参数资料
型号: ALQ305
厂商: Panasonic Electric Works
文件页数: 2/5页
文件大小: 0K
描述: RELAY GEN PURPOSE SPST 10A 5V
标准包装: 100
系列: ALQ
继电器类型: 通用
线圈类型: 无锁存
线圈电流: 40mA
线圈电压: 5VDC
触点形式: SPST-NO(1 A 型)
触点额定值(电流): 10A
切换电压: 250VAC - 最小值
关闭电压(最大): 3.75 VDC
关闭电压(最小): 0.25 VDC
特点: 绝缘 - B 类
安装类型: 通孔
端接类型: PC 引脚
包装: 管件
触点材料: 银镍(AgNi)
操作时间: 20ms
释放时间: 20ms
线圈功率: 200 mW
线圈电阻: 125 欧姆
工作温度: -40°C ~ 85°C
其它名称: 255-3559
LQ (ALQ)
RATING
1. Coil data
Contact
arrangement
Nominal coil
voltage
Pick-up voltage
(at 20 ° C 68 ° F )
Drop-out voltage
(at 20 ° C 68 ° F )
Nominal operating
current
[ ± 10%] (at 20 ° C 68 ° F )
Coil resistance
[ ± 10%] (at 20 ° C 68 ° F )
Nominal operating
power
(at 20 ° C 68 ° F )
Max. applied voltage
5V DC
40.0mA
125
?
1 Form A
6V DC
9V DC
12V DC
18V DC
75%V or less of
nominal voltage
(Initial)
5%V or more of
nominal voltage
(Initial)
33.3mA
22.2mA
16.7mA
11.1mA
180
405
720
1,620
?
?
?
?
200mW
180% of nominal voltage
(at 20 ° C 68 ° F )
130% of nominal voltage
(at 85 ° C 185 ° F )* 4
24V DC
8.3mA
2,880
?
5V DC
80.0mA
62.5 ?
1 Form C
6V DC
9V DC
12V DC
18V DC
75%V or less of
nominal voltage
(Initial)
5%V or more of
nominal voltage
(Initial)
66.7mA
44.4mA
33.3mA
22.2mA
90 ?
202.5 ?
360 ?
810 ?
400mW
150% of nominal voltage
(at 20 ° C 68 ° F )
110% of nominal voltage
(at 85 ° C 185 ° F )* 4
24V DC
2. Speci?cations
Characteristics
Arrangement
Item
16.7mA
1,440 ?
Speci?cations
1 Form A 1 Form C
Contact
Contact resistance (Initial)
Contact material
Max. 100m ? (By voltage drop 6 V DC 1 A)
AgNi type
N.O. side:
Nominal switching capacity (resistive load)
5 A 30 V DC, 10 A 125 V AC, 5 A 250 V AC
10 A 125 V AC, 5 A 250 V AC, 5 A 30 V DC
N.C. side:
3 A 125 V AC, 2 A 250 V AC, 1 A 30 V DC
Rating
Max. switching power (resistive load)
150 W, 1,250 VA
N.O. side: 150 W, 1,250 VA
N.C. side: 30 W, 500 VA
Max. switching voltage
Max. switching current
Nominal operating power
Min. switching capacity (reference value)* 1
Insulation resistance (Initial)
250 V AC
N.O.: 10 A (125V AC), N.C.: 3 A (125V AC)
200 mW 400 mW
100 mA, 5 V DC
Min. 1,000 M ? (at 500 V DC) Measurement at same location as “Breakdown voltage” section.
Breakdown voltage
(Initial)
Between open contacts
Between contact and coil
1,000 Vrms for 1 min. 750 Vrms for 1 min.
(Detection current: 10 mA) (Detection current: 10 mA)
4,000 Vrms for 1 min. (Detection current: 10 mA)
Electrical
characteristics
Temperature rise (coil)* 4
Surge breakdown voltage* 2
(Between contact and coil)
Operate time (at nominal voltage) (at 20 ° C 68 ° F )
Release time (at nominal voltage) (at 20 ° C 68 ° F )
Max. 45 ° C 113 ° F (By resistive method, nominal coil voltage applied to the coil; contact carrying
current: 10A, at 85 ° C 185 ° F )
8,000 V (Initial)
Max. 20 ms (excluding contact bounce time.) (Initial)
Max. 20 ms (excluding contact bounce time, with diode) (Initial)
Shock resistance
Functional
1 Form A: 294 m/s 2 , 1 Form C: 196 m/s 2
(Half-wave pulse of sine wave: 11 ms; detection time: 10 μ s.)
Mechanical
characteristics
Vibration resistance
Destructive
Functional
Destructive
980 m/s 2 (Half-wave pulse of sine wave: 6 ms.)
10 to 55 Hz at double amplitude of 1.6 mm (Detection time: 10 μ s.)
10 to 55 Hz at double amplitude of 2.0 mm
Expected life
Conditions
Mechanical
Conditions for operation, transport and storage* 3
Min. 10 7 (at 180 times/min.)
Ambient temperature: –40 ° C to +85 ° C –40 ° F to +185 ° F
Humidity: 5 to 85% R.H. (Not freezing and condensing at low temperature)
Unit weight
Max. operating speed
20 times/min. (at nominal switching capacity)
Approx. 7 g .25 oz
* Speci?cations will vary with foreign standards certi?cation ratings.
Notes: *1. This value can change due to the switching frequency, environmental conditions, and desired reliability level, therefore it is recommended to check this with the
actual load.
*2. Wave is standard shock voltage of ± 1.2 × 50 μ s according to JEC-212-1981
*3. The upper limit of the ambient temperature is the maximum temperature that can satisfy the coil temperature rise value. Refer to Usage, transport and storage
conditions in NOTES.
*4. When using relays in a high ambient temperature, consider the pick-up voltage rise due to the high temperature (a rise of approx. 0.4% V for each 1 ° C 33.8 ° F with
20 ° C 68 ° F as a reference) and use a coil impressed voltage that is within the maximum applied voltage range.
Panasonic Corporation
Automation Controls Business Unit
industrial.panasonic.com/ac/e/
ASCTB92E 201206-T
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