HCPL-817-W6DE [AVAGO]

Phototransistor Optocoupler High Density Mounting Type; 光电晶体管光耦合器高密度安装类型
HCPL-817-W6DE
型号: HCPL-817-W6DE
厂家: AVAGO TECHNOLOGIES LIMITED    AVAGO TECHNOLOGIES LIMITED
描述:

Phototransistor Optocoupler High Density Mounting Type
光电晶体管光耦合器高密度安装类型

晶体 光电 晶体管 光电晶体管
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中文:  中文翻译
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HCPL-817  
Phototransistor Optocoupler High Density Mounting Type  
Data Sheet  
Lead (Pb) Free  
RoHS 6 fully  
compliant  
RoHS 6 fully compliant options available;  
-xxxE denotes a lead-free product  
Description  
Features  
The HCPL-817 contains a light emitting diode optically Current Transfer Ratio  
coupled to a phototransistor. It is packaged in a 4-pin DIP  
package and available in wide-lead spacing option and  
lead bend SMD option. Input-output isolation voltage is  
(CTR: min. 50% at I = 5 mA, V = 5 V)  
F CE  
High input-output isolation voltage (V = 5000 V  
)
iso  
rms  
Response time  
5000Vrms. Response time, t , is typically 4 μs and minimum  
r
(tr: typ., 4 μs at VCE = 2 V, IC = 2 mA, RL = 100 Ω)  
CTR is 50% at input current of 5 mA.  
Compact dual-in-line package  
UL approved  
Schematic  
IC  
IF  
1
4
3
CSA approved  
ANODE  
COLLECTOR  
EMITTER  
+
IEC/EN/DIN EN 60747-5-2 approved  
VF  
Options available:  
2
– Leads with 0.4" (10.16 mm) spacing (W00)  
– Leads bends for surface mounting (300)  
– Tape and reel for SMD (500)  
CATHODE  
– IEC/EN/DIN EN 60747-5-2 approvals (060)  
Functional Diagram  
Applications  
PIN NO. AND INTERNAL  
CONNECTION DIAGRAM  
Signal transmission between circuits of different  
potentials and impedances  
4
3
I/O interfaces for computers  
Feedback circuit in power supply  
1
1. ANODE  
2. CATHODE  
2
3. EMITTER  
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-817-xxxx is UL Recognized with 5000 Vrms for 1 minute per UL1577 and is approved under CSA Component  
Acceptance Notice #5, File CA 88324.  
RoHS Compliant Option  
Rank  
‘0’  
50%  
Rank  
‘A’  
80%  
Rank  
‘B’  
130%  
Rank  
‘C’  
200%  
Rank  
‘D’  
300%  
Rank  
‘L’  
50%  
IEC/EN/  
DIN EN  
60747-  
5-2  
Part  
<CTR< <CTR< <CTR< <CTR< <CTR< <CTR<  
600%  
Surface  
Mount  
Gull  
Wing  
Tape  
& Reel  
number  
160%  
260%  
400%  
600%  
100% Package  
Quantity  
-000E  
-00AE  
-00BE  
-00CE  
-00DE  
-00LE  
100 pcs  
per tube  
-300E  
-500E  
-060E  
-360E  
-560E  
-30AE  
-50AE  
-06AE  
-36AE  
-56AE  
-30BE  
-50BE  
-06BE  
-36BE  
-56BE  
-30CE  
-50CE  
-06CE  
-36CE  
-56CE  
-30DE  
-50DE  
-06DE  
-36DE  
-56DE  
-30LE  
X
X
X
X
100 pcs  
per tube  
-50LE  
X
X
1000 pcs  
per reel  
300mil  
DIP-4  
-06LE  
-36LE  
-56LE  
X
X
X
100 pcs  
per tube  
HCPL-  
817  
X
X
X
X
100 pcs  
per tube  
1000 pcs  
per reel  
-W00E -W0AE -W0BE -W0CE -W0DE -W0LE  
-W60E -W6AE -W6BE -W6CE -W6DE -W6LE  
100 pcs  
per tube  
400mil  
DIP-4  
X
100 pcs  
per tube  
To order, choose a part number from the part number column and combine with the desired option from the option  
column to form an order entry.  
Example 1:  
HCPL-817-360E to order product of 300mil DIP-4 DC Gull Wing Surface Mount package in Tube packaging with  
50%<CTR<600%, IEC/EN/DIN EN 60767-5-2 Safety Approval and RoHS compliant.  
Example 2:  
HCPL-817-50BE to order product of 300mil DIP-4 DC Gull Wing Surface Mount package in Tape and Reel packaging  
with 130%<CTR<260% and RoHS compliant.  
Option datasheets are available. Contact your Avago sales representative or authorized distributor for information.  
2
Package Outline Drawings  
HCPL-817-000E  
7.62 0.3  
(0.3)  
4.6 0.5  
(0.181)  
3.5 0.5  
(0.138)  
DATE CODE  
6.5 0.5  
A 817  
LEAD FREE  
ANODE  
0.5  
(0.02)  
(0.256)  
TYP.  
Y W W  
3.3 0.5  
(0.130)  
2.8 0.5  
(0.110)  
RANK  
0.26  
(0.010)  
0.5 0.1  
(0.02)  
2.54 0.25  
(0.1)  
7.62 ~ 9.98  
Dimensions in Millimeters and (Inches)  
HCPL-817-060E  
7.62 0.3  
(0.3)  
4.6 0.5  
(0.181)  
3.5 0.5  
(0.138)  
DATE CODE  
6.5 0.5  
A 817V  
Y W W  
LEAD FREE  
ANODE  
0.5  
(0.02)  
TYP.  
(0.256)  
3.3 0.5  
(0.130)  
2.8 0.5  
(0.110)  
RANK  
0.26  
(0.010)  
0.5 0.1  
(0.02)  
2.54 0.25  
(0.1)  
7.62 ~ 9.98  
Dimensions in Millimeters and (Inches)  
HCPL-817-W00E  
7.62 0.3  
(0.3)  
4.6 0.5  
(0.181)  
3.5 0.5  
(0.138)  
DATE CODE  
6.5 0.5  
A 817  
LEAD FREE  
ANODE  
6.9 0.5  
(0.272)  
2.3 0.5  
(0.09)  
(0.256)  
Y W W  
2.8 0.5  
(0.110)  
RANK  
0.5 0.1  
(0.02)  
0.26  
(0.010)  
10.16 0.5  
(0.4)  
2.54 0.25  
(0.1)  
Dimensions in Millimeters and (Inches)  
3
HCPL-817-300E  
7.62 0.3  
(0.3)  
4.6 0.5  
(0.181)  
3.5 0.5  
(0.138)  
DATE CODE  
6.5 0.5  
0.26  
(0.010)  
A 817  
LEAD FREE  
ANODE  
(0.256)  
Y W W  
1.0 0.25  
(0.039)  
1.2 0.1  
(0.047)  
0.35 0.25  
(0.014)  
10.16 0.3  
(0.4)  
2.54 0.25  
(0.1)  
RANK  
Dimensions in Millimeters and (Inches)  
Solder Reflow Temperature Profile  
30 seconds  
260°C (Peak Temperature)  
250°C  
217°C  
200°C  
1. One-time soldering reflow is recommended within the  
condition of temperature and time profile shown.  
150°C  
2. When using another soldering method such as infrared  
ray lamp, the temperature may rise partially in the mold  
of thedevice. Keep the temperature on the package of  
the device within the condition of (1) above.  
60 sec  
25°C  
60 ~ 150 sec  
90 sec  
Time (sec)  
Note: Non-halide flux should be used.  
60 sec  
Absolute Maximum Ratings (T = 25°C)  
A
Storage Temperature, TS  
–55°C to +125°C  
–30°C to +100°C  
260°C for 10 s  
Operating Temperature, TA  
Lead Solder Temperature, max.  
(1.6 mm below seating plane)  
Average Forward Current, IF  
Reverse Input Voltage, VR  
Input Power Dissipation, PI  
Collector Current, IC  
50 mA  
6 V  
70 mW  
50 mA  
70 V  
Collector-Emitter Voltage, VCEO  
Emitter-Collector Voltage, VECO  
Collector Power Dissipation  
Total Power Dissipation  
6 V  
150 mW  
200 mW  
5000 Vrms  
Isolation Voltage, Viso (AC for 1 minute, R.H. = 40 ~ 60%)  
4
Electrical Specifications (T = 25°C)  
A
Parameter  
Symbol  
VF  
Min.  
Typ.  
1.2  
Max.  
1.4  
10  
250  
100  
Units  
V
Test Conditions  
IF = 20 mA  
VR = 4 V  
Forward Voltage  
Reverse Current  
IR  
μA  
pF  
nA  
V
Terminal Capacitance  
Collector Dark Current  
Collector-Emitter Breakdown Voltage  
Emitter-Collector Breakdown Voltage  
Collector Current  
Ct  
30  
V = 0, f = 1 KHz  
VCE = 20 V  
ICEO  
BVCEO  
BVECO  
IC  
70  
6
IC = 0.1 mA  
IE = 10 μA  
V
2.5  
50  
30  
600  
0.2  
18  
18  
mA  
%
IF = 5 mA, VCE = 5 V,  
RBE = ∞  
*Current Transfer Ratio  
Collector-Emitter Saturation Voltage  
Response Time (Rise)  
Response Time (Fall)  
CTR  
VCE(sat)  
tr  
0.1  
4
V
IF = 20 mA, IC = 1 mA  
μs  
μs  
KHz  
VCE = 2 V, IC = 2 mA  
RL = 100 Ω  
tf  
3
Cut-off Frequency  
fc  
80  
VCC = 5 V, IC = 2 mA  
RL = 100 Ω, –3 dB  
Isolation Resistance  
Floating Capacitance  
Riso  
Cf  
5 x 1010  
1 x 1011  
0.6  
Ω
DC 500 V  
40 ~ 60% R.H.  
1.0  
pF  
V = 0, f = 1 MHz  
I
I
C
* CTR =  
x 100%  
F
60  
50  
40  
30  
20  
10  
200  
150  
100  
50  
0
0
-30  
0
25  
50  
75  
100  
125  
-30  
0
25  
50  
75  
100  
125  
TA – AMBIENT TEMPERATURE – °C  
T
A – AMBIENT TEMPERATURE – °C  
Figure 1. Forward current vs. temperature.  
6
Figure 2. Collector power dissipation vs. temperature.  
TA = 25°C  
5
4
3
2
IC = 0.5 mA  
IC = 1 mA  
IC = 3 mA  
IC = 5 mA  
IC = 7 mA  
1
0
0
5
10  
15  
IF – FORWARD CURRENT – mA  
Figure 3. Collector-emitter saturation voltage vs. forward current.  
5
200  
180  
160  
140  
120  
100  
80  
500  
VCE = 5 V  
TA = 25°C  
T
A = 75°C  
TA = 50°C  
A = 25°C  
200  
100  
TA = 0°C  
TA = -25°C  
T
50  
20  
10  
60  
5
40  
20  
0
2
1
0
0.5  
1.0  
1.5  
2.0  
2.5  
3.0  
1
2
5
10  
20  
50  
VF – FORWARD VOLTAGE – V  
IF – FORWARD CURRENT – mA  
Figure 4. Forward current vs. forward voltage.  
Figure 5. Current transfer ratio vs. forward current.  
50  
150  
100  
50  
IF = 5 mA  
VCE = 5 V  
TA = 25°C  
PC (MAX.)  
IF = 30 mA  
40  
IF = 25 mA  
30  
IF = 20 mA  
IF = 15 mA  
IF = 10 mA  
20  
10  
0
IF = 5 mA  
0
0
1
2
3
4
5
6
7
8
9
-30  
0
25  
50  
75  
100  
VCE – COLLECTOR-EMITTER VOLTAGE – V  
TA – AMBIENT TEMPERATURE – °C  
Figure 6. Collector current vs. collector-emitter voltage.  
Figure 7. Relative current transfer ratio vs. temperature.  
10-5  
0.16  
0.14  
0.12  
0.10  
0.08  
0.06  
0.04  
IF = 20 mA  
IC = 1 mA  
VCE = 20 V  
10-6  
10-7  
10-8  
10-9  
10-10  
0.02  
0
10-11  
-25  
0
25  
50  
75  
100  
-25  
0
25  
50  
75  
100  
TA – AMBIENT TEMPERATURE – °C  
TA – AMBIENT TEMPERATURE – °C  
Figure 8. Collector-emitter saturation voltage vs. temperature.  
Figure 9. Collector dark current vs. temperature.  
6
500  
VCE = 2 V  
IC = 2 mA  
TA = 25°C  
VCE = 2 V  
IC = 2 mA  
TA = 25°C  
200  
100  
50  
0
-10  
-20  
tr  
20  
10  
5
tf  
RL = 10 kΩ  
RL = 1 kΩ  
RL = 100 Ω  
td  
2
1
0.5  
ts  
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  
RL – LOAD RESISTANCE – kW  
f – FREQUENCY – kHz  
Figure 10. Response time vs. load resistance.  
Figure 11. Frequency response.  
Test Circuit for Response Time  
Test Circuit for Frequency Response  
VCC  
VCC  
RL  
RL  
RD  
RD  
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 in the United States and other countries.  
Data subject to change. Copyright © 2005-2009 Avago Technologies. All rights reserved. Obsoletes AV01-0534EN  
AV02-0265N - November 5, 2009  

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