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6N138 View Datasheet(PDF) - Sharp Electronics

Part Name
Description
Manufacturer
6N138 Datasheet PDF : 5 Pages
1 2 3 4 5
6N138
s Electro-optical Characteristics
( Ta = 0 to 70˚C unless otherwise specified )
Parameter
*1Current transfer ratio
Logic ( 0) output voltage
Logic (1) output current
Logic ( 0) supply current
Logic (1) supply current
Input forward voltage
Input forward voltage
temperature coefficient
Symbol
CTR
V OL
I OH
I CCL
I CCH
VF
*2
Input reverse voltage
BV R
Input capacitance
C IN
*3Leak current
(input-output )
I I-O
*3Isolation resistance ( input-output )
R I-O
*3Capacitance ( input-output )
CI-O
*1 Current transfer ratio is a ratio of input current and output
current expressed in % .
*2 VF/ Ta
*3 Measured as 2-pin element ( Short 1, 2, 3, 4 and 5, 6, 7, 8. )
Conditions
MIN. TYP. MAX. Unit
IF= 1.6mA, V O = 0.4V, V CC = 4.5V 300 1 600
-
%
IO= 4.8mA, V CC= 4.5V, I F= 1.6mA
-
0.1
0.4
V
IF = 0, V CC = V O = 7V
-
0.1
250
µA
IF = 1.6mA, V CC= 5V, V O = open
-
0.5
-
mA
IF = 0, V CC = 5V, V O = open
-
10
-
nA
IF = 1.6mA, Ta = 25˚C
-
1.5
1.7
V
IF = 1.6mA
-
- 1.9
- mV/˚C
IR = 10 µA, Ta = 25˚C
VF = 0, f = 1MHz
Ta = 25˚C, 45% RH, t = 5s
V I-O = 3kV DC
V I-O = 500V DC
f = 1MHz
5.0
-
-
V
-
60
-
pF
-
-
1.0
µA
-
1012
-
-
0.6
-
pF
Note ) Typical value : at Ta = 25˚C, VCC = 5V
s Switching Characteristics
( Ta = 25˚C, VCC = 5V)
Parameter
*4Propagation delay time
Output (1) ( 0)
*4Propagation delay time
Output ( 0) (1)
**56Instantaneous common mode
rejection voltage “ Output (1)”
**56Instantaneous common mode
rejection voltage “ Output ( 0) ”
Symbol
t PHL
t PLH
CM H
CML
Conditions
IF = 1.6mA
RL = 2.2k
IF = 1.6mA
RL = 2.2k
IF = 0, VCM = 10V P-P
RL = 2.2k
IF = 1.6mA, VCM = 10V P-P
RL = 2.2k
MIN. TYP. MAX. Unit
-
2
10
µs
-
7
35
µs
-
500
-
V/ µ s
-
- 500
-
V/ µ s
*5 Instantaneous common mode rejection voltage “ output (1)” represents a common mode voltage variation that can hold
the output above (1) level ( VO > 2.0V).
Instantaneous common mode rejection voltage “ output ( 0) ” represents a common mode voltage variation that can hold
the output above ( 0) level ( VO < 0.8V).
*4 Test circuit for Propagation Delay Time
Pulse input
duty ratio
= 1/10
Pulse oscillator
IF
1
2
3
IF monitor
4
100
5
VCC
6
RL
7
VO
8
CL = 15pF
IF
0
VO
5V
1.5V
1.5V
VOL
tPHL
tPLH

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