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IL610 Datasheet, PDF (5/14 Pages) List of Unclassifed Manufacturers – Passive Input Digital Isolators
IL610 IL611 IL612
IL613 IL614
Electrical Specifications
Electrical Specifications are Tmin to Tmax unless otherwise stated.
Parameters
Symbol
Min.
Typ.
Max.
Coil Input Impedance
ZCOIL
47||8
55||9
67||10
Temperature Coeff of Coil Resistance
TC RCOIL
0.16
0.165
Input Threshold for Logic High
I INH
2
Input Threshold for Logic Low
I INL
10
Quiescent Current
IL610, IDD1
0
IL610, IDD2
2
3
IL611, IDD1
0
IL611, IDD2
4
6
IL612, IDD1
2
3
IL612, IDD2
2
3
IL613, IDD1
0
IL613, IDD2
6
9
IL614, IDD1
2
3
IL614, IDD2
4
6
Quiescent Current
Logic High Output Voltage(4)
IL610, IDD1
IL610, IDD2
IL611, IDD1
IL611, IDD2
IL612, IDD1
IL612, IDD2
IL613, IDD1
IL613, IDD2
IL614, IDD1
IL614, IDD2
0
1.3
2
0
2.6
4
1.3
2
1.3
2
0
4
6
1.3
2
2.6
4
VOH
VDD-0.1
VDD
Logic Low Output Voltage
VDD
VDD-0.5
VOL
0
0.1
0.5
0.8
Logic Output Current
IO
4
7
Switching Specifications CMOS Outputs
Data Rate
40
Minimum Pulse Width
PW
25
Propagation Delay Input to Output
tPHL
(High to Low)
20
25
Propagation Delay Input to Output
tPLH
(Low to High)
20
25
Average Propagation Delay Drift
50
Pulse Width Distortion |tPHL-tPLH| (2)
Propagation Delay Skew (3)
PWD
tPSK
7
10
10
20
Output Rise Time (10-90%)
tR
2
4
Output Fall Time (10-90%)
tF
2
4
Common Mode Transient Immunity
|CMH|,|CML|
15
20
Switching Specifications Open Drain Outputs
Parameters
Symbol
Min.
Typ.
Max.
Data Rate
10
Minimum Pulse Width
PW
100
Propagation Delay Input to Output
tPHL
(High to Low)
20
25
Propagation Delay Input to Output
tPLH
(Low to High)
50
75
Common Mode Transient Immunity
|CMH|,|CML|
15
20
Units
Ω||nH
Ω/°C
mA
mA
µA
mA
µA
mA
mA
mA
µA
mA
mA
mA
µA
mA
µA
mA
mA
mA
µA
mA
mA
mA
V
V
mA
Mbps
ns
ns
ns
ns
ns
ns
ns
kV/µs
Units
Mbps
ns
ns
ns
kV/µs
Test Conditions
TAMB = 25°C
VDD= 5 V, IIN=0
VDD= 3.3 V, IIN=0
IO = -20 µA
IO = -4 mA
IO = 20 µA
IO = 4 mA
50% Duty Cycle
50% Points, Vo
CL = 15 pF,
ICOIL = 10 mA
CL = 15 pF,
ICOIL = 10 mA
ps/°C
CL = 15 pF
CL = 15 pF
CL = 15 pF
CL = 15 pF
VT = 300 Vpeak
Test Conditions
50% Duty Cycle,
Rpullup = 1 kΩ
50% Duty Cycle,
Rpullup = 1 kΩ
CL = 2 kΩ ||15 pF
CL = 2 kΩ ||15 pF
VT = 300 Vpeak
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