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THS6032IGQE Datasheet(PDF) 9 Page - Texas Instruments

Part # THS6032IGQE
Description  LOW-POWER ADSL CENTRAL-OFFICE LINE DRIVER
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Manufacturer  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

THS6032IGQE Datasheet(HTML) 9 Page - Texas Instruments

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THS6032
LOW-POWER ADSL CENTRAL-OFFICE LINE DRIVER
SLOS233C – APRIL1999 – REVISED MARCH 2000
9
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
TYPICAL CHARACTERISTICS
Figure 10
–12
–6
0
6
12
18
24
SMALL AND LARGE SIGNAL
FREQUENCY RESPONSE
f – Frequency – Hz
VCC(H) = ± 15 V
VCC(L) = ± 5 V
1 M
10 M
100 M
100 k
500 M
VO(PP) = 8 V
VO(PP) = 4 V
VO(PP) = 2 V
VO(PP) = 1 V
VO(PP) = 0.5 V
Gain = +2
RL = 25 Ω RF = 1.1 k Ω
Figure 11
–100
–90
–80
–70
–60
–50
–40
–30
–20
CLASS-G MODE DISTORTION
vs
FREQUENCY
f – Frequency – Hz
VCC(H) = ± 15 V
VCC(L) = ± 5 V to ± 7.5 V
Gain = +2
RF = 1.1 kΩ
RL = 25 Ω
VO(PP) = 2 V
2nd Harmonic
1 M
10 M
100 k
20 M
3rd Harmonic
THD
Figure 12
–100
–90
–80
–70
–60
–50
–40
–30
–20
CLASS-AB MODE DISTORTION
vs
FREQUENCY
f – Frequency – Hz
VCC(H) = ± 15 V
VCC(L) = GND
Gain = +2
RF = 1.1 kΩ
RL = 25 Ω
VO(PP) = 2 V
2nd Harmonic
1 M
10 M
100 k
20 M
3rd Harmonic
THD
Figure 13
–90
–85
–80
–75
–70
–65
–60
–55
–50
0
5
10
15
20
2ND ORDER DISTORTION
vs
OUTPUT VOLTAGE
VO(PP) – Output Voltage – V
VCC(H) = ± 15 V
Gain = +5
RF= 1.1 kΩ
RL = 25 Ω
f = 1 MHz
VCC(L) = ± 5 V
VCC(L) = ± 7.5 V
VCC(L) = ± 6 V
VCC(L) = GND
Figure 14
–90
–85
–80
–75
–70
–65
–60
–55
–50
0
5
10
15
20
3RD ORDER DISTORTION
vs
OUTPUT VOLTAGE
VO(PP) – Output Voltage – V
VCC(H) = ± 15 V
Gain = +5
RF= 1.1 kΩ
RL = 25 Ω
f = 1 MHz
VCC(L) = ± 5 V
VCC(L) = ± 7.5 V
VCC(L) = ± 6 V
VCC(L) =GND
Figure 15
–90
–85
–80
–75
–70
–65
–60
–55
–50
0
5
10
15
20
THD
vs
OUTPUT VOLTAGE
VO(PP) – Output Voltage – V
VCC(H) = ± 15 V
Gain = +5
RF= 1.1 kΩ
RL = 25 Ω
f = 1 MHz
VCC(L) = ± 5 V
VCC(L) = ± 7.5 V
VCC(L) = ± 6 V
VCC(L) =GND
Figure 16
–80
–70
–60
–50
–40
–30
–20
–10
0
CROSSTALK
vs
FREQUENCY
f – Frequency – Hz
VCC(H) = ± 15 V
VCC(L) = ± 5 V
Gain = +2
RF = 1.1 kΩ
RL = 25 Ω
Input = Ch. 2
Output = Ch. 1
Input = Ch. 1
Output = Ch. 2
1 M
10 M
100 M
100 k
500 M
Figure 17
0
200
400
600
800
1000
1200
1400
0
5
10
15
20
SLEW RATE
vs
OUTPUT STEP
VO(pp) – Output Voltage Step – V
VCC(H) = ± 15 V
VCC(L) = ± 5 V
Gain = +5
RF = 1.1 kΩ
RL = 25 Ω
+SR
–SR
Figure 18
VOLTAGE AND CURRENT NOISE
vs
FREQUENCY
100
1
10
f – Frequency – Hz
100
100 k
10 k
1 k
10
VN
VCC(H) = ± 15 V
VCC(L) = ± 5 V
TA = 25°C
In–
In+


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