![](http://datasheet.mmic.net.cn/Linear-Technology/LTC1393IGN-PBF_datasheet_97995/LTC1393IGN-PBF_5.png)
5
LTC1380/LTC1393
TYPICAL PERFOR A CE CHARACTERISTICS
UW
Off Time vs Temperature
QINJ vs VC (Figure 3)
On Time vs Temperature
TEMPERATURE (
°C)
–50
ON
TIME
(ns)
1400
25
1380/93 G11
800
400
–25
0
50
200
0
1600
1200
1000
600
75
100
125
VCC = 2.7V
VEE = 0V
VS = 1.35V
VCC = 5V
VEE = 0V
VS = 2.5V
VCC = 5V
VEE = – 5V
VS = 0V
VC (V)
–5
Q
INJ
(pC)
3.0
4.0
5.0
3
1380/93 G12
2.0
1.0
2.5
3.5
4.5
1.5
0.5
0
–3
–1
1
–4
4
–2
0
2
5
TA = 25°C
VCC = 5V
VEE = –5V
VCC = 2.7V
VEE = 0V
VCC = 5V
VEE = 0V
TEMPERATURE (
°C)
–50
OFF
TIME
(ns)
700
25
1380/93 G10
400
200
–25
0
50
100
0
800
600
500
300
75
100
125
VCC = 5V
VEE = – 5V
VS = 0V
VCC = 2.7V
VEE = 0V
VS = 1.35V
VCC = 5V
VEE = 0V
VS = 2.5V
QINJ vs Temperature (Figure 3)
TEMPERATURE (
°C)
–50
0
Q
INJ
(pC)
0.2
0.6
0.8
1.0
2.0
1.4
0
50
75
1380/93 G13
0.4
1.6
1.8
1.2
–25
25
100
125
VCC = 5V
VEE = – 5V
VS = 0V
VCC = 2.7V
VEE = 0V
VS = 1.35V
VCC = 5V
VEE = 0V
VS = 2.5V
Off-Channel Isolation vs Input
Common Mode Voltage (Figure 2)
ICC vs Temperature
TEMPERATURE (
°C)
–50
0
I CC
(
A)
1
3
4
5
10
7
0
50
75
1380/93 G15
2
8
9
6
–25
25
100
125
VCC = 5V
VEE = – 5V
VCC = 2.7V
VEE = 0V
VCC = 5V
VEE = 0V
TEMPERATURE (
°C)
–50
–100
I EE
(nA)
–90
–70
–60
–50
0
–30
0
50
75
1380/93 G16
–80
–20
–10
–40
–25
25
100
125
VCC = 5V
VEE = –5V
VS = 0V
IEE vs Temperature
(Note 5)
VC (V)
–5
OIRR
(dB)
–75
–73
–74
–72
–71
–70
–69
–68
–67
–66
–65
3
1380/93 G14
–3
–1
1
5
2
–4
–2
0
4
VCC = 5V
VEE = –5V
VCC = 5V
VEE = 0V
VCC = 2.7V
VEE = 0V
TA = 25°C
VS = 200mVP-P, 100kHz
RL = 1k