background image

AQ-C

Characteristics 

[at 20

°

68

°

F

; Input voltage ripple (output module) and output voltage ripple (input module): max. 1%]

Input module

Output module

REFERENCE DATA

Type

Item

AC Input

DC Input

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.

10

9

 

 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/s

2

 {100 G}

5 time each for X,Y,Z axis

Functional

Min. 980 m/s

2

 {100 G}

4 time each for X,Y,Z axis

Ambient temperature

–30

°

C to +80

°

–22

°

F to +176

°

F

Storage temperature

–30

°

C to +100

°

–22

°

F to +212

°

F

Type
Item

AC output

DC output

Conditions

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.

10

9

 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/s

2

  {100 G}

5 time each for X,Y,Z axis

Functional

Min. 980 m/s

2

  {100 G}

4 time each for X,Y,Z axis

Ambient temperature

–30

°

C to +80

°

–22

°

F to +176

°

F

Storage temperature

–30

°

C to +100

°

–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 
(AC/DC output)

2.-(1) Non-repetitive surge current vs. carrying 
time (AC output)

2.-(2) Non-repetitive surge current vs. carrying 
time (DC output)

–30

0

20

40

60

80

0

Ambient temperature, 

°

C

Load current, A

0.2

0.4

0.6

0.8

1.0

1

2

3 4 5

7 10

20 30 40 50 70 100

No. of cycles at 60 Hz

Non-repetitive surge current, A

0

10

20

30

10

20 30 4050 70 100 200 300

1,000

Carrying time, ms

Non-repetitive surge current, A

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)

Tested sample: AQCD3-IM100/240 V AC, 5 pcs.

4.-(2) Input current vs. input voltage 
characteristics (DC input)

Tested sample: AQCD3-IM4/24 V DC

30

25

20

15

10

5

0

Input voltage, V

Input current, mA

0

10

20

30

AC output
DC output

(5 V type) (12 V type) (24 V type)

Input voltage, V AC

Input current, mA

0

10

8

6

4

2

100

200

300

Input voltage, V DC

Input current, mA

0

10

9

8

7

6

5

4

3

2

1

5

10

15

20

25

30

35

All Rights Reserved © C

OPYRIGHT

 Panasonic Electric Works Co., Ltd.

Summary of Contents for AQ-C Relays

Page 1: ...ic strength 2 500 V between input and output Reverse polarity type available TYPICAL APPLICATIONS Compact AC motor Solenoid Magnet Driver of magnetic valve Copying equipment NC machine Robot Programmable controller Air conditioners Load current Nil 1A AQC Load voltage 1 2 D1 D3 Type Nil IM T ZT Input voltage Output module Input module 5 12 24 V DC 4 24 V DC 100 240 V AC Input polarity Nil R Input ...

Page 2: ...1 V DC Output side Load voltage 4 to 32 V DC 4 to 32 V DC Load current 0 1 to 25 mA 0 1 to 25 mA Max OFF state leakage current Max 5µA Max 5µA When 32 V DC applied Max ON state voltage drop Max 1 6 V Max 1 6 V at max carrying current Type Item AQC1A1 ZT5VDC AQC1A1 T5VDC AQC1A1 ZT12VDC AQC1A1 T12VDC AQC1A1 ZT24VDC AQC1A1 T24VDC AQC1A2 ZT5VDC AQC1A2 T5VDC AQC1A2 ZT12VDC AQC1A2 T12VDC AQC1A2 ZT24VDC ...

Page 3: ...itude 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...

Page 4: ...Tolerance 0 1 004 Schematic 7 62 7 62 10 16 4 1 1 dia 4 043 dia Terminal 1 Terminal 5 Terminal 8 Terminal 16 300 300 400 16 1 Input power source Specified polarities for DC types are shown in the parentheses Load power source 5 8 Load CAD Data 2 Output module AC DC General tolerance 0 5 020 10 2 7 106 0 3 0 3 0 3 0 3 0 3 0 8 0 8 12 5 3 9 2 7 5 5 0 4 0 4 20 10 16 7 62 7 62 AC output Case color Blac...

Page 5: ...ge becomes as follows Example For the inductive load by the 5 mA load current and the 200 V AC load voltage the load impedance becomes 40 kW and Ve V 16 is estimated from the below graph Accordingly the 32 V voltage remains across the both ends of the load when the solid state relay is turned off Characteristics of residual voltage vs load impedance 16 1 Load power source Input power source 5 8 Lo...

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