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High sensitivity and low on-resistance. DIP ( Form A) -pin type. HE PhotoMOS (AQV ) TESTING (Standard type) (Reinforced type) HE PhotoMOS (AQV ) 8.8....9. 8.8..... mm inch RoHS Directive compatibility information http://www.mew.co.jp/ac/e/environment/ FEATURES. Highly sensitive and low onresistance. Controls various types of loads such as relays, motors, lamps and solenoids.. Optical coupling for extremely high isolation, Vrms I/O isolation available.. Low-level off state leakage. Eliminates the need for a power supply to drive the power MOSFET A power supply used to drive the power MOSFET is unnecessary because of the built-in optoelectronic device. This results in easy circuit design and small PC board area.. Low thermal electromotive force (Approx. µv) TYPICAL APPLICATIONS High-speed inspection machines Telephone equipment Data communication equipment TYPES. I/O isolation voltage:, V AC Output rating* Through hole terminal Load voltage Load Tube packing style Part No. Surface-mount terminal Tape and reel packing style //-pin side //-pin side V ma AQV AQVA AQVAX AQVAZ V ma AQV AQVA AQVAX AQVAZ V ma AQV AQVA AQVAX AQVAZ V ma AQV7 AQV7A AQV7AX AQV7AZ V ma AQV AQVA AQVAX AQVAZ V ma AQV AQVA AQVAX AQVAZ, V ma AQV9 AQV9A AQV9AX AQV9AZ, V ma AQV8 AQV8A AQV8AX AQV8AZ Tube tube contains pcs. batch contains pcs. Packing quantity Tape and reel, pcs.. I/O isolation voltage: Reinforced, V Output rating* Through hole terminal Load voltage Load Tube packing style Part No. Surface-mount terminal Tape and reel packing style //-pin side //-pin side V ma AQVH AQVHA AQVHAX AQVHAZ V ma AQVH AQVHA AQVHAX AQVHAZ Packing quantity *Indicate the peak AC and DC values. Note: For space reasons, the SMD terminal shape indicator A and the package style indicator X or Z are not marked on the relay. Tube tube contains pcs. batch contains pcs. Tape and reel, pcs.
HE PhotoMOS (AQV ) RATING. Absolute maximum ratings (Ambient temperature: C 77 F). Electrical (Ambient temperature: C 77 F) Output Transfer Item LED operate LED turn off LED dropout voltage On resistance Off state leakage Switching speed Item Turn on time* Turn off time* I/O capacitance Initial I/O isolation resistance Symbol Type of connection Note: Recommendable LED forward Standard type: IF = ma Reinforced type: IF = to ma *Turn on/turn off time AQV(A) AQV(A) AQV(A) AQV7(A) AQV(A) AQV(A) AQV9(A) AQV8(A) AQVH(A) AQVH(A) For type of connection. Condition.9 ma. ma IFon ma Minimum. ma IFoff.8 ma. ma. V (. V at IF = ma) VF. V IF = ma. Ω.7 Ω.8 Ω. Ω. Ω. Ω 8 Ω Ω. Ω. Ω IF = ma Ron A Ω. Ω. Ω Ω 8 Ω Ω Ω Ω 8 Ω Ω Within s on time.ω.7 Ω.9 Ω. Ω.7 Ω. Ω Ω Ω.7 Ω. Ω IF = ma Ron B. Ω.7 Ω. Ω Ω Ω 8 Ω Ω Ω Ω 8 Ω Within s on time. Ω.8 Ω. Ω.7 Ω. Ω. Ω Ω Ω. Ω. Ω IF = ma Ron C. Ω. Ω. Ω Ω Ω Ω Ω Ω Ω Ω Within s on time µa µa µa IF = ma VL = Max..7 ms. ms.9 ms. ms.8ms.8ms.ms. ms.ms.8ms IF = ma Ton ms ms ms ms ms ms ms Symbol Type of connection Toff Ciso AQV(A) AQV(A) AQV(A) AQV7(A) AQV(A) AQV(A) AQV9(A) AQV8(A) AQVH(A) AQVH(A).7 ms.9 ms. ms. ms. ms. ms. ms. ms. ms IF = ma. pf f = MHz pf VB = V Minimum Riso, MΩ V DC Remarks LED forward IF ma LED reverse voltage VR V Peak forward IFP A f = Hz, Duty factor +.% Power dissipation Pin 7 mw Load voltage (peak AC) VL V V V V V V, V, V V V A. A. A. A. A. A. A. A. A. A. A A connection: Peak Continuous load IL B.7 A. A. A. A. A.8 A. A. A. A.8 A AC, DC C. A.8 A.7 A. A. A. A. A. A. A. A B, C connection: DC Peak load Ipeak.8 A. A. A.7 A. A. A.9 A. A. A. A A connection: ms ( shot) VL = DC Power dissipation Pout mw Total power dissipation PT mw I/O isolation voltage Viso, V AC, V AC Output Temperature limits Operating Topr C to +8 C F to +8 F Storage Tstg C to + C F to + F Non-condensing at low temperatures 9% Output % Ton Toff For Dimensions. For Schematic and Wiring Diagrams. For Cautions for Use.
REFERENCE DATA.-() Load vs. ambient temperature Allowable ambient temperature: C to +8 C F to +8 F ; Type of connection: A Load,A...... AQV AQV AQV AQV7 AQV(H) AQV(H) 88.-() Load vs. ambient temperature Allowable ambient temperature: C to +8 C F to +8 F ; Type of connection: A Load, ma AQV9 AQV8 88 HE PhotoMOS (AQV ).-() On resistance vs. ambient temperature..8.....8... AQV AQV AQV 8.-() On resistance vs. ambient temperature 8 8 AQV(H) AQV(H) AQV7 88.-() Turn on time vs. ambient temperature Load voltage: Max. (DC);.-() On resistance vs. ambient temperature Continuous load : ma (DC) AQV8 AQV9 88.-() Turn off time vs. ambient temperature Load voltage: Max. (DC);..-() Turn on time vs. ambient temperature Load voltage: Max. (DC); AQV 88 AQV AQV7 AQV AQV AQV9 AQV8.-() Turn off time vs. ambient temperature Sample: AQVH, AQVH Load voltage: Max. (DC);. AQVH AQVH... AQV,AQV,AQV AQV AQV,AQV7.... 8 8 AQV9,AQV8 88 88.-() LED operate vs. ambient temperature Sample: AQV, AQV, AQV, AQV, AQV9; Load voltage: Max. (DC);.-() LED operate vs. ambient temperature Sample: AQVH,AQVH; Load voltage: Max. (DC);. -() LED turn off vs. ambient temperature Sample: AQV, AQV, AQV, AQV, AQV9; Load voltage: Max. (DC); LED operate, ma LED operate, ma LED turn off, ma 88 8 8 88
HE PhotoMOS (AQV ).-() LED turn off vs. ambient temperature Sample: AQV, AQV, AQV, AQV, AQV9; Load voltage: Max. (DC); LED turn off, ma 88 7. LED dropout voltage vs. ambient temperature LED : to ma LED dropout voltage, V...... 88 ma ma ma ma ma 8.-() Current vs. voltage of output at MOS portion Ambient temperature: C 77 F. AQV. AQV. AQV. AQV7 AQV(H). AQV(H)......8...8..... Voltage, V..... Current, A 8.-() Current vs. voltage of output at MOS portion Sample: AQV9 Ambient temperature: C 77 F Current, ma 8 8 Voltage, V AQV9 AQV8 -(). Turn on time vs. LED forward Max. (DC); Ambient temperature: C 77 F. 9-(). Off state leakage vs. load voltage Sample: AQV9; Ambient temperature: C 77 F Off state leakage, A 9 8 Load voltage, V -(). Turn on time vs. LED forward Max. (DC); Ambient temperature: C 77 F 9-(). Off state leakage vs. load voltage Sample: AQVH; Ambient temperature: C 77 F Off state leakage, A 9 8 Load voltage, V -(). Turn off time vs. LED forward Max. (DC); Ambient temperature: C 77 F....... AQV AQV AQV, AQV, AQV7, AQV AQV9 AQV8 LED, ma 8 AQVH AQVH LED, ma.8... LED Current, ma AQV,, AQV,7 AQV AQV9,8 -(). Turn off time vs. LED forward Max. (DC); Ambient temperature: C 77 F..-() Output capacitance vs. applied voltage Frequency: MHz; Ambient temperature: C 77 F.-() Output capacitance vs. applied voltage Sample: AQV9; Frequency: MHz; Ambient temperature: C 77 F..8.. AQVH,H Output capacitance, pf Output capacitance, pf 8. AQV, AQV LED, ma AQV(H), AQV(H),7 Applied voltage, V Applied voltage, V