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MOC8050

更新时间: 2024-11-29 20:35:23
品牌 Logo 应用领域
威世 - VISHAY 输出元件光电
页数 文件大小 规格书
2页 386K
描述
Transistor Output Optocoupler, 1-Element, 5300V Isolation,

MOC8050 技术参数

是否Rohs认证: 符合生命周期:Obsolete
包装说明:DIP-6Reach Compliance Code:unknown
ECCN代码:EAR99HTS代码:8541.40.80.00
风险等级:5.65Is Samacsys:N
Coll-Emtr Bkdn Voltage-Min:80 V配置:SINGLE
标称电流传输比:500%最大暗电源:1000 nA
最大正向电流:0.06 A最大绝缘电压:5300 V
JESD-609代码:e3元件数量:1
最高工作温度:100 °C最低工作温度:-55 °C
光电设备类型:DARLINGTON OUTPUT OPTOCOUPLER端子面层:Matte Tin (Sn)
Base Number Matches:1

MOC8050 数据手册

 浏览型号MOC8050的Datasheet PDF文件第2页 
MOC8050  
Photodarlington  
Optocoupler  
FEATURES  
Dimensions in inches (mm)  
• High Current Transfer Ratio 500% at 50 mA  
pin one ID  
Output  
2
1
3
• High Collector to Emitter Breakdown Voltage:  
80 V Min.  
.248 (6.30)  
.256 (6.50)  
6
1
2
3
Anode  
NC  
• High Isolation Voltage V =5300 V  
ISO  
RMS  
5
Cathode  
NC  
Collector  
• Base Lead Not Connected  
• Solid State Reliability  
• Standard DIP Package  
4
5
6
4
Emitter  
.335 (8.50)  
.343 (8.70)  
• Underwriters Lab File #E52744  
.300 (7.62)  
typ.  
VE  
D
.048 (0.45)  
.022 (0.55)  
.039  
(1.00)  
Min.  
VDE 0884 Available with Option 1  
.130 (3.30)  
.150 (3.81)  
DESCRIPTION  
The MOC8050 is an optically coupled isolator with  
a Gallium Arsenide infrared emitter and a silicon  
photodarlington sensor. Switching can be achieved  
while maintaining a high degree of isolation  
between driving and load circuits, with no cross talk  
between channels. These optocouplers can be  
used to replace reed and mercury relays with  
advantages of long life, high speed switching and  
elimination of magnetic elds.  
18°  
4°  
.114 (2.90)  
typ.  
.031 (0.80) min.  
.130 (3.0)  
3°9°  
.010 (.25)  
typ.  
.300.347  
.031 (0.80)  
.035 (0.90)  
.018 (0.45)  
.022 (0.55)  
.100 (2.54) typ.  
(7.628.81)  
Electrical Characteristics (T =25°C)  
A
Parameter  
Symbol Min. Typ. Max. Unit  
Condition  
Maximum Ratings  
Emitter  
Emitter  
Peak Reverse Voltage ..................................... 3.0 V  
Continuous Forward Current .........................60 mA  
Power Dissipation at 25°C........................... 100 mW  
Derate Linearly from 25°C ....................1.33 mW/°C  
Detector  
Collector-Emitter Reverse Voltage..................... 80 V  
Collector Load Current ................................125 mA  
Power Dissipation at 25°C Ambient ............ 150 mW  
Derate Linearly from 25°C ......................2.0 mW/°C  
Package  
Forward Voltage  
Reverse Current  
Capacitance  
Detector  
1.25 1.5  
V
I =20 mA  
V
I
F
F
0.1  
25  
10  
µA  
pF  
V =3.0 V  
R
R
V =0  
C
R
O
Collector-Emitter  
Breakdown Voltage  
BV  
80  
V
I =10 µA  
C
CEO  
Collector-Emitter  
Leakage Current  
I
25  
8.0  
1000 nA  
V
=60 V  
CEO  
CE  
I =0  
F
Total Package Dissipation at 25°C.............. 250 mW  
Derate Linearly from 25°C ......................3.3 mW/°C  
Emitter-Collector  
Breakdown Voltage  
5.0  
V
I =10 µA  
V
C
ECO  
Isolation Test Voltage...............................5300 V  
Isolation Resistance  
RMS  
Package  
12  
11  
V
=500 V, T =25°C....................................10  
IO  
A
Current Transfer  
Ratio  
CTR  
500  
1.0  
%
V
I =10 mA  
V
=500 V, T =100°C................................. 10  
F
CE  
IO  
A
V
=1.5 V  
Creepage Path .......................................... 7.0 mm  
Clearance Path.......................................... 7.0 mm  
Comparative Tracking Index .............................. 175  
Storage Temperature Range .........55°C to +125°C  
Operating Temperature Range......55°C to +100°C  
Lead Soldering Time at 260°C..................... 10 sec.  
Collector-Emitter  
Saturation Voltage  
0.9  
I =50 mA  
C
V
CEsat  
I =50 mA  
F
Isolation Test  
Voltage  
5300  
V
1.0 s, 60 Hz  
V
RMS  
ISO  
Coupling  
Capacitance  
0.5  
pF  
C
ISOL  
Rise Time  
Fall Time  
10  
35  
µs  
V
=13.5 V  
t
CC  
r
I =50 mA  
F
t
R =100 Ω  
f
L
Document Number: 83659  
Revision 17-August-01  
www.vishay.com  
2–211  

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