Animated.Value und Animated.View
Erstellen Sie einen Animated.Value, steuern Sie ihn mit Animated.timing und verbinden Sie ihn mit der style-Prop eines Animated.View, um die Deckkraft beim Mounten zu animieren.
Animated.Value und Animated.View ist eine kostenlose React Native Academy-Lektion auf CoddyKit. Dies ist Lektion 1 von 4. Du kannst die komplette Lektion unten kostenlos lesen – dann übst du sie direkt im Browser mit einem integrierten Code-Editor und einem KI-Tutor rund um die Uhr. Sie ist Teil des React Native Academy-Lernpfads, und dein Fortschritt wird über Web und CoddyKit-App synchronisiert. Der React Native Academy-Kurs umfasst insgesamt 4 Lektionen.
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What Is the Animated API?
The Animated API is React Native's built-in library for creating smooth, performant animations. It works by tracking special animated values that can be driven by timing or physics engines and then connected to component style properties. Unlike CSS transitions on the web, React Native animations are expressed entirely in JavaScript but can be offloaded to native threads for performance.
The Animated API ships with every React Native installation — no extra packages needed. You import it directly from react-native.
import { Animated, View } from 'react-native';Creating an Animated.Value
The core primitive is Animated.Value, which holds a numeric value that can change over time. You create one with new Animated.Value(initialValue) and store it in a ref so it persists across renders without triggering re-renders itself.
Using useRef is the recommended pattern because the animated value is mutable — you want the same object throughout the component's lifecycle. Initializing inside useState would create a new value on every render.
import React, { useRef } from 'react';
import { Animated } from 'react-native';
function MyComponent() {
const opacity = useRef(new Animated.Value(0)).current;
// opacity is an Animated.Value starting at 0
}Animated.View: The Animated Container
Animated.View is a special version of View whose style prop can accept Animated.Value references. When the animated value changes, the view updates without going through the normal React reconciliation cycle, making it very efficient.
Animated equivalents exist for other core components too: Animated.Text, Animated.Image, and Animated.ScrollView. You can also create animated versions of custom components using Animated.createAnimatedComponent().
import { Animated, StyleSheet } from 'react-native';
function FadeBox({ opacity }) {
return (
<Animated.View style={[styles.box, { opacity }]}>
</Animated.View>
);
}Driving Animation with Animated.timing
Animated.timing smoothly changes an Animated.Value from its current value to a target value over a specified duration. It accepts a config object with toValue, duration, and an optional easing function.
Calling .start() begins the animation. You can pass a callback to .start(callback) that fires when the animation completes, which is useful for chaining effects or updating state after an animation finishes.
import { Animated, Easing } from 'react-native';
Animated.timing(opacity, {
toValue: 1,
duration: 800,
easing: Easing.ease,
useNativeDriver: true,
}).start(() => {
console.log('Fade in complete!');
});Fade In on Mount Example
A classic use case is fading a component in when it first mounts. You initialize the opacity value at 0 and run a timing animation to 1 inside useEffect with an empty dependency array so it fires once after the component renders.
The component renders immediately (invisible at opacity 0) and then smoothly becomes visible over the animation duration. This technique prevents jarring content flashes on slow data loads.
import React, { useRef, useEffect } from 'react';
import { Animated, View, Text } from 'react-native';
export default function FadeIn() {
const opacity = useRef(new Animated.Value(0)).current;
useEffect(() => {
Animated.timing(opacity, {
toValue: 1,
duration: 600,
useNativeDriver: true,
}).start();
}, []);
return (
<Animated.View style={{ opacity }}>
<Text>Hello World</Text>
</Animated.View>
);
}Fade Out and Conditional Visibility
Animated opacity is also used to hide components. Fading to opacity 0 keeps the component in the layout (it occupies space) while making it invisible. To fully remove it after fading, update a state variable in the animation's completion callback.
This pattern is common for modals, toasts, and notifications that should animate out before being unmounted from the component tree.
const [visible, setVisible] = React.useState(true);
function fadeOut() {
Animated.timing(opacity, {
toValue: 0,
duration: 400,
useNativeDriver: true,
}).start(() => setVisible(false));
}
return visible ? (
<Animated.View style={{ opacity }}>
<Text>I will fade away</Text>
</Animated.View>
) : null;Translating Position with translateX/Y
Beyond opacity, Animated.Value can drive position transforms like translateX and translateY. Transforms are applied in the transform style array. This lets you slide elements onto the screen from any direction.
Using transform instead of changing left or top is critical for performance because transforms do not trigger a layout pass — they are composited on the GPU, enabling 60fps animations even on lower-end devices.
const translateY = useRef(new Animated.Value(100)).current;
useEffect(() => {
Animated.timing(translateY, {
toValue: 0,
duration: 500,
useNativeDriver: true,
}).start();
}, []);
return (
<Animated.View style={{ transform: [{ translateY }] }}>
<Text>Slides up from bottom</Text>
</Animated.View>
);Scaling Components with scale Transform
The scale transform grows or shrinks a component around its center point. Starting a component at scale: 0 and animating to 1 creates a pop-in effect, while animating from 1 to 0 creates a pop-out effect.
Scale animations feel natural for confirmation actions like a heart button in a social app or a checkmark appearing after a form submission. Combine scale with opacity for an even more polished result.
const scale = useRef(new Animated.Value(0)).current;
function popIn() {
Animated.timing(scale, {
toValue: 1,
duration: 300,
useNativeDriver: true,
}).start();
}
return (
<Animated.View style={{ transform: [{ scale }] }}>
<Text>Pop in</Text>
</Animated.View>
);Interpolating Animated Values
Animated.Value.interpolate() maps the raw numeric value to a different output range. This is extremely useful when you want one animated value to drive multiple different style changes simultaneously.
For example, you can interpolate a single progress value from 0 to 1 into both a color string (going from red to green) and a pixel offset (going from 0 to 100). The inputRange and outputRange arrays define the mapping points.
const progress = useRef(new Animated.Value(0)).current;
const backgroundColor = progress.interpolate({
inputRange: [0, 1],
outputRange: ['#ff0000', '#00ff00'],
});
const translateX = progress.interpolate({
inputRange: [0, 1],
outputRange: [0, 200],
});
return (
<Animated.View
style={{
backgroundColor,
transform: [{ translateX }],
}}
/>Animating Border Radius and Colors
You can animate almost any numeric style property with Animated.Value, including borderRadius, width, height, and even colors when using interpolate. Animating a square to a circle by changing border radius creates fluid shape morphing effects.
Note that color animation requires useNativeDriver: false because color changes are not supported by the native driver. This means color animations run on the JS thread and are slightly less performant than transform animations.
const borderRadius = useRef(new Animated.Value(0)).current;
function morphToCircle() {
Animated.timing(borderRadius, {
toValue: 50,
duration: 400,
useNativeDriver: false, // layout props need JS driver
}).start();
}
return (
<Animated.View
style={{
width: 100,
height: 100,
backgroundColor: 'tomato',
borderRadius,
}}
/>Looping Animations with Animated.loop
Animated.loop wraps another animation and repeats it indefinitely (or a set number of times with the iterations option). It is perfect for loading spinners, pulsing indicators, and continuous background effects.
To create a pulsing effect, animate opacity from 1 to 0.3 and back inside a loop. Always call .stop() on the loop animation when the component unmounts by returning it from the useEffect cleanup function to prevent memory leaks.
const pulse = useRef(new Animated.Value(1)).current;
useEffect(() => {
const animation = Animated.loop(
Animated.sequence([
Animated.timing(pulse, { toValue: 0.3, duration: 800, useNativeDriver: true }),
Animated.timing(pulse, { toValue: 1, duration: 800, useNativeDriver: true }),
])
);
animation.start();
return () => animation.stop();
}, []);Quick Check
Test your understanding of React Native Mobile Development concepts from this lesson.
Lesson Recap
In this lesson you learned: Animated.Value holds a numeric value that can change over time, Animated.timing drives smooth transitions with a configurable duration and easing, and Animated.View accepts animated values in its style prop for opacity and transform animations. Next up we explore spring and decay physics-based animations.
Häufig gestellte Fragen
Ist die Lektion „Animated.Value und Animated.View“ kostenlos?
Ja — der vollständige Text von „Animated.Value und Animated.View“ ist hier im Web kostenlos zu lesen. Um sie interaktiv zu üben (integrierter Code-Editor und 24/7 KI-Tutor) und den Rest des React Native Academy-Kurses freizuschalten, upgrade auf CoddyKit PRO. Der React Native Academy-Kurs umfasst insgesamt 4 Lektionen.
Was lerne ich in „Animated.Value und Animated.View“?
Erstellen Sie einen Animated.Value, steuern Sie ihn mit Animated.timing und verbinden Sie ihn mit der style-Prop eines Animated.View, um die Deckkraft beim Mounten zu animieren. Du übst React Native Academy mit praktischem Code, den du direkt im Browser ausführst, und ein 24/7 KI-Tutor beantwortet deine Fragen während du die Lektion bearbeitest.
Brauche ich Erfahrung, um React Native Academy zu starten?
Keine Vorkenntnisse erforderlich. React Native Academy auf CoddyKit ist für Anfänger bis fortgeschrittene Lernende strukturiert, sodass du hier starten oder von Anfang an beginnen und in deinem eigenen Tempo voranschreiten kannst. Dies ist Lektion 1 von 4.
Wie lange dauert die Lektion „Animated.Value und Animated.View“?
Die meisten CoddyKit-Lektionen dauern etwa 5–10 Minuten. Jede ist kompakt und interaktiv, sodass du stetig Fortschritte machst und genau dort weitermachst, wo du aufgehört hast – im Web und in der App.
Kann ich in dieser React Native Academy-Lektion Code schreiben und ausführen?
Ja. Jede React Native Academy-Lektion enthält einen integrierten Code-Editor, sodass du echten Code direkt in deinem Browser schreibst und ausführst und sofort KI-Feedback erhältst — ohne lokale Einrichtung erforderlich.
Alle Lektionen in diesem Kurs
- Animated.Value und Animated.View
- Feder- und Abklinganimationen
- Mehrere Eigenschaften parallel und sequenziell animieren
- useNativeDriver für Animationen mit 60 fps