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HCPL-7100 Datasheet, PDF (6/14 Pages) Agilent(Hewlett-Packard) – High Speed CMOS Optocouplers
Electrical Specifications
Guaranteed across recommended operating conditions. Test conditions represent worst case values for the
parameter under test. Test conditions that are not specified can be anywhere within their operating range.
All typicals are at 25°C and 5 V supplies unless otherwise noted.
Parameter
Logic Low Input Supply
Current
Logic High Input Supply
Current
Symbol
IDD1L
IDD1H
Min.
Logic Low Output
Supply Current
IDD2L
Logic High Output
Supply Current
IDD2H
Tri-State Output Supply
Current
IDD2Z
Input Current
II
-1
Output Enable Current
IOE
-1
Logic High Output
Voltage
Logic High Output
Current
VOH
4.4
4.0
3.7
IOH
-7.5
Logic Low Output
VOL
Voltage
Typ.
5.2
0.3
0.9
5.0
5.2
5.1
5.6
5.0
4.8
4.7
-25
0.0
0.1
0.15
Max.
10.0
0.6
1.6
9.0
9.0
9.0
10.0
1
1
0.1
0.3
0.4
Unit
mA
mA
mA
mA
mA
µA
µA
V
mA
V
Test Conditions
VDD1 = 5.5 V
VI = VIL
VI = 4.5 V
VDD1 = 5.5 V
VI = 2.0 V
VDD2 = 5.5 V
VOE = VOEL
VI = VIL
VDD2 = 5.5 V
VOE = VOEL
IO = 0 mA
VI = VIH
VOE = 4.5 V VDD2 = 5.5 V
VOE = 2.0 V
VI = VDD1 or GND
VDD1 = 5.5 V
VOE = VDD2 or GND
VDD2 = 5.5 V
IO = -20 µA
IO = -4.0 mA
IO = -6.0 mA
VDD2 = 4.5 V
VI = VIH
VOE = VOEL
VDD2 = 4.5 V
VO = 3.6 V
VI = VIH
VOE = VOEL
IO = 20 µA
IO = 4.0 mA
IO = 6.0 mA
VDD2 = 4.5 V
VI = VIL
VOE = VOEL
Fig. Note
1
1
6
6
5
Logic Low Output
IOL
10.5 23
mA VDD2 = 4.5 V
5
Current
VO = 0.6 V
VI = VIL
VOE = VOEL
High Impedance
State Output
Current
IOZ
-5
5
µA VDD2 = 5.5 V
VOE = VOEH
VO = VDD2 or GND
Input Capacitance
CI
4.3
pF f = 1 MHz
4
Input-Output
RI-O
1012 1013
Ω
TA = 25°C
VI-O = 500 Vdc
2
1011
TA = 100°C
Input-Output
CI-O
0.7
pF f = 1 MHz
2
Capacitance
Resistance
*The Input-Output Momentary Withstand Voltage is a dielectric voltage rating that should not be interpreted as an input-output
continuous voltage rating. For the continuous voltage rating refer to the VDE 0884 Insulation Characteristics Table (if applicable),
your equipment level safety specification, or HP Application Note 1074, “Optocoupler Input-Output Endurance Voltage.”
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