Datasheet
−12
−8
−4
0
4
8
12
−2.4
−1.6
−0.8
0
0.8
1.6
2.4
t − Time − 100ns/div
− OutputV
oltage
−
V
V
O
− InputV
oltage − V
V
I
Input
G=5,
R
G
=499 Ω,
R
L
=100 Ω,
V
S
= ±12V
R
F
=2kΩ,
Output
0
50
100
150
200
250
300
350
400
0 2 4 6 8 10 12 14 16 18 20
V -OutputVoltage-V
O PP
TransitionRate-V/ sm
Rising
Falling
G=5,
R =2k ,
R =499 ,
R =100 ,
V = 12V
F
G
L
S
W
W
W
±
0
100
200
300
400
500
600
700
0 5 10 15
20 25 30 35
40
V -OutputVoltage-V
O PP
TransitionRateV/μs
Falling
Rising
G=5,
R =2k ,
R =1k ,
R =100 ,
V =±12V
F
G
L
S
W
W
W
0.8
0.85
0.9
0.95
1
1.05
1.1
1.15
1.2
1.25
-40 -25 -10
5
20
35 50 65
80
T -Free-AirTemperature-°C
A
V -OutputVoltageHeadroom-V
O
H
V =±15V
S
V =±5V
S
V =±12V
S
+V -V
R =100
S OH
L
W
4
6
8
10
12
14
4 5 6 7 8 9
10 11 12 13 14 15
T
A
= 85°C
T
A
= 25°C
T
A
= −40°C
− Input Offset Voltage − mV
V
OS
V
S
− Supply Voltage − +V
-1.25
-1.2
-1.15
-1.1
-1.05
-1
-0.95
-0.9
-0.85
-0.8
-40 -25 -10 5 20 35 50 65 80
T -Free-AirTemperature-°C
A
V -OutputVoltageHeadroom-V
OL
V =±15V
S
V =±5V
S
V =±12V
S
-V -V
R =100
S OL
L
W
THS6184
www.ti.com
................................................................................................................................................. SLLS635D – AUGUST 2005 – REVISED JANUARY 2009
TYPICAL CHARACTERISTICS (continued)
OVERDRIVE RECOVERY SINGLE-ENDED TRANSITION RATE
vs vs
TIME, G = 5, R
L
= 100 Ω OUTPUT VOLTAGE, G = 5, R
L
= 100 Ω
Figure 28. Figure 29.
DIFFERENTIAL TRANSITION RATE POSITIVE OUTPUT VOLTAGE HEADROOM
vs vs
OUTPUT VOLTAGE, G = 5, R
L
= 100 Ω TEMPERATURE, R
L
= 100 Ω
Figure 30. Figure 31.
NEGATIVE OUTPUT VOLTAGE HEADROOM INPUT OFFSET VOLTAGE
vs vs
TEMPERATURE, R
L
= 100 Ω SUPPLY VOLTAGE
Figure 32. Figure 33.
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