AQ-C SOLID STATE RELAY
AQ-C
RELAYS
20
.787
10
.394
12.8
.504
FEATURES
• Compact DIL type: 20 mm (length)
×
10 mm (width)
×
12.8 mm (height)
(.787×.394×.504 inch)
• Excellent in noise resistance
• Snubber circuit integrated
• High dielectric strength: 2,500 V between input and output
• Reverse polarity type available
mm
inch
TYPES
1. Input module
Type
AC input
DC input
Output voltage Input voltage
Part No.
4 to 32 V DC 80 to 250 V AC AQCD3-IM 100/240 V AC
4 to 32 V DC
3 to 32 V DC AQCD3-IM 4/24 V DC
2. Output module
Type
Load voltage
75 to 125 V AC
AC output
Zero-cross
75 to 250 V AC
Input voltage
5 V DC
12 V DC
24 V DC
5 V DC
12 V DC
24 V DC
5 V DC
12 V DC
24 V DC
5 V DC
12 V DC
24 V DC
5 V DC
12 V DC
24 V DC
Part No.
AQC1A1 - ZT5 V DC
AQC1A1 - ZT12 V DC
AQC1A1 - ZT24 V DC
AQC1A2 - ZT5 V DC
AQC1A2 - ZT12 V DC
AQC1A2 - ZT24 V DC
AQC1A1 - T 5 V DC
AQC1A1 - T 12 V DC
AQC1A1 - T 24 V DC
AQC1A2 - T 5 V DC
AQC1A2 - T 12 V DC
AQC1A2 - T 24 V DC
AQC1AD1- 5 V DC
AQC1AD1- 12 V DC
AQC1AD1- 24 V DC
75 to 125 V AC
AC output
Non
Zero-cross
75 to 250 V AC
DC output
3 to 60 V DC
ORDERING INFORMATION
AQC
1A
D1
ZT
5VDC
R
Load current
Load voltage
1: 75 to 125 V AC (Output module)
2: 75 to 250 V AC (Output module)
D1: 3 to 60 V DC (Output module)
D3: 4 to 32 V DC (Input module)
Type
Nil: DC output
IM: Input module
T: AC output Non Zero-cross
ZT: AC output Zero-cross
Input voltage
Output module:
5, 12, 24 V DC
Input module:
4/24 V DC,
100/240 V AC
Input polarity
Nil: Standard polarity
R: Reverse polarity
(Only for output
module)
Nil: Input module
1A: Output module
Standard packing: Carton: 50 pcs.; Case: 500 pcs.
SPECIFICATIONS
Rating
[at 20°C
68°F;
Input voltage ripple (output module) and output voltage ripple (input module): max. 1%]
1. Input module
Type
Item
Input voltage
Input current
Pick-up voltage
Drop-out voltage
Load voltage
Load current
Max. "OFF-state" leakage current
Max. "ON-state" voltage drop
AC input
AQCD3-M 100/240 V AC
80 to 250 V AC
Max. 5 mA
Max. 80 V AC
Min. 10 V AC
4 to 32 V DC
0.1 to 25 mA
Max. 5µA
Max. 1.6 V
DC input
AQCD3-IM 4/24 V DC
3 to 32 V DC
Max. 5 mA
Max. 3 V DC
Min. 1 V DC
4 to 32 V DC
0.1 to 25 mA
Max. 5µA
Max. 1.6 V
Remarks
Input side
Output side
When 32 V DC applied
at max. carrying current
43
AQ-C
2. Output module
(1) AC output type
AQC1A1- AQC1A1- AQC1A1- AQC1A2- AQC1A2- AQC1A2-
Type ZT5VDC ZT12VDC ZT24VDC ZT5VDC ZT12VDC ZT24VDC
Remarks
AQC1A1- AQC1A1- AQC1A1- AQC1A2- AQC1A2- AQC1A2-
Item
T5VDC
T12VDC T24VDC T5VDC
T12VDC T24VDC
(5 V type) (12 V type) (24 V type) (5 V type) (12 V type) (24 V type)
Input voltage
4 to
9.6 to
21.6 to
4 to
9.6 to
21.6 to
Input
6 V DC
14.4 V DC 26.4 V DC 6 V DC
14.4 V DC 26.4 V DC
See "Data 3".
side
Input impedance (Approx.)
0.3 k
Ω
0.8 k
Ω
1.8 k
Ω
0.3 k
Ω
0.8 k
Ω
1.8 k
Ω
Drop-out voltage, min
0.5 V
1.2 V
2.4 V
0.5 V
1.2 V
2.4 V
Max. load current
1A
See "Data 1". Ta = Min. 40°C
Load voltage
75 to 125 V AC
75 to 250 V AC
Non-repetitive surge current
20 A
See "Data 2". In one cycle at 60 Hz
Load
side
Max. "OFF-state" leakage current
0.6 m A (When 100 V AC applied) 1.1 m A (When 200 V AC applied)
at 60 Hz
Max. "ON-state" voltage drop
1.6 A
at max. carrying current
Min. load current
10 mA
20 mA
(2) DC output type
Type
Item
Input
side Input impedance (Approx.)
Drop-out voltage, min
Max. load current
Load voltage
Load Non-repetitive surge current
side
Max. "OFF-state" leakage current
Max. "ON-state" voltage drop
Min. load current
Input voltage
AQC1AD1-5VDC
(5 V type)
4 to 6 V DC
430
Ω
AQC1AD1-12VDC
AQC1AD1-24VDC
Remarks
(12 V type)
(24 V type)
9.6 to 14.4 V DC
21.6 to 26.4 V DC
1.2 k
Ω
2.8 k
Ω
0.8 V
1A
3 to 60 V DC
1.5 A
0.1 m A (When 60 V DC applied)
1.6 V
1 mA
See "Data 3".
See "Data 1". Ta = Min. 40°C
See "Data 2". at 1s
at max. carrying current
Characteristics
[at 20°C
68°F;
Input voltage ripple (output module) and output voltage ripple (input module): max. 1%]
Input module
Type
Item
Operate time, max.
Release time, max
Insulation resistance, min.
Breakdown voltage
Functional
Vibration
resistance
Destructive
Functional
Shock
resistance
Destructive
Ambient temperature
Storage temperature
AC Input
20 ms
20 ms
DC Input
0.5 ms
0.5 ms
10
9
Ω
between input and output
2,500 Vrms between input and output
10 to 55Hz double amplitude of 3 mm
10 to 55Hz double amplitude of 3 mm
Min. 980 m/s
2
{100 G}
Min. 980 m/s
2
{100 G}
–30°C to +80°C
–22°F to +176°F
–30°C to +100°C
–22°F to +212°F
Remarks
Input voltage: 24 V DC or 100V AC
Output voltage: 24 V DC
Output current: 25mA
at 500 V DC
For 1 minute
10 minutes for X,Y, Z, axis
1 hour for X,Y, Z, axis
4 time each for X,Y,Z axis
5 time each for X,Y,Z axis
Output module
Type
Item
Operate time, max.
Release time, max.
Insulation resistance, min.
Breakdown voltage
Functional
Vibration
resistance
Destructive
Functional
Shock
resistance
Destructive
Ambient temperature
Storage temperature
Operational method
Non zero-cross
AC output
Zero-cross
(1/2 cycle of voltage sine
1 ms
wave)+1ms
(1/2 cycle of voltage sine wave)+1ms
10
9
Ω
between input and output
2,500 Vrms between input and output
10 to 55Hz double amplitude of 3 mm
10 to 55Hz double amplitude of 3 mm
Min. 980 m/s
2
{100 G}
Min. 980 m/s
2
{100 G}
–30°C to +80°C
–22°F to +176°F
–30°C to +100°C
–22°F to +212°F
Random Turn-ON, Zero-cross Turn-OFF
Zero-cross (Turn-ON and Turn-OFF)
DC output
0.5 ms
1 ms
at 500 V DC
For 1 minute
10 minutes for X,Y, Z, axis
1 hour for X,Y, Z, axis
4 time each for X,Y,Z axis
5 time each for X,Y,Z axis
Conditions
—
44
AQ-C
DIMENSIONS
1. Input module (AC, DC)
10
.394
2.7
.106
2.7
.106
5.5
.217
0.3
.012
0.4
.016
12.5
.492
3.9
.154
0.8
.031
20
.787
0.3
.012
0.3
.012
0.4
.016
10.16
.400
Terminal 1
7.62
.300
Terminal 16
Terminal 5
7.62
.300
Terminal 8
4-1.1 dia.
4-.043 dia.
mm
inch
PC board pattern (Copper-side view)
0.3
.012
0.3
.012
0.8
.031
Tolerance:
±0.1
±.004
Schematic
(+)
16
AC input
5
… Output: DC –
8
… Output: DC +
r
… Input: AC
1
… Input: AC
Case color: Yellow
DC input
5
… Output: DC –
8
… Output: DC +
r
… Input: DC +
1
… Input: DC –
Case color: White
10.16
.400
7.62
.300
1
r
7.62
.300
5 8
8
Load
+ –
5
1
Load power
source
(–)
General tolerance:
±0.5
±.020
Input power
source
Specified polarities for
DC types are shown in
the parentheses.
2. Output module (AC, DC)
10
.394
2.7
.106
2.7
.106
5.5
.217
0.3
.012
0.4
.016
12.5
.492
3.9
.154
0.8
.031
20
.787
0.3
.012
0.3
.012
0.4
.016
PC board pattern (Copper-side view)
10.16
.400
Terminal 1
7.62
.300
Terminal 16
Terminal 5
7.62
.300
Terminal 8
4-1.1 dia.
4-.043 dia.
Tolerance:
±0.1
±.004
0.3
.012
0.3
.012
0.8
.031
Schematic
16
1
8
Load
5
+
–
Input power
source
AC output
5
… Output: AC
8
… Output: AC
r
… Input: DC +
1
… Input: DC –
Case color: Black
DC output
5
… Output: DC –
8
… Output: DC +
r
… Input: DC +
1
… Input: DC –
Case color: Red
10.16
.400
7.62
.300
1
r
7.62
.300
5 8
General tolerance:
±0.5
±.020
(+)
(–)
Load power source
Specified polarities for
DC types are shown in
the parentheses.
ACCESSORY
PCIA-PS
REFERENCE DATA
1. Load current vs. ambient temperature
2.-(1) Non-repetitive surge current vs. carrying
time (AC output)
Non-repetitive surge current, A
2.-(2) Non-repetitive surge current vs. carrying
time (DC output)
Non-repetitive surge current, A
1.0
0.8
5
4
3
2
1
Load current, A
30
0.6
0.4
20
10
0.2
0
–30
0
20
40
60
80
Ambient temperature,
°C
0
1
2
3 4 5 7 10
20 30 40 50 70 100
No. of cycles at 60 Hz
0
10
20 30 4050 70 100 200 300
Carrying time, ms
1,000
45
AQ-C
3. Input current vs. input voltage characteristics
(AC/DC output)
30
25
Input current, mA
20
15
10
(5 V type) (12 V type) (24 V type)
5
0
2
AC output
DC output
Input current, mA
8
Input current, mA
100
200
Input voltage, V AC
300
4.-(1) Input current vs. input voltage
characteristics (AC input)
Tested sample: AQCD3-IM100/240 V AC, 5 pcs.
10
4.-(2) Input current vs. input voltage
characteristics (DC input)
Tested sample: AQCD3-IM4/24 V DC
10
9
8
7
6
5
4
3
2
1
6
4
0
10
20
Input voltage, V
30
0
0
5
10
15
20
25
30
Input voltage, V DC
35
5. Load current vs. ambient temperature
characteristics for adjacent mounting
1.0
0.8
=20.32 mm
.800 inch
=12.7 mm
.500 inch
Load current, A
0.6
0.4
0.2
=Adjacent mounting pitch
0
–30
0
20
40
60
80
Ambient temperature,
°C
NOTE
When used for the load less than rated
In the case of the load current less than
rated, malfunction may result from the re-
sidual voltage across the both ends of the
load even if the solid state relay is turned
off.
Use a dummy resistor as a countermea-
sure.
The total of the current through the resis-
tor and the load current must exceed the
min. rated load current.
R
0
(Dummy resistor)
In case the dummy resistor is not used,
keep in mind that the residual voltage be-
comes 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
100
f = 60 Hz
Ve: Residual voltage
V: Power voltage
1
Load
Ve
V
(+)
Load
8
Load power source
(–)
5
80
1
16
60
Ve
×
100,%
V
40
SSR
2
Input power source
– +
20
Power factor: 1
(resistive load)
Power factor: 0.4
(inductive load)
60
80
100
0
20
40
Load impedance, kΩ
For Cautions for Use, see Page 24 to 27.
46