Optocoupler, Photodarlington Output (Single, Dual, Quad Channel)
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1 Single hannel FEATURES A 6 B 25 ma load current rating Fast rise time, 0 µs 2 5 Fast fall time, 35 µs N 3 4 E Single, dual and quad channel Dual hannel A A E E Solid state reliability Standard DIP packages Lead (Pb)-free component omponent in accordance to RoHS 2002/95/E and WEEE 2002/96/E Quad hannel A 2 3 A 4 A A 8 6 E E 2 E 0 9 E AGENY APPROVALS UL577, file no. E52744 system code H or J, double protection DIN EN (VDE 0884)/DIN EN pending available with option BSI IE IE FIMKO i790 DESRIPTION The IL30/IL3/IL55 single, ILD30/ILD3/ILD55 dual, and ILQ30/ILQ3/ILQ55 quad are optically coupled isolators with gallium arsenide infrared emitters and silicon photodarlington sensors. Switching can be achieved while maintaining a high degree of isolation between driving and load circuits, with no crosstalk between channels. These optocouplers can be used to replace reed and mercury relays with advantages of long life, high speed switching and elimination of magnetic fields. The IL30/IL3/IL55 are equivalent to MA230/MA23/ MA255. The ILD30/ILD3/ILD55 are designed to reduce board space requirements in high density applications. ORDER INFORMATION PART REMARKS IL30 TR > 00 %, single channel DIP-6 IL3 TR > 200 %, single channel DIP-6 IL55 TR > 00 %, single channel DIP-6 ILD30 TR > 00 %, dual channel DIP-8 ILD3 TR > 200 %, dual channel DIP-8 ILD55 TR > 00 %, dual channel DIP-8 ILQ30 TR > 00 %, quad channel DIP-6 ILQ3 TR > 200 %, quad channel DIP-6 ILQ55 TR > 00 %, quad channel DIP-6 IL55-X009 TR > 00 %, single channel SMD-6 (option 9) ILD30-X009 TR > 00 %, dual channel SMD-8 (option 9) ILD3-X007 TR > 200 %, dual channel SMD-8 (option 7) ILD3-X009 TR > 200 %, dual channel SMD-8 (option 9) Document Number: 8362 For technical questions, contact: optocoupler.answers@vishay.com Rev..6, 4-Dec-07
2 ORDER INFORMATION PART ILD55-X007 TR > 00 %, dual channel SMD-8 (option 7) ILD55-X009 TR > 00 %, dual channel SMD-8 (option 9) ILQ30-X009 TR > 00 %, quad channel SMD-6 (option 9) ILQ55-X007 TR > 00 %, quad channel SMD-6 (option 7) ILQ55-X009 TR > 00 %, quad channel SMD-6 (option 9) Note For additional information on the available options refer to option information. REMARKS ABSOLUTE MAXIMUM RATINGS PARAMETER TEST ONDITION PART SYMBOL VALUE UNIT INPUT Peak reverse voltage V RM 3.0 V Forward continuous current I F 60 ma Power dissipation P diss 00 mw Derate linearly from mw/ OUTPUT IL30 BV EO 30 V ILD30 BV EO 30 V ollector emitter breakdown voltage ILQ30 BV EO 30 V IL55 BV EO 55 V ILD55 BV EO 55 V ILD55 BV EO 55 V ollector (load) current I 25 ma Power dissipation P diss 50 mw Derate linearly from mw/ OUPLER IL30 P tot 250 mw IL3 P tot 250 mw IL55 P tot 250 mw ILD30 P tot 400 mw Total package power dissipation ILD3 P tot 400 mw ILD55 P tot 400 mw ILQ30 P tot 500 mw ILQ3 P tot 500 mw ILQ55 P tot 500 mw IL mw/ IL3 3.3 mw/ IL mw/ ILD mw/ Derate linearly from 25 ILD mw/ ILD mw/ ILQ mw/ ILQ mw/ ILQ mw/ Isolation test voltage V ISO 5300 V RMS reepage distance 7.0 mm learance distance 7.0 mm omparative tracking index TI 75 Storage temperature T stg - 55 to For technical questions, contact: optocoupler.answers@vishay.com Document Number: Rev..6, 4-Dec-07
3 ABSOLUTE MAXIMUM RATINGS PARAMETER TEST ONDITION PART SYMBOL VALUE UNIT OUPLER Operating temperature T amb - 55 to + 00 Lead soldering time at s Note T amb = 25, 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. ELETRIAL HARATERISTIS PARAMETER TEST ONDITION SYMBOL MIN. TYP. MAX. UNIT INPUT Forward voltage I F = 20 ma V F.25.5 V Reverse current V R = 3.0 V I R 0. 0 µa apacitance V R = 0 V O 25 pf OUTPUT ollector emitter breakdown voltage I = 00 µa BV EO 30/55 V ollector emitter leakage current V E = 0 V, I F = 0 A I EO.0 00 na ollector emitter capacitance V E = 0 V, f =.0 MHz E 3.4 pf OUPLER ollector emitter saturation voltage I = 50 ma, I F = 50 ma V Esat V Isolation test voltage 5300 V RMS Isolation resistance R IO 0 2 Ω apacitance (input to output) IO 0.5 pf Note T amb = 25, 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. URRENT TRANSFER RATIO PARAMETER TEST ONDITION PART SYMBOL MIN. TYP. MAX. UNIT IL30 TR % IL55 TR % ILD30 TR % ILD55 TR % urrent transfer ratio I F = 0 ma, V E = 5.0 V ILQ30 TR % ILQ55 TR % IL3 TR % ILD3 TR % ILQ3 TR % SWITHING HARATERISTIS PARAMETER TEST ONDITION SYMBOL MIN. TYP. MAX. UNIT Rise time V = 3.5 V, I F = 50 ma, R L = 00 Ω t r 0 µs Fall time V = 3.5 V, I F = 50 ma, R L = 00 Ω t f 35 µs Document Number: 8362 For technical questions, contact: optocoupler.answers@vishay.com Rev..6, 4-Dec-07 3
4 TYPIAL HARATERISTIS T amb = 25, unless otherwise specified V F - Forward Voltage (V) Tamb = - 55 Tamb = 25 Tamb = 85 NIcb - Normalized (Icb) Normalized to: Vcb = 3.5 V I F = 0 ma iil30_0 0 I F - Forward urrent (ma) iil30_04 I F - LED urrent (ma) Fig. - Forward Voltage vs. Forward urrent Fig. 4 - Normalized ollector Base Photocurrent vs. LED urrent NTR ce - Normalized TR ce iil30_ Normalized to: V E = 5 V I F = 0 ma V E = 5 V V E = V I F - LED urrent (ma) Fig. 2 - Normalized Non-Saturated and Saturated TR E vs. LED urrent h FE - urrent Gain 2000 V E = 5 V V E = V iil30_05 Base urrent Fig. 5 - h FE urrent Gain vs. Base urrent NI ce - Normalized I ce iil30_03 Normalized to: I F = 0 ma V E = 5 V 0 I F - LED urrent (ma) V E = 5 V V E = V Fig. 3 - Normalized Non-Saturated and Saturated ollector Emitter urrent vs. LED urrent 00 t plh - Low/High Propagation Delay (µs) iil30_ V = 5 V V th =.5 V 470 Ω I F - LED urrent (ma).0 kω 220 Ω 00 Ω Fig. 6 - Low to High Propagation Delay vs. ollector Load Resistance and LED urrent For technical questions, contact: optocoupler.answers@vishay.com Document Number: Rev..6, 4-Dec-07
5 tphl - High/Low Propagation delay - µs Ω kω V = 5 V V th =.5 V iil30_07 I F - LED urrent (ma) Fig. 7 - High to Low Propagation Delay vs. ollector Load Resistance and LED urrent I F V O t D t R t PLH t PHL t S V TH =.5 V t F iil30_08 Fig. 8 - Switching Waveform V = 3.5 V F = 0 khz, DF = 50 % R L V O I F = 50 ma iil30_09 Fig. 9 - Switching Schematic Document Number: 8362 For technical questions, contact: optocoupler.answers@vishay.com Rev..6, 4-Dec-07 5
6 PAKAGE DIMENSIONS in inches (millimeters) 3 2 Pin one ID (6.30) (6.50) ISO method A (8.50) (8.70) (.00) (0.45) (0.55) 0.30 (3.30) 0.50 (3.8) (0.45) (0.55) 0.03 (0.80) 0.03 (0.80) (0.90) 0.00 (2.54) 3 to (0.25) to (7.62 to 8.8) 0.4 (2.90) 0.30 (3.0) i78004 Pin one ID (6.48) (6.8) ISO method A (9.63) (9.9) (0.76) (.4) (0.79) 0.30 (3.30) 0.50 (3.8) i (.27) (0.5) 0.08 (0.46) (0.89) 3 to (0.56) (0.20) 0.00 (2.54) 0.02 (0.30) 0.0 (2.79) 0.30 (3.30) (5.84) (6.35) For technical questions, contact: optocoupler.answers@vishay.com Document Number: Rev..6, 4-Dec-07
7 PAKAGE DIMENSIONS in inches (millimeters) Pin one ID (6.48) (6.8) ISO method A (0.76) (.4) (9.77) (20.07) 0.03 (0.79) (0.46) (0.56) 0.00 (2.54) 0.30 (3.30) 0.50 (3.8) (0.5) (0.89) (.27) 0 3 to (2.79) 0.30 (3.30) (0.20) 0.02 (0.30) (5.84) (6.35) i78007 Option 7 Option (9.53) (0.03) (0.7) 0.35 (8.0) 0.33 (8.4) (0.3) max (4.6) 0.60 (4.) (0.02) (0.249) ref (0.5) (.02) 0.35 (8.00) 0.02 (0.30) 5 max Document Number: 8362 For technical questions, contact: optocoupler.answers@vishay.com Rev..6, 4-Dec-07 7
8 OZONE DEPLETING SUBSTANES POLIY STATEMENT It is the policy of Vishay Semiconductor GmbH to. 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 (987) and its London Amendments (990) 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.. Annex A, B and list of transitional substances of the Montreal Protocol and the London Amendments respectively. 2. lass I and II ozone depleting substances in the lean Air Act Amendments of 990 by the Environmental Protection Agency (EPA) in the USA. 3. ouncil Decision 88/540/EE and 9/690/EE Annex A, B and (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 products for any unintended or unauthorized application, the buyer shall indemnify 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 Heilbronn, Germany For technical questions, contact: optocoupler.answers@vishay.com Document Number: Rev..6, 4-Dec-07
9 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. ustomers 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: Revision: 8-Jul-08
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