TEA6320T/V1,518 NXP Semiconductors, TEA6320T/V1,518 Datasheet - Page 29

IC SOUND FADER CONTROL 32SOIC

TEA6320T/V1,518

Manufacturer Part Number
TEA6320T/V1,518
Description
IC SOUND FADER CONTROL 32SOIC
Manufacturer
NXP Semiconductors
Type
Stereo Audio Volume Controlr
Datasheet

Specifications of TEA6320T/V1,518

Package / Case
32-SOIC (7.5mm Width)
Applications
Automotive Audio
Mounting Type
Surface Mount
Mounting Style
SMD/SMT
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
935053470518
TEA6320TD-T
TEA6320TD-T
Philips Semiconductors
Loudness filter calculation example
Figure 17 shows the basic loudness circuit with an
external low-pass filter application. R1 allows an
attenuation range of 21 dB while the boost is determined
by the gain stage V
range of +20 to 12 dB.
Defining f
change while switching loudness on/off. The external
resistor R3 for f
R3 = 3.2 k is generated.
For the low-pass filter characteristic the value of the
external capacitor C1 can be determined by setting a
specific boost for a defined frequency and referring the
gain to G
For example: 3 dB boost at f = 1 kHz
G
If a loudness characteristic with additional high frequency
boost is desired, an additional high-pass section has to be
included in the external filter circuit as indicated in the
block diagram. A filter configuration that provides
AC coupling avoids offset voltage problems.
1995 Dec 19
R3
-------------------- -
j
v
Sound fader control circuit
= G
1
=
C1
R1
v(ref)
v
ref
-------------------- -
1 10
at f
=
+ 3 dB = 18 dB; f = 1 kHz and C1 = 100 nF.
10
as the frequency where the level does not
------------------------------------------------------------- -
ref
R1
G
------ -
20
ref
v
G
------ -
20
as indicated above.
v
+
. With G
2
R3
. Both result in a loudness control
1 10
can be calculated as:
10
G
------ -
20
v
v
= 21 dB and R1 = 33 k ,
G
------ -
20
v
R3
29
handbook, halfpage
C1
R3
C KVL
8
9
Fig.17 Basic loudness circuit.
V 1
0 dB
33 k
R1
Preliminary specification
V 2
TEA6320
R2
MED437

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