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What is 6764?

This electronic component, produced by the manufacturer "STMicroelectronics", performs the same function as "AUDIO SIGNAL PROCESSOR".


6764 Datasheet PDF - STMicroelectronics

Part Number 6764
Description AUDIO SIGNAL PROCESSOR
Manufacturers STMicroelectronics 
Logo STMicroelectronics Logo 


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® TDA7340G
AUDIO SIGNAL PROCESSOR
AUDIOPROCESSOR:
MUTE, SOFT MUTE AND ZERO CROSSING
MUTE
ONE DIFFERENTIAL, TWO STEREO AND
TWO MONO INPUTS
DIFFERENTIAL PHONE INPUT
VOLUME, BASS, TREBLE AND LOUDNESS
CONTROL
FOUR SPEAKER ATTENUATORS WITH IN-
DEPENDENT ATTENUATION CONTROL
STEREODECODER:
ROLL-OFF ADJUSTMENT
ADJUSTMENT FREE INTEGRATED 456KHz
VCO
HIGH CUT CONTROL
STEREO BLEND
NOISE BLANKER:
INTEGRATED HIGH-PASS FILTER
NOISE RECTIFIER OUTPUT FOR QUALITY
DETECTION
PROGRAMMABLE TRIGGER THRESHOLD
DEVIATION AND FIELD STRENGTH DE-
PENDENT TRIGGER ADJUSTMENT
PAUSE DETECTOR:
PROGRAMMABLE THRESHOLD
ALLFUNCTIONS PROGRAMMABLEVIA I2C BUS
DESCRIPTION
The TDA7340G I2C bus controlled audio signal
processor contains all signal processing blocks of
PQFP44
ORDERING NUMBER: TDA7340G
a high performance car radio, including audio-
processor, stereodecoder, noise blanker, pause
detector and different mute functions.
The use of BICMOS technology allows the imple-
mentation of several filter functions with switched
capacitor techniques like fully integrated, adjust-
ment free PLL Loop filter, pilot detector with inte-
grator and pilot cancellation.
This minimizes the number of external compo-
nents.
Due to a highly linear signal processing, using
CMOS-switching techniques instead of standard
bipolar multipliers, very low distortion and very
low noise are obtained also in the stereodecoder
part. The audioprocessor contains several new
features like softmute, zero-crossing mute and
pause detector.
Very low DC stepping is obtained by use of a
BICMOS technology.
September 1999
1/27

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6764 equivalent
TDA7340G
ELECTRICAL CHARACTERISTICS (continued.)
Symbol
Parameter
Test Condition
Min.
DIFFERENTIAL CD STEREO INPUT
RI Input Resistance
CMRR Common Mode Rejection Ratio
d
eIN
GDIFF
Distortion
Input Noise
Differential Gain
Input selector BIT D6 = 0 (0dB)
Input selector BIT D6 = 1(-6dB)
VCM = 1VRMS ;
f = 1KHz
f = 10KHz
VI = 1VRMS
20Hz to 20KHz; Flat; D6 = 0
D6 = 0
D6 = 1
10
14
48
45
-1
-7
DIFFERENTIAL TELEPHONE MONO INPUT
RI Input Resistance
CMRR Common Mode Rejection Ratio VCM = 1VRMS ; f = 1KHz
d Distortion
VI = 1VRMS
eIN Input Noise
20Hz to 3 KHz; Flat
GDIFF
Differential Gain
14
45
-4.75
VOLUME CONTROL
RI Input Resistance (INR, INL)
CMAX
Max Gain
AMAX
ASTEPC
Max Attenuation
Step Resolution Coarse
Attenuation
ASTEPF
Step Resolution Fine
Attenuation
EA Attenuation Set Error
ET Tracking Error
VDC DC Steps
G = -20 to 20dB
G = -20 to -59.7dB
Adjacent Attenuation Steps
from 0dB to AMAX
24
18.75
57.7
0.50
0.11
-1.25
3
-3
LOUDNESS CONTROL (LOUDL, LOUDR)
RI Internal Resistance
ASTEP
Step Resolution
AMAX
Max Attenuation
35
0.5
17.5
ZERO CROSSING MUTE
VTH Zero Crossing Threshold (1)
AMUTE
VDC
Mute Attenuation
DC Step
WIN = 11
WIN = 10
WIN = 01
WIN = 00
0dB to Mute
80
SOFT MUTE
AMUTE
tD
Mute Attenuation
Delay Time
CEXT = 22nF;
0 to -20dB;
I = IMAX
I = IMIN
45
0.8
15
SOFT MUTE AT PHONE-GND
Vil Input Low Voltage
(1) WIN represents the MUTE programming bit pair D6,D5 for the zero crossing window threshold
Typ.
15
20
75
70
0.01
5
0
-6
20
60
0.15
10
-3.75
35
20
59.7
1.25
0.31
0
0.1
0.5
50
1.25
18.75
20
40
80
160
100
0.3
60
1.5
25
1.4
Max.
20
30
0.08
1
-5
26
0.5
-2.75
46
21.25
62.7
2.00
0.51
1.25
2
2
3
5
65
2.0
20.0
3
2.0
45
1.6
Unit
K
K
dB
dB
%
µV
dB
dB
K
dB
%
µV
dB
K
dB
dB
dB
dB
dB
dB
dB
mV
mV
K
dB
dB
mV
mV
mV
mV
dB
mV
dB
ms
ms
V
5/27


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