The example on this page demonstrates how to create a Angular Stacked Column Chart using our feature-rich JavaScript Chart Library, SciChart.js.
drawExample.ts
angular.ts
theme.ts
1import {
2 ENumericFormat,
3 MouseWheelZoomModifier,
4 NumericAxis,
5 SciChartSurface,
6 StackedColumnCollection,
7 StackedColumnRenderableSeries,
8 WaveAnimation,
9 XyDataSeries,
10 ZoomExtentsModifier,
11 ZoomPanModifier,
12 EColumnDataLabelPosition,
13 IStackedColumnSeriesDataLabelProviderOptions,
14 EVerticalTextPosition,
15 NumberRange,
16 Thickness,
17} from "scichart";
18import { appTheme } from "../../../theme";
19
20export const drawExample = async (rootElement: string | HTMLDivElement) => {
21 // Create a SciChartSurface
22 const { wasmContext, sciChartSurface } = await SciChartSurface.create(rootElement, {
23 theme: appTheme.SciChartJsTheme,
24 });
25
26 // Create XAxis, YAxis
27 sciChartSurface.xAxes.add(
28 new NumericAxis(wasmContext, {
29 labelFormat: ENumericFormat.Decimal,
30 labelPrecision: 0,
31 autoTicks: false,
32 majorDelta: 1,
33 minorDelta: 1,
34 drawMajorGridLines: false,
35 drawMinorGridLines: false,
36 drawMajorBands: false,
37 axisTitle: "Year",
38 })
39 );
40 sciChartSurface.yAxes.add(
41 new NumericAxis(wasmContext, {
42 labelPrecision: 0,
43 growBy: new NumberRange(0, 0.05),
44 axisTitle: "Sales $USD (Billion)",
45 })
46 );
47
48 // Data for the example
49 const xValues = [1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003];
50 const yValues1 = [10, 13, 7, 16, 4, 6, 20, 14, 16, 10, 24, 11];
51 const yValues2 = [12, 17, 21, 15, 19, 18, 13, 21, 22, 20, 5, 10];
52 const yValues3 = [7, 30, 27, 24, 21, 15, 17, 26, 22, 28, 21, 22];
53 const yValues4 = [16, 10, 9, 8, 22, 14, 12, 27, 25, 23, 17, 17];
54 const yValues5 = [7, 24, 21, 11, 19, 17, 14, 27, 26, 22, 28, 16];
55
56 const dataLabels: IStackedColumnSeriesDataLabelProviderOptions = {
57 color: "#FFfFFF",
58 style: { fontSize: 12, fontFamily: "Arial", padding: new Thickness(0, 0, 2, 0) },
59 precision: 0,
60 positionMode: EColumnDataLabelPosition.Outside,
61 verticalTextPosition: EVerticalTextPosition.Center,
62 };
63
64 // Create some RenderableSeries - for each part of the stacked column
65 // Notice the stackedGroupId. This defines if series are stacked (same), or grouped side by side (different)
66 const rendSeries1 = new StackedColumnRenderableSeries(wasmContext, {
67 dataSeries: new XyDataSeries(wasmContext, { xValues, yValues: yValues1, dataSeriesName: "EU" }),
68 fill: appTheme.VividPurple,
69 stroke: appTheme.PaleSkyBlue,
70 opacity: 0.8,
71 stackedGroupId: "StackedGroupId",
72 dataLabels,
73 });
74
75 const rendSeries2 = new StackedColumnRenderableSeries(wasmContext, {
76 dataSeries: new XyDataSeries(wasmContext, { xValues, yValues: yValues2, dataSeriesName: "Asia" }),
77 fill: appTheme.VividPink,
78 stroke: appTheme.PaleSkyBlue,
79 opacity: 0.8,
80 stackedGroupId: "StackedGroupId",
81 dataLabels,
82 });
83
84 const rendSeries3 = new StackedColumnRenderableSeries(wasmContext, {
85 dataSeries: new XyDataSeries(wasmContext, { xValues, yValues: yValues3, dataSeriesName: "USA" }),
86 fill: appTheme.VividOrange,
87 stroke: appTheme.PaleSkyBlue,
88 opacity: 0.8,
89 stackedGroupId: "StackedGroupId",
90 dataLabels,
91 });
92
93 const rendSeries4 = new StackedColumnRenderableSeries(wasmContext, {
94 dataSeries: new XyDataSeries(wasmContext, { xValues, yValues: yValues4, dataSeriesName: "UK" }),
95 fill: appTheme.VividSkyBlue,
96 stroke: appTheme.PaleSkyBlue,
97 opacity: 0.8,
98 stackedGroupId: "StackedGroupId",
99 dataLabels,
100 });
101
102 const rendSeries5 = new StackedColumnRenderableSeries(wasmContext, {
103 dataSeries: new XyDataSeries(wasmContext, { xValues, yValues: yValues5, dataSeriesName: "Latam" }),
104 fill: appTheme.VividTeal,
105 stroke: appTheme.PaleSkyBlue,
106 opacity: 0.8,
107 stackedGroupId: "StackedGroupId",
108 dataLabels,
109 });
110
111 // To add the series to the chart, put them in a StackedColumnCollection
112 const stackedColumnCollection = new StackedColumnCollection(wasmContext, {
113 dataPointWidth: 0.6,
114 });
115
116 stackedColumnCollection.add(rendSeries1, rendSeries2, rendSeries3, rendSeries4, rendSeries5);
117 stackedColumnCollection.animation = new WaveAnimation({ duration: 1000, fadeEffect: true });
118
119 sciChartSurface.renderableSeries.add(stackedColumnCollection);
120
121 // Add some interactivity modifiers
122 sciChartSurface.chartModifiers.add(
123 new ZoomExtentsModifier(),
124 new ZoomPanModifier({ enableZoom: true }),
125 new MouseWheelZoomModifier()
126 );
127
128 sciChartSurface.zoomExtents();
129
130 const toggleHundredPercentMode = (value: boolean) => {
131 stackedColumnCollection.isOneHundredPercent = value;
132 sciChartSurface.zoomExtents(200);
133 };
134
135 const toggleDataLabels = (areDataLabelsVisible: boolean) => {
136 for (let i = 0; i < 5; i++) {
137 const columnSeries = stackedColumnCollection.get(i);
138 columnSeries.dataLabelProvider.style.fontSize = areDataLabelsVisible ? 0 : 12;
139 }
140 sciChartSurface.invalidateElement();
141 };
142
143 return { sciChartSurface, controls: { toggleHundredPercentMode, toggleDataLabels } };
144};
145This example demonstrates how to integrate SciChart.js into an Angular application using a standalone Angular component. The visualization displays a stacked column chart that can be toggled between a standard stacked mode and a 100% stacked mode, while also providing options to show or hide data labels. The implementation leverages Angular Material components for its user interface, ensuring a responsive and modern design.
The Angular component initializes the SciChart.js chart asynchronously using an onInit callback. The chart is created in the drawExample function where the SciChartSurface, XAxis, and YAxis are configured, and a series of StackedColumnRenderableSeries are added as part of a StackedColumnCollection. Each series is bound to its data using XyDataSeries, and a WaveAnimation enhances the visual presentation. Interactive modifiers such as ZoomExtentsModifier, ZoomPanModifier, and MouseWheelZoomModifier ensure the chart is responsive to user interactions. Developers can explore the setup of SciChart.js in Angular via the scichart-angular package and the Getting Started with SciChart JS guide for further technical details.
The example provides real-time update capabilities by linking Angular Material UI controls with the chart’s state. Users can easily switch between regular stacked mode and 100% stacked mode, and dynamically toggle data labels. The asynchronous initialization pattern, which is similar to practices discussed in Angular asynchronous onInit callbacks, ensures that UI events are seamlessly communicated to the chart instance. Moreover, the use of interactive modifiers provides advanced zooming and panning features, adding to the overall data exploration capabilities.
This implementation demonstrates effective Angular integration patterns for third-party libraries. By utilizing standalone Angular components and leveraging Angular Material controls such as Toggle Buttons and Switches (as detailed in Angular Material Button Toggle), the example shows how to encapsulate dynamic chart updates within Angular’s component lifecycle. Developers are encouraged to adopt these asynchronous initialization techniques and event handling patterns to maintain clean state management and optimal performance when working with WebGL-rendered charts. For more insights on integrating such libraries, check out the Tutorial 01 - Setting up a npm Project with SciChart.js.

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