IL600 Rhopoint Components, IL600 Datasheet - Page 6

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IL600

Manufacturer Part Number
IL600
Description
Passive-input Digital Isolators ? Cmos Outputs
Manufacturer
Rhopoint Components
Datasheet
Electrical specifications are T
Notes:
Parameters
Quiescent Current
Logic High Output Voltage
Logic Low Output Voltage
Logic Output Drive Current
Failsafe Operation Input Current
Input Signal Rise and Fall Times
Data Rate
Minimum Pulse Width
Propagation Delay Input to Output
(High to Low)
Propagation Delay Input to Output
(Low to High)
Average Propagation Delay Drift
Pulse Width Distortion |t
Propagation Delay Skew
Output Rise Time (10–90%)
Output Fall Time (10–90%)
Common Mode Transient Immunity
1.
2.
3.
4.
The Minimum Pulse Width is the shortest pulse width at which the specified PWD is guaranteed.
PWD is defined as | t
t
Failsafe Operation is defined as the guaranteed output state which will be achieved if the DC input current falls between the input levels specified
(see Test Circuit 1 for details). Note if Failsafe to Logic Low is required, the DC current supplied to the coil must be at least 8 mA using 3.3 V supplies
versus 5 mA for 5 V supplies. Select the value of limit resistor appropriately.
PSK
is equal to the magnitude of the worst case difference in t
(1)
PHL
(3)
−t
PHL −
min
PLH
to T
|
t
(4)
PLH
(2)
max
|.
and 3.0V to 3.6V unless otherwise stated.
|CM
IL612, I
IL612, I
IL614, I
IL614, I
IL610, I
IL611, I
IL613, I
Symbol
I
I
FS-HIGH
FS-LOW
PWD
t
V
V
IR
PW
t
t
t
t
H
|I
PHL
PLH
PLH
PSK
t
t
|,|CM
, t
OH
OL
O
R
F
|
IF
DD1
DD2
DD1
DD2
Switching Specifications at 3.3V
DD
DD
DD
L
|
PHL
Min.
−25
100
3.2
3.0
and/or t
10
−2
15
7
8
6
PLH
that will be seen between units at 25°C.
Typ.
1.3
2.6
1.3
1.3
1.3
2.6
3.3
3.1
0.2
10
12
12
10
20
4
0
3
3
3
Max.
0.1
0.8
0.3
25
18
18
2
4
2
2
6
2
4
1
5
2
5
5
kV/μs
Units
Mbps
ps/°C
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
IL600 Series
μs
ns
ns
ns
ns
ns
ns
ns
V
V
Test Conditions
V
V
V
V
V
See Test Circuit 1
See Test Circuit 1
See Test Circuit 1
See Test Circuit 1
See Test Circuit 1
See Test Circuit 1
See Test Circuit 1
See Test Circuit 1
See Test Circuit 1
See Test Circuit 1
V
DD
DD
DD
DD
DD
T
= 300 V
= 3.3 V, I
= 3.3 V, I
= 3.3 V, I
= 3.3 V, I
= 3.3 V, I
peak
IN
O
O
O
O
= 20 μA
= 4 mA
= −20 μA
= −4 mA
= 0

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