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3544L-S08-R bảng dữ liệu(PDF) 7 Page - Unisonic Technologies

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nhà sản xuất  UTC [Unisonic Technologies]
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3544L-S08-R bảng dữ liệu(HTML) 7 Page - Unisonic Technologies

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3544
LINEAR INTEGRATED CIRCUIT
UNISONICTECHNOLOGIESCO.,LTD
7 of 10
www.unisonic.com.tw
QW-R107-040,C
APPLICATION EXAMPLE
8
7
65
12
34
BIAS
90K
90K
6dB
6dB
TSD
MUTE
+
+
OUT1
MUTE
IN1
GND
Vcc
OUT2
BIAS
IN2
VMUTE
H:Active
L:Mute
100k
VIN1
VIN2
47μ
+
+
+
+
330μ
Vcc
C3
C5
C6
C2
R2
C1
C7
330μ
EXPLANATION OF EXTERNAL COMPONENTS
(1)Input coupling capacitor (C3 and C5)
First determined by the low-band cut-off frequency. Because the input impedance is 180kΩ for this IC, it can be
determined by this formula
C3(C5)=1/(2π×180kΩ×f)
But make sure taking the fluctuations, ambient temperature, etc into consideration. A multi-layered ceramic
capacitor is recommended.
(2)BIAS capacitor(C6)
47μF when Vcc=5V, and 33μF when Vcc=3V. Before changing these values take the sufficient considerations.It is
because the electrical characteristics will be adversely affected and popping noise may occur if the capacitance is
lowered too much.
(3)MUTE pin for anti-pop measures (R2 and C2)
An impedance of 190kΩ must be possessed with respect to GND, so the MUTE mode may become unable to be
released if R2 is increased too much.
(4)Output coupling capacitor(C1 and C7)
Also determined by the low-band cutoff frequency. Like the output load resistance value RL (a resistor Rx will be
inserted ,assuming that for output protection or current limiting), it can be calculated by this formula
C1(C7)=1/(2π×(RL+Rx) ×f)
(5)Input gain adjustment resistor(R3 and R4)
External resistors R3 and R4 can perform input gain adjustment .The desired gain can be calculated by this
formula
Gv=6+20log(90kΩ/(90kΩ+R3))[dB]



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