Alpine 7893 Owners Manual - Page 10

About the Time Correction - cda diagram

Page 10 highlights

Basic Operation BAND Rotary encoder T. CORR About the Time Correction The distance between the listener and the speakers in a car vary widely due to the special conditions of the mobile environment. This difference in the distances from the speakers to the listener creates a shift in the sounds image and frequency characteristics. This is caused by the time delay between the sound reaching the listener's right versus the left ear. To correct this, the CDA-7995/CDA-7894/CDA-7893/CDA7892 is able to delay the audio signal to the speakers closest to the listener. This effectively creates a perception of increased distance for those speakers. The listener can be placed at an equal distance between the left and right speakers for optimum staging. The adjustment will be made for each speaker in a step of 0.1 ms. Example 1. Listening Position: Front Left Seat Adjust the time correction level of the front left speaker to a high value and the rear right to zero or a low value. Here we calculate the time correction value for the front left speaker in the diagram at the left. Conditions: Farthest Speaker - listening position : 2.25 m (88-9/16") Front left speaker - listening position : 0.5 m (19-11/16") Calculation: L = 2.25 m - 0.5 m = 1.75 m (68-7/8") Time correction = 1.75 ÷ 343* × 1000 = 5.1 (ms) *Speed of sound: 343 m/s (765 mph) at 20˚C In other words, giving the front left speaker a time correction value of 5.1 ms makes it seem as if the distance to the front left speaker is the same as the distance to the farthest speaker. The sound is not balanced because the distance between the listening position and the various speakers is different. The difference in distance between the front left speaker and the rear right speaker is 1.75 m (68-7/8"). Time correction eliminates the differences in the time required for the sound to reach the listening position. The time of the front left speaker is corrected by 5.1 ms so that its sound reaches the listening position at the same time as the sound of other speakers. Example 2. Listening Position: All Seats Adjust the time correction level of each speaker to almost the same level. 1 Sit in the listening position (driver's seat, etc.) and measure the distance (in meters) between your head and the various speakers. 2 Calculate the difference between the distance to the farthest speaker and the other speakers. L = (distance to farthest speaker) - (distance to other speakers) 3 Divide the distances calculated for the speakers by the speed of sound (343 m/s (765 mph) at 20˚C). These values are the time correction values for the different speakers. 0.5m 2.25m 5.1ms ∗ ∗ Tips * Subwoofer speaker. You cannot change the Time Correction value for the subwoofer, but you can set the subwoofer's apparent position to the front by adjusting the Time Correction value of the front and rear speakers. For details, refer to the "Tips" on page 9. 8-EN

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8
-EN
Basic Operation
Rotary encoder
T. CORR
BAND
Here we calculate the time correction value for the front left
speaker in the diagram at the left.
Conditions:
Farthest Speaker – listening position:
2.25 m (88-9/16")
Front left speaker – listening position :
0.5 m (19-11/16")
Calculation: L = 2.25 m – 0.5 m = 1.75 m (68-7/8")
Time correction = 1.75 ÷ 343
*
×
1000 = 5.1 (ms)
*
Speed of sound: 343 m/s (765 mph) at 20˚C
In other words, giving the front left speaker a time
correction value of 5.1 ms makes it seem as if the distance
to the front left speaker is the same as the distance to the
farthest speaker.
The sound is not balanced because the distance between
the listening position and the various speakers is different.
The difference in distance between the front left speaker
and the rear right speaker is 1.75 m (68-7/8").
Time correction eliminates the differences in the time
required for the sound to reach the listening position.
The time of the front left speaker is corrected by 5.1 ms so
that its sound reaches the listening position at the same
time as the sound of other speakers.
Example 2. Listening Position: All Seats
Adjust the time correction level of each speaker to almost
the same level.
1
Sit in the listening position (driver’s seat, etc.) and
measure the distance (in meters) between your head
and the various speakers.
2
Calculate the difference between the distance to the
farthest speaker and the other speakers.
L =
(distance to farthest speaker) – (distance to other
speakers)
3
Divide the distances calculated for the speakers by the
speed of sound (343 m/s (765 mph) at 20˚C).
These values are the time correction values for the
different speakers.
About the Time Correction
The distance between the listener and the speakers in a
car vary widely due to the special conditions of the mobile
environment. This difference in the distances from the
speakers to the listener creates a shift in the sounds image
and frequency characteristics. This is caused by the time
delay between the sound reaching the listener’s right
versus the left ear.
To correct this, the CDA-7995/CDA-7894/CDA-7893/CDA-
7892 is able to delay the audio signal to the speakers
closest to the listener. This effectively creates a perception
of increased distance for those speakers. The listener can
be placed at an equal distance between the left and right
speakers for optimum staging.
The adjustment will be made for each speaker in a step of
0.1 ms.
Example 1. Listening Position: Front Left Seat
Adjust the time correction level of the front left speaker to a
high value and the rear right to zero or a low value.
Tips
* Subwoofer speaker.
You cannot change the Time Correction value for
the
subwoofer, but you can set the subwoofer's apparent position
to the front by adjusting the Time Correction value of the front
and rear speakers.
For details, refer to the "Tips" on page 9.
2.25m
0.5m
5.1ms