HCPL-181 [AVAGO]

Phototransistor Optocoupler SMD Mini-Flat Type; 光电晶体管光耦合器SMD小型平板式
HCPL-181
型号: HCPL-181
厂家: AVAGO TECHNOLOGIES LIMITED    AVAGO TECHNOLOGIES LIMITED
描述:

Phototransistor Optocoupler SMD Mini-Flat Type
光电晶体管光耦合器SMD小型平板式

晶体 光电 晶体管 光电晶体管
文件: 总6页 (文件大小:358K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
HCPL-181  
Phototransistor Optocoupler SMD Mini-Flat Type  
Data Sheet  
Lead (Pb) Free  
RoHS 6 fully  
compliant  
RoHS 6 fully compliant options available;  
-xxxE denotes a lead-free product  
Features  
•ꢀ CurrentꢀTransferꢀRatioꢀꢀ  
Description  
TheHCPL-181containsalightemittingdiodeopticallyꢀ  
coupledtoaphototransistor.Itispackagedina4-pinꢀ  
mini-flatꢀSMDꢀpackageꢀwithꢀaꢀ2.0ꢀmmꢀprofile.ꢀTheꢀsmallꢀ  
dimensionꢀofꢀthisꢀproductꢀallowsꢀsignificantꢀspaceꢀsaving.ꢀ  
Theꢀpackageꢀvolumeꢀisꢀ30%ꢀsmallerꢀthanꢀthatꢀofꢀconven-  
tionalꢀ DIPꢀ type.ꢀ Input-outputꢀ isolationꢀ voltageꢀ isꢀ 3750ꢀ  
(CTR:ꢀmin.ꢀ50%ꢀatꢀI ꢀ=ꢀ5ꢀmA,ꢀV ꢀ=ꢀ5ꢀV)  
F
CE  
•ꢀ Highꢀinput-outputꢀisolationꢀvoltageꢀꢀ  
(V ꢀ=ꢀ3750ꢀVrms)  
iso  
•ꢀ Highꢀcollector-emitterꢀvoltageꢀ(V ꢀ=ꢀ80ꢀV)  
•ꢀ Responseꢀtimeꢀꢀ  
CEO  
Vrms.Responsetime,t ,istypically4µsandminimumꢀ  
CTRꢀisꢀ50%ꢀatꢀinputꢀcurrentꢀofꢀ5ꢀmA.  
r
(t :ꢀtyp.,ꢀ4ꢀµsꢀatꢀV ꢀ=ꢀ2ꢀV,ꢀI ꢀ=ꢀ2ꢀmA,ꢀR ꢀ=ꢀ100ꢀΩ)  
r
CE  
C
L
•ꢀ Mini-flatꢀpackageꢀ(2.0ꢀmmꢀprofile)ꢀinꢀtapeꢀandꢀreelꢀꢀ  
package  
•ꢀ ULꢀapproved  
•ꢀ CSAꢀapproved  
•ꢀ IEC/EN/DINꢀENꢀ60747-5-2ꢀꢀapproved  
Schematic  
I
I
C
1
+
F
4
3
ANODE  
COLLECTOR  
EMITTER  
V
F
•ꢀ Optionsꢀavailable:ꢀ  
2
CATHODE  
–ꢀꢀIEC/EN/DINꢀENꢀ60747-5-2ꢀapprovalsꢀ(060)  
Applications  
•ꢀ I/Oꢀinterfacesꢀforꢀcomputers  
•ꢀ Systemꢀappliances,ꢀmeasuringꢀinstruments  
•ꢀ Signalꢀtransmissionꢀbetweenꢀcircuitsꢀofꢀdifferentꢀꢀ  
potentialsꢀandꢀimpedances  
Functional Diagram  
PIN NO. AND INTERNAL  
CONNECTION DIAGRAM  
4
3
•ꢀ Feedbackꢀcircuitꢀinꢀpowerꢀsupply  
1
2
1. ANODE  
3. EMITTER  
2. CATHODE 4. COLLECTOR  
CAUTION: It is advised that normal static precautions be taken in handling and assembly of this component to prevent damage  
and/or degradation which may be induced by ESD.ꢀ  
Ordering Information  
HCPL-181ꢀisꢀULꢀRecognizedꢀwithꢀ3750ꢀVrmsꢀforꢀ1ꢀminuteꢀperꢀUL1577ꢀandꢀisꢀapprovedꢀunderꢀCSAꢀComponentꢀAccep-  
tanceꢀNoticeꢀ#5,ꢀFileꢀCAꢀ88324  
RoHS Compliant Option  
Rank '0'  
50%<CTR  
Number <600%  
Rank 'A'  
80%<CTR  
<160%  
Rank 'B'  
Rank 'C'  
Rank 'D'  
Part  
130%<CTR 200%<CTR 300%<CTR  
<260%  
Surface  
Mount  
Gull  
Wing  
Tape  
& Reel  
IEC/EN/DIN  
EN 60747-5-2  
<400%  
<600%  
Package  
Quantity  
-000E  
-00AE  
-00BE  
-00CE  
-00DE  
SO-4  
X
X
X
3000 pcs  
per reel  
HCPL-181  
-060E  
-06AE  
-06BE  
-06CE  
-06DE  
SO-4  
X
X
3000 pcs  
per reel  
Toꢀorder,ꢀchooseꢀaꢀpartꢀnumberꢀfromꢀtheꢀpartꢀnumberꢀcolumnꢀandꢀcombineꢀwithꢀtheꢀdesiredꢀoptionꢀfromꢀtheꢀoptionꢀ  
columnꢀtoꢀformꢀanꢀorderꢀentry.ꢀꢀ  
Exampleꢀ1:ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
HCPL-181-00AEꢀtoꢀorderꢀproductꢀofꢀMiniflat-4ꢀDCꢀSurfaceꢀMountꢀpackageꢀinꢀTapeꢀandꢀReelꢀpackagingꢀwithꢀ  
80%<CTR<160%ꢀandꢀRoHSꢀcompliant.ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
Exampleꢀ2:ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
HCPL-181-060EꢀtoꢀorderꢀproductꢀofꢀMiniflat-4ꢀDCꢀSurfaceꢀMountꢀpackageꢀinꢀTapeꢀandꢀReelꢀpack-  
agingꢀwithꢀ50%<CTR<600%,ꢀIEC/EN/DINꢀEN60747-5-2ꢀSafetyꢀApprovalꢀandꢀRoHSꢀcompliant.ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
Optionꢀdatasheetsꢀareꢀavailable.ꢀContactꢀyourꢀAvagoꢀsalesꢀrepresentativeꢀorꢀauthorizedꢀdistributorꢀforꢀinformation.ꢀꢀꢀꢀꢀ  
2
Package Outline Drawings  
HCPL-181-000E  
2.54  
± 0.25  
3.60 ± 0.3  
5.30 ± 0.3  
181  
DATE CODE  
4.40 ± 0.2  
2.00 ± 0.2  
0.2 ± 0.05  
Y W W  
LEAD  
FREE  
+ 0.2  
– 0.7  
0.10 ± 0.1  
0.40 ± 0.1  
7.00  
RANK  
DIMENSIONS IN MILLIMETERS.  
HCPL-181-060E  
2.54  
± 0.25  
3.60 ± 0.3  
5.30 ± 0.3  
181 V  
DATE CODE  
2.00 ± 0.2  
0.2 ± 0.05  
Y W W  
4.40 ± 0.2  
LEAD  
FREE  
+ 0.2  
– 0.7  
0.10 ± 0.1  
0.40 ± 0.1  
7.00  
RANK  
DIMENSIONS IN MILLIMETERS.  
Solder Reflow Temperature Profile  
1.ꢀ One-timeꢀsolderingꢀreflowꢀisꢀrecommendedꢀwithinꢀtheꢀ  
conditionoftemperatureandtimeprofileshownatꢀ  
right.  
30 seconds  
260 C (Peak Temperature)  
°
250°C  
217°C  
200°C  
2.ꢀ Whenusinganothersolderingmethodsuchasinfraredꢀ  
raylamp,thetemperaturemayrisepartiallyinthemoldꢀ  
ofꢀtheꢀdevice.ꢀKeepꢀtheꢀtemperatureꢀonꢀtheꢀpackageꢀofꢀ  
theꢀdeviceꢀwithinꢀtheꢀconditionꢀofꢀ(1)ꢀabove.  
150°C  
60 sec  
90 sec  
25°C  
60 ~ 150 sec  
60 sec  
Time (sec)  
Note: Non-halide flux should be used.  
3
Absolute Maximum Ratings (T = 25˚C)  
A
Rank Mark  
CTR (%)  
Conditions  
Storage Temperature, T  
–55˚C to +155˚C  
–55˚C to +100˚C  
260˚C for 10 s  
S
A
B
C
80 ~ 160  
130 ~ 260  
200 ~ 400  
300 ~ 600  
I = 5 mA,  
Operating Temperature, T  
F
A
V = 5 V, T = 25˚C  
CE  
A
Lead Solder Temperature, max.  
(1.6 mm below seating plane)  
Average Forward Current, I  
50 mA  
6 V  
F
D
Reverse Input Voltage, V  
R
Input Power Dissipation, P  
70 mW  
50 mA  
80 V  
I
Collector Current, I  
C
Collector-Emitter Voltage, V  
Emitter-Collector Voltage, V  
Collector Power Dissipation  
Total Power Dissipation  
CEO  
6 V  
ECO  
150 mW  
170 mW  
3750 Vrms  
Isolation Voltage, V  
iso  
(AC for 1 minute, R.H. = 40 ~ 60%)  
Electrical Specifications (T = 25˚C)  
A
Parameter  
Symbol  
Min.  
Typ.  
1.2  
Max.  
1.4  
10  
Units  
V
Test Conditions  
I = 20 mA  
Forward Voltage  
V
F
F
Reverse Current  
I
µA  
pF  
nA  
V
V = 4 V  
R
R
Terminal Capacitance  
Collector Dark Current  
Collector-Emitter Breakdown Voltage  
Emitter-Collector Breakdown Voltage  
Collector Current  
C
I
30  
250  
100  
V = 0, f = 1 KHz  
t
V = 20 V  
CE  
CEO  
BV  
BV  
80  
6
I = 0.1 mA, I = 0  
C F  
CEO  
V
I = 10 µA, I = 0  
E F  
ECO  
I
C
2.5  
50  
30  
mA  
%
I = 5 mA, V = 5 V  
F CE  
*Current Transfer Ratio  
Collector-Emitter Saturation Voltage  
Response Time (Rise)  
Response Time (Fall)  
CTR  
600  
0.2  
18  
V
V
I = 20 mA, I = 1 mA  
F C  
CE(sat)  
t
t
4
µs  
µs  
V = 2 V, I = 2 mA  
CC C  
r
3
18  
R = 100  
f
L
10  
11  
Isolation Resistance  
R
5 x 10  
1 x 10  
DC 500 V  
40 ~ 60% R.H.  
iso  
Floating Capacitance  
C
f
0.6  
1.0  
pF  
V = 0, f = 1 MHz  
I
I
C
* CTR =  
x 100%  
F
200  
150  
100  
50  
60  
6
5
4
3
2
1
T
= 25°C  
A
50  
40  
30  
20  
10  
I
I
I
I
I
= 0.5 mA  
C
C
C
C
C
= 1 mA  
= 3 mA  
= 5 mA  
= 7 mA  
0
-55  
0
-55  
0
0
0
25  
50  
75  
100 125  
0
25  
50  
75  
100 125  
5
10  
15  
T
– AMBIENT TEMPERATURE – °C  
T
– AMBIENT TEMPERATURE – °C  
I – FORWARD CURRENT – mA  
F
A
A
Figure 1. Forward current vs. temperature.  
Figure 2. Collector power dissipation vs. tempera-  
ture.  
Figure 3. Collector-emitter saturation voltage vs.  
forward current.  
4
200  
180  
160  
140  
120  
100  
80  
50  
40  
30  
20  
10  
500  
I
F
= 30 mA  
= 25 mA  
V
T
= 5 V  
T
T
T
= 75°C  
= 50°C  
= 25°C  
CE  
= 25°C  
A
A
A
T
= 25°C  
(MAX.)  
A
I
F
A
200  
100  
T
T
= 0°C  
A
A
P
= -25°C  
C
I
= 20 mA  
= 15 mA  
F
50  
I
F
20  
10  
I
= 10 mA  
= 5 mA  
60  
F
I
5
40  
20  
F
2
1
0
0
1
2
5
10  
20  
50  
0
0.5  
1.0  
1.5  
2.0  
2.5  
3.0  
0
1
2
3
4
5
6
7
8
9
V
– FORWARD VOLTAGE – V  
V
– COLLECTOR-EMITTER VOLTAGE – V  
CE  
I
– FORWARD CURRENT – mA  
F
F
Figure 4. Forward current vs. forward voltage.  
Figure 5. Current transfer ratio vs. forward current.  
Figure 6. Collector current vs. collector-emitter volt-  
age.  
150  
0.10  
150  
I
= 5 mA  
= 2 V  
I
= 20 mA  
= 1 mA  
F
F
I
V
= 5 mA  
= 5 V  
F
V
I
CE  
C
CE  
0.08  
0.06  
0.04  
100  
100  
50  
0
50  
0
0.02  
0
20  
40  
60  
80  
100  
20  
40  
60  
80  
100  
20  
40  
60  
80  
100  
T
– AMBIENT TEMPERATURE – °C  
T
– AMBIENT TEMPERATURE – °C  
T
– AMBIENT TEMPERATURE – °C  
A
A
A
Figure 7. Relative current transfer ratio vs. tempera-  
ture.  
Figure 8. Collector-emitter saturation voltage vs.  
temperature.  
Figure 9. Collector dark current vs. temperature.  
500  
V
= 2 V  
V
= 2 V  
CE  
CE  
= 2 mA  
200  
100  
I
= 2 mA  
= 25°C  
C
I
C
T
0
10  
20  
A
T
= 25°C  
A
50  
tr  
20  
10  
tf  
R
= 10 k  
= 1 k  
L
td  
ts  
5
R
L
2
1
R
= 100   
L
0.5  
0.2  
0.1  
0.05 0.1 0.2 0.5  
1
2
5
10  
0.5  
1
2
5
10 20 50 100 200 500  
R
– LOAD RESISTANCE – kΩ  
f – FREQUENCY – kHz  
L
Figure 10. Response time vs. load resistance.  
Figure 11. Frequency response.  
5
Test Circuit for Response Time  
Test Circuit for Frequency Response  
V
CC  
V
CC  
R
R
L
L
R
R
D
D
INPUT  
OUTPUT  
OUTPUT  
~
INPUT  
10%  
90%  
OUTPUT  
td  
ts  
tr  
tf  
For product information and a complete list of distributors, please go to our web site: www.avagotech.com  
Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies, Limited in the United States and other countries.  
Data subject to change. Copyright © 2007 Avago Technologies Limited. All rights reserved.  
AV02-0774EN - October 18, 2007  

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