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PDF ( 数据手册 , 数据表 ) 6N138

零件编号 6N138
描述 LOW INPUT CURRENT HIGH GAIN SPLIT DARLINGTON OPTOCOUPLERS
制造商 Fairchild Semiconductor
LOGO Fairchild Semiconductor LOGO 


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6N138 数据手册, 描述, 功能
LOW INPUT CURRENT
HIGH GAIN SPLIT
DARLINGTON OPTOCOUPLERS
SINGLE-CHANNEL
6N138
6N139
DESCRIPTION
The 6N138/9 and HCPL-2730/HCPL-2731 optocouplers consist of an AlGaAs LED
optically coupled to a high gain split darlington photodetector.
The split darlington configuration separating the input photodiode and the first
stage gain from the output transistor permits lower output saturation voltage and
higher speed operation than possible with conventional darlington phototransistor
optocoupler. In the dual channel devices, HCPL-2730/HCPL2731, an integrated
emitter - base resistor provides superior stability over temperature.
The combination of a very low input current of 0.5 mA and a high current transfer
ratio of 2000% makes this family particularly useful for input interface to MOS,
CMOS, LSTTL and EIA RS232C, while output compatibility is ensured to CMOS as
well as high fan-out TTL requirements.
8
An internal noise shield provides exceptional common mode rejection of 10 kV/µs.
An improved package allows superior insulation permitting a 480 V working voltage
compared to industry standard 220 V.
DUAL-CHANNEL
HCPL-2730
HCPL-2731
8
1
8
1
1
FEATURES
• Low current - 0.5 mA
• Superior CTR-2000%
• Superior CMR-10 kV/µs
• Double working voltage-480V RMS
• CTR guaranteed 0-70°C
• U.L. recognized (File # E90700)
• Dual Channel - HCPL-2730
HCPL-2731
APPLICATIONS
• Digital logic ground isolation
• Telephone ring detector
• EIA-RS-232C line receiver
• High common mode noise line receiver
• µP bus isolation
• Current loop receiver
N/C 1
+2
V
F
_3
N/C 4
8
V
CC
7
V
B
6V
O
5 GND
6N138 / 6N139
+1
V
F1
_2
_3
V
F2
+4
8
V
CC
7
V
01
6V
02
5 GND
HCPL-2730 / HCPL-2731
ABSOLUTE MAXIMUM RATINGS (No derating required up to 85°C)
Parameter
Storage Temperature
Operating Temperature
Lead Solder Temperature
EMITTER
DC/Average Forward Input Current
Each Channel
Symbol
TSTG
TOPR
TSOL
IF (avg)
Peak Forward Input Current (50% duty cycle, 1 ms P.W.) Each Channel
IF (pk)
Peak Transient Input Current - (!"1 µs P.W., 300 pps)
Reverse Input Voltage
Input Power Dissipation
DETECTOR
Average Output Current
Emitter-Base Reverse Voltage
Supply Voltage, Output Voltage
Output power dissipation
Each Channel
Each Channel
Each Channel
(6N138 and 6N139)
(6N138, HCPL-2730)
(6N139, HCPL-2731)
Each Channel
IF (trans)
VR
PD
IO (avg)
VEB
VCC, VO
PD
Value
-55 to +125
-40 to +85
260 for 10 sec
20
40
1.0
5
35
60
0.5
-0.5 to 7
-0.5 to 18
100
Units
°C
°C
°C
mA
mA
A
V
mW
mA
V
V
mW
12/27/99 200023A







6N138 pdf, 数据表
LOW INPUT CURRENT
HIGH GAIN SPLIT
DARLINGTON OPTOCOUPLERS
SINGLE-CHANNEL
6N138
6N139
DUAL-CHANNEL
HCPL-2730
HCPL-2731
Fig. 10 Output Current vs Output Voltage
(6N138 / 6N139 Only)
60
VCC = 5V
TA = 25˚C
50
5 mA
4.5 mA
4 mA
3.5 mA
3 mA
2.5 mA
40
2 mA
30
1.5 mA
20
1 mA
10
0
012
VO - OUTPUT VOLTAGE (V)
Fig. 11 Output Current vs Output Voltage
(HCPL-2730 / HCPL-2731 Only)
120
TA = 25˚C
VCC = 5.0 V
100
IF = 4.0 mA
IF = 3.5 mA
80
IF = 4.5 mA
60
IF = 5.0 mA
IF = 3.0 mA
IF = 2.5 mA
IF = 2.0 mA
IF = 1.5 mA
40 IF = 1.0 mA
20
IF = 0.5 mA
0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0
VO-OUTPUT VOLTAGE - V
Fig. 12 Output Current vs. Input Diode Forward Current
(6N138 / 6N139 Only)
100
VCC = 5 V
10 VO = 0.4 V
1
TA = 85˚C
0
0
0.01
TA = 70˚C
TA = 25˚C
TA = 0˚C
TA = -40˚C
0.1 1
10
IF - INPUT DIODE FORWARD CURRENT (mA)
Fig. 14 Logic Low Supply Current vs.
Input Diode Forward Current
(6N138 / 6N139 Only)
4.0
3.5
3.0
2.5
VCC = 5 V
2.0
VCC = 18 V
1.5
1.0
0.5
0.0
0 2 4 6 8 10 12 14 16
IF - FORWARD CURRENT (mA)
Fig. 13 Output Current vs
Input Diode Forward Current
(HCPL-2730 / HCPL-2731 Only)
100
VCC = 5.0 V
VO = 0.4 V
TA = 85˚C
10
TA = 25˚C
1
TA = -40˚C
0.1
0.1
1
10 100
IF - INPUT DIODE FORWARD CURRENT - mA
Fig. 15 Logic Low Supply Current vs.
Input Diode Forward Current
(HCPL-2730 / HCPL-2731 Only)
100
TA = 25˚C
HCPL-2731
VCC = 18 V
10
HCPL-2730
HCPL-2731
VCC = 7 V
1
0.1
0.1
1 10
IF - INPUT DIODE FORWARD CURRENT - mA
100
12/27/99 200023A














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