IS4N46X [ISOCOM]

Darlington Output Optocoupler,;
IS4N46X
型号: IS4N46X
厂家: ISOCOM COMPONENTS    ISOCOM COMPONENTS
描述:

Darlington Output Optocoupler,

输出元件 输入元件
文件: 总3页 (文件大小:71K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
IS4N46  
IS4N45  
LOW INPUT CURRENT  
DARLINGTON OUTPUT OPTICALLY  
COUPLED ISOLATOR  
APPROVALS  
Dimensions in mm  
z
ULrecognised, FileNo. E91231"JJ"  
2.54  
'X'SPECIFICATIONAPPROVALS  
1
6
z
VDE 0884 in 3 available lead form : -  
7.0  
6.0  
- STD  
- G form  
-SMDapprovedtoCECC00802  
2
3
5
4
1.2  
3.0  
DESCRIPTION  
TheIS4N45,IS4N46areopticallycoupled  
isolators consisting of an infrared light emitting  
diode and a NPN silicon photo darlington which  
has an integral base-emitter resistor to optimise  
switching speed and elevated temperature  
characteristics in a standard 6pin dual in line  
plastic package. These devices are designed to  
equal the 4N45, 4N46characteristicswhile  
providing greater voltage and current capability.  
7.62  
6.62  
7.62  
4.0  
3.0  
13°  
Max  
0.5  
0.26  
3.35  
0.5  
FEATURES  
ABSOLUTEMAXIMUMRATINGS  
(25°Cunlessotherwisespecified)  
z
Options :-  
10mm lead spread - add G after part no.  
Surface mount - add SM after part no.  
Tape&reel - add SMT&R after part no.  
HighIsolationVoltage(5.3kV ,7.5kVPK)  
HighCurrentTransferRatio(R1M5S00%typ.)  
HighBVCEO (55Vmin.)  
Internalbase-emitterresistorminimizes  
output leakage  
Lowinputcurrent0.5mAIF  
Storage Temperature  
OperatingTemperature  
Lead SolderingTemperature  
(1/16inch(1.6mm)fromcasefor10secs) 260°C  
-40°Cto+125°C  
-25°Cto+100°C  
z
z
z
z
INPUTDIODE  
z
APPLICATIONS  
ForwardCurrent  
ReverseVoltage  
Power Dissipation  
50mA  
6V  
70mW  
z
z
z
z
z
z
z
Telephone ring detector  
Digital logic ground isolation  
Low input current line receiver  
Logic to reed relay interface  
Level shifting  
Interfacebetweenlogicfamilies  
Line voltage status indicator - low input  
power dissipation  
OUTPUTTRANSISTOR  
Collector-emitterVoltageVCEO  
Emitter-baseVoltageVEBO  
CollectorCurrent  
55V  
6V  
150mA  
300mW  
OPTION G  
OPTION SM  
SURFACE MOUNT  
7.62  
Power Dissipation  
POWERDISSIPATION  
0.6  
0.1  
1.25  
0.75  
0.26  
Total Power Dissipation  
350mW  
10.46  
9.86  
10.16  
ISOCOMCOMPONENTSLTD  
Unit25B, ParkViewRoadWest,  
ParkView Industrial Estate, Brenda Road  
Hartlepool,Cleveland,TS251UD  
Tel:(01429)863609 Fax:(01429)863581  
19/11/08  
DB91024  
ELECTRICAL CHARACTERISTICS ( TA= 25°C Unless otherwise noted )  
PARAMETER  
MIN TYP MAX UNITS  
TEST CONDITION  
Input  
ForwardVoltage(VF)  
1.2  
1.5  
10  
V
IF =10mA  
ReverseCurrent(IR)  
μA  
VR =4V  
Output  
Collector-emitterBreakdown(BVceo)  
Emitter-collectorBreakdown(BVeco)  
Emitter-baseBreakdown(BVebo)  
55  
0.1  
6
V
V
V
IC =1mA  
IE =10μA  
IE =10μA  
Coupled DCCurrent Transfer Ratio ( CTR )  
IS4N46  
IS4N46  
IS4N45  
350  
500  
250  
200  
%
%
%
%
0.5mAI ,1VVCE  
1mAI ,F1VVCE  
1mAIF,1VVCE  
10mAFIF,1.2VVCE  
IS4N46,IS4N45  
LogicLowOutputVoltage(VOL )  
IS4N46  
1.0  
1.0  
1.0  
1.2  
V
V
V
V
0.5mAI ,1.75mAIOL  
1mA I ,F5mAIOL  
IS4N46  
IS4N45  
IS4N46,IS4N45  
1mA IF,2.5mAIOL  
10mAFIF,20mAIOL  
Input to Output Isolation Voltage VISO 5300  
7500  
VRMS  
VPK  
Ω
See note 1  
See note 1  
Input-output Isolation Resistance RISO 5x1010  
V =500V(note1)  
Input-output Capacitance  
Cf  
0.6  
pF  
VI=O 0,f=1MHz  
Output rise time, tr  
Output fall time, tf  
100 300 μS  
20 100 μS  
V =2V,I =20mA  
RLCE=100ΩC  
DB91024  
19/11/08  
Collector Power Dissipation vs. Ambient Temperature  
Normalized Output Current vs.  
Collector-emitter Voltage  
250  
100  
10  
50mA  
10mA  
200  
150  
100  
50  
1.0  
0.1  
IF = 1mA  
Normalized to  
IF = 1mA  
(300μs pulse),  
VCE = 5V  
0
0.01  
0
1
2
3
4
5
6
-30  
0
25  
50  
75  
100 125  
Collector-emitter voltage VCE ( V )  
Ambient temperature TA ( °C )  
Forward Current vs. Ambient Temperature  
Normalized Output Current vs.  
Ambient Temperature  
80  
70  
60  
50  
100  
10  
50mA  
10mA  
40  
30  
1.0  
0.1  
IF = 1mA  
Normalized to  
I = 1mA  
20  
(3F 00μs pulse),  
V
= 5V  
10  
0
TACE= 25 °C  
0.01  
-30  
0
25  
50  
75  
100 125  
-50  
-25  
0
25  
50 75 100  
Ambient temperature TA ( °C )  
Ambient temperature TA ( °C )  
Collector Dark Current vs.  
Ambient Temperature  
Normalized Output Current vs.  
Input Current  
100k  
10k  
100  
50V  
VCE  
10  
1k  
10V  
VCE  
1.0  
100  
Normalized to  
I = 1mA  
(3F 00μs pulse),  
0.1  
10  
1
V
= 5V  
VCE = 5V  
75  
TACE= 25 °C  
0.01  
0.1  
1.0  
10 100  
-30  
0
25  
50  
100  
Input current IF (mA)  
Ambient temperature TA ( °C )  
19/11/08  
DB91024  

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