PHOTOCOUPLER
PS8741
FOR OPTICAL DAA, HIGH LINEAR
16-PIN SOP PHOTOCOUPLER
−NEPOC Series−
DESCRIPTION
The PS8741 is an optically coupled isolator containing a GaAs LED on the input side and two photodiodes on the
output side.
It is suitable for analog control applications such as PCMCIA card, modem, voice telephony and fax machines.
FEATURES
• For PCMCIA
• Small and thin package (16-pin SOP: Pin pitch = 1.27 mm, Height = 2.1 mm)
• High transfer gain linearity (∆K3 = 1% MAX.)
• High isolation voltage (BV = 1 500 Vr.m.s.)
• Ordering number of taping product: PS8741-F3, F4: 2 500 pcs/reel
• Safety standards
• UL approved: File No. E72422
APPLICATIONS
• PCMCIA card
• Notebook PC, PDA
• Modem
• Telephone, FAX
Document No. PN10134EJ03V0DS (3rd edition)
Date Published September 2004 CP(K)
The mark shows major revised points.
PS8741
PACKAGE DIMENSIONS (UNIT: mm)
PIN CONNECTIONS (TOP VIEW)
10.3±0.3
16 15 14 13 12 11 10
K2
LED1
K1
1
2
K1
PD2
LED2
3
4
PD1
K2 PD2
PD1
1. LED1 Cathode (CH1)
2. LED1 Anode (CH1)
3. PD1 Cathode (CH1)
4. PD1 Anode (CH1)
5. NC
6. NC
7. PD2 Cathode (CH2)
8. PD2 Anode (CH2)
9
5
6
7
8
9. PD1 Anode (CH2)
10. PD1 Cathode (CH2)
11. LED2 Anode (CH2)
12. LED2 Cathode (CH2)
13. PD2 Anode (CH1)
14. PD2 Cathode (CH1)
15. NC
16. NC
7.0±0.3
0.15+0.10
–0.05
1.9
0.1±0.1
2.0+0.1
–0.2
4.4
0.40+0.10
–0.05
0.12 M
1.27
MARKING
No. 1 pin
Mark
PS8741
N003
N
Country Assembled
Type Number
Assembly Lot
0 03
Week Assembled
Year Assembled
(Last 1 Digit)
Rank Code
2
Data Sheet PN10134EJ03V0DS
0.5±0.3
1.3
PS8741
ORDERING INFORMATION
Part Number
Order Number
Solder plating
Packing Style
Safety Standard
Specification
Application
Part Number
PS8741
PS8741
Solder
Magazine case 45 pcs
Standard products
PS8741-F3
PS8741-F3
contains lead
Embossed Tape 2 500 pcs/reel
(UL Approved)
PS8741-F4
PS8741-F4
PS8741
PS8741-A
Pb-Free
Magazine case 45 pcs
PS8741-F3
PS8741-F3-A
PS8741-F4
PS8741-F4-A
*1
PS8741
Embossed Tape 2 500 pcs/reel
*1 For the application of the Safety Standard, following part number should be used.
ABSOLUTE MAXIMUM RATINGS (TA = 25°C, unless otherwise specified)
Parameter
Symbol
Ratings
Unit
Forward Current (DC)
IF
50
mA
Reverse Voltage
VR
3
V
PD
80
mW/ch
IFP
0.5
A
Reverse Voltage
VR
20
V
Power Dissipation
PC
50
mW/ch
BV
1 500
Vr.m.s.
Total Power Dissipation
PT
180
mW
Operating Ambient Temperature
TA
−40 to +85
°C
Storage Temperature
Tstg
−40 to +100
°C
Diode
Power Dissipation
Peak Forward Current
Detector
Isolation Voltage
*1
*2
*1 PW = 100 µs, Duty Cycle = 1%
*2 AC voltage for 1 minute at TA = 25°C, RH = 60% between input and output
ELECTRICAL CHARACTERISTICS (TA = 25°C, unless otherwise specified)
Parameter
Symbol
Forward Voltage
VF
IF = 5 mA
Reverse Current
IR
VR = 3 V
Terminal Capacitance
Ct
V = 0 V, f = 1 MHz
30
Detector
Dark Current
ID
VCC = 5 V, IF = 0 mA
1
25
nA
Coupled
Servo Gain (IPD1/IF)
K1
VCC = 5 V, IF = 2 mA
0.3
1.0
1.8
%
Forward Gain (IPD2/IF)
K2
0.3
1.0
1.8
Transfer Gain (K2/K1)
K3
0.75
1.0
1.25
VCC = 5 V, IF = 2 to 10 mA
0.3
1
VCC = 5 V, IF = 2 to 10 mA,
0.005
Diode
Transfer Gain Linearity
K3 Temperature Coefficient
Conditions
VCC = 5 V, IF = 2 mA
∆K3
∆K3/∆T
MIN.
TYP.
MAX.
Unit
1.1
1.4
V
10
µA
pF
%
%/°C
TA = −40 to +85°C
Data Sheet PN10134EJ03V0DS
3
PS8741
USAGE CAUTIONS
1. This product is weak for static electricity by designed with high-speed integrated circuit so protect against static
electricity when handling.
2. By-pass capacitor of more than 0.1 µF is used between VCC and GND near device. Also, ensure that the
distance between the leads of the photocoupler and capacitor is no more than 10 mm.
3. Avoid storage at a high temperature and high humidity.
4
Data Sheet PN10134EJ03V0DS
PS8741
TYPICAL CHARACTERISTICS (TA = 25°C, unless otherwise specified)
SERVO CURRENT vs. FORWARD CURRENT
SERVO GAIN vs. FORWARD CURRENT
250
2.5
200
150
100
TA = –45˚C
TA = –45˚C
–20˚C
0˚C
+25˚C
+50˚C
+75˚C
+85˚C
Servo Gain K1 (%)
Servo Current IPD1 (µA)
VCC = 5 V
50
2.0
–20˚C
0˚C
1.5
+25˚C
+50˚C
+75˚C
+85˚C
1.0
0.5
VCC = 5 V
0
2
4
6
8
10
12
0
2
4
6
8
10
12
Forward Current IF (mA)
Forward Current IF (mA)
PHOTO CURRENT vs. FORWARD CURRENT
FORWARD GAIN vs. FORWARD CURRENT
250
2.5
200
150
100
TA = –45˚C
TA = –45˚C
–20˚C
0˚C
+25˚C
+50˚C
+75˚C
+85˚C
Forward Gain K2 (%)
Photo Current IPD (µ A)
VCC = 5 V
50
2.0
–20˚C
0˚C
1.5
+25˚C
1.0
+50˚C
+75˚C
+85˚C
0.5
VCC = 5 V
2
4
6
8
10
12
0
2
4
6
8
10
12
Forward Current IF (mA)
Forward Current IF (mA)
TRANSFER GAIN vs. FORWARD CURRENT
TRANSFER GAIN vs. AMBIENT TEMPERATURE
1.10
1.10
1.05
1.05
Transfer Gain K3
Transfer Gain K3
0
1.00
0.95
0.90
0.85
0.80
0
1.00
0.95
0.90
0.85
VCC = 5 V
2
4
6
8
10
12
0.80
–60 –40 –20
VCC = 5 V,
IF = 2 mA
0
20
40
60
80
100 120
Ambient Temperature TA (˚C)
Forward Current IF (mA)
Remark The graphs indicate nominal characteristics.
Data Sheet PN10134EJ03V0DS
5
PS8741
TAPING SPECIFICATIONS (UNIT: mm)
10.7±0.1
2.8 MAX.
16.0±0.3
φ 1.5+0.1
–0
7.5±0.1
2.0±0.1
4.0±0.1
1.75±0.1
Outline and Dimensions (Tape)
0.3
2.3±0.1
8.3±0.1
1.55±0.1
12.0±0.1
Tape Direction
PS8741-F3
PS8741-F4
Outline and Dimensions (Reel)
2.0±0.5
φ 21.0±0.8
φ 100±1.0
R 1.0
φ 330±2.0
2.0±0.5
φ 13.0±0.2
17.5±1.0
21.5±1.0
Packing: 2 500 pcs/reel
6
Data Sheet PN10134EJ03V0DS
15.9 to 19.4
Outer edge of
flange
PS8741
NOTES ON HANDLING
1. Recommended soldering conditions
(1) Infrared reflow soldering
• Peak reflow temperature
260°C or below (package surface temperature)
• Time of peak reflow temperature
10 seconds or less
• 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
Three
• Flux
Rosin flux containing small amount of chlorine (The flux with a
maximum chlorine content of 0.2 Wt% is recommended.)
Package Surface Temperature T (˚C)
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
260°C or below (molten solder temperature)
• Time
10 seconds or less
• Preheating conditions
120°C or below (package surface temperature)
• Number of times
One (Allowed to be dipped in solder including plastic mold portion.)
• Flux
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.
Data Sheet PN10134EJ03V0DS
7
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
Not Detected
Lead (Pb)
< 1000 PPM
Mercury
< 1000 PPM
Not Detected
Cadmium
< 100 PPM
Not Detected
Hexavalent Chromium
< 1000 PPM
Not Detected
PBB
< 1000 PPM
Not Detected
PBDE
< 1000 PPM
Not Detected
-AZ
(*)
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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