Creates a Angular Polar Mountain Chart, also known as a Polar Area Chart using SciChart.js, with both regular & interpolated mountain modes, via PolarMountainRenderableSeries
drawExample.ts
angular.ts
theme.ts
1import {
2 PolarMouseWheelZoomModifier,
3 PolarZoomExtentsModifier,
4 PolarPanModifier,
5 XyDataSeries,
6 PolarNumericAxis,
7 SciChartPolarSurface,
8 EPolarAxisMode,
9 NumberRange,
10 EAxisAlignment,
11 GradientParams,
12 Point,
13 EPolarLabelMode,
14 WaveAnimation,
15 PolarMountainRenderableSeries,
16 PolarLegendModifier
17} from "scichart";
18import { appTheme } from "../../../theme";
19
20const xValues = [0, 1, 2, 3, 4, 5, 6, 7, 8];
21const MountainsDatasets = [
22 {
23 yValues: [2.6, 5.6, 3, 5, 4.8, 1.8, 5, 4.5, 3.5],
24 fillColor: appTheme.VividOrange,
25 interpolateLine: true,
26 },
27 {
28 yValues: [4.2, 2.5, 3.9, 2.5, 4, 5.5, 2.5, 4, 3],
29 fillColor: appTheme.VividTeal,
30 interpolateLine: false,
31 },
32 {
33 yValues: [1.3, 3.3, 2.5, 4.5, 5.5, 3, 4.5, 4.9, 2.4],
34 fillColor: appTheme.VividPink,
35 interpolateLine: false,
36 },
37]
38
39export const drawExample = async (rootElement: string | HTMLDivElement) => {
40 const { sciChartSurface, wasmContext } = await SciChartPolarSurface.create(rootElement, {
41 theme: appTheme.SciChartJsTheme,
42 });
43
44 const radialYAxis = new PolarNumericAxis(wasmContext, {
45 polarAxisMode: EPolarAxisMode.Radial,
46 axisAlignment: EAxisAlignment.Right,
47 visibleRange: new NumberRange(0, 6),
48 drawMinorTickLines: false,
49 drawMajorTickLines: false,
50 useNativeText: true,
51 drawMinorGridLines: false,
52 startAngle: Math.PI / 2,
53 zoomExtentsToInitialRange: true,
54 labelPrecision: 0,
55 labelStyle: {
56 color: "white",
57 },
58 });
59 sciChartSurface.yAxes.add(radialYAxis);
60
61 const polarXAxis = new PolarNumericAxis(wasmContext, {
62 polarAxisMode: EPolarAxisMode.Angular,
63 axisAlignment: EAxisAlignment.Top,
64 polarLabelMode: EPolarLabelMode.Parallel,
65 visibleRange: new NumberRange(0, 9),
66 flippedCoordinates: true, // go clockwise
67 useNativeText: true,
68 startAngle: Math.PI / 2, // start at 12 o'clock
69 zoomExtentsToInitialRange: true,
70 labelPrecision: 0,
71 labelStyle: {
72 color: "white",
73 },
74 });
75 sciChartSurface.xAxes.add(polarXAxis);
76
77 MountainsDatasets.forEach(({yValues, fillColor, interpolateLine}) => {
78 const polarMountain = new PolarMountainRenderableSeries(wasmContext, {
79 dataSeries: new XyDataSeries(wasmContext, {
80 xValues: [...xValues, xValues[xValues.length - 1] + 1], // add 1 more xValue to close the loop
81 yValues: [...yValues, yValues[0]], // close the loop by drawing to the first yValue
82 dataSeriesName: interpolateLine ? "Interpolated" : "Straight",
83 }),
84 fillLinearGradient: new GradientParams(
85 new Point(0, 0),
86 new Point(0, 1),
87 [
88 { color: fillColor + "AA", offset: 0 },
89 { color: fillColor + "33", offset: 0.3 },
90 ]
91 ),
92 interpolateLine: interpolateLine,
93 stroke: fillColor, // this also gives off the color for the legend marker
94 strokeThickness: 2,
95 animation: new WaveAnimation({ duration: 800, zeroLine: 0 }),
96 });
97 sciChartSurface.renderableSeries.add(polarMountain);
98 })
99
100 sciChartSurface.chartModifiers.add(
101 new PolarPanModifier(),
102 new PolarZoomExtentsModifier(),
103 new PolarMouseWheelZoomModifier(),
104 new PolarLegendModifier({
105 showCheckboxes: true,
106 })
107 );
108
109 return { sciChartSurface, wasmContext };
110};This Angular example demonstrates a standalone component implementation of a Polar Mountain / Area Chart using the ScichartAngularComponent. The chart visualizes three mountain series with configurable interpolation and gradient fills in polar coordinates.
The component passes the drawExample function to the [initChart] input of scichart-angular. The polar surface is configured with a radial PolarNumericAxis (Y-axis) and angular axis (X-axis), using EPolarAxisMode to define their behavior. Series are rendered with WaveAnimation effects.
The example maintains all core features including: polar-specific modifiers, gradient fills with alpha transparency, and the option to interpolate lines. The Angular integration demonstrates proper component lifecycle management with automatic WASM context cleanup.
This implementation follows Angular standalone component best practices.

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