PS2703-1-M [CEL]

Transistor Output Optocoupler, 1-Element, 3750V Isolation, PLASTIC, SOP-4;
PS2703-1-M
型号: PS2703-1-M
厂家: CALIFORNIA EASTERN LABS    CALIFORNIA EASTERN LABS
描述:

Transistor Output Optocoupler, 1-Element, 3750V Isolation, PLASTIC, SOP-4

光电 分离技术 隔离技术
文件: 总11页 (文件大小:386K)
中文:  中文翻译
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PHOTOCOUPLER  
PS2703-1  
HIGH ISOLATION VOLTAGE  
HIGH COLLECTOR TO EMITTER VOLTAGE TYPE  
SOP MULTI PHOTOCOUPLER  
NEPOC Series−  
DESCRIPTION  
The PS2703-1 is an optically coupled isolator containing a GaAs light emitting diode and an NPN silicon  
phototransistor.  
This is mounted in a plastic SOP (Small Outline Package) for high density applications.  
This package has shield effect to cut off ambient light.  
FEATURES  
High isolation voltage (BV = 3 750 Vr.m.s.)  
High collector to emitter voltage (VCEO = 120 V)  
SOP (Small Outline Package) type  
Each isolated channel per package  
High-speed switching (tr, tf = 10 µs TYP.)  
Taping product number: PS2703-1-F3, F4  
UL approved: File No. E72422 (S)  
VDE0884 approved (Option)  
APPLICATIONS  
Hibrid IC  
Telephone/FAX  
FA/OA equipment  
Programmable logic controllers  
Power supply  
ORDERING INFORMATION (Solder Contains Lead)  
Part Number  
PS2703-1  
Package  
Safety Standard Approval  
4-pin SOP  
Standard specification products  
• UL approved  
PS2703-1-V  
4-pin SOP  
VDE0884 specification products (Option)  
ORDERING INFORMATION (Pb-Free)  
Part Number  
PS2703-1-A  
Package  
Safety Standard Approval  
4-pin SOP  
Standard specification products  
• UL approved  
PS2703-1-V-A  
4-pin SOP  
VDE0884 specification products (Option)  
Document No. PN10242EJ01V0DS (1st edition)  
(Previous No. P11308EJ6V0DS00)  
The mark  shows major revised points.  
Date Published February 2003 CP(K)  
PS2703-1  
PACKAGE DIMENSIONS (in millimeters)  
PS2703-1  
4.0±0.5  
TOP VIEW  
4
1
3
1. Anode  
2. Cathode  
3. Emitter  
4. Collector  
2
7.0±0.3  
4.4  
2.54  
0.5±0.3  
+0.10  
0.4  
0.25 M  
–0.05  
2
Data Sheet PN10242EJ01V0DS  
PS2703-1  
ABSOLUTE MAXIMUM RATINGS (TA = 25 °C, unless otherwise specified)  
Parameter  
Symbol  
IF  
Ratings  
Unit  
mA  
Diode  
Forward Current (DC)  
Reverse Voltage  
50  
VR  
6
V
Power Dissipation Derating  
Power Dissipation  
PD/°C  
PD  
0.8  
mW/°C  
mW  
A
80  
Peak Forward Current*1  
IFP  
1
Transistor Collector to Emitter Voltage  
Emitter to Collector Voltage  
Collector Current  
VCEO  
VECO  
IC  
120  
V
6
30  
V
mA  
Power Dissipation Derating  
Power Dissipation  
PC/°C  
PC  
1.5  
mW/°C  
mW  
Vr.m.s.  
°C  
150  
Isolation Voltage*2  
BV  
3 750  
Operating Ambient Temperature  
Storage Temperature  
TA  
–55 to +100  
–55 to +150  
Tstg  
°C  
*1 PW = 100 µs, Duty Cycle = 1 %  
*2 AC voltage for 1 minute at TA = 25 °C, RH = 60 % between input and output  
3
Data Sheet PN10242EJ01V0DS  
PS2703-1  
ELECTRICAL CHARACTERISTICS (TA = 25 °C)  
Parameter  
Symbol  
VF  
Conditions  
MIN.  
TYP.  
1.1  
MAX.  
1.4  
5
Unit  
V
Diode  
Forward Voltage  
Reverse Current  
Terminal Capacitance  
IF = 5 mA  
VR = 5 V  
IR  
µA  
pF  
nA  
Ct  
V = 0 V, f = 1 MHz  
30  
Collector to Emitter Dark  
Current  
Transistor  
Coupled  
ICEO  
IF = 0 mA, VCE = 120 V  
100  
400  
Current Transfer Ratio  
(IC/IF)*1  
CTR  
IF = 5 mA, VCE = 5 V  
IF = 1 mA, VCE = 5 V  
IF = 10 mA, IC = 2 mA  
50  
10  
150  
80  
%
V
Collector Saturation  
Voltage  
VCE (sat)  
0.3  
Isolation Resistance  
RI-O  
CI-O  
tr  
VI-O = 1 kVDC  
1011  
Isolation Capacitance  
Rise Time *2  
V = 0 V, f = 1 MHz  
0.4  
10  
10  
pF  
µs  
VCC = 5 V, IC = 2 mA, RL = 1 kΩ  
Fall Time *2  
tf  
*1 CTR rank  
CTR rank  
K
CTR (%)  
200 to 400  
80 to  
Conditions  
IF = 5 mA, VCE = 5 V  
IF = 1 mA, VCE = 5 V  
IF = 5 mA, VCE = 5 V  
IF = 1 mA, VCE = 5 V  
IF = 5 mA, VCE = 5 V  
IF = 1 mA, VCE = 5 V  
L
100 to 300  
25 to  
M
50 to 150  
10 to  
*2 Test circuit for switching time  
I
F
Pulse Input  
PW = 100  
V
CC  
µ
s
Duty Cycle = 1/10  
In monitor  
VOUT  
50  
RL  
= 1 kΩ  
4
Data Sheet PN10242EJ01V0DS  
PS2703-1  
TYPICAL CHARACTERISTICS (TA = 25 °C, unless otherwise specified)  
DIODE POWER DISSIPATION vs.  
AMBIENT TEMPERATURE  
TRANSISTOR POWER DISSIPATION vs.  
AMBIENT TEMPERATURE  
100  
75  
200  
150  
100  
50  
1.5 mW/˚C  
50  
25  
0
25  
50  
75  
100  
0
25  
50  
75  
(˚C)  
100  
Ambient Temperature T  
A
(˚C)  
Ambient Temperature T  
A
FORWARD CURRENT vs.  
FORWARD VOLTAGE  
COLLECTOR CURRENT vs.  
COLLECTOR TO EMITTER VOLTAGE  
100  
10  
10  
5 mA  
4 mA  
8
6
4
2
T
A
= +100 ˚C  
+75 ˚C  
= 10 mA  
IF  
+50 ˚C  
3 mA  
2 mA  
1
+25 ˚C  
0 ˚C  
–25 ˚C  
–55 ˚C  
0.1  
1 mA  
0.5 mA  
0.01  
0.6  
0.8  
1.0  
1.2  
1.4  
1.6  
0
2
4
6
8
10  
Forward Voltage V  
F
(V)  
Collector to Emitter Voltage VCE (V)  
COLLECTOR TO EMITTER DARK  
CURRENT vs. AMBIENT TEMPERATURE  
COLLECTOR CURRENT vs.  
COLLECTOR SATURATION VOLTAGE  
50 000  
10  
IF = 25 mA  
10 mA  
5 mA  
10 000  
5 000  
5
2.5 mA  
2 mA  
1.5 mA  
1 000  
500  
V
CE = 40 V  
24 V  
100  
50  
1 mA  
10 V  
1
10  
5
0.5  
0.5 mA  
1
0.5  
0.1  
0.1  
–60 –40 –20  
0
20  
40  
60 80 100  
(˚C)  
0.0  
0.2  
0.4  
0.6  
0.8  
1.0  
Ambient Temperature T  
A
Collector Saturation Voltage VCE (sat) (V)  
5
Data Sheet PN10242EJ01V0DS  
PS2703-1  
NORMALIZED CURRENT TRANSFER  
RATIO vs. AMBIENT TEMPERATURE  
CURRENT TRANSFER RATIO vs.  
FORWARD CURRENT  
1.2  
1.0  
0.8  
0.6  
300  
250  
200  
150  
100  
V
CE = 5 V  
0.4  
0.2  
0.0  
Normalized to 1.0  
50  
0
at T  
= 5 mA, VCE = 5 V  
50 75  
A
= 25 ˚C,  
I
F
–55  
–25  
0
25  
100  
10 k  
100  
0.1  
0.5  
1
5
10  
50  
500  
106  
Ambient Temperature T (˚C)  
A
Forward Current I  
F
(mA)  
SWITCHING TIME vs.  
LOAD RESISTANCE  
FREQUENCY RESPONSE  
100  
10  
1
1.2  
1.0  
0.8  
0.6  
0.4  
0.2  
0.0  
V
CC = 5V,  
= 2 mA  
t
f
I
C
t
r
µ
RL  
= 1 k  
510 Ω  
300 Ω  
100 Ω  
t
t
d
s
0.1  
10  
100  
1 k  
()  
0.5  
1
5
10  
50 100  
Load Resistance R  
L
Frequency f (kHz)  
SWITCHING TIME vs.  
LOAD RESISTANCE  
LONG TIME CTR DEGRADATION  
1 000  
1.2  
1.0  
I
F
= 5 mA, VCC = 5 V,  
CTR = 90 %  
t
f
100  
µ
0.8  
0.6  
I
I
I
I
F
F
F
F
= 1 mA,  
= 5 mA,  
= 20 mA, T  
= 20 mA, T  
T
T
A
A
A
A
= 25 ˚C  
= 25 ˚C  
= 25 ˚C  
= 60 ˚C  
t
s
10  
1
t
r
0.4  
0.2  
0.0  
t
d
1
10  
1
102  
103  
104  
105  
0.1  
Load Resistance R (k)  
L
Time (Hr)  
Remark The graphs indicate nominal characteristics.  
6
Data Sheet PN10242EJ01V0DS  
PS2703-1  
TAPING SPECIFICATIONS (in millimeters)  
Outline and Dimensions (Tape)  
2.0 0.05  
4.0 0.1  
+0.1  
–0  
2.9 MAX.  
1.5  
1.55 0.1  
2.4 0.1  
0.3  
4.6 0.1  
ꢀ.0 0.1  
Tape Direction  
PS2703-1-F4  
PS2703-1-F3  
Outline and Dimensions (Reel)  
2.0 0.5  
2.0 0.5  
13.0 0.2  
φ
φ
R 1.0  
φ
φ
φ
21.0 0.ꢀ  
13.5 1.0  
17.5 1.0  
11.9 to 15.4  
Outer edge of  
flange  
Packing: 3 500 pcs/reel  
7
Data Sheet PN10242EJ01V0DS  
PS2703-1  
NOTES ON HANDLING  
1. Recommended soldering conditions  
(1) Infrared reflow soldering  
• Peak reflow temperature  
260°C or below (package surface temperature)  
10 seconds or less  
• Time of peak reflow temperature  
• Time of temperature higher than 220°C  
60 seconds or less  
• Time to preheat temperature from 120 to 180°C 120±30 s  
• Number of reflows  
• Flux  
Three  
Rosin flux containing small amount of chlorine (The flux with a  
maximum chlorine content of 0.2 Wt% is recommended.)  
Recommended Temperature Profile of Infrared Reflow  
(heating)  
to 10 s  
260˚C MAX.  
220˚C  
to 60 s  
180˚C  
120˚C  
120±30 s  
(preheating)  
Time (s)  
(2) Wave soldering  
• Temperature  
• Time  
260°C or below (molten solder temperature)  
10 seconds or less  
• Preheating conditions  
• Number of times  
• Flux  
120°C or below (package surface temperature)  
One (Allowed to be dipped in solder including plastic mold portion.)  
Rosin flux containing small amount of chlorine (The flux with a maximum chlorine  
content of 0.2 Wt% is recommended.)  
(3) Cautions  
• Fluxes  
Avoid removing the residual flux with freon-based and chlorine-based cleaning solvent.  
2. Cautions regarding noise  
Be aware that when voltage is applied suddenly between the photocoupler’s input and output or between  
collector-emitters at startup, the output side may enter the on state, even if the voltage is within the absolute  
maximum ratings.  
8
Data Sheet PN10242EJ01V0DS  
PS2703-1  
USAGE CAUTIONS  
1. Protect against static electricity when handling.  
2. Avoid storage at a high temperature and high humidity.  
9
Data Sheet PN10242EJ01V0DS  
PS2703-1  
SPECIFICATION OF VDE MARKS LICENSE DOCUMENT (VDE0884)  
Parameter  
Application classification (DIN VDE 0109)  
Symbol  
Speck  
Unit  
for rated line voltages 300 Vr.m.s.  
IV  
III  
for rated line voltages 600 Vr.m.s.  
Climatic test class (DIN IEC 68 Teil 1/09.80)  
Dielectric strength maximum operating isolation voltage.  
Test voltage (partial discharge test procedure a for type test and random test)  
Upr = 1.2 × UIORM, Pd < 5 pC  
55/100/21  
UIORM  
Upr  
710  
850  
Vpeak  
Vpeak  
Vpeak  
Test voltage (partial discharge test procedure b for all devices test)  
Upr = 1.6 × UIORM, Pd < 5 pC  
Upr  
1 140  
Highest permissible overvoltage  
Degree of pollution (DIN VDE 0109)  
Clearance distance  
UTR  
6 000  
Vpeak  
2
> 5  
mm  
mm  
Creepage distance  
> 5  
Comparative tracking index (DIN IEC 112/VDE 0303 part 1)  
Material group (DIN VDE 0109)  
Storage temperature range  
CTI  
175  
III a  
Tstg  
TA  
–55 to +150  
–55 to +100  
°C  
°C  
Operating temperature range  
Isolation resistance, minimum value  
VIO = 500 V dc at TA = 25 °C  
Ris MIN.  
Ris MIN.  
1012  
1011  
VIO = 500 V dc at TA MAX. at least 100 °C  
Safety maximum ratings  
(maximum permissible in case of fault, see thermal derating curve)  
Package temperature  
Tsi  
Isi  
150  
200  
300  
°C  
mA  
mW  
Current (input current IF, Psi = 0)  
Power (output or total power dissipation)  
Isolation resistance  
Psi  
VIO = 500 V dc at TA = 175 °C (Tsi)  
Ris MIN.  
109  
10  
Data Sheet PN10242EJ01V0DS  
4590 Patrick Henry Drive  
Santa Clara, CA 95054-1817  
Telephone: (408) 919-2500  
Facsimile: (408) 988-0279  
Subject: Compliance with EU Directives  
CEL certifies, to its knowledge, that semiconductor and laser products detailed below are compliant  
with the requirements of European Union (EU) Directive 2002/95/EC Restriction on Use of Hazardous  
Substances in electrical and electronic equipment (RoHS) and the requirements of EU Directive  
2003/11/EC Restriction on Penta and Octa BDE.  
CEL Pb-free products have the same base part number with a suffix added. The suffix –A indicates  
that the device is Pb-free. The –AZ suffix is used to designate devices containing Pb which are  
exempted from the requirement of RoHS directive (*). In all cases the devices have Pb-free terminals.  
All devices with these suffixes meet the requirements of the RoHS directive.  
This status is based on CEL’s understanding of the EU Directives and knowledge of the materials that  
go into its products as of the date of disclosure of this information.  
Restricted Substance  
per RoHS  
Concentration Limit per RoHS  
(values are not yet fixed)  
Concentration contained  
in CEL devices  
-A  
-AZ  
(*)  
Lead (Pb)  
Mercury  
< 1000 PPM  
< 1000 PPM  
< 100 PPM  
< 1000 PPM  
< 1000 PPM  
< 1000 PPM  
Not Detected  
Not Detected  
Cadmium  
Hexavalent Chromium  
PBB  
Not Detected  
Not Detected  
Not Detected  
Not Detected  
PBDE  
If you should have any additional questions regarding our devices and compliance to environmental  
standards, please do not hesitate to contact your local representative.  
Important Information and Disclaimer: Information provided by CEL on its website or in other communications concerting the substance  
content of its products represents knowledge and belief as of the date that it is provided. CEL bases its knowledge and belief on information  
provided by third parties and makes no representation or warranty as to the accuracy of such information. Efforts are underway to better  
integrate information from third parties. CEL has taken and continues to take reasonable steps to provide representative and accurate  
information but may not have conducted destructive testing or chemical analysis on incoming materials and chemicals. CEL and CEL  
suppliers consider certain information to be proprietary, and thus CAS numbers and other limited information may not be available for  
release.  
In no event shall CEL’s liability arising out of such information exceed the total purchase price of the CEL part(s) at issue sold by CEL to  
customer on an annual basis.  
See CEL Terms and Conditions for additional clarification of warranties and liability.  

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