Channel Separation f = 1KHz100dB
1st and 2nd Volume Control 1dB step-470dB
Bass, Middle and TrebleControl 1dB step-14+14dB
Mute Attenuation100dB
TDA7319
ELECTRICAL CHARACTERISTICS (VS= 9V; RL= 10KΩ; f = 1KHz; all control = flat (G = 0); T
25°C Refer to thetest circuit,unless otherwisespecified.)
SymbolParameterTest ConditionMin.Typ.Max.Unit
INPUT
R
in
Input Resistance355065KΩ
1st VOLUME CONTROL
C
RANGE
A
VMAX
A
A
V
step
E
E
mute
A
t
DC
Control Range454749dB
Maximum Attenuation454749dB
Step Resolution0.51.01.5dB
Attenuation Set ErrorG = 0to -24dB-1.01.0dB
G = -24 to -47dB-1.51.5dB
Tracking ErrorG = 0 to -24dB1dB
G = 24 to -47dB2dB
Mute Attenuation80100dB
DC StepsAdiacent Attenuation Steps03mV
From 0dB to A
VMAX
0.55mV
2nd VOLUME CONTROL
C
RANGE
A
VMAX
A
A
V
step
E
A
E
t
MUTE
DC
Control Range454749dB
Maximum Attenuation454749dB
Step Resolution0.51.01.5dB
Attenuation Set ErrorG = 0to -24dB-1.01.0dB
G = -24 to -47dB-1.51.5dB
Tracking ErrorG = 0 to -24dB1dB
G = 24 to -47dB2dB
Mute Attenuation80100dB
DC StepsAdiacent Attenuation Steps03mV
From 0dB to A
VMAX
0.55mV
BASS
C
RANGE
A
R
b
step
Internal Feedback Resistance324456KΩ
Control Range±11.5±14±16dB
Step Resolution0.511.5dB
MIDDLE
C
RANGE
A
R
b
step
Internal Feedback Resistance182532KΩ
Control Range±11.5±14±16dB
Step Resolution0.511.5dB
TREBLE
C
RANGE
A
step
Control Range±13±14±15dB
Step Resolution0.511.5dB
SUPPLY
V
S
I
S
SVRRipple Rejection6090dB
Supply Voltage (note1)6910.5V
Supply Current4710mA
amb
=
AUDIO OUTPUT
V
clip
R
Ol
R
O
V
DC
Clipping Leveld = 0.3%22.6Vrms
Output Load Resistance2KΩ
Output Impedance100180300Ω
DC Voltage Level3.8V
3/16
TDA7319
ELECTRICAL CHARACTERISTICS (continued)
SymbolParameterTest ConditionMin.Typ.Max.Unit
GENERAL
e
NO
E
t
S/NSignal to Noise RatioAll Gains = 0dB; V
S
C
dDistortionA
BUS INPUTS
V
il
V
ih
I
in
V
O
Note 1: the device is functionally good at Vs = 5V. A step down, on VS, to 4V does’t reset the device.
Output NoiseAll Gains0dB(B= 20to 20kHzflat)515µV
Total Tracking ErrorAV = 0 to -24dB01dB
= -24 to -47dB02dB
A
V
=1V
O
rms
Channel Separation80100dB
=0;Vin=1V
V
Input Low Voltage1V
Input High Voltage3V
Input CurrentVin = 0.4V-55µA
Output Voltage SDA
Acknowledge
IO= 1.6mA0.40.8V
rms
106dB
0.010.08%
APPLICATION SUGGESTIONS
The first and the last stages are volume control
blocks. The control range is 0 to -47dB (mute)
with a 1dB step.
Thevery high resolution allowsthe implementation
ofsystems freefromany noisyacousticaleffect.
The TDA7319 audioprocessor provides 3 bands
tones control.
Bass, Middle Stages
The Bass and the middle cells have the same
structure.
The Bass cell has an internal resistor Ri = 44KΩ
typical.
The Middle cell has an internalresistor Ri = 25KΩ
typical.
Severalfilter types can be implemented,connecting external components to the Bass/Middle IN
and OUTpins.
Figure1.
Ri internal
OUTIN
4/16
C
1
R
2
D95AU313
C
2
The fig.1 refers to basic T Type Bandpass Filter
starting from the filter component values (R1 internal and R2,C1,C2 external) the centre frequency Fc, the gain Av at max. boost and the filter Q factor are computedas follows:
=
F
C
1
2 ⋅ π ⋅√Ri,R2, C1, C2
R2 C2+ R2 C1 + Ri C1
A
=
V
R2 C1 + R2C2
√Ri R2 + C1 C2
Q =
R2 C1 + R2 C2
Viceversa,once Fc, Av, and Ri internal value are
fixed, the external components values will be:
2
Q
⋅ C1
− 1Q
2
A
V
2
C1 =
− 1
A
V
2 ⋅ π ⋅ R
R2 =
⋅ Q
i
− 1− Q
A
V
2 ⋅ π ⋅ C1 ⋅ FC⋅ (AV− 1) ⋅Q
C2 =
Treble Stage
The treble stage is a high pass filter whose time
constant is fixed by an internal resistor (25KΩ
typical) and an external capacitor connected betweentreble pins and ground
Typicalresponsesare reportedin Figg.10 to 13.
CREF
The suggested 10µF reference capacitor (CREF)
value can be reduced to 4.7µF if the application
requiresfaster powerON.
Figure2: Noisevs. volume settingFigure3: SVRRvs. frequency
TDA7319
Figure4: THDvs. frequencyFigure5: THDvs. R
LOAD
Figure6: Channelseparation vs. frequencyFigure7: Outputclip level vs. Supplyvoltage
5/16
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