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SIL type SSR with
9mm thickness
controls up to 3 A
AQ8 RELAYS
FEATURES
RoHS compliant
1. Slim with 9 mm .354 inch thickness
The thin type (45 mm long × 24 mm high
× 9 mm wide) (1.772×.945×.354 inch)
permits high density mounting.
2. Excellent in noise resistance
Since the input and output are insulated
by the phototriac coupler, the noise on
the output side is not fed back to the input
side.
3. Snubber circuit integrated
The snubber circuit is integrated to
prevent malfunction caused by the rapid
rise of the voltage on the output side,
such as inductive load and noise.
4. Zero-cross and random types are
available.
The zero-cross type generates minimal
noise by suppressing occurrence of radio
frequency interference (RFI) and electromagnetic interference (EMI).
The random type features a short
operation time which permits phase
control.
5. High dielectric strength: 3,000 Vrms
(between input and output)
6. Two kinds of terminals distance are
available. (5.08 mm and 7.62 mm) (.200
and .300 inch)
7. High reliability, long life and
maintenance-free
TYPICAL APPLICATIONS
1. Most suitable as drivers for small
size AC motors, solenoids, solenoid
valves and so on.
2. Copying equipment
3. Air conditioners
4. Industrial equipment such as NC
machines, sequencers, robots, etc.
ORDERING INFORMATION
AQ
Load current
2A
3A
Load voltage
2: 75 to 250 Vrms
Input terminal distance
C1: 5.08 mm .200 inch
C2: 7.62 mm .300 inch
Type
ZT: Zero-cross type
T: Random type
Control voltage
5V DC: 4 to 6 V DC
12V DC: 9.6 to 14.4 V DC
24V DC: 21.6 to 26.4 V DC
–1–
ASCTB213E 201809-T
AQ8
TYPES
Types
Load current
Load voltage
2A
75 to 250 Vrms
3A
75 to 250 Vrms
2A
75 to 250 Vrms
3A
75 to 250 Vrms
Zero-cross type
Random type
Control voltage
4 to 6 V DC
9.6 to 14.4 V DC
21.6 to 26.4 V DC
4 to 6 V DC
9.6 to 14.4 V DC
21.6 to 26.4 V DC
4 to 6 V DC
9.6 to 14.4 V DC
21.6 to 26.4 V DC
4 to 6 V DC
9.6 to 14.4 V DC
21.6 to 26.4 V DC
Input terminals distance
(5.08 mm .200 inch type)
Part No.
AQ2A2-C1-ZT5VDC
AQ2A2-C1-ZT12VDC
AQ2A2-C1-ZT24VDC
AQ3A2-C1-ZT5VDC
AQ3A2-C1-ZT12VDC
AQ3A2-C1-ZT24VDC
AQ2A2-C1-T5VDC
AQ2A2-C1-T12VDC
AQ2A2-C1-T24VDC
AQ3A2-C1-T5VDC
AQ3A2-C1-T12VDC
AQ3A2-C1-T24VDC
Input terminals distance
(7.62 mm .300 inch type)
Part No.
AQ2A2-C2-ZT5VDC
AQ2A2-C2-ZT12VDC
AQ2A2-C2-ZT24VDC
AQ3A2-C2-ZT5VDC
AQ3A2-C2-ZT12VDC
AQ3A2-C2-ZT24VDC
AQ2A2-C2-T5VDC
AQ2A2-C2-T12VDC
AQ2A2-C2-T24VDC
AQ3A2-C2-T5VDC
AQ3A2-C2-T12VDC
AQ3A2-C2-T24VDC
Standard packing: Carton 20 pcs., Case 200 pcs.
RATING
1. Rating (Ambient temperature: 20°C, 68°F; Voltage ripple on the input side: 1% or less)
1) Zero-cross type
• 2 A type
Part No.
Item
Rated voltage
Control voltage
Input impedance
Drop-out voltage
Input side
AQ2A2-C1-ZT5VDC
AQ2A2-C2-ZT5VDC
5 V DC
4 to 6 V DC
Approx. 0.18 kΩ
Min. 0.5 V
Max. load current
AQ2A2-C1-ZT24VDC
AQ2A2-C2-ZT24VDC
24 V DC
21.6 to 26.4 V DC
Approx. 1.4 kΩ
Min. 2.4 V
Remarks
*1
At ambient temperature of 30°C or
less
2 A*2
Load voltage
Frequency
Repetitive peak OFF voltage
Non-repetitive surge current
Max. “OFF-state” leakage
current
Max. “ON-state” voltage drop
Min. load current
OFF state dV/dt
Load side
AQ2A2-C1-ZT12VDC
AQ2A2-C2-ZT12VDC
12 V DC
9.6 to 14.4 V DC
Approx. 0.55 kΩ
Min. 1.2 V
75 to 250 Vrms
45 to 65 Hz
600 V
30 A*3
In one cycle at 60 Hz
5 mA (200 Vrms applied)
at 60 Hz
1.6 V
50 mA*4
50 V/μs
at max. carrying current
At ambient temperature of 80°C
• 3 A type
Part No.
Item
Input side
Rated voltage
Control voltage
Input impedance
Drop-out voltage
Max. load current
Load side
Notes: *1.
*2.
*3.
*4.
Load voltage
Frequency
Repetitive peak OFF voltage
Non-repetitive surge current
Max. “OFF-state” leakage
current
Max. “ON-state” voltage drop
Min. load current
OFF state dV/dt
AQ3A2-C1-ZT5VDC
AQ3A2-C2-ZT5VDC
5 V DC
4 to 6V DC
Approx. 0.18 kΩ
Min. 0.5 V
AQ3A2-C1-ZT12VDC
AQ3A2-C2-ZT12VDC
12 V DC
9.6 to 14.4V DC
Approx. 0.55 kΩ
Min. 1.2 V
3 A*2
75 to 250 Vrms
45 to 65 Hz
600 V
80 A*3
5 mA (200 Vrms applied)
1.6 V
50 mA*4
50 V/μs
AQ3A2-C1-ZT24VDC
AQ3A2-C2-ZT24VDC
24 V DC
21.6 to 26.4V DC
Approx. 1.4 kΩ
Min. 2.4 V
Remarks
*1
At ambient temperature of 30°C or
less
In one cycle at 60 Hz
at 60 Hz
at max. carrying current
At ambient temperature of 80°C
Refer to REFERENCE DATA “3. Characteristics of input current vs. input voltage”.
Refer to REFERENCE DATA “1. Characteristics of load current vs. ambient temperature”.
Refer to REFERENCE DATA “2. Characteristics of non-repetitive surge current vs. carrying time”.
When the load current is less than the rated minimum load current, please refer to “Cautions for Use of Solid State Relays”.
–2–
ASCTB213E 201809-T
AQ8
2) Random type
• 2 A type
Part No.
Item
Rated voltage
Control voltage
Input impedance
Drop-out voltage
Input side
AQ2A2-C1-T5VDC
AQ2A2-C2-T5VDC
5 V DC
4 to 6 V DC
Approx. 0.3 kΩ
Min. 0.5 V
AQ2A2-C1-T12VDC
AQ2A2-C2-T12VDC
12 V DC
9.6 to 14.4 V DC
Approx. 0.8 kΩ
Min. 1.2 V
Max. load current
Remarks
*1
At ambient temperature of 30°C or
less
2 A*2
Load voltage
Frequency
Repetitive peak OFF voltage
Non-repetitive surge current
Max. “OFF-state” leakage
current
Max. “ON-state” voltage drop
Min. load current
OFF state dV/dt
Load side
AQ2A2-C1-T24VDC
AQ2A2-C2-T24VDC
24 V DC
21.6 to 26.4 V DC
Approx. 1.8 kΩ
Min. 2.4 V
75 to 250 Vrms
45 to 65 Hz
600 V
30 A*3
In one cycle at 60 Hz
5 mA (200 Vrms applied)
at 60 Hz
1.6 V
50 mA*4
50 V/μs
at max. carrying current
At ambient temperature of 80°C
• 3 A type
Part No.
Item
Input side
Rated voltage
Control voltage
Input impedance
Drop-out voltage
AQ3A2-C1-T5VDC
AQ3A2-C2-T5VDC
5 V DC
4 to 6 V DC
Approx. 0.3 kΩ
Min. 0.5 V
AQ3A2-C1-T12VDC
AQ3A2-C2-T12VDC
12 V DC
9.6 to 14.4 V DC
Approx. 0.8 kΩ
Min. 1.2 V
Max. load current
Load side
Notes: *1.
*2.
*3.
*4.
AQ3A2-C1-T24VDC
AQ3A2-C2-T24VDC
24 V DC
21.6 to 26.4 V DC
Approx. 1.8 kΩ
Min. 2.4 V
*1
At ambient temperature of 30°C or
less
3 A*2
Load voltage
Frequency
Repetitive peak OFF voltage
Non-repetitive surge current
Max. “OFF-state” leakage
current
Max. “ON-state” voltage drop
Min. load current
OFF state dV/dt
Remarks
75 to 250 Vrms
45 to 65 Hz
600 V
80 A*3
In one cycle at 60 Hz
5 mA (200 Vrms applied)
at 60 Hz
1.6 V
50 mA*4
50 V/μs
at max. carrying current
At ambient temperature of 80°C
Refer to REFERENCE DATA “3. Characteristics of input current vs. input voltage”.
Refer to REFERENCE DATA “1. Characteristics of load current vs. ambient temperature”.
Refer to REFERENCE DATA “2. characteristics of non-repetitive surge current vs. carrying time”.
When the load current is less than the rated minimum load current, please refer to “Cautions for Use of Solid State Relays”.
2. Characteristics (Ambient temperature: 20°C 68°F; Input voltage ripple: 1% or less)
Type
Item
Operate time, max.
Release time, max.
Insulation resistance, min.
Breakdown voltage
Destructive
Vibration resistance
Functional
Destructive
Shock resistance
Functional
Ambient temperature
Storage temperature
Operational method
Zero-cross type
Random type
1/2 cycle of voltage sine wave +1 ms
1 ms
1/2 cycle of voltage sine wave +1 ms
109 Ω between input and output
3,000 Vrms between input and output
10 to 55 Hz at double amplitude of 3 mm
10 to 55 Hz at double amplitude of 3 mm
Min. 980 m/s2 {100 G}
Min. 980 m/s2 {100 G}
–30 to +80°C –22 to +176°F
–30 to +100°C –22 to +212°F
Zero-cross (Turn ON and Turn OFF)
Random turn ON, zero-cross turn OFF
–3–
Remarks
at 500 V DC
For 1 minute
1 hour for X, Y, Z axis
10 min. for X, Y, Z axis
5 times each for X, Y, Z axis
4 times each for X, Y, Z axis
Non-condensing at low temperatures
Non-condensing at low temperatures
ASCTB213E 201809-T
AQ8
1. Characteristics of load current vs. ambient
temperature
2.-(1) Characteristics of non-repetitive surge
current vs. carrying time*
2.-(2) Characteristics of non-repetitive surge
current vs. carrying time*
Use load current within range specified in the figure
below.
(2 A type)
(3 A type)
Non-repetitive surge current, A
Non-repetitive surge current, A
REFERENCE DATA
3.0
Load current, A
3 A type
2.5
2 A type
2.0
1.5
1.0
100
80
60
40
20
0.5
0
-30
0
20
40
60
80
Ambient temperature, °C
0
100
100
80
60
40
20
1
5
10
50
No. of cycles at 60 Hz
0
100
1
5
10
50
No. of cycles at 60 Hz
100
Note: * The above chart shows non-repetitive maximum rating. If a surge current is applied repeatedly, please keep it approximately 50% or less than the values shown in
the above graph.
3. Characteristics of input current vs. input
voltage
4.-(1) Characteristics of load current vs.
ambient temperature for adjacent mounting
4.-(2) Characteristics of load current vs.
ambient temperature for adjacent mounting
—zero-cross type
---Random type
(2 A type)
Conditions: Natural cooling
(3 A type)
Conditions: Natural cooling
30
2.5
Load current, A
Input current, mA
20
15
10
=20.32 mm
.800 inch
=12.7 mm
.500 inch
=9.0 mm
.354 inch
2.0
(12 V type)
(24 V type)
1.5
1.0
Load current, A
3.0
25
2.0
1.0
(5 V type)
0.5
5
=Adjacent mounting pitch
0
=20.32 mm
.800 inch
=12.7 mm
.500 inch
=9.0 mm
.354 inch
0
10
0
-30
20
30
Input voltage, V
0
=Adjacent mounting pitch
20
40
60
80
Ambient temperature, °C
The CAD data of the products with a
DIMENSIONS (mm inch)
(Common for zero-cross and random types)
1. Input terminals distance 5.08 mm .200 inch
1) 2 A type
External dimensions
100
0
20
40
60
80
Ambient temperature, °C
100
mark can be downloaded from: https://industrial.panasonic.com/ac/e/
Mounting hole location (Bottom view)
9 max.
.354
45 max.
1.772
0
-30
27.94
1.100
Terminal 4
3
Copper foil
2
1
4-1.2 dia.
4-.047 dia.
24 max.
.945
– 4INPUT3 +
2.54× 2
.100× 2
2.54× 5
.100× 5
2.54× 4
.100× 4
Tolerance: ±0.1 ±.004
2 LOAD 1
8 min.
.315
2.5
.098
5.08
.200
4
12.7
.500
3
5.08
.200
10.16
.400
2
4-0.8 dia.
4-.031
1
General tolerance: ±0.5 ±.020
–4–
ASCTB213E 201809-T
AQ8
2) 3 A type
External dimensions
Mounting hole location (Bottom view)
9 max.
.354
43 max.
1.693
27.94
1.100
Terminal 4
3
Copper foil
2
1
4-1.2 dia.
4-.047 dia.
2.54× 2
.100× 2
32 max.
1.259
– 4INPUT3 +
2.54× 5
.100× 5
2.54×4
.100×4
Tolerance: ±0.1 ±.004
2 LOAD 1
8 min.
.315
2.5
.098
5.08
.200
4
5.08
.200
10.16
.400
12.7
.500
3
4-0.8 dia.
4-.031
2
1
General tolerance: ±0.5 ±.020
2. Input terminals distance 7.62 mm .300 inch
1) 2 A type
External dimensions
Mounting hole location (Bottom view)
9 max.
.354
45 max.
1.772
30.48
1.200
Terminal 4
3
Copper foil
2
1
4-1.2 dia.
4-.047 dia.
24 max.
.945
– 4INPUT 3+
2.54× 3
.100× 3
2.54× 5
.100× 5
2.54×4
.100×4
Tolerance: ±0.1 ±.004
2 LOAD 1
8 min.
.315
7.62
.300
2.5
.098
4
5.08
.200
10.16
.400
12.7
.500
3
4-0.8 dia.
4-.031
1
2
General tolerance: ±0.5 ±.020
2) 3 A type
External dimensions
Mounting hole location (Bottom view)
9 max.
.354
43 max.
1.693
30.48
1.200
Terminal 4
3
Copper foil
2
1
4-1.2 dia.
4-.047 dia.
2.54× 3
.100× 3
32 max.
1.259
– 4 INPUT3+
2.54× 5
.100× 5
2.54×4
.100×4
Tolerance: ±0.1 ±.004
2 LOAD 1
8 min.
.315
2.5
.098
7.62
.300
4
3
12.7
.500
5.08
.200
10.16
.400
2
4-0.8 dia.
4-.031
1
General tolerance: ±0.5 ±.020
–5–
ASCTB213E 201809-T
AQ8
SCHEMATIC AND WIRING DIAGRAMS
Output
configuration
Schematic
Load
Wiring diagram
+
3
1
Input circuit
4
ZC
−
2
INPUT
4
3
Zero-cross circuit
1 Form A
LOAD
2
1
AC
+
3
1
Load
Operation
power
Input circuit
4
Load power
supply
2
−
NOTES
1. When used for the load less than
rated
In case of the load current less than
rated, malfunction may result from the
residual voltage across the both ends of
the load even if the solid state relay is
turned off. Use a dummy resistor as a
countermeasure.
The total of the current through the
resistor and the load current must exceed
the min. rated load current.
R0 Dummy resistor
SSR
1
• Characteristics of residual voltage vs.
load impedance
100
80
f=60 Hz
Ve: Residual voltage
V: Power voltage
1
60
Ve
× 100
V
(%)
40
Load
SSR
2
V
Ve
Power factor: 1
(resistor load)
Power factor: 0.4
(induction load)
20
Load
Load
power
source
2
In case the dummy resistor is not used,
keep in mind that the residual voltage
becomes as follows:
Example:
For the inductive load by the 20 mA load
current and the 200 Vrms load voltage,
the load impedance becomes 10 kΩ and
Ve/V = 14% is estimated from the right
above graph. Accordingly, the 28 V
voltage remains across the both ends of
the load when the solid state relay is
turned off.
0
10
30
20
40
50
Load impedance (kΩ)
2. when the terminal is bent
Care shall be taken neither to apply
mechanical stresses to the mold area of
the solid state relay nor to bend the
terminal 45 degrees or more.
Max.
45°
Solid
state relay
Printed circuit board
Solder
–6–
ASCTB213E 201809-T
AQ8
Recommended Temperature Controllers
Our temperature controller is recommended for use with our Solid State Relays.
48 mm
1.890 inch
56 mm
2.205 inch
Features
• Space saving requiring only a depth of 65 mm
• Data collection possible through a PLC using RS485 communication
• Tool port is standard for easy data setting
• Inverted LCD + backlight for good legibility with large characters
• Excellent operability and rich optional control functions
Substitute part numbers
48 mm
1.890 inch
Power supply
100 to 240 Vrms
Control output
Non-contact voltage output
Part No.
AKT4H112100
* For detailed product information about temperature controllers, please refer to our website:
https://industrial.panasonic.com/ac/e/fasys/component/temperature_controller/
–7–
ASCTB213E 201809-T
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