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Panasonic Corporation Automation Controls Business Unit industrial.panasonic.com/ac/e HE Form A & B (AQW654) ASCTB60E 201201-T TYPES *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. RATING 1. Absolute maximum ratings (Ambient temperature: 25°C 77°F) Both 1 Form A and 1 Form B contacts incorporated in a compact DIP8-pin with low on-resistance HE Form A & B (AQW654) Output rating* Package Part No. Packing quantityThrough hole terminal Surface-mount terminal Load voltage Load current Tube packing style Tape and reel packing style Tube Tape and reelPicked from the 1/2/3/4-pin side Picked from the 5/6/7/8-pin side AC/DC dual use 400 V 120 mA DIP8-pin AQW654 AQW654A AQW654AX AQW654AZ 1 tube contains: 50 pcs. 1 batch contains: 500 pcs. 1,000 pcs Item Symbol AQW654(A) Remarks Input LED forward current I F 50 mA LED reverse voltage V R 5 V Peak forward current I FP 1 A f = 100 Hz, Duty factor = 0.1% Power dissipation P in 75 mW Output Load voltage (peak AC) V L 400 V Continuous load current I L 0.12A (0.16 A) Peak AC, DC ( ): in case of using only 1 channel) Peak load current I peak 0.36 A A connection: 100 ms (1 shot), V L = DC Power dissipation P out 800 mW Total power dissipation P T 850 mW I/O isolation voltage V iso 1,500 V AC Between input and output/between contact sets Temperature limits Operating T opr –40°C to +85°C –40°F to +185°F Non-condensing at low temperatures Storage T stg –40°C to +100°C –40°F to +212°F mm inch

FEATURES

  1. Applicable for 1 Form A 1 Form B use as well as two independent

1 Form A and 1 Form B use

  1. Controls low-level analog signals PhotoMOS feature extremely low closed- circuit offset voltage to enable control of low-level analog signals without distortion. 3. High sensitivity and low on- resistance Can control max. 0.16 A load current with 5 mA input current. Low on-resistance of max. 11 Ω. 4. Low-level off state leakage current of max. 1 µA TYPICAL APPLICATIONS
  • High-speed inspection machines
  • Data communication equipment
  • Telephone equipment
  • Sensing equipment 9.78 6.4 3.9 9.78 6.4 3.6 .385 .252 .154 .385 .252 .142 N.C. N.O. RoHS compliant Height includes standoff

Panasonic Corporation Automation Controls Business Unit industrial.panasonic.com/ac/e HE Form A & B (AQW654) ASCTB60E 201201-T 2. Electrical characteristics (Ambient temperature: 25°C 77°F) *Operate/Reverse time RECOMMENDED OPERATING CONDITIONS Please obey the following conditions to ensure proper device operation and resetting. ■ For Dimensions. ■ For Schematic and Wiring Diagrams. ■ For Cautions for Use. ■ 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. For more information. REFERENCE DATA Item Symbol AQW654(A) Remarks Input LED operate current Typical IFon (N.O.) IFoff (N.C.) 0.9 mA IL = Max.Maximum 3 mA LED reverse current Minimum IFoff (N.O.) IFon (N.C.) 0.4 mA IL = Max.Typical 0.8 mA LED dropout voltage Typical VF 1.25 V (1.14 V at IF = 5 mA) IF = 50 mAMaximum 1.5 V Output On resistance Typical Ron 11 Ω IF = 5 mA (N.O.) IF = 0 mA (N.C.) IL = Max. Within 1 s on timeMaximum 16 Ω Off state leakage current Maximum I Leak 1 µA IF = 0 mA (N.O.) IF = 5 mA (N.C.) VL = Max. Transfer characteristics Operate time* Typical Ton (N.O.) Toff (N.C.) IL = Max.Maximum 2 ms Reverse time* Typical Toff (N.O.) Ton (N.C.) IL = Max.Maximum 1 ms I/O capacitance Typical Ciso 0.8 pF f = 1 MHz VB = 0 VMaximum 1.5 pF Initial I/O isolation resistance Minimum R iso 1,000 MΩ 500 V DC Item Symbol Recommended value Unit Input LED current I F 5m A Ton Input Output 10% 90% 1) N.O. 2) N.C. Toff Toff Input Output 10% 90% Ton 1. Load current vs. ambient temperature characteristics Allowable ambient temperature: –40 °C to +85°C –40°F to +185°F When using 2 channels 2. On resistance vs. ambient temperature characteristics Measured portion: between terminals 5 and 6, 7 and 8; LED current: 5 mA; Load voltage: 400 V (DC); Continuous load current: 120 mA (DC) 3. Operate time vs. ambient temperature characteristics LED current: 5 mA; Load voltage: 400 V (DC); Continuous load current: 120 mA (DC) 150 200 250 02 0 4 0 6 0–20 8085 100 –40 100 Ambient temperature, °C Load current, mA –40 0–20 20 40 60 8085 Ambient temperature, °C On resistance, Ω Across terminals 5 and 6 (N.O.) Across terminals 7 and 8 (N.C.) –40 0–20 20 40 60 8085 Ambient temperature, °C Across terminals 5 and 6 (N.O.) Across terminals 7 and 8 (N.C.) Operate (OFF) time, ms

Panasonic Corporation Automation Controls Business Unit industrial.panasonic.com/ac/e HE Form A & B (AQW654) ASCTB60E 201201-T 4. Reverse time vs. ambient temperature characteristics LED current: 5 mA; Load voltage: 400 V (DC); Continuous load current: 120 mA (DC) 5. LED operate current vs. ambient temperature characteristics Load voltage: 400 V (DC); Continuous load current: 120 mA (DC) 6. LED reverse current vs. ambient temperature characteristics Load voltage: 400 V (DC); Continuous load current: 120 mA (DC) 0.5 1.0 1.5 2.0 –40 0–20 20 40 60 8085 Ambient temperature, °C Across terminals 5 and 6 (N.O.) Across terminals 7 and 8 (N.C.) Reverse (ON) time, ms –40 0–20 20 40 60 8085 Ambient temperature, °C Across terminals 5 and 6 (N.O.) Across terminals 7 and 8 (N.C.) LED operate (OFF) current, mA –40 0–20 20 40 60 8085 Ambient temperature, °C Across terminals 5 and 6 (N.O.) Across terminals 7 and 8 (N.C.) LED reverse (ON) current, mA 7. LED dropout voltage vs. ambient temperature characteristics LED current: 5 to 50 mA 8. Current vs. voltage characteristics of output at MOS portion Measured portion: between terminals 5 and 6, 7 and 8; Ambient temperature: 25°C 77°F 9. Off state leakage current vs. load voltage characteristics Measured portion: between terminals 5 and 6, 7 and 8; Ambient temperature: 25°C 77°F 1.0 1.1 1.2 1.3 –40 0–20 20 40 60 8085 1.4 50mA 30mA 20mA 10mA 5mA Ambient temperature, °C LED dropout voltage, V –50 150 100 –100 3 2 10 –3 –2 –1 Across terminals 5 and 6 (N.O.) Across terminals 7 and 8 (N.C.) –150 Voltage, V Current, mA 0 100 –12 20 40 60 80 Across terminals 5 and 6 (N.O.) Across terminals 7 and 8 (N.C.) Load voltage, V Off state leakage current, A 10. Operate time vs. LED forward current characteristics Measured portion: between terminals 5 and 6, 7 and 8; Load voltage: 400 V (DC); Continuous load current: 120 mA (DC); Ambient temperature: 25°C 77°F 11. Reverse time vs. LED forward current characteristics Measured portion: between terminals 5 and 6, 7 and 8; Load voltage: 400 V (DC); Continuous load current: 120 mA (DC); Ambient temperature: 25°C 77°F 12. Output capacitance vs. applied voltage characteristics Measured portion: between terminals 5 and 6, 7 and 8; Frequency: 1 MHz; Ambient temperature: 25°C 77°F 10 20 30 40 500 Across terminals 5 and 6 (N.O.) Across terminals 7 and 8 (N.C.) LED forward current, mA Operate (OFF) time, ms 0.2 0.4 0.6 0.8 1.2 1.0 10 20 30 40 500 Across terminals 5 and 6 (N.O.) Across terminals 7 and 8 (N.C.) LED forward current, mA Reverse (ON) time, ms 200 10 20 30 40 60 0 100 150 Across terminals 5 and 6 (N.O.) Across terminals 7 and 8 (N.C.) Applied voltage, V Output capacitance, pF