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AQC1A1-T5VDC Datasheet(PDF) 3 Page - Panasonic Semiconductor |
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AQC1A1-T5VDC Datasheet(HTML) 3 Page - Panasonic Semiconductor |
3 / 5 page Panasonic Corporation Automation Controls Business Unit industrial.panasonic.com/ac/e/ AQ-C ASCTB214E 201201-T1 2. Characteristics [Ambient temperature: 20 °C 68°F; Input voltage ripple (output module) and output voltage ripple (input module): 1% or less] 1) Input module 2) Output module REFERENCE DATA Type Item AC Input module DC Input module Remarks Operate time, max. 20 ms 0.5 ms Input voltage: 24 V DC or 100V AC Output voltage: 24 V DC Output current: 25mA Release time, max 20 ms 0.5 ms Insulation resistance, min. 109 Ω between input and output at 500 V DC Breakdown voltage 2,500 Vrms between input and output For 1 minute Vibration resistance Destructive 10 to 55Hz double amplitude of 3 mm 1 hour for X,Y, Z, axis Functional 10 to 55Hz double amplitude of 3 mm 10 minutes for X,Y, Z, axis Shock resistance Destructive Min. 980 m/s2 {100 G} 5 time each for X,Y,Z axis Functional Min. 980 m/s2 {100 G} 4 time each for X,Y,Z axis Ambient temperature –30 °C to +80°C –22°F to +176°F Storage temperature –30 °C to +100°C –22°F to +212°F Type Item AC output DC output Remarks Random Zero-cross Operate time, max. 1 ms 1/2 cycle of voltage sine wave + 1ms 0.5 ms Release time, max. 1/2 cycle of voltage sine wave + 1ms 1 ms Insulation resistance, min. 109 Ω between input and output at 500 V DC Breakdown voltage 2,500 Vrms between input and output For 1 minute Vibration resistance Destructive 10 to 55Hz double amplitude of 3 mm 1 hour for X,Y, Z, axis Functional 10 to 55Hz double amplitude of 3 mm 10 minutes for X,Y, Z, axis Shock resistance Destructive Min. 980 m/s2 {100 G} 5 time each for X,Y,Z axis Functional Min. 980 m/s2 {100 G} 4 time each for X,Y,Z axis Ambient temperature –30 °C to +80°C –22°F to +176°F Storage temperature –30 °C to +100°C –22°F to +212°F Operational method Random Turn-ON, Zero-cross (Turn-OFF) Zero-cross (Turn-ON and Turn-OFF) — 1. Load current vs. ambient temperature characteristics (AC/DC output) Use load current within range specified in the figure below 2.-(1) Non-repetitive surge current vs. carrying time characteristics (AC output) 2.-(2) Non-repetitive surge current vs. carrying time characteristics (DC output) –30 0 20 40 60 80 0 Ambient temperature, °C 0.2 0.4 0.6 0.8 1.0 12 3 4 5 7 10 20 30 40 50 70 100 No. of cycles at 60 Hz 0 10 20 30 10 20 30 4050 70 100 200 300 1,000 Carrying time, ms 0 1 2 3 4 5 3. Input current vs. input voltage characteristics (AC/DC output) 4.-(1) Input current vs. input voltage characteristics (AC input) 4.-(2) Input current vs. input voltage characteristics (DC input) 30 25 20 15 10 5 0 Input voltage, V 010 20 30 AC output DC output (5 V type) (12 V type) (24 V type) Input voltage, V AC 0 10 8 6 4 2 100 200 300 Input voltage, V DC 0 10 9 8 7 6 5 4 3 2 1 510 15 20 2530 35 |
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