Animation
Pin & Label Animation[-∞..+∞%]
This percentage value can be used to animate the display of the pins and the place names. The animation is done by scaling the symbols and texts at the respective locations and follows the order of the locations as they were entered as focus elements in the "Flight Route" section.
Note that if you have defined place names multiple times due to stopover or open-jaw flights, multiple pin symbols and place names for such coordinates will also be displayed, which may then overlap during an animation.
This percentage value allows you to advance the animation of the next element in time. The scaling of the next elements then already starts when the animation of the current element is not yet finished. In the extreme case of an overlap value of 100%, the animation of all pins and place names occurs simultaneously.
In this section, the temporal behavior of the animation of the pins can be defined via a curve. This curve defines at the left edge the intensity of the animation when a pin still has an animation value of 0%. If here the curve already starts with a Y-value above 0, the pins are already seen at a pin & label animation with this size multiplier.
Accordingly, the right edge of the curve reflects the scaling factor for the pins when reaching a 100% value for Pin & Label Animation. As usual on these spline controls, custom control points can be added by Ctrl/Ctrl-clicking on the curve. Control points on the curve can be selected, moved and also deleted again by clicking on them. Selected control points have tangents that can also be used to shape the spline curve.
By increasing this value, the spline curve behaves like a B-spline. This means that the curve no longer necessarily runs through all control points, but is extremely rounded. Tangents at the control points become less important for the curve as the voltage increases.
These values can be used to define the minimum and maximum for the spline function graph. By default, the X values are between 0 and 1 and correspond to the possible animation values for the pins and the place names between 0% and 100%. On the vertical Y-axis are the scaling values, which by default are between 0 and 1.
This option matches the direction of the tangent at the last spline point with the tangent at the first spline point.
This option sets the Y-position of the last spline control point to the same height as the first spline control point of the curve.
Here you will find the X and Y coordinate part of the currently selected spline point and you can also use these fields to enter precise values.
Locking prevents an unintentional change of the corresponding X or Y value at the selected point.
Details about using the color gradient can be found under Color Gradient in Nodes.
The length and slope of the tangents at a selected control point of the curve can be set and read with this. Alternatively, the tangents can also be moved directly along the curve with the mouse pointer.
By activating this option, the left and right tangents of a control point can be independently scaled and controlled in alignment. This function can also be activated by holding the Shift key when interactively editing a tangent page with the mouse. The complete independence of tangent length and direction can be partially restricted again despite this option if Keep visible angle is activated.
Already broken tangents at a selected control point can be brought back to a line and to uniform lengths by right-clicking in the spline graph and selecting" Point Types > Soft".
This option is only available if Break tangent is active. In that case both tangents of a selected control point are kept on a straight line. Only the lengths of both tangents can then still be individually
In the active state, the direction of the tangents at the selected control point can no longer be changed.
In the active state, the length of the tangents at the selected control point can no longer be changed.
This settings block repeats the parameters we just discussed for the animation of the pins, except that this time the animation of the place names is affected.
By increasing this value, the spline curve behaves like a B-spline. This means that the curve no longer necessarily runs through all control points, but is extremely rounded. Tangents at the control points become less important for the curve as the voltage increases.
These values can be used to define the minimum and maximum for the spline function graph. By default, the X values are between 0 and 1 and correspond to the possible animation values for the pins and the place names between 0% and 100%. On the vertical Y-axis are the scaling values, which by default are between 0 and 1.
This option matches the direction of the tangent at the last spline point with the tangent at the first spline point.
This option sets the Y-position of the last spline control point to the same height as the first spline control point of the curve.
Here you will find the X and Y coordinate part of the currently selected spline point and you can also use these fields to enter precise values.
Locking prevents an unintentional change of the corresponding X or Y value at the selected point.
Details about using the color gradient can be found under Color Gradient in Nodes.
The length and slope of the tangents at a selected control point of the curve can be set and read with this. Alternatively, the tangents can also be moved directly along the curve with the mouse pointer.
By activating this option, the left and right tangents of a control point can be independently scaled and controlled in alignment. This function can also be activated by holding the Shift key when interactively editing a tangent page with the mouse. The complete independence of tangent length and direction can be partially restricted again despite this option if Keep visible angle is activated.
Already broken tangents at a selected control point can be brought back to a line and to uniform lengths by right-clicking in the spline graph and selecting" Point Types > Soft".
This option is only available if Break tangent is active. In that case both tangents of a selected control point are kept on a straight line. Only the lengths of both tangents can then still be individually
In the active state, the direction of the tangents at the selected control point can no longer be changed.
In the active state, the length of the tangents at the selected control point can no longer be changed.

