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TS4871 bảng dữ liệu(PDF) 31 Page - STMicroelectronics

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5.11
Application n°4 : Differential inputs BTL power amplifier
In this configuration, we need to place these components : R1, R4, R5, R6, R7, C4, C5, C12.
We have also : R4 = R5, R1 = R6, C4 = C5.
The gain of the amplifier is:
GVDIFF=2R1R4
For Vcc = 5 V, a 20 Hz to 20 kHz bandwidth and 20 dB gain BTL power amplifier you could follow the bill of
material below.
Table 10. Components
Designator
Part type
R1
110 k / 0.125 W
R4
22 k / 0.125 W
R5
22 k / 0.125 W
R6
110 k / 0.125 W
R7
330 k / 0.125 W
R8*
(Vcc-Vf_led) / If_led
C4
470 nF
C5
470 nF
C6
100 µF
C7
100 nF
C9
Short-circuit
C10
Short-circuit
C12
1 µF
D1*
LED 3 mm
S1, S2, S6, S7
2 mm insulated plug 10.16 mm pitch
S8
3 pts connector 2.54 mm pitch
P1, P2
PCB phono Jack
U1
TS4871IS
5.12
Note on how to use the PSRR curves
We have finished a design and we have chosen the components values
•
Rin=Rfeed=22 kΩ
•
Cin=100 nF
•
Cb=1 μF
Now, on fig. 13, we can see the PSRR (input grounded) vs. frequency curves. At 217 Hz we have a PSRR value
of -36 dB.
In reality we want a value about -70 dB. So, we need a gain of 34 dB.
Now, on fig. 12 we can see the effect of Cb on the PSRR (input grounded) vs. frequency. With Cb=100 μF, we can
reach the -70 dB value.
The process to obtain the final curve (Cb=100 μF, Cin=100 nF, Rin=Rfeed=22 kΩ) is a simple transfer point by
point on each frequency of the curve on fig. 13 to the curve on fig. 12. The measurement result is shown on the
next figure.
TS4871
Application information
DS2547 - Rev 10
page 31/42



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