Electrical characteristics
TS4601
Figure 44. Crosstalk vs. frequency
Figure 45. Crosstalk vs. frequency
100
Right to Left
90
80
70
Left to Right
60
50
40
30
G = 4dB
Vcc = 2.9V
20 Pout = 40mW
RL = 16Ω
10 Tamb = 25°C
0
20
100
1000
Frequency (Hz)
10000 20k
100
Right to Left
90
80
70
Left to Right
60
50
40
G = 4dB
30 Vcc = 2.9V to 5.5V
20 Vout = 1.6Vrms
RL = RC network + 10kΩ
10 Tamb = 25°C
0
20
100
1000
Frequency (Hz)
10000 20k
Figure 46. Common mode response vs.
frequency
Figure 47. THD+N vs. input voltage. Line in
mode 5
0
V = 20mVrms
-10 CMS
G = All gains
-20 Left & Right
RL ≥ 16Ω
-30 Tamb = 25°C
-40
-50
-60
Vcc=2.9V to 5.5V
-70
-80
20
100
1000
Frequency (Hz)
10000 20k
10
Mode 5
Vcc = 2.9V to 5.5V
1 Zout generator = 1kΩ
BW < 30kHz, Tamb = 25°C
0.1
Line In F=80Hz, 1kHz, 8kHz
0.01
1E-3
Reference F=80Hz, 1kHz, 8kHz
1E-4
1E-3
0.01
0.1
1
Input Voltage (Vrms)
Figure 48. Input impedance vs. frequency.
Line in mode 5
Figure 49. Gain vs. frequency
Mode 5
Vcc = 2.9V to 5.5V
10
Vin = 1Vrms
Tamb = 25°C
1
0.1
0.1
1
10
100
1000 10000
Frequency (kHz)
4
2
RL=16Ω, Po=20mW
0
-2
RL=RC network+10kΩ, Vo=1Vrms
-4
Vcc = 2.9V to 5.5V
-6 G = 0dB
Cin = 4.7μF
-8 Left & Right
Tamb = 25°C
-10
10
100
1000
Frequency (Hz)
10000
100000
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