6N138-X007 [VISHAY]

High Speed Optocoupler, 100 kBd, Low Input Current, Photodiode Darlington Output; 高速光耦, 100 kBd的,低输入电流,光电二极管达林顿输出
6N138-X007
型号: 6N138-X007
厂家: VISHAY    VISHAY
描述:

High Speed Optocoupler, 100 kBd, Low Input Current, Photodiode Darlington Output
高速光耦, 100 kBd的,低输入电流,光电二极管达林顿输出

光电 二极管 光电二极管
文件: 总6页 (文件大小:108K)
中文:  中文翻译
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6N138/6N139  
Vishay Semiconductors  
High Speed Optocoupler, 100 kBd,  
Low Input Current, Photodiode Darlington Output  
FEATURES  
• High current transfer ratio, 300 %  
• Low input current, 0.5 mA  
1
2
8
NC  
A
V
CC  
• High output current, 60 mA  
7
V
B
• Isolation test voltage, 5300 VRMS  
• TTL compatible output, VOL = 0.1 V  
• High common mode rejection, 500 V/µs  
• Adjustable bandwidth-access to base  
• Standard molded dip plastic package  
• Lead (Pb)-free component  
C
3
4
6
5
V
0
NC  
GND  
i179082  
• Component in accordance to RoHS 2002/95/EC and  
WEEE 2002/96/EC  
DESCRIPTION  
High common mode transient immunity and very high current  
ratio together with 5300 VRMS insulation are achieved by  
coupling and LED with an integrated high gain photo detector  
in an eight pin dual-in-line package. Separate pins for the  
photo diode and output stage enable TTL compatible  
saturation voltages with high speed operation.  
Photo darlington operation is achieved by tying the VCC and  
VO terminals together. Access to the base terminal allows  
adjustment to the gain bandwidth.  
The 6N138 is ideal for TTL applications since the 300 %  
minimum current transfer ratio with an LED current of 1.6 mA  
enables operation with one unit load-in and one unit load-out  
with a 2.2 kΩ pull-up resistor.  
APPLICATIONS  
• Logic  
ground  
isolation-TTL/TTL,  
TTL/CMOS,  
CMOS/CMOS, CMOS/TTL  
• EIA RS 232 line receiver  
• Low input current line receiver-long lines, party lines  
• Telephone ring detector  
• 117 VAC line voltage status indication-low input power  
dissipation  
• Low power systems-ground isolation  
AGENCY APPROVALS  
• UL1577, file no. E52744 system code H or J, double  
protection  
The 6N139 is best suited for low power logic applications  
involving CMOS and low power TTL. A 400 % current  
transfer ratio with only 0.5 mA of LED current is guaranteed  
from 0 °C to 70 °C.  
• DIN EN 60747-5-5 available with option 1  
Caution: Due to the small geometries of this device, it should be  
handled with Electrostatic Discharge (ESD) precautions. Proper  
grounding would prevent damage further and/or degradation which  
may be induced by ESD.  
ORDER INFORMATION  
PART  
REMARKS  
6N138  
CTR > 300 %, DIP-8  
6N139  
CTR > 500 %, DIP-8  
6N138-X007  
6N138-X009  
6N139-X007  
6N139-X009  
CTR > 300 %, SMD-8 (option 7)  
CTR > 300 %, SMD-8 (option 9)  
CTR > 500 %, SMD-8 (option 7)  
CTR > 500 %, SMD-8 (option 9)  
Note  
For additional information on the available options refer to option information.  
www.vishay.com  
184  
For technical questions, contact: optocoupler.answers@vishay.com  
Document Number: 83605  
Rev. 1.5, 07-May-08  
6N138/6N139  
High Speed Optocoupler, 100 kBd,  
Low Input Current, Photodiode Darlington  
Output  
Vishay Semiconductors  
ABSOLUTE MAXIMUM RATINGS (1)  
PARAMETER  
TEST CONDITION  
PART  
SYMBOL  
VALUE  
UNIT  
INPUT  
Reverse voltage  
Forward current  
Average input current  
Input power dissipation (2)(4)  
OUTPUT  
VR  
IF  
5.0  
25  
20  
35  
V
mA  
mA  
mW  
If(avg)  
Pdiss  
Pin 8 to 5, pin 6 to 5  
Pin 8 to 5, pin 6 to 5  
pin 5 to 7  
6N138  
6N139  
V
V
CC, VO  
CC, VO  
- 0.5 to 7.0  
- 0.5 to 18  
0.5  
V
V
V
Supply and output voltage  
Emitter base reverse voltage  
Peak input current  
50 % duty cycle - 1.0 ms  
pulse width  
40  
mA  
Peak transient input current  
Output current  
Output power dissipation (3)(5)  
tp 1.0 µs, 300 pps  
1.0  
60  
A
Pin 6  
IO  
mA  
mW  
Pdiss  
100  
COUPLER  
Isolation test voltage  
VISO  
RIO  
5300  
1012  
1011  
VRMS  
Ω
V
IO = 500 V, Tamb = 25 ° C  
Isolation resistance  
V
IO = 500 V, Tamb = 100 ° C  
RIO  
Ω
Storage temperature  
Tstg  
Tamb  
Tsld  
- 55 to + 125  
- 55 to + 100  
260  
°C  
°C  
°C  
Operating temperature  
Lead soldering temperature (6)  
t = 10 s  
Notes  
(1)  
Tamb = 25 °C, unless otherwise specified. Stresses in excess of the absolute maximum ratings can cause permanent damage to the device.  
Functional operation of the device is not implied at these or any other conditions in excess of those given in the operational sections of this  
document. Exposure to absolute maximum ratings for extended periods of the time can adversely affect reliability.  
Derate linearly above 50 °C free-air temperature at a rate of 0.4 mA/°C.  
Derate linearly above 50 °C free-air temperature at a rate of 0.7 mW/°C.  
Derate linearly above 25 °C free-air temperature at a rate of 0.7 mA/°C.  
Derate linearly above 25 °C free-air temperature at a rate of 2.0 mW/°C.  
Refer to reflow profile for soldering conditions for surface mounted devices (SMD). Refer to wave profile for soldering conditions for through  
hole devices (DIP).  
(2)  
(3)  
(4)  
(5)  
(6)  
ELECTRICAL CHARACTERISTICS (1)  
PARAMETER  
TEST CONDITION  
PART  
SYMBOL  
MIN.  
TYP.  
MAX.  
UNIT  
INPUT  
Input forward voltage  
Input reverse breakdown voltage  
IF = 1.6 mA  
VF  
1.4  
1.7  
V
V
I
R = 10 µA  
BVR  
5.0  
Temperature coefficient of forward  
voltage  
IF = 1.6 mA  
- 1.8  
mV/°C  
Document Number: 83605  
Rev. 1.5, 07-May-08  
For technical questions, contact: optocoupler.answers@vishay.com  
www.vishay.com  
185  
6N138/6N139  
High Speed Optocoupler, 100 kBd,  
Low Input Current, Photodiode Darlington  
Output  
Vishay Semiconductors  
ELECTRICAL CHARACTERISTICS (1)  
PARAMETER  
TEST CONDITION  
PART  
SYMBOL  
MIN.  
TYP.  
MAX.  
UNIT  
OUTPUT  
IF = 1.6 mA, IO = 4.8 mA,  
CC = 4.5 V  
IF = 1.6 mA, IO = 8.0 mA,  
CC = 4.5 V  
IF = 5.0 mA, IO = 15 mA,  
CC = 4.5 V  
IF = 12 mA, IO = 24 mA,  
CC = 4.5 V  
6N138  
6N139  
6N139  
6N139  
VOL  
VOL  
VOL  
VOL  
0.1  
0.1  
0.4  
0.4  
0.4  
0.4  
V
V
V
V
V
V
Logic low, output voltage (2)  
Logic high, output current (2)  
0.15  
0.25  
V
V
IF = 0 mA, VCC = 7.0 V  
IF = 0 mA, VCC = 18 V  
IF = 1.6 mA, VO = OPEN,  
6N138  
6N139  
IOH  
IOH  
0.1  
250  
100  
µA  
µA  
0.05  
Logic low supply current (2)  
Logic high supply current (2)  
ICCL  
ICCH  
0.2  
1.5  
10  
mA  
µA  
V
CC = 18 V  
IF = 0 mA, VO = OPEN,  
CC = 18 V  
0.001  
V
COUPLER  
Input capacitance  
f = 1.0 MHz, VF = 0  
CIN  
25  
pF  
µA  
45 % relative humidity,  
Input output insulation leakage  
current (3)  
T
amb = 25 °C, t = 5.0 s,  
IO = 3000 VDC  
1.0  
V
Resistance (input to output) (3)  
Capacitance (input to output) (3)  
VIO = 500 VDC  
f = 1.0 MHz  
RIO  
CIO  
1012  
0.6  
Ω
pF  
Notes  
(1)  
Tamb = 25 °C, unless otherwise specified. Minimum and maximum values are testing requirements. Typical values are characteristics of the  
device and are the result of engineering evaluation. Typical values are for information only and are not part of the testing requirements.  
Pin 7 open.  
(2)  
(3)  
Device considered a two-terminal device: pins 1, 2, 3 and 4 shorted together and pins 5, 6, 7, and 8 shorted together.  
CURRENT TRANSFER RATIO  
PARAMETER  
TEST CONDITION  
PART  
SYMBOL  
MIN.  
TYP.  
MAX.  
UNIT  
IF = 1.6 mA, VO = 0.4 V,  
Current transfer ratio (1)(2)  
6N138  
CTR  
300  
1600  
%
V
CC = 4.5 V  
IF = 0.5 mA, VO = 0.4 V,  
CC = 4.5 V  
IF = 1.6 mA, VO = 0.4 V,  
CC = 4.5 V  
6N139  
6N139  
CTR  
CTR  
400  
500  
1600  
2000  
%
%
V
Current transfer ratio  
V
Notes  
(1)  
DC current transfer ratio is defined as the ratio of output collector current, IO, to the forward LED input current, IF times 100 %.  
Pin 7 open.  
(2)  
SWITCHING CHARACTERISTICS  
PARAMETER  
TEST CONDITION  
PART  
SYMBOL  
MIN.  
TYP.  
MAX.  
UNIT  
Propagation delay time to logic  
low at output  
IF = 1.6 mA, RL = 2.2 kΩ  
6N138  
tPHL  
2.0  
10  
µs  
IF = 0.5 mA, RL = 4.7 kΩ  
IF = 12 mA, RL = 270 Ω  
IF = 1.6 mA, RL = 2.2 kΩ  
IF = 0.5 mA, RL = 4.7 kΩ  
6N139  
6N139  
6N138  
6N139  
tPHL  
tPHL  
tPLH  
tPLH  
6.0  
0.6  
2.0  
4.0  
25  
1.0  
35  
60  
µs  
µs  
µs  
µs  
Propagation delay time to logic  
low at output (1)(2)  
Propagation delay time to logic  
high at output  
Propagation delay time to logic  
high at output (1)(2)  
IF = 12 mA, RL = 270 Ω  
6N139  
tPLH  
1.5  
7.0  
µs  
Notes  
(1)  
Pin 7 open.  
(2)  
Using a resistor between pin 5 and 7 will decrease gain and delay time.  
www.vishay.com  
186  
For technical questions, contact: optocoupler.answers@vishay.com  
Document Number: 83605  
Rev. 1.5, 07-May-08  
6N138/6N139  
High Speed Optocoupler, 100 kBd,  
Low Input Current, Photodiode Darlington  
Output  
Vishay Semiconductors  
COMMON MODE TRANSIENT IMMUNITY  
PARAMETER  
TEST CONDITION  
PART  
SYMBOL  
MIN.  
TYP.  
MAX.  
UNIT  
Common mode transient  
immunity, logic high level  
output (1)(2)  
IF = 0 mA, RL = 2.2 kΩ,  
|CMH|  
500  
V/µs  
R
CC = 0, |VCM| = 10 VP-P  
Common mode transient  
immunity, logic low level  
output (1)(2)  
IF = 0 mA, RL = 2.2 kΩ,  
|CML|  
- 500  
V/µs  
R
CC = 0, |VCM| = 10 VP-P  
Notes  
(1)  
Common mode transient immunity in logic high level is the maxium tolerable (positive) dVcm/dt on the leading edge of the common mode  
pulse, VCM, to assure that the output will remain in a logic high state (i.e. VO > 2.0 V) common mode transient immunity in logic low level is  
the maximum tolerable (negative) dVcm/dt on the trailing edge of the common mode pulse signal, VCM to assure that the output will remain  
in a logic low state (i.e. VO < 0.8 V).  
In applications where dV/dt may exceed 50 000 V/µs (such as state discharge) a series resistor, RCC should be included to protect IC from  
destructively high surge currents. The recommend value is RCC ≅ [(1 V)/(0.15 IF (mA)] kΩ  
(2)  
PACKAGE DIMENSIONS in inches (millimeters)  
Pin one ID  
4
5
3
6
1
2
7
0.255 (6.48)  
0.268 (6.81)  
8
ISO method A  
0.379 (9.63)  
0.390 (9.91)  
0.030 (0.76)  
0.045 (1.14)  
0.300 (7.62)  
0.031(0.79)  
typ.  
4° typ.  
0.130 (3.30)  
0.150 (3.81)  
0.230 (5.84)  
0.050 (1.27)  
10°  
0.110 (2.79)  
0.130 (3.30)  
0.250 (6.35)  
0.020 (0.51)  
0.035 (0.89)  
3° to 9°  
0.018 (0.46)  
0.022 (0.56)  
0.008 (0.20)  
0.100 (2.54) typ.  
0.012 (0.30)  
i178006  
Option 7  
Option 9  
0.375 (9.53)  
0.395 (10.03)  
0.300 (7.62)  
typ.  
0.300 (7.62)  
ref.  
0.028 (0.7)  
0.180 (4.6)  
0.160 (4.1)  
0.0040 (0.102)  
0.0098 (0.249)  
0.012 (0.30) typ.  
0.315 (8.0)  
min.  
0.020 (0.51)  
0.040 (1.02)  
0.331 (8.4)  
15° max.  
min.  
0.315 (8.00)  
min.  
0.406 (10.3)  
max.  
18494  
Document Number: 83605  
Rev. 1.5, 07-May-08  
For technical questions, contact: optocoupler.answers@vishay.com  
www.vishay.com  
187  
6N138/6N139  
High Speed Optocoupler, 100 kBd,  
Low Input Current, Photodiode Darlington  
Output  
Vishay Semiconductors  
OZONE DEPLETING SUBSTANCES POLICY STATEMENT  
It is the policy of Vishay Semiconductor GmbH to  
1. Meet all present and future national and international statutory requirements.  
2. Regularly and continuously improve the performance of our products, processes, distribution and operating systems with  
respect to their impact on the health and safety of our employees and the public, as well as their impact on the environment.  
It is particular concern to control or eliminate releases of those substances into the atmosphere which are known as ozone  
depleting substances (ODSs).  
The Montreal Protocol (1987) and its London Amendments (1990) intend to severely restrict the use of ODSs and forbid their use  
within the next ten years. Various national and international initiatives are pressing for an earlier ban on these substances.  
Vishay Semiconductor GmbH has been able to use its policy of continuous improvements to eliminate the use of ODSs listed in  
the following documents.  
1. Annex A, B and list of transitional substances of the Montreal Protocol and the London Amendments respectively.  
2. Class I and II ozone depleting substances in the Clean Air Act Amendments of 1990 by the Environmental Protection Agency  
(EPA) in the USA.  
3. Council Decision 88/540/EEC and 91/690/EEC Annex A, B and C (transitional substances) respectively.  
Vishay Semiconductor GmbH can certify that our semiconductors are not manufactured with ozone depleting substances and do  
not contain such substances.  
We reserve the right to make changes to improve technical design  
and may do so without further notice.  
Parameters can vary in different applications. All operating parameters must be validated for each customer application by the  
customer. Should the buyer use Vishay Semiconductors products for any unintended or unauthorized application, the buyer shall  
indemnify Vishay Semiconductors against all claims, costs, damages, and expenses, arising out of, directly or indirectly, any  
claim of personal damage, injury or death associated with such unintended or unauthorized use.  
Vishay Semiconductor GmbH, P.O.B. 3535, D-74025 Heilbronn, Germany  
www.vishay.com  
188  
For technical questions, contact: optocoupler.answers@vishay.com  
Document Number: 83605  
Rev. 1.5, 07-May-08  
Legal Disclaimer Notice  
Vishay  
Disclaimer  
All product specifications and data are subject to change without notice.  
Vishay Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf  
(collectively, “Vishay”), disclaim any and all liability for any errors, inaccuracies or incompleteness contained herein  
or in any other disclosure relating to any product.  
Vishay disclaims any and all liability arising out of the use or application of any product described herein or of any  
information provided herein to the maximum extent permitted by law. The product specifications do not expand or  
otherwise modify Vishay’s terms and conditions of purchase, including but not limited to the warranty expressed  
therein, which apply to these products.  
No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this  
document or by any conduct of Vishay.  
The products shown herein are not designed for use in medical, life-saving, or life-sustaining applications unless  
otherwise expressly indicated. Customers using or selling Vishay products not expressly indicated for use in such  
applications do so entirely at their own risk and agree to fully indemnify Vishay for any damages arising or resulting  
from such use or sale. Please contact authorized Vishay personnel to obtain written terms and conditions regarding  
products designed for such applications.  
Product names and markings noted herein may be trademarks of their respective owners.  
Document Number: 91000  
Revision: 18-Jul-08  
www.vishay.com  
1

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