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AQV454HAZ

AQV454HAZ

  • 厂商:

    NAIS(松下)

  • 封装:

    SMD6

  • 描述:

    Solid State Relay SPST-NC (1 Form B) 6-SMD (0.300", 7.62mm)

  • 数据手册
  • 价格&库存
AQV454HAZ 数据手册
Standard type: Normally closed DIP6-pin type Low on-resistance with 250V/400V load voltage Reinforced type: HE 1 Form B (AQV45❍, AQV454H) FEATURES 6.4 .252 3.9 .154 8.8 .346 8.8 .346 6.4 .252 3.6 .142 (Height includes standoff) mm inch 1 6 2 5 3 4 1. 1 Form B (Normally-closed) type with low on-resistance This has been achieved thanks to the built-in MOSFET processed by our proprietary method, DSD (Doublediffused and Selective Doping) method. Cross section of the normally-closed type of power MOS Passivation membrane Intermediate Source electrode Gate electrode insulating membrane N+ P+ N+ N+ Gate oxidation membrane N+ P+ 3. High sensitivity and low onresistance Can control max. 0.2 A load current with 5 mA input current. Low on-resistance of Typ. 5.5 Ω (AQV453). 4. Reinforced insulation 5,000 Vrms type also available. More than 0.4 mm .016 inch internal insulation distance between inputs and outputs. Conforms to IEC950 (reinforced insulation). N– RoHS compliant Drain electrode N+ 2. Controls low-level analog signals PhotoMOS feature extremely low closedcircuit offset voltage to enable control of low-level analog signals without distortion. TYPICAL APPLICATIONS • Security equipment • High-speed inspection machines • Measuring instruments • Telephone equipment • Sensing equipment TYPES Output rating* I/O isolation AC/DC dual use Load voltage Load current 250 V 200 mA Part No. Package Through hole terminal Packing quantity Surface-mount terminal Tube packing style Tape and reel packing style Picked from the Picked from the 1/2/3-pin side 4/5/6-pin side AQV453 AQV453A AQV453AX AQV453AZ AQV454 AQV454A AQV454AX AQV454AZ AQV454H AQV454HA AQV454HAX AQV454HAZ 1,500 Vrms DIP6-pin Reinforced 5,000 Vrms 400 V 150 mA Tube Tape and reel 1 tube contains: 50 pcs. 1 batch contains: 500 pcs. 1,000 pcs. * Indicate the peak AC and DC values. Note: The surface mount terminal indicator “A” and the packing style indicator “X” or “Z” are not marked on the device. –1– ASCTB146E 201703-T HE 1 Form B (AQV45❍, AQV454H) RATING 1. Absolute maximum ratings (Ambient temperature: 25°C 77°F) Item Input Symbol LED forward current LED reverse voltage Peak forward current Power dissipation Load voltage (peak AC) Type of connection A Output Continuous load current Peak load current Power dissipation Total power dissipation I/O isolation voltage Ambient temperature Operating Storage IL AQV453(A) AQV454(A) AQV454H(A) 50 mA 5V 1A 75 mW IF VR IFP Pin VL B C IPEAK POUT PT Viso f = 100 Hz, Duty factor = 0.1% 250 V 0.2 A 400 V 0.15 A 0.3 A 0.4 A 0.6 A 0.18 A 0.25 A 0.5 A A connection: Peak AC, DC B, C connection: DC A connection: 100 ms (1 shot), VL = DC 360 mW 410 mW 1,500 Vrms 5,000 Vrms –40 to +85°C –40 to +185°F –40 to +100°C –40 to +212°F Topr Tstg Remarks (Non-icing at low temperatures) 2. Electrical characteristics (Ambient temperature: 25°C 77°F) Item LED operate (OFF) current Input LED reverse (ON) current LED dropout voltage Symbol Typical Maximum Minimum Typical Typical Maximum Type of connection IFoff — IFon — VF — Ron A Maximum 8 Ω 16 Ω Typical 2.7 Ω 6.3 Ω 4 Ω 8 Ω 1.4 Ω 3.1 Ω 2 Ω 4 Ω Ron B Ron C ILeak — Toff — Ton — Ciso — Riso — Typical Maximum Transfer characteristics Reverse (ON) time* I/O capacitance Initial I/O isolation resistance 1.4 mA 11 Ω Maximum Operate (OFF) time* AQV454H(A) 0.9 mA 3 mA 0.4 mA 0.8 mA 1.25 V (1.14 V at IF=5 mA) 1.5 V 5.5 Ω On resistance Off state leakage current AQV454(A) 1 mA 0.9 mA Typical Output AQV453(A) Maximum Typical Maximum Typical Maximum Typical Maximum Minimum 1.3 mA Condition IL = Max. IL = Max. IF = 50 mA 1 μA 1 μA 10 μA 1.52 ms 1.2 ms 1.8 ms 3 ms 0.4 ms 2.0 ms 0.36 ms 3.0 ms 0.4 ms 1 ms 1.3 pF IF = 0 mA IL= Max. Within 1 s IF = 0 mA IL= Max. Within 1 s IF = 0 mA IL = Max. Within 1 s IF= 5 mA VL= Max. IF = 0 mA ➝ 5 mA IL = Max. IF = 5 mA ➝ 0 mA IL = Max. f = 1 MHz VB = 0 V 3 pF 1,000 MΩ 500 V DC *Operate/Reverse time Input Output 3. Recommended operating conditions (Ambient temperature: 25°C 77°F) Please use under recommended operating conditions to obtain expected characteristics. AQV453(A) AQV454(A) AQV454H(A) Item LED current Load voltage (Peak AC) Continuous load current (A connection) Load voltage (Peak AC) Continuous load current (A connection) Load voltage (Peak AC) Continuous load current (A connection) Symbol IF VL IL VL IL VL IL Min. 5 — — — — — — Max. 30 200 0.2 320 0.15 320 0.15 10% 90% Toff Ton Unit mA V A V A V A ■ These products are not designed for automotive use. If you are considering to use these products for automotive applications, please contact your local Panasonic Corporation technical representative. –2– ASCTB146E 201703-T HE 1 Form B (AQV45❍, AQV454H) REFERENCE DATA 1. Load current vs. ambient temperature characteristics 2. On resistance vs. ambient temperature characteristics 3. Operate (OFF) time vs. ambient temperature characteristics Allowable ambient temperature: –40 to +85°C –40 to +185°F Type of connection: A Measured portion: between terminals 4 and 6; LED current: 0 mA; Load voltage: Max. (DC); Continuous load current: Max. (DC) LED current: 5 mA; Load voltage: Max. (DC); Continuous load current: Max. (DC) 5 AQV454H AQV454(H) AQV453 AQV454(H) 150 100 Operate (OFF) time, ms 200 16 On resistance, Ω Load current, mA 250 14 12 10 AQV453 8 50 0 –40 –20 0 20 40 60 0 8085100 4 AQV454 AQV453 3 2 1 –40 –20 Ambient temperature, °C 0 0 20 40 60 8085 Ambient temperature, °C –40 –20 0 20 40 60 8085 Ambient temperature, °C 4. Reverse (ON) time vs. ambient temperature characteristics 5. LED operate (OFF) current vs. ambient temperature characteristics 6. LED reverse (ON) current vs. ambient temperature characteristics LED current: 5 mA; Load voltage: Max. (DC); Continuous load current: Max. (DC) Load voltage: Max. (DC); Continuous load current: Max. (DC) Load voltage: Max. (DC); Continuous load current: Max. (DC) 2.0 1.5 AQV454, AQV453 1.0 0.5 5 5 4 AQV454H 3 2 AQV454 AQV453 1 AQV454H 0 –40 –20 0 20 40 60 0 8085 –40 –20 0 20 40 60 LED reverse (ON) current, mA LED operate (OFF) current, mA Reverse (ON) time, ms 2.5 4 AQV454H 3 2 AQV454 AQV453 1 0 8085 –40 –20 Ambient temperature, °C Ambient temperature, °C 0 20 40 60 80 Ambient temperature, °C 7. LED dropout voltage vs. ambient temperature characteristics 8. Current vs. voltage characteristics of output at MOS portion 9. Off state leakage current vs. load voltage characteristics LED current: 5 to 50 mA Measured portion: between terminals 4 and 6; Ambient temperature: 25°C 77°F Sample: AQV454; Measured portion: between terminals 4 and 6; Ambient temperature: 25°C 77°F 200 1.4 1.3 –3 1.2 –1 120 80 40 0 0 –40 50mA 30mA 20mA 10mA 5mA 1.1 0 20 40 60 2 3 Voltage, V 10–3 10–6 10–9 –120 –160 AQV454(H) –40 –20 1 –80 1.0 0 –2 AQV453 160 Off state leakage current, A Current, mA LED dropout voltage, V 1.5 10–12 –200 80 85 0 Ambient temperature, °C 20 40 60 80 100 Load voltage, V 10. Operate (OFF) time vs. LED forward current characteristics 11. Reverse (ON) time vs. LED forward current characteristics 12. Output capacitance vs. applied voltage characteristics Measured portion: between terminals 4 and 6; Load voltage: Max. (DC); Continuous load current: Max. (DC); Ambient temperature: 25°C 77°F Measured portion: between terminals 4 and 6; Load voltage: Max. (DC); Continuous load current: Max. (DC); Ambient temperature: 25°C 77°F Measured portion: between terminals 4 and 6; Frequency: 1 MHz; Ambient temperature: 25°C 77°F AQV454H 6 4 2 0.8 0.6 AQV454H 0.4 AQV454, AQV453 30 40 200 100 AQV453 0 20 300 0.2 AQV454, AQV453 10 Output capacitance, pF 8 0 400 1.0 Reverse (ON) time, ms Operate (OFF) time, ms 10 50 LED forward current, mA 60 10 20 30 40 50 LED forward current, mA –3– 60 0 0 AQV454(H) 10 20 30 40 50 Applied voltage, V ASCTB146E 201703-T
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