Datasheet

DS3695, DS3695T, DS3696, DS3697
www.ti.com
SNLS072C MAY 1998REVISED APRIL 2013
Electrical Characteristics
(1)(2)
(continued)
0°C T
A
+70°C, 4.75V < V
CC
< 5.25V unless otherwise specified
Symbol Parameter Conditions Min Typ Max Units
I
OZD
TRI-STATE Current DO, DO V
CC
= 0V or 5.25V, E = 0V
±100 μA
DS3697 & DS3698 7V < V
O
< +12V
V
TH
Differential Input Threshold 7V V
CM
+12V
0.2 +0.2 V
Voltage for Receiver
ΔV
TH
Receiver Input Hysteresis V
CM
= 0V 70 mV
V
OH
Receiver Output High Voltage I
OH
= 400 μA 2.4 V
V
OL
Output Low Voltage RO I
OL
= 16 mA
(3)
0.5 V
TS I
OL
= 8 mA 0.45 V
I
OZR
OFF-State (High Impedance) V
CC
= Max
±20 μA
Output Current at Receiver 0.4V V
O
2.4V
R
IN
Receiver Input Resistance 7V V
CM
+12V 12 kΩ
I
CC
Supply Current No Load
(3)
Driver Outputs Enabled 42 60 mA
Driver Outputs Disabled 27 40 mA
I
OSD
Driver Short-Circuit Output Current V
O
= 7V
(3)
250 mA
V
O
= +12V
(3)
+250 mA
I
OSR
Receiver Short-Circuit Output Current V
O
= 0V 15 85 mA
Receiver Switching Characteristics
(1)(2)
0°C T
A
+70°C, 4.75V < V
CC
< 5.25V unless otherwise specified (Figure 5, Figure 6, Figure 7)
Symbol Conditions Min Typ Max Units
t
PLH
C
L
= 15 pF 15 25 37 ns
t
PHL
S1 and S2 15 25 37 ns
|t
PLH
–t
PHL
| Closed 0 ns
t
PLZ
C
L
= 15 pF, S2 Open 5 12 16 ns
t
PHZ
C
L
= 15 pF, S1 Open 5 12 16 ns
t
PZL
C
L
= 15 pF, S2 Open 7 15 20 ns
t
PZH
C
L
= 15 pF, S1 Open 7 15 20 ns
(1) All typicals are given for V
CC
= 5V and T
A
= 25°C.
(2) Switching Characteristics apply for DS3695, DS3695T, DS3696, DS3697 only.
Driver Switching Characteristics
0°C T
A
+70°C, 4.75V < V
CC
< 5.25V unless otherwise specified
Symbol Conditions Min Typ Max Units
SINGLE ENDED CHARACTERISTICS (Figure 8, Figure 9, Figure 10)
t
PLH
R
L
DIFF = 60Ω 9 15 22 ns
t
PHL
C
L1
= C
L2
= 100 pF 9 15 22 ns
t
SKEW
|t
PLH
–t
PHL
| 2 8 ns
t
PLZ
C
L
= 15 pF, S2 Open 7 15 30 ns
t
PHZ
C
L
= 15 pF, S1 Open 7 15 30 ns
t
PZL
C
L
= 100 pF, S2 Open 30 35 50 ns
t
PZH
C
L
= 100 pF, S1 Open 30 35 50 ns
DIFFERENTIAL CHARACTERISTICS (Figure 8 Figure 11)
t
r
, t
f
R
L
DIFF = 60Ω
6 10 18 ns
C
L1
= C
L2
= 100 pF
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