Optocoupler, Photodarlington Output, AC Input, High Gain (Single, Dual Channel)
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1 Optocoupler, Photodarlington Output, A Input, High Gain (Single, Dual hannel) A/ 6 B FEATURES A or polarity insensitive inputs /A N E Built-in reverse polarity input protection Industry standard DIP package ompliant to RoHS Directive 22/9/E and in accordance to WEEE 22/96/E i7937- A 8 A DESRIPTION The are bidirectional input optically coupled isolators. They consist of two gallium arsenide infrared emitting diodes coupled to a silicon NPN photodarlington per channel. The IL7 is single channel Darlington optocoupler. The ILD7 has two isolated channels in a single DIP package. E E APPLIATIONS Designed for applications requiring detection or monitoring of A signals AGENY APPROVALS UL77, file no. E2744 system code H, double protection SA 937 BSI IE 69; IE 66 DIN EN (VDE 884)/DIN EN (pending), available with option Q ORDERING INFORMATION I L x 7 - # X # # T DIP-# Option 7 PART NUMBER TR BIN PAKAGE OPTION TAPE AND REEL 7.62 mm >.7 mm TR (%) AGENY ERTIFIED/PAKAGE SINGLE HANNEL, 6 PIN DUAL HANNEL, 8 PIN ± 2 ma ± ma ± 2 ma ± ma UL, SA, BSI, Q 7 7 DIP-# IL7- IL7-2 ILD7- ILD7-2 SMD-#, option 7 IL7-X7T () IL7-2X7T - ILD7-2X7T VDE, UL, SA, BSI, Q 7 7 DIP-# IL7-X SMD-#, option ILD7-X7 - Notes Additional options may be possible, please contact sales office. () Also available in tubes; do not add T to end. Rev..6, 2-Dec- Document Number: 8364 ARE SUBJET TO SPEIFI DISLAIMERS, SET FORTH AT
2 ABSOLUTE MAXIMUM RATINGS (T amb = 2, unless otherwise specified) PARAMETER TEST ONDITION PART SYMBOL VALUE UNIT INPUT Forward continuous current I F 6 ma Power dissipation P diss mw Derate linearly from 2.33 mw/ OUTPUT ollector emitter breakdown ollector base breakdown Power dissipation Derate linearly from 2 OUPLER Isolation test between emitter and detector BV EO 6 V BV BO 6 V IL7-2 mw IL7-2 2 mw P diss ILD7- mw ILD7-2 mw IL7-2.6 mw/ IL mw/ ILD7-2. mw/ ILD mw/ t = s V ISO 7/3 V A peak /V RMS reepage distance 7 mm learance distance 7 mm IL7-2 mw Total power dissipation IL7-2 2 mw P tot ILD7-4 mw ILD7-2 4 mw IL7-3. mw/ Derate linearly from 2 IL mw/ ILD7-3. mw/ ILD mw/ Storage temperature T stg - to + Operating temperature T amb - to + Lead soldering time at 26 s Note 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. ELETRIAL HARATERISTIS (T amb = 2, unless otherwise specified) PARAMETER TEST ONDITION SYMBOL MIN. TYP. MAX. UNIT INPUT Forward I F = ± ma V F.2. V OUTPUT ollector emitter breakdown I =. ma BV EO 6 7 V ollector base breakdown I = μa BV BO 6 9 V ollector emitter leakage current V E = V, I F = A I EO na OUPLER ollector emitter saturation I = ma, I F = ± ma V Esat V Note 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. Rev..6, 2-Dec- 2 Document Number: 8364 ARE SUBJET TO SPEIFI DISLAIMERS, SET FORTH AT
3 URRENT TRANSFER RATIO (T amb = 2, unless otherwise specified) PARAMETER TEST ONDITION PART SYMBOL MIN. TYP. MAX. UNIT I F = ± 2 ma, V E =. V IL7- TR 7 % urrent transfer ratio I F = ± 2 ma, V E =. V ILD7- TR 7 % I F = ± ma, V E =. V IL7-2 TR % I F = ± ma, V E =. V ILD7-2 TR % SWITHING HARATERISTIS (T amb = 2, unless otherwise specified) PARAMETER TEST ONDITION PART SYMBOL MIN. TYP. MAX. UNIT Rise time V = V, I F = ± 2 ma, R L = Ω IL7- t r μs ILD7- t r μs Fall time V = V, I F = ± 2 ma, R L = Ω IL7- t f μs ILD7- t f μs Rise time V = V, I F = ± ma, R L = Ω IL7-2 t r 7 μs ILD7-2 t r 7 μs Fall time V = V, I F = ± ma, R L = Ω IL7-2 t f 7 μs ILD7-2 t f 7 μs TYPIAL HARATERSITIS (T amb = 2, unless otherwise specified) I F - LED Forward urrent (ma) iil7b_ V F - LED Forward Voltage (V) Fig. - LED Forward urrent vs. Forward Voltage N TRce - Normalized TRce iil7_3. I F = 2 ma Fig. 3 - Normalized Non-Saturated and Saturated TR E vs. LED urrent I F - LED urrent (ma) V ce = V N TRce - Normalized (TRce) I F = ma. V ce = V.. iil7_2 I F - LED urrent (ma) NI ce - Normalized (I ce ) iil7_4 I F = 2 ma... V ce = V I F - LED urrent (ma) Fig. 2 - Normalized Non-Saturated and Saturated TR E vs. LED urrent Fig. 4 - Normalized Non-Saturated and Saturated I E vs. LED urrent Rev..6, 2-Dec- 3 Document Number: 8364 ARE SUBJET TO SPEIFI DISLAIMERS, SET FORTH AT
4 NI ce - Normalized I ce.. I F = ma V ce = V t phl - High/Low Propagation Delay (µs) 2 Ω kω V cc = V V th =. V.. I F - LED urrent (ma) 2 iil7_8 I F - LED urrent (ma) iil7_ Fig. - Normalized Non-Saturated and Saturated ollector-emitter urrent vs. LED urrent Fig. 8 - High to Low Propagation Delay vs. ollector Load Resistance and LED urrent h FE - Forward Transfer Gain V ce = V.. I F V O t R t D t PHL t PLH t S V TH =. V t F iil7_6 I b - Base urrent (µa) iil7_9 Fig. 6 - Non-Saturated and Saturated h FE vs. Base urrent Fig. 9 - Switching Waveform t plh - Low/High Propagation Delay (µs) iil7_7 V cc = V V th =. V I F - LED urrent (ma). kω 22 Ω 47 Ω Ω iil7_ f = khz, DF = % I F = ma V = V R L V O Fig. 7 - Low to High Propagation Delay vs. ollector Load Resistance and LED urrent Fig. - Test ircuit, Saturated and Non-Saturated Operation Rev..6, 2-Dec- 4 Document Number: 8364 ARE SUBJET TO SPEIFI DISLAIMERS, SET FORTH AT
5 PAKAGE DIMENSIONS in millimeters 3 2 Pin one ID 6.4 ±. 4 6 ISO method A 8.6 ±. min..2 ± typ. 3. ±.2 4 typ..8 min ±. i784. ±..8 ±. 3 to 9.2 typ to typ. Option typ Pin one ID ±.6.7 min ISO method A 8. min. 8.4 min ±.4.3 max ± typ. 4 typ. 3. ± ± ±..7 ±.9 3 to ±.2 i typ..2 ±. PAKAGE MARKING (example) IL7 V YWW H 68 Notes The VDE logo is only marked on option parts. Tape and reel suffix (T) is not part of the package marking. Rev..6, 2-Dec- Document Number: 8364 ARE SUBJET TO SPEIFI DISLAIMERS, SET FORTH AT
6 Legal Disclaimer Notice Vishay Disclaimer ALL PRODUT, PRODUT SPEIFIATIONS AND DATA ARE SUBJET TO HANGE WITHOUT NOTIE TO IMPROVE RELIABILITY, FUNTION 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. ustomers 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. 27 VISHAY INTERTEHNOLOGY, IN. ALL RIGHTS RESERVED Revision: 8-Feb-7 Document Number: 9
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