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STK433-060N-E データシート(PDF) 10 Page - Sanyo Semicon Device

部品番号 STK433-060N-E
部品情報  2channel class-AB Audio Power IC 50W50W
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メーカー  SANYO [Sanyo Semicon Device]
ホームページ  https://www.sanyo-av.com/us/
Logo SANYO - Sanyo Semicon Device

STK433-060N-E データシート(HTML) 10 Page - Sanyo Semicon Device

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STK433-060N-E
No.A2106-10/11
STK433-000N-E/100N-E series Stand-by Control & Mute Control & Load-Short
Protection Application
12
13
14
15
11
10
9
8
7
6
5
4
3
2
1
-PRE
56k
Ω 6.8kΩ
22k
Ω
56k
Ω
10k
Ω
10k
Ω
10k
Ω
2.2k
Ω
1k
Ω
10k
Ω
2.7k
Ω
33k
Ω
2k
Ω
1k
Ω
33
μF
/10V
R1
(*4)
(*1)
V1
Latch Up
Circuit
Mute Control
H : Single Mute
L : Normal
Stand-by Control(ex)
H : Operation Mode(+5V)
L : Stand-by Mode(0V)
Ch2 OUT
Ch1 IN
GND
Ch2 IN
GND
GND
+VCC
Load Short Protection
Circuit
-VCC
(*4) R1 is changed depending on the power-supply voltage(-VCC).
Please set resistance(R1) to become [V1
≅0V] by the following calculation types.
(*1) Please use restriction resistance as there is no Stand-by
terminal voltage (#13pin) beyond maximun rating (VSTmax).
Stand-by Control
+5V
+5V
MUTE
ST-BY
ST-BY
PLAY
MUTE
Mute Control
GND
Ch1 OUT
0.1
μF
56k
Ω 6.8kΩ
-VCC +VCC Ch1
OUT
Ch1
OUT
Ch2
OUT
Ch2
OUT +PRE
STK433-000N-E/100N-E series
SUB GND Ch1
IN
Ch1
NF ST-BY
Ch2
NF
Ch2
IN
+
+
+
+
+
+
+
+
+
[STK433-000N-E/100N-E series Stand-By Control Example]
[Feature]
• The pop noise which occurs to the time of power supply on/off can be improved substantially by recommendation
Stand-By Control Application.
• Stand-By Control can be done by additionally adjusting the limitation resistance to the voltage such as miccom, the
set design is easy.
(Reference circuit) STK433-000N-E/100N-E series test circuit To Stand-By Control added +5V.
12
13
14
15
11
10
9
8
7
6
5
4
3
2
1
-PRE -VCC +VCC Ch1
OUT
Ch1
OUT
Ch2
OUT
Ch2
OUT +PRE
STK433-000N-E/100N-E
series
SUB/AMP
GND
IC
GND
Ch1
IN
ΔVBE
ΔVBE
IST
Stand-By Circuit
in PreDriver IC
Stand-by Control
H : Operation Mode(+5V)
L : Stand-by Mode(0V)
Switching transistor
in the bias circuit
#13pin Stand-By OFF threshold.
ex)Stand-By Control Voltage VST=+5V
VST is set by the limitation resistance(*1).
.IST=(VST-VBE*2)/((*1)+(*2))
=(5v-0.6v*2)/(4.7k
Ω+2.7kΩ)
≅0.513(mA)
.VST=IST×4.7kΩ+VBE=0.513×4.7k+0.6≅3.0v
Ch1
NF
ST-
BY
Ch2
NF
Ch2
IN
2.7k
Ω (*1)
33k
Ω
2k
Ω
(*3)
1k
Ω (*3)
33
μF
(*2)
+
4.7k
Ω (*2)
VST
[Operation explanation] #13pin Stand-By Control Voltage VST
(1) Operation Mode
The switching transistor in the bias circuit turns on and places the amplifier into the operating mode, when 13pin
(VST) voltage added above 2.5V (typ 3.0V).
(2) Stand-By Mode
When 13pin (VST) voltage is stopped (= 0V), the switching transistor in the bias circuit turn off. placing the
amplifier into the standby mode.
(*1) The current limiting resistor must be used to ensure that stand-by pin (13pin) voltage does not exceed its
maximum rated value VST max.
(*2) The pop noise level when the power is turned on can be reduced by setting the time constant with a capacitor
in operating mode.
(*3) Determines the time constant at which the capacitor (*2) is discharged in stand-by mode.


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