(
  "inline-flex items-center justify-center rounded-md font-medium transition-colors focus-visible:outline-none focus-visible:ring-2 disabled:pointer-events-none disabled:opacity-50",
  {
    variants: {
      variant: {
        primary: "bg-blue-600 text-white hover:bg-blue-700",
        secondary: "bg-gray-100 text-gray-900 hover:bg-gray-200",
        ghost: "hover:bg-gray-100 hover:text-gray-900",
      },
      size: {
        sm: "h-8 px-3 text-sm",
        md: "h-10 px-4 text-sm",
        lg: "h-12 px-6 text-base",
      },
    },
    defaultVariants: {
      variant: "primary",
      size: "md",
    },
  },
);

interface ButtonProps
  extends
    ComponentPropsWithoutRef<"button">,
    VariantProps<typeof buttonVariants> {
  isLoading?: boolean;
}

export const Button = forwardRef<HTMLButtonElement, ButtonProps>(
  ({ className, variant, size, isLoading, children, ...props }, ref) => (
    <button
      ref={ref}
      className={cn(buttonVariants({ variant, size }), className)}
      disabled={isLoading || props.disabled}
      {...props}
    >
      {isLoading && <Spinner className="mr-2 h-4 w-4" />}
      {children}
    </button>
  ),
);
Button.displayName = "Button";

Framework Patterns

React: Compound Components

import { createContext, useContext, useState, type ReactNode } from "react";

interface AccordionContextValue {
  openItems: Set<string>;
  toggle: (id: string) => void;
}

const AccordionContext = createContext<AccordionContextValue | null>(null);

function useAccordion() {
  const context = useContext(AccordionContext);
  if (!context) throw new Error("Must be used within Accordion");
  return context;
}

export function Accordion({ children }: { children: ReactNode }) {
  const [openItems, setOpenItems] = useState<Set<string>>(new Set());

  const toggle = (id: string) => {
    setOpenItems((prev) => {
      const next = new Set(prev);
      next.has(id) ? next.delete(id) : next.add(id);
      return next;
    });
  };

  return (
    <AccordionContext.Provider value={{ openItems, toggle }}>
      <div className="divide-y">{children}</div>
    </AccordionContext.Provider>
  );
}

Accordion.Item = function AccordionItem({
  id,
  title,
  children,
}: {
  id: string;
  title: string;
  children: ReactNode;
}) {
  const { openItems, toggle } = useAccordion();
  const isOpen = openItems.has(id);

  return (
    <div>
      <button onClick={() => toggle(id)} className="w-full text-left py-3">
        {title}
      </button>
      {isOpen && <div className="pb-3">{children}</div>}
    </div>
  );
};

Vue 3: Composables

<script setup lang="ts">
import { ref, computed, provide, inject, type InjectionKey } from "vue";

interface TabsContext {
  activeTab: Ref<string>;
  setActive: (id: string) => void;
}

const TabsKey: InjectionKey<TabsContext> = Symbol("tabs");

// Parent component
const activeTab = ref("tab-1");
provide(TabsKey, {
  activeTab,
  setActive: (id: string) => {
    activeTab.value = id;
  },
});

// Child component usage
const tabs = inject(TabsKey);
const isActive = computed(() => tabs?.activeTab.value === props.id);
</script>

Svelte 5: Runes

<script lang="ts">
  interface Props {
    variant?: 'primary' | 'secondary';
    size?: 'sm' | 'md' | 'lg';
    onclick?: () => void;
    children: import('svelte').Snippet;
  }

  let { variant = 'primary', size = 'md', onclick, children }: Props = $props();

  const classes = $derived(
    `btn btn-${variant} btn-${size}`
  );
</script>

<button class={classes} {onclick}>
  {@render children()}
</button>

Best Practices

  1. Single Responsibility: Each component does one thing well
  2. Prop Drilling Prevention: Use context for deeply nested data
  3. Accessible by Default: Include ARIA attributes, keyboard support
  4. Controlled vs Uncontrolled: Support both patterns when appropriate
  5. Forward Refs: Allow parent access to DOM nodes
  6. Memoization: Use React.memo, useMemo for expensive renders
  7. Error Boundaries: Wrap components that may fail

Common Issues

  • Prop Explosion: Too many props - consider composition instead
  • Style Conflicts: Use scoped styles or CSS Modules
  • Re-render Cascades: Profile with React DevTools, memo appropriately
  • Accessibility Gaps: Test with screen readers and keyboard navigation
  • Bundle Size: Tree-shake unused component variants

Frequently asked questions about Web Component Design

Similar skills