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CPC5001 Datasheet, PDF (4/9 Pages) IXYS Corporation – Dual, One Channel Each Direction Digital Optical Isolator
INTEGRATED CIRCUITS DIVISION
CPC5001
1.6 General Conditions
Unless otherwise specified, minimum and maximum values are guaranteed by production testing requirements.
Typical values are characteristic of the device at 25°C, and are the result of engineering evaluations. They are
provided for information purposes only, and are not part of the manufacturing testing requirements. Specifications
cover the operating temperature range TA = -40°C to +85°C, unless otherwise specified.
Side A is the same as Side B, and Channel 1 is the same as Channel 2; therefore, the electrical and timing
specifications apply to both Sides/Channels.
1.7 Electrical Parametric Specifications
Parameter
Electrical
Supply Voltage
Supply Current
Leakage Current
Falling Input Low Threshold
Rising Input High Threshold
Hysteresis
Output Drive
Output Temperature Coefficient
Conditions
Symbol
Min
Typ
Max Units
ISINK=6mA
VDD=3.3V, ISINK=0mA
ISINK=6mA
VDD=5.5V, ISINK=0mA, TA=25°C
IN1=OUT2=VDDA, IN2=OUT1=VDDB
2.7V < VDD < 5.5V
2.7V < VDD < 5.5V
2.7V < VDD < 5.5V
VDD=2.7V, ISINK=3mA
VDD=2.7V, ISINK=6mA
VDD=3.3V, ISINK=6mA
2.7V < VDD < 5.5V, ISINK=6mA
VDD
IDD
ILEAK
VIL
VIH
VHYST
VOL
TC
2.7
-
-
-
-
0.3VDD
-
-
-
-
-
-
-
4.3
4.4
5
0.01
0.42VDD
0.57VDD
0.15VDD
0.21
0.42
0.38
+1.2
5.5
-
-
7.5
10
-
0.7VDD
-
0.35
0.7
-
-
V
mA
A
V
V
V
mV/°C
1.8 Timing Specifications
Parameter
Timing
Clock Frequency
Propagation Delay (see Note 1)
High to Low
Low to High
Pulse Width Distortion
Conditions
Symbol
Min
Typ
Max Units
ISINK=6mA, CLOAD=20pF
VDDA=VDDB=3.3V,
RPUA=475, RPUB=475
CIN_A=CIN_B=20pF
VIN=0.5VDD_IN to VOUT=0.5VDD_OUT
tPLH - tPHL
fMAX
tPHL
tPLH
PWD
-
5
-
MHz
40
60
100
ns
40
135
250
-25
75
170
ns
Note 1: See “Switching Waveforms” on page 5.
1.9 Common Mode Rejection Specifications
Parameter
Common Mode Rejection
Common Mode Transient Immunity
VOUT = High
VOUT = Low
Conditions
Symbol
Min
Typ
Max Units
VCM=20VP-P , VDD=3.3V, TA=25°C
VOUT>2V
VOUT<0.8V
CMH
5
-
-
kV/s
CML
7
-
-
4
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