AQ2A2-C1-T12VDC Panasonic Electric Works, AQ2A2-C1-T12VDC Datasheet - Page 7

RELAY SSR PHASE TYPE 12VDC SIP

AQ2A2-C1-T12VDC

Manufacturer Part Number
AQ2A2-C1-T12VDC
Description
RELAY SSR PHASE TYPE 12VDC SIP
Manufacturer
Panasonic Electric Works
Series
AQ8r
Datasheets

Specifications of AQ2A2-C1-T12VDC

Circuit
SPST-NO (1 Form A)
Output Type
AC
Load Current
2A
Voltage - Input
9.6 ~ 14.4VDC
Voltage - Load
75 ~ 250 V
Mounting Type
Through Hole
Termination Style
PC Pin
Package / Case
4-SIP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
On-state Resistance
-
Other names
255-1175

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AQ2A2-C1-T12VDC
Manufacturer:
Panasonic Electric Works
Quantity:
135
AQ8
NOTE
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.
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 V AC load voltage,
the load impedance becomes 10 k Ω 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.
For Cautions for Use.
SSR
1
2
Load
R
0
Dummy resistor
Load
power
source
All Rights Reserved © COPYRIGHT Panasonic Electric Works Co., Ltd.
• Characteristics of residual voltage vs.
load impedance
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.
Ve
V
(%)
×
100
100
80
60
40
20
Solid
state relay
0
Ve: Residual voltage
V: Power voltage
f = 60Hz
SSR
1
2
10
Load
Ve
20
Max.
45°
V
Solder
Printed board
30
Power factor: 1
(resistor load)
Power factor: 0.4
(induction load)
40
50

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