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TS4975 데이터시트(PDF) 28 Page - STMicroelectronics

부품명 TS4975
상세설명  Stereo Headphone Drive Amplifier with Digital Volume Control via I2C Bus
PDF  36 Pages
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제조업체  STMICROELECTRONICS [STMicroelectronics]
홈페이지  http://www.st.com
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TS4975 데이터시트(HTML) 28 Page - STMicroelectronics

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Application Information
TS4975
28/36
The efficiency is the ratio between the output power and the power supply:
The maximum theoretical value is reached when VPEAK = VCC/2, so
The TS4975 is a stereo amplifier so it has two independent power amplifiers. Each amplifier
produces heat due to its power dissipation. Therefore the maximum die temperature is the sum
of each amplifier’s maximum power dissipation. It is calculated as follows:
Pdiss 1 = Power dissipation due to the first channel power amplifier.
Pdiss 2 = Power dissipation due to the second channel power amplifier.
Total Pdiss =Pdiss 1 +Pdiss 2 (W)
In most cases,
Pdiss 1 = Pdiss 2, giving:
Single ended configuration:
Phantom ground configuration:
4.4
Low frequency response
Input capacitor Cin
The input coupling capacitor blocks the DC part of the input signal at the amplifier input. In the
low-frequency region, Cin starts to have an effect. Cin with Zin forms a first-order, high-pass filter
with -3 dB cut-off frequency.
Zin is the input impedance of the corresponding input (30 kΩ for In1 & In2).
Note:
For all inputs, the impedance value remains for all gain settings. This means that the lower cut-
off frequency doesn’t change with gain setting. Note also that 30 k
Ω is a typical value and there
is tolerance around this value (see Chapter 3: Electrical Characteristics on page 5).
From
Figure 53 you could easily establish the Cin value for a -3dB cut-off frequency required.
η
P
out
P
sup ply
-------------------
πV
PEAK
4V
CC
---------------------
==
η
π
8
---
39.25%
==
TotalP
diss
2P
diss1
=
TotalP
diss
22VCC
π R
L
---------------------- P
ou t
2P
ou t W
()
=
TotalP
diss
42VCC
π R
L
---------------------- P
out
2P
ou t W
()
=
F
CL
1
2
πZ
inCin
------------------------Hz
()
=



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