1 Form A Solid State Relay

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1 LH5AAB, LH5AABTR, LH5AT Form A Solid State Relay FEATURES S S DC 5 S' S' Isolation test voltage 53 V RMS Current limit protection built in High reliability monolithic output die Low power consumption Clean bounce free switching High surge capability i793- V D E 3 Surface mountable Compliant to RoHS directive /95/EC and in accordance to WEEE /9/EC i79- DESCRIPTION The LH5 is an SPST normally open switch ( form A) that can replace electromechanical relays in many applications. The relay is constructed using a GaAlAs LED for actuation control and an integrated monolithic die for the switch output. The die, fabricated in a high-voltage dielectrically isolated technology, is comprised of a photodiode array, switch control circuity, and MOSFET switches. In addition, the relay employs current-limiting circuity enabling it to pass FCC 8.3 and other regulatory voltage surge requirements when overvoltage protection is provided. The LH5 is the only relay in the family that provides current limiting for unidirectional DC applications. APPLICATIONS General telecom switching Instrumentation Industrial controls AGENCY APPROVALS UL577: file no. E57 system code H, double protection CSA: certification no BSI: certification no. 7979/798 DIN EN: (VDE 88) FIMKO: 59 ORDERING INFORMATION L H 5 # # # # # T R DIP SMD PART NUMBER ELECTR. VARIATION PACKAGE CONFIG. TAPE AND REEL 7. mm >. mm PACKAGE SMD-, tubes SMD-, tape and reel DIP-, tubes UL, cul, BSI, FIMKO, VDE LH5AAB LH5AABTR LH5AT ABSOLUTE MAXIMUM RATINGS (T amb = 5 C, unless otherwise specified) PARAMETER TEST CONDITION SYMBOL VALUE UNIT SSR LED continuous forward current I F 5 ma LED reverse voltage I R μa V R 8 V DC or peak AC load voltage I L 5 μa V L V Continuous DC load current - bidirectional operation I L ma Continuous DC load current - unidirectional operation I L 35 ma Peak load current (single shot) t = ms I P () Document Number: 838 For technical questions, contact: optocoupleranswers@vishay.com Rev.., -May-

2 LH5AAB, LH5AABTR, LH5AT Form A Solid State Relay ABSOLUTE MAXIMUM RATINGS (T amb = 5 C, unless otherwise specified) PARAMETER TEST CONDITION SYMBOL VALUE UNIT SSR Ambient temperature range T amb - to + 85 C Storage temperature range T stg - to + 5 C Pin soldering temperature () t = s max. T sld C Input to output isolation voltage V ISO 53 V RMS Output power dissipation (continuous) P diss 55 mw Notes 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. () Refer to current limit performance application note 58 for a discussion on relay operation during transient currents. () Refer to reflow profile for soldering conditions for surface mounted devices (SMD). Refer to wave profile for soldering conditions for through hole devices (DIP). ELECTRICAL CHARACTERISTICS (T amb = 5 C, unless otherwise specified) PARAMETER TEST CONDITION SYMBOL MIN. TYP. MAX. UNIT INPUT LED forward current, switch turn-on I L = ma, t = ms I Fon.95 ma LED forward current, switch turn-off V L = ± 5 V I Foff..85 ma LED forward voltage I F = ma V F V OUTPUT ON-resistance AC/DC: pin (±) to (±), I L = 5 ma R ON.7 5 Ω ON-resistance DC: pin, (+) to 5 (±), I L = ma R ON Ω Off-resistance I F = ma, V L = ± V R OFF.5 8 GΩ Current limit AC/DC: pin (±) to (±), V L = ± 5 V, t = 5 ms I LMT ma Current limit DC: pin, (+) to 5 (±), V L = ± V, t = 5 ms I LMT 73 9 ma Off-state leakage current I F = ma, V L = ± V I O.3 na I F = ma, V L = ± V I O 79. μa Output capacitance pin to I F = ma, V L = V C O 7.75 pf I F = ma, V L = 5 V C O.8 pf Switch offset V OS.7 μv TRANSFER Capacitance (input to output) V ISO = V C IO.7 pf Turn-on time, I L = 5 ma t on.5 ms Turn-off time, I L = 5 ma t off.7 ms Note Minimum and maximum values are testing requirements. Typical values are characteristics of the device and are the result of engineering evaluations. Typical values are for information only and are not part of the testing requirements. For technical questions, contact: optocoupleranswers@vishay.com Document Number: 838 Rev.., -May-

3 LH5AAB, LH5AABTR, LH5AT Form A Solid State Relay SAFETY AND INSULATION RATINGS PARAMETER TEST CONDITION SYMBOL VALUE UNIT Climatic classification IEC 8 part /85/ Pollution degree DIN VDE 9 Tracking resistance (comparative tracking index) Insulation group llla CTI 75 Highest allowable overvoltage Transient overvoltage V IOTM 8 V peak Max. working insulation voltage Recurring peak voltage V IORM 89 V peak Insulation resistance at 5 C R IS Ω Insulation resistance at T S V IO = 5 V R IS 9 Ω Insulation resistance at C R IS Ω Partial discharge test voltage Methode a, V pd = V IORM x.875 V pd 9 V peak Safety limiting values - Case temperature T SI 75 C maximum values allowed Input current I SI 3 ma in the event of a failure Output power P SO 7 mw Minimum external air gap (clearance) Minimum external tracking (creepage) Measured from input terminals to output terminals, shortest distance through air Measured from input terminals to output terminals, shortest distance path along body 7 7 mm mm TYPICAL CHARACTERISTICS (T amb = 5 C, unless otherwise specified) Load Current (ma) 8 I Fon = 5. to ma I Fon =. ma I Fon = 3. ma I Fon =. ma LED Forward Current (ma) 8 T = - C ilh5at_ Ambient Fig. - Recommended Operating Conditions.5.5 LED Forward Voltage (V) ilh5at_ Fig. 3 - LED Forward Current vs. LED Forward Voltage LED Forward Voltage (V) I F = ma. I F = ma ilh5at_ I F = ma I F = ma Fig. - LED Voltage vs. Temperature LED Reverse Current (µa) ilh5at_3 T = - C LED Reverse Voltage (V) Fig. - LED Reverse Current vs. LED Reverse Voltage Document Number: 838 For technical questions, contact: optocoupleranswers@vishay.com Rev.., -May- 3

4 LH5AAB, LH5AABTR, LH5AT Form A Solid State Relay T = - C DC Load Current (ma) 8 T = - C 3 5 LED Current (ma) ilh5at_ ilh5at_7 3 5 Fig. 5 - LED Current vs. Load Voltage Fig. 8 - DC Load Current vs. Load Voltage LED Current for Switch Turn-on (%), Norm. to 5 C ilh5at_ Fig. - LED Current for Switch Turn-on vs. Temperature DC Current Limit (%) Change, Norm. at 5 C ilh5at_8 T = 5 ms V L = V - 8 Fig. 9 - DC Current Limit vs. Temperature LED Dropout Voltage (V) I L = ma Change in Current Limit (%) Norm. to 5 C IF = 5 ma T = 5 ms V L = 5 V ilh5at_ Fig. 7 - LED Dropout Voltage vs. Temperature ilh5at_9 Fig. - Current Limit vs. Temperature For technical questions, contact: optocoupleranswers@vishay.com Document Number: 838 Rev.., -May-

5 LH5AAB, LH5AABTR, LH5AT Form A Solid State Relay Load Current (ma) 3 T = - C Capacitance (pf) ilh5at_ Fig. - Load Current vs. Load Voltage 8 Applied Voltage (V) ilh5at_3 Fig. - Switch Terminal Capacitance vs. Applied Voltage Change in On-resistance (%), Norm. to 5 C I L = 5 ma ilh5at_ Fig. - On-Resistance vs. Temperature R L = Ω. 3 5 ilh5at_ Frequence (Hz) Insertion Loss (db) Fig. 5 - Insertion Loss vs. Frequency AC/DC R ON Variation (%), Norm. at 8 I L = 5 ma - 8 LED Current (ma) ilh5at_ Fig. 3 - Variation in On-Resistance vs. LED Current Leakage Current (ma) T = 7 C T = 5 C. 8 ilh5at_5 Fig. - Leakage Current vs. Applied Voltage Document Number: 838 For technical questions, contact: optocoupleranswers@vishay.com Rev.., -May- 5

6 LH5AAB, LH5AABTR, LH5AT Form A Solid State Relay Isolation (db) ilh5at_ V P = V R L = 5 Ω Frequency (Hz) Fig. 7 - Output Isolation Switch Offset Voltage (µv) ilh5at_9 I F = 5. ma Ambient 8 9 Fig. - Switch Offset Voltage vs. Temperature 5. Load Current (µa) 3 T = - C I F = ma I L < 5 µa Switch Offset Voltage (µv) ilh5at_ Fig. 8 - Switch Breakdown Voltage vs. Load Current ilh5at_ LED Forward Current (ma) Fig. - Switch Offset Voltage vs. LED Current Change in Breakdown Voltage (%) Norm. to 5 C ilh5at_8 I F = ma I L < 5 µa - 8 Fig. 9 - Switch Breakdown Voltage vs. Temperature Change in Turn-on Time (%) Norm. to 5 C I L = 5 ma ilh5at_ Fig. - Turn-on Time vs. Temperature For technical questions, contact: optocoupleranswers@vishay.com Document Number: 838 Rev.., -May-

7 LH5AAB, LH5AABTR, LH5AT Form A Solid State Relay Change in Turn-off Time (%), norm. to 5 C I L = 5 ma ilh5at_ Fig. 3 - Turn-off Time vs. Temperature.8 Turn-on Time (ms)... T = - C I L = 5 ma. 3 5 ilh5at_3 LED Forward Current (ma) Fig. - Turn-on Time vs. LED Current. Turn-off Time (ms) T = - C I L = 5 ma. 3 5 LED Forward Current (ma) ilh5at_ Fig. 5 - Turn-off Time vs. LED Current Document Number: 838 For technical questions, contact: optocoupleranswers@vishay.com Rev.., -May- 7

8 LH5AAB, LH5AABTR, LH5AT Form A Solid State Relay PACKAGE DIMENSIONS in millimeters DIP Pin one ID ISO method A min. 7. typ i78 typ typ..5 min typ SMD Pin one ID R min..5.5 ISO method A.99 min typ typ. 3 to i min..3. PACKAGE MARKING LH5 V YWW H For technical questions, contact: optocoupleranswers@vishay.com Document Number: Rev.., -May-

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. 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: 9 Revision: 8-Jul-8

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