Yamaha MOX8 Synthesizer Parameter Manual - Page 24

EG Depth Velocity, Sensitivity, Sensitivity Curve

Page 24 highlights

Voice Parameters EG Depth Velocity Sensitivity Determines how the range of the Cutoff Frequency responds to Velocity. „ Positive values: high Velocities cause the Filter EG range to expand and low Velocities cause it to contract, as shown in Figure 24 and Figure 25. „ Negative values: High Velocities cause the Filter EG range to contract and low Velocities cause it to expand. „ 0: The Filter EG range does not change, regardless of the Velocity. Figure 24: Positive Sensitivity: High Velocity, large range EG Depth Velocity Sensitivity Curve Figure 25: Positive Sensitivity: Low Velocity, small range Curve that determines how the Filter EG transition range changes according to the Velocity (strength) with which you play notes on the keyboard. Figure 26 shows an example in which the middle range of Velocities (around 64) causes the Filter EG transition range not to change and the higher/lower range of Velocities causes it to change more rapidly. D Y CA B X Figure 26: Filter EG Depth Velocity Curve A: Low B: High C: Low D: High X: Velocity Y: Filter EG Transition Range (Cutoff Frequency range) 24

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Voice Parameters
24
EG Depth Velocity
Sensitivity
Determines how the range of the Cutoff Frequency responds to Velocity.
Positive values: high Velocities cause the Filter EG range to expand
and low Velocities cause it to contract, as shown in Figure 24 and
Figure 25.
Negative values: High Velocities cause the Filter EG range to contract
and low Velocities cause it to expand.
0
: The Filter EG range does not change, regardless of the Velocity.
Figure 24:
Positive Sensitivity: High Velocity, large range
Figure 25:
Positive Sensitivity: Low Velocity, small range
EG Depth Velocity
Sensitivity Curve
Curve that determines how the Filter EG transition range changes
according to the Velocity (strength) with which you play notes on the
keyboard.
Figure 26 shows an example in which the middle range of Velocities
(around 64) causes the Filter EG transition range not to change and the
higher/lower range of Velocities causes it to change more rapidly.
Figure 26:
Filter EG Depth Velocity Curve
A:
Low
B:
High
C:
Low
D:
High
X:
Velocity
Y:
Filter EG Transition Range (Cutoff Frequency range)
D
B
C
Y
A
X