IL4116, IL4117, IL4118 Vishay Semiconductors Optocoupler, Phototriac Output, Zero Crossing, High dV/dt, Very Low Input Current FEATURES A 6 MT2 1 High input sensitivity: I = 1.3 mA, PF = 1.0 FT I = 3.5 mA, typical PF < 1.0 FT C 2 5 NC Zero voltage crossing ZCC NC 3 4 MT1 600 V, 700 V, and 800 V blocking voltage 300 mA on-state current 18099 High dV/dt 10 000 V/s DESCRIPTION Isolation test voltage 5300 V RMS The IL4116, IL4117, IL4118 consists of an AlGaAs IRLED Very low leakage < 10 A optically coupled to a photosensitive zero crossing TRIAC Lead (Pb)-free component network. The TRIAC consists of two inverse parallel connected Component in accordance to RoHS 2002/95/EC and monolithic SCRs. These three semiconductors devices are WEEE 2002/96/EC assembled in a six pin 300 mil dual in-line package. High input sensitivity is achieved by using an emitter follower APPLICATIONS phototransistor and a cascaded SCR predriver resulting in an Solid state relay LED trigger current of less than 1.3 mA (DC). Lighting controls The IL4116, IL4117, IL4118 uses zero cross line voltage detection circuit witch consists of two enhancement MOSFETs Temperature controls and a photodiode. The inhibit voltage of the network is Solenoid/valte controls determined by the enhancement voltage of the N-channel AC motor drives/starters FET. The P-channel FET is enabled by a photocurrent source that permits the FET to conduct the main voltage to gate on the AGENCY APPROVALS N-channel FET. Once the main voltage can enable the UL1577, file no. E52744 system code H or J, double N-channel, it clamps the base of the phototransistor, disabling protection the first stage SCR predriver. CSA 93751 The blocking voltage of up to 800 V permits control of off-line BSI IEC 60950 IEC 60065 voltages up to 240 VAC, with a safety factor of more than two, and is sufficient for as much as 380 VAC. Current handling DIN EN 60747-5-5 (VDE 0884) available with option 1 capability is up to 300 mA RMS continuous at 25 C. FIMKO The IL4116, IL4117, IL4118 isolates low-voltage logic from 120 VAC, 240 VAC, and 380 VAC lines to control resistive, inductive, or capacitive loads including motors, solenoids, high current thyristors or TRIAC and relays. Applications include solid-state relays, industrial controls, office equipment, and consumer appliances. ORDER INFORMATION PART REMARKS IL4116 600 V V , DIP-6 DRM IL4117 700 V V , DIP-6 DRM IL4118 800 V V , DIP-6 DRM IL4116-X006 600 V V , DIP-6 400 mil (option 6) DRM IL4116-X007 600 V V , SMD-6 (option 7) DRM IL4116-X009 600 V V , SMD-6(option 9) DRM IL4117-X007 700 V V , SMD-6 (option 7) DRM IL4118-X006 800 V V , DIP-6 400 mil (option 6) DRM IL4118-X007 800 V V , SMD-6 (option 7) DRM IL4118-X009 800 V V , SMD-6 (option 9) DRM Note For additional information on the available options refer to option information. Document Number: 83628 For technical questions, contact: optocoupler.answers vishay.com www.vishay.com Rev. 1.7, 10-Nov-08 389 IL4116, IL4117, IL4118 Optocoupler, Phototriac Output, Vishay Semiconductors Zero Crossing, High dV/dt, Very Low Input Current (1) ABSOLUTE MAXIMUM RATINGS PARAMETER TEST CONDITION PART SYMBOL VALUE UNIT INPUT Reverse voltage V 6.0 V R Forward current I 60 mA F Surge current I 2.5 A FSM Power dissipation P 100 mW diss Derate linearly from 25 C 1.33 mW/C Thermal resistance R 750 C/W th OUTPUT IL4116 V 600 V DRM Peak off-state voltage IL4117 V 700 V DRM IL4118 V 800 V DRM RMS on-state current I 300 mA DRM Single cycle surge 3.0 A Power dissipation P 500 mW diss Derate linearly from 25 C 6.6 mW/C Thermal resistance R 150 C/W th COUPLER Creepage distance 7.0 mm Clearance distance 7.0 mm Storage temperature T - 55 to + 150 C stg Operating temperature T - 55 to + 100 C amb Isolation test voltage V 5300 V IO RMS 12 V = 500 V, T = 25 C R 10 IO amb IO Isolation resistance 11 V = 500 V, T = 100 C R 10 IO amb IO (2) Lead soldering temperature 5 s T 260 C sld Notes (1) T = 25 C, unless otherwise specified amb 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. (2) Refer to reflow profile for soldering conditions for surface mounted devices (SMD). Refer to wave profile for soldering conditions for through hole devices (DIP). www.vishay.com For technical questions, contact: optocoupler.answers vishay.com Document Number: 83628 390 Rev. 1.7, 10-Nov-08