TSOP77340WTR [VISHAY]

Linear Output Photo IC,;
TSOP77340WTR
型号: TSOP77340WTR
厂家: VISHAY    VISHAY
描述:

Linear Output Photo IC,

输出元件 光电
文件: 总12页 (文件大小:320K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
TSOP773..W, TSOP775..W  
www.vishay.com  
Vishay Semiconductors  
IR Receiver Modules for Remote Control Systems  
FEATURES  
• Continuous data transmission possible  
• Very low supply current  
• Photo detector and preamplifier in one package  
• Internal filter for PCM frequency  
• Supply voltage: 2.5 V to 5.5 V  
• Improved immunity against ambient light  
• Capable of side or top view  
• Insensitive to supply voltage ripple and noise  
• Low profile 2.35 mm  
• Narrow optical filter to reduce interference from plasma  
TV emissions  
• Material categorization: For definitions of compliance  
please see www.vishay.com/doc?99912  
MECHANICAL DATA  
Pinning:  
DESCRIPTION  
1, 4 = GND, 2 = VS, 3 = OUT  
The TSOP773..W, TSOP775..W series are miniaturized  
receiver module for infrared remote control systems. One  
PIN diode per lens and a preamplifier are assembled on a  
leadframe, the epoxy lens cap is designed as an IR filter.  
ORDERING CODE  
Taping:  
TSOP77...WTT - top view taped  
TSOP77...WTR - side view taped  
The demodulated output signal can be directly connected to  
a microprocessor for decoding. The TSOP773..W is  
optimized to better suppress spurious pulses from energy  
saving lamps. The TSOP775..W has an excellent noise  
suppression. It is immune to dimmed LCD backlighting and  
any fluorescent lamps. AGC3 and AGC5 may also suppress  
some data signals in case of continuous transmission.  
This component has not been qualified according to  
automotive specifications.  
PARTS TABLE  
NOISY ENVIRONMENTS  
AND SHORT BURSTS (AGC3)  
VERY NOISY ENVIRONMENTS  
AND SHORT BURSTS (AGC5)  
AGC  
30 kHz  
33 kHz  
TSOP77330W  
TSOP77530W  
TSOP77333W  
TSOP77533W  
36 kHz  
TSOP77336W (1)(2)  
TSOP77338W (3)(4)(5)(6)  
TSOP77340W  
TSOP77536W (1)(2)  
TSOP77538W (3)(4)(5)  
TSOP77540W  
Carrier  
frequency  
38 kHz  
40 kHz  
56 kHz  
TSOP77356W  
TSOP77556W  
Package  
Pinning  
Heimdall no lens  
1, 4 = GND, 2 = VS, 3 = OUT  
Dimensions (mm)  
Mounting  
6.8 W x 3.0 H x 2.35 D  
SMD  
Remote control  
Application  
Best remote control code  
(1) MCIR (2) RCMM (3) Mitsubishi (4) RECS-80 Code (5) r-map (6) XMP-1, XMP-2  
Rev. 1.1, 06-Feb-14  
Document Number: 82467  
1
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
TSOP773..W, TSOP775..W  
www.vishay.com  
BLOCK DIAGRAM  
Vishay Semiconductors  
APPLICATION CIRCUIT  
17170-10  
R1  
C1  
2
Transmitter  
with  
TSALxxxx  
IR receiver  
VS  
VS  
+ VS  
GND  
30 kΩ  
3
µC  
OUT  
OUT  
GND  
Band  
pass  
Demo-  
dulator  
Input  
AGC  
VO  
1, 4  
PIN  
GND  
Control circuit  
The external components R and C are optional  
1
1
to improve the robustness against electrical overstress  
20445-1  
(typical values are R = 100 Ω, C = 0.1 µF).  
1
1
ABSOLUTE MAXIMUM RATINGS  
PARAMETER  
Supply voltage  
TEST CONDITION  
SYMBOL  
VS  
VALUE  
-0.3 to +6  
UNIT  
V
Supply current  
Output voltage  
IS  
VO  
VS - VO  
IO  
Tj  
Tstg  
Tamb  
Ptot  
Tsd  
5
-0.3 to 5.5  
-0.3 to (VS + 0.3)  
5
mA  
V
V
mA  
°C  
°C  
°C  
mW  
°C  
Voltage at output to supply  
Output current  
Junction temperature  
Storage temperature range  
Operating temperature range  
Power consumption  
100  
-25 to +85  
-25 to +85  
10  
Tamb 85 °C  
t 10 s, 1 mm from case  
Soldering temperature  
260  
Note  
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress rating only  
and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of this specification  
is not implied. Exposure to absolute maximum rating conditions for extended periods may affect the device reliability.  
ELECTRICAL AND OPTICAL CHARACTERISTICS (Tamb = 25 °C, unless otherwise specified)  
PARAMETER  
Supply voltage  
TEST CONDITION  
SYMBOL  
MIN.  
2.5  
0.55  
TYP.  
MAX.  
5.5  
0.9  
UNIT  
V
mA  
mA  
VS  
ISD  
ISH  
VS = 5 V, Ev = 0  
Ev = 40 klx, sunlight  
0.7  
0.8  
Supply current  
Ev = 0, IR diode TSAL6200, IF = 250 mA,  
test signal see fig. 1  
Transmission distance  
Output voltage low  
Minimum irradiance  
d
40  
m
mV  
IOSL = 0.5 mA, Ee = 0.7 mW/m2, test signal see fig. 1  
VOSL  
Ee min.  
100  
0.4  
Pulse width tolerance:  
pi - 5/fo < tpo < tpi + 6/fo, test signal see fig. 1  
tpi - 5/fo < tpo < tpi + 6/fo, test signal see fig. 1  
Angle of half transmission distance  
0.2  
75  
mW/m2  
t
Maximum irradiance  
Directivity  
Ee max.  
ϕ1/2  
50  
W/m2  
deg  
TYPICAL CHARACTERISTICS (Tamb = 25 °C, unless otherwise specified)  
0.5  
0.4  
0.3  
0.2  
0.1  
0
Optical Test Signal  
Ee  
(IR diode TSAL6200, IF = 0.4 A, N = 6 pulses, f = f0, t = 10 ms)  
λ = 950 nm,  
optical test signal, Fig. 1  
t
tpi *)  
Output pulse width  
T
*) tpi 6/f is recommended for optimal function  
0
Input burst length  
Output Signal  
1) 3/f0 < td < 9/f0  
14337  
VO  
2)  
t
- 4/f0 < tpo < tpi + 6/f0  
pi  
VOH  
VOL  
0.1  
10  
1000  
100 000  
1)  
2)  
t
td  
tpo  
Ee - Irradiance (mW/m2)  
Fig. 1 - Output Active Low  
Fig. 2 - Pulse Length and Sensitivity in Dark Ambient  
Rev. 1.1, 06-Feb-14  
Document Number: 82467  
2
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
TSOP773..W, TSOP775..W  
www.vishay.com  
Vishay Semiconductors  
Optical Test Signal  
5.0  
Ee  
Correlation with Ambient Light Sources:  
10 W/m2 = 1.4 kLx (Std. illum. A, T = 2855 K)  
4.5  
10 W/m2 = 8.2 kLx (Daylight, T = 5900 K)  
4.0  
3.5  
Wavelength of Ambient  
t
3.0  
2.5  
2.0  
1.5  
1.0  
0.5  
0
λ
Illumination: = 950 nm  
600 µs  
600 µs  
t = 60 ms  
94 8134  
Output Signal, (see fig. 4)  
VO  
VOH  
VOL  
0.01  
0.1  
1
10  
100  
Ee - Ambient DC Irradiance (W/m2)  
t
ton  
toff  
Fig. 3 - Output Function  
Fig. 6 - Sensitivity in Bright Ambient  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0
1.0  
f = f0  
ton  
0.9  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0
f = 30 kHz  
toff  
f = 20 kHz  
f = 10 kHz  
λ = 950 nm,  
optical test signal, Fig. 1  
f = 100 Hz  
1
10  
100  
1000  
0.1  
1
10  
100  
1000 10 000  
ΔV  
- AC Voltage on DC Supply Voltage (mV)  
Ee - Irradiance (mW/m2)  
sRMS  
Fig. 4 - Output Pulse Diagram  
Fig. 7 - Sensitivity vs. Supply Voltage Disturbances  
1.2  
0.9  
0.8  
0.7  
0.6  
1.0  
0.8  
0.6  
0.4  
0.2  
0.5  
TSOP773..W  
0.4  
0.3  
0.2  
f = f0 5 ꢀ  
Δ f(3 dB) = f0/10  
0.1  
TSOP775..W  
0.0  
0
0
20  
40  
60  
80  
100 120 140  
0.7  
0.9  
1.1  
1.3  
16925  
f/f - Relative Frequency  
0
Burst Length (number of cycles/burst)  
Fig. 5 - Frequency Dependence of Responsivity  
Fig. 8 - Max. Envelope Duty Cycle vs. Burst Length  
Rev. 1.1, 06-Feb-14  
Document Number: 82467  
3
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
TSOP773..W, TSOP775..W  
www.vishay.com  
Vishay Semiconductors  
0°  
10°  
20°  
30°  
0.40  
0.35  
0.30  
0.25  
0.20  
0.15  
0.10  
0.05  
0
40°  
50°  
60°  
1.0  
0.9  
0.8  
70°  
80°  
-30  
-10  
10  
30  
50  
70  
90  
0.6 0.4  
0.2  
0
Tamb - Ambient Temperature (°C)  
22194  
drel - Relative Transmission Distance  
Fig. 9 - Sensitivity vs. Ambient Temperature  
Fig. 12 - Vertical Directivity  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0
1.0  
0.9  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0
750 800 850 900 950 1000 1050 1100 1150  
1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5  
VS - Supply Voltage (V)  
21425  
λ- Wavelength (nm)  
Fig. 10 - Relative Spectral Sensitivity vs. Wavelength  
Fig. 13 - Sensitivity vs. Supply Voltage  
0°  
10°  
20°  
30°  
40°  
1.0  
0.9  
50°  
60°  
0.8  
70°  
80°  
0.6  
0.4  
0.2  
0
22193  
drel - Relative Transmission Distance  
Fig. 11 - Horizontal Directivity  
Rev. 1.1, 06-Feb-14  
Document Number: 82467  
4
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
TSOP773..W, TSOP775..W  
www.vishay.com  
Vishay Semiconductors  
SUITABLE DATA FORMAT  
These products are designed to suppress spurious output  
pulses due to noise or disturbance signals. Data and  
disturbance signals can be distinguished by the devices  
according to carrier frequency, burst length and envelope  
duty cycle. The data signal should be close to the  
band-pass center frequency (e.g. 38 kHz) and fulfill the  
conditions in the table below.  
When a data signal is applied to the IR receiver in the  
presence of a disturbance signal, the sensitivity of the  
receiver is reduced to insure that no spurious pulses are  
present at the output. Some examples of disturbance  
signals which are suppressed are:  
0
5
10  
15  
20  
16920  
Time (ms)  
• DC light (e.g. from tungsten bulb or sunlight)  
• Continuous signals at any frequency  
Fig. 14 - IR Disturbance from Fluorescent Lamp  
with Low Modulation  
• Modulated IR signals from common fluorescent lamps  
(example of noise pattern is shown in fig. 14 or fig. 15)  
0
5
10  
15  
20  
16921  
Time (ms)  
Fig. 15 - IR Disturbance from Fluorescent Lamp  
with High Modulation  
TSOP773..W  
TSOP775..W  
Minimum burst length  
6 cycles/burst  
6 cycles/burst  
After each burst of length  
a minimum gap time is required of  
6 to 35 cycles  
10 cycles  
6 to 24 cycles  
10 cycles  
For bursts greater than  
a minimum gap time in the data stream is  
needed of  
35 cycles  
24 cycles  
> 4 x burst length  
2000  
> 25 ms  
2000  
Maximum number of continuous short  
bursts/second  
MCIR code  
preferred  
preferred  
preferred  
yes  
yes  
yes  
RCMM code  
XMP-1, XMP-2, code  
Suppression of interference from fluorescent  
lamps  
Most common disturbance  
patterns are suppressed  
Most common disturbance  
patterns are suppressed  
Notes  
For data formats with long bursts please see the datasheet for TSOP772..W, TSOP774..W.  
Best choice of AGC for some popular IR-codes:  
- TSOP77336W: MCIR, RCMM  
- TSOP77538W: Mitsubishi, RECS-80 Code  
- TSOP77338W: XMP-1, XMP-2, r-map  
For SIRCS 15 and 20 bit, Sony 12 bit IR-codes, please see the datasheet for TSOP77S40FW  
Rev. 1.1, 06-Feb-14  
Document Number: 82467  
5
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
TSOP773..W, TSOP775..W  
www.vishay.com  
Vishay Semiconductors  
PACKAGE DIMENSIONS in millimeters  
6.8  
6.6 0.1  
(3.25)  
Center of  
sensitive area  
Mold residue  
2.35  
Mold residue  
(0.635)  
(1)  
1.27  
(3 x)  
0.5 0.1  
(4 x)  
technical drawings  
according to DIN  
specifications  
3 x 1.27 = 3.81  
(2.2)  
Marking area  
Not indicated tolerances 0.15  
Tool separation line  
Proposed pad layout  
from component side  
(for reference only)  
3 x 1.27 = 3.81  
1.27  
Pick and place area  
Drawing-No.: 6.550-5300.01-4  
Issue: 4; 13.09.11  
0.8  
22609  
ASSEMBLY INSTRUCTIONS  
Reflow Soldering  
Manual Soldering  
• Reflow soldering must be done within 72 h while stored  
under a max. temperature of 30 °C, 60 % RH after  
opening the dry pack envelope  
• Use a soldering iron of 25 W or less. Adjust the  
temperature of the soldering iron below 300 °C  
• Finish soldering within 3 s  
• Set the furnace temperatures for pre-heating and heating  
in accordance with the reflow temperature profile as  
shown in the diagram. Exercise extreme care to keep the  
maximum temperature below 260 °C. The temperature  
shown in the profile means the temperature at the device  
surface. Since there is a temperature difference between  
the component and the circuit board, it should be verified  
that the temperature of the device is accurately being  
measured  
• Handle products only after the temperature has cooled off  
• Handling after reflow should be done only after the work  
surface has been cooled off  
Rev. 1.1, 06-Feb-14  
Document Number: 82467  
6
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
TSOP773..W, TSOP775..W  
www.vishay.com  
Vishay Semiconductors  
VISHAY LEAD (Pb)-FREE REFLOW SOLDER PROFILE  
300  
max. 260 °C  
245 °C  
255 °C  
250  
240 °C  
217 °C  
200  
max. 20 s  
150  
max. 100 s  
max. 120 s  
100  
max. Ramp Up 3 °C/s  
50  
max. Ramp Down 6 °C/s  
0
0
50  
100  
150  
t (s)  
200  
250  
300  
19800  
max. 2 cycles allowed  
TAPING VERSION TSOP..TR DIMENSIONS in millimeters  
7.1  
16  
1.75  
7.5  
Ø 1.5  
Ø 1.5 min  
Drawing-No.: 9.700-5342.01-4  
Issue: 1: 23.03.09  
21785  
technical drawings  
according to DIN  
specifications  
Rev. 1.1, 06-Feb-14  
Document Number: 82467  
7
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
TSOP773..W, TSOP775..W  
www.vishay.com  
Vishay Semiconductors  
TAPING VERSION TSOP..TT DIMENSIONS in millimeters  
7.1  
16  
1.75  
7.5  
Ø 1.5  
Ø 1.5 min.  
technical drawings  
according to DIN  
specifications  
Drawing-No.: 9.700-5341.01-4  
Issue: 2: 23.03.09  
21666  
Rev. 1.1, 06-Feb-14  
Document Number: 82467  
8
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
TSOP773..W, TSOP775..W  
www.vishay.com  
Vishay Semiconductors  
REEL DIMENSIONS in millimeters  
16734  
LEADER AND TRAILER DIMENSIONS in millimeters  
Trailer  
Leader  
no devices  
devices  
no devices  
End  
Start  
min. 200  
min. 400  
96 11818  
COVER TAPE PEEL STRENGTH  
LABEL  
According to DIN EN 60286-3  
0.1 N to 1.3 N  
300 10 mm/min.  
Standard bar code labels for finished goods  
The standard bar code labels are product labels and used  
for identification of goods. The finished goods are packed in  
final packing area. The standard packing units are labeled  
with standard bar code labels before transported as finished  
goods to warehouses. The labels are on each packing unit  
and contain Vishay Semiconductor GmbH specific data.  
165° to 180° peel angle  
Rev. 1.1, 06-Feb-14  
Document Number: 82467  
9
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
TSOP773..W, TSOP775..W  
www.vishay.com  
Vishay Semiconductors  
VISHAY SEMICONDUCTOR GmbH STANDARD BAR CODE PRODUCT LABEL (Finished goods)  
PLAIN WRITING  
Item-description  
Item-number  
Selection-code  
LOT-/serial-number  
Data-code  
ABBREVIATION  
LENGTH  
-
18  
INO  
8
SEL  
3
BATCH  
10  
COD  
3 (YWW)  
Plant-code  
PTC  
2
Quantity  
QTY  
8
Accepted by  
Packed by  
ACC  
-
PCK  
-
Mixed code indicator  
Origin  
MIXED CODE  
-
xxxxxxx+  
Company logo  
Long bar code top  
Item-number  
Plant-code  
Type  
Length  
N
8
N
2
Sequence-number  
Quantity  
X
3
N
8
Total length  
-
21  
Short bar code bottom  
Selection-code  
Data-code  
Type  
Length  
X
N
X
-
3
3
Batch-number  
Filter  
10  
1
Total length  
-
17  
DRY PACKING  
After more than 72 h under these conditions moisture  
content will be too high for reflow soldering.  
The reel is packed in an anti-humidity bag to protect the  
devices from absorbing moisture during transportation and  
storage.  
In case of moisture absorption, the devices will recover to  
the former condition by drying under the following condition:  
Aluminum bag  
192 h at 40 °C + 5 °C / - 0 °C and < 5 % RH (dry air/nitrogen)  
or  
Label  
96 h at 60 °C + 5 °C and < 5 % RH for all device containers  
or  
24 h at 125 °C + 5 °C not suitable for reel or tubes.  
An EIA JEDEC® standard J-STD-020 level 4 label is included  
on all dry bags.  
Reel  
LEVEL  
CAUTION  
This bag contains  
15973  
MOISTURE-SENSITIVE DEVICES  
4
FINAL PACKINGFINAL PACKING  
1. Shelf life in sealed bag: 12 months at < 40 °C and < 90 ꢀ relative  
humidity (RH)  
The sealed reel is packed into a cardboard box. A secondary  
cardboard box is used for shipping purposes.  
2. After this bag is opened, devices that will be subjected to soldering  
reflow or equivalent processing (peak package body temp. 260 °C)  
must be  
2a. Mounted within 72 hours at factory condition of < 30 °C/60 ꢀ RH or  
2b. Stored at < 5 ꢀ RH  
3. Devices require baking befor mounting if:  
Humidity Indicator Card is > 10 ꢀ when read at 23 °C 5 °C or  
2a. or 2b. are not met.  
RECOMMENDED METHOD OF STORAGE  
4. If baking is required, devices may be baked for:  
Dry box storage is recommended as soon as the aluminum  
bag has been opened to prevent moisture absorption. The  
following conditions should be observed, if dry boxes are  
not available:  
192 hours at 40 °C + 5 °C/- 0 °C and < 5 ꢀ RH (dry air/nitrogen) or  
96 hours at 60 °C 5 °C and < 5 ꢀ RH for all device containers or  
24 hours at 125 °C 5 °C not suitable for reels or tubes  
Bag Seal Date:  
(If blank, see barcode label)  
Note: Level and body temperature defined by EIA JEDEC Standard J-STD-020  
22522  
• Storage temperature 10 °C to 30 °C  
EIA JEDEC standard J-STD-020 level 4 label is included  
on all dry bags  
• Storage humidity 60 % RH max.  
Rev. 1.1, 06-Feb-14  
Document Number: 82467  
10  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
TSOP773..W, TSOP775..W  
www.vishay.com  
ESD PRECAUTION  
Vishay Semiconductors  
BAR CODE PRODUCT LABEL (Example)  
Proper storage and handling procedures should be followed  
to prevent ESD damage to the devices especially when they  
are removed from the antistatic shielding bag. Electrostatic  
sensitive devices warning labels are on the packaging.  
VISHAY SEMICONDUTORS STANDARD  
BAR CODE LABELS  
The Vishay Semiconductors standard bar code labels are  
printed at final packing areas. The labels are on each  
packing unit and contain Vishay Semiconductors specific  
data.  
22178  
Rev. 1.1, 06-Feb-14  
Document Number: 82467  
11  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
Legal Disclaimer Notice  
www.vishay.com  
Vishay  
Disclaimer  
ALL PRODUCT, PRODUCT SPECIFICATIONS AND DATA ARE SUBJECT TO CHANGE WITHOUT NOTICE TO IMPROVE  
RELIABILITY, FUNCTION OR DESIGN OR OTHERWISE.  
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 in any datasheet or in any other  
disclosure relating to any product.  
Vishay makes no warranty, representation or guarantee regarding the suitability of the products for any particular purpose or  
the continuing production of any product. To the maximum extent permitted by applicable law, Vishay disclaims (i) any and all  
liability arising out of the application or use of any product, (ii) any and all liability, including without limitation special,  
consequential or incidental damages, and (iii) any and all implied warranties, including warranties of fitness for particular  
purpose, non-infringement and merchantability.  
Statements regarding the suitability of products for certain types of applications are based on Vishay’s knowledge of typical  
requirements that are often placed on Vishay products in generic applications. Such statements are not binding statements  
about the suitability of products for a particular application. It is the customer’s responsibility to validate that a particular  
product with the properties described in the product specification is suitable for use in a particular application. Parameters  
provided in datasheets and/or specifications may vary in different applications and performance may vary over time. All  
operating parameters, including typical parameters, must be validated for each customer application by the customer’s  
technical experts. Product specifications do not expand or otherwise modify Vishay’s terms and conditions of purchase,  
including but not limited to the warranty expressed therein.  
Except as expressly indicated in writing, Vishay products are not designed for use in medical, life-saving, or life-sustaining  
applications or for any other application in which the failure of the Vishay product could result in personal injury or death.  
Customers using or selling Vishay products not expressly indicated for use in such applications do so at their own risk. Please  
contact authorized Vishay personnel to obtain written terms and conditions regarding products designed for such applications.  
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. Product names and markings noted herein may be trademarks of their respective owners.  
Material Category Policy  
Vishay Intertechnology, Inc. hereby certifies that all its products that are identified as RoHS-Compliant fulfill the  
definitions and restrictions defined under Directive 2011/65/EU of The European Parliament and of the Council  
of June 8, 2011 on the restriction of the use of certain hazardous substances in electrical and electronic equipment  
(EEE) - recast, unless otherwise specified as non-compliant.  
Please note that some Vishay documentation may still make reference to RoHS Directive 2002/95/EC. We confirm that  
all the products identified as being compliant to Directive 2002/95/EC conform to Directive 2011/65/EU.  
Vishay Intertechnology, Inc. hereby certifies that all its products that are identified as Halogen-Free follow Halogen-Free  
requirements as per JEDEC JS709A standards. Please note that some Vishay documentation may still make reference  
to the IEC 61249-2-21 definition. We confirm that all the products identified as being compliant to IEC 61249-2-21  
conform to JEDEC JS709A standards.  
Revision: 02-Oct-12  
Document Number: 91000  
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