HY1-24V [PANASONIC]

Non-polarized 1 Form C relay that realizes nominal operating power of 150 mW; 非偏振光1 C型继电器实现了150 mW的标称工作功率
HY1-24V
型号: HY1-24V
厂家: PANASONIC    PANASONIC
描述:

Non-polarized 1 Form C relay that realizes nominal operating power of 150 mW
非偏振光1 C型继电器实现了150 mW的标称工作功率

继电器
文件: 总4页 (文件大小:79K)
中文:  中文翻译
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Non-polarized 1 Form C  
relay that realizes nominal  
operating power of 150 mW  
HY RELAYS  
FEATURES  
TYPICAL APPLICATIONS  
1. Nominal operating power:  
High sensitivity of 150mW (Single  
side stable type)  
1. Automotive equipment  
Automirrow controller  
Retractable head light controller  
2. Push button device: Dial pulsing  
3. Portable video tape recorders and  
audio devices.  
A nominal operating power of 150 mW  
(minimum operating power of 84 mW)  
has been achieved.  
2. The use of gold-clad twin contacts  
ensures high contact reliability.  
3. Sealed construction  
4. Computer peripherals  
RoHS compliant  
ORDERING INFORMATION  
HY 1  
Contact arrangement  
1: 1 Form C  
Sensitivity  
Nil: High sensitivity 150 mW  
Z: Standard 200 mW  
Nominal coil voltage (DC)  
1.5, 3, 4.5, 5, 6, 9, 12, 24 V  
Note: In case of 5 V drive circuit, it is recommended to use 4.5 V type relay.  
TYPES  
150mW type  
Part No.  
200mW type  
Part No.  
Contact  
Nominal coil  
voltage  
arrangement  
1.5V DC  
3V DC  
HY1-1.5V  
HY1-3V  
HY1Z-1.5V  
HY1Z-3V  
HY1Z-4.5V  
HY1Z-5V  
HY1Z-6V  
HY1Z-9V  
HY1Z-12V  
HY1Z-24V  
4.5V DC  
5V DC  
HY1-4.5V  
HY1-5V  
1 Form C  
6V DC  
HY1-6V  
9V DC  
HY1-9V  
12V DC  
24V DC  
HY1-12V  
HY1-24V  
Standard packing: Tube: 50 pcs.; Case: 2,000 pcs.  
ASCTB212E 201201-T  
Panasonic Corporation Automation Controls Business Unit industrial.panasonic.com/ac/e  
HY  
RATING  
1. Coil data  
Nominal operating  
current  
[ 10%] (at 20°C 68°F)  
Max. applied  
voltage  
(at 70°C 158°F)  
Contact  
arrangement  
Nominal coil  
voltage  
Pick-up voltage  
(at 20°C 68°F)  
Drop-out voltage  
(at 20°C 68°F)  
Coil resistance  
[ 10%] (at 20°C 68°F)  
Nominal operating  
power  
1.5V DC  
3V DC  
100mA  
50mA  
15Ω  
60Ω  
4.5V DC  
5V DC  
33.3mA  
30mA  
135Ω  
166Ω  
240Ω  
540Ω  
960Ω  
3,840Ω  
11.25Ω  
45Ω  
101.2Ω  
125Ω  
180Ω  
405Ω  
720Ω  
2,880Ω  
75%V or less of  
nominal voltage  
(Initial)  
10%V or more of  
nominal voltage  
(Initial)  
140%V of  
nominal voltage  
150mW  
6V DC  
25mA  
9V DC  
16.7mA  
12.5mA  
6.25mA  
133.3mA  
66.7mA  
44.5mA  
40mA  
12V DC  
24V DC  
1.5V DC  
3V DC  
1 Form C  
4.5V DC  
5V DC  
75%V or less of  
nominal voltage  
(Initial)  
10%V or more of  
nominal voltage  
(Initial)  
120%V of  
nominal voltage  
200mW  
6V DC  
33.3mA  
22.2mA  
16.7mA  
8.3mA  
9V DC  
12V DC  
24V DC  
2. Specifications  
Characteristics  
Item  
Specifications  
Arrangement  
1 Form C  
Contact  
Initial contact resistance, max.  
Contact material  
Max. 100 m(By voltage drop 6 V DC 1A)  
Ag+Au clad  
Nominal switching capacity  
Max. switching power  
Max. switching voltage  
Max. carrying current  
Max. switching current  
1 A 30 V DC (resistive load)  
30 W (DC) (resistive load)  
60 V DC  
Rating  
2 A  
1 A (30 V DC)  
Min. switching capacity (Reference value)*1  
1mA 1 V DC  
Nominal operating power  
150/200mW  
Min. 100M(at 500V DC)  
Insulation resistance (Initial)  
Measurement at same location as “Initial breakdown voltage” section.  
500 Vrms for 1min. (Detection current: 10mA)  
1,000 Vrms for 1min. (Detection current: 10mA)  
Max. 50°C  
Between open contacts  
Between contact and coil  
Breakdown voltage  
(Initial)  
Electrical  
characteristics  
Temperature rise (at 20°C 68°F)  
(By resistive method, nominal coil voltage applied to the coil, nominal switching capacity.)  
Operate time [Set time] (at 20°C 68°F)  
Release time [Reset time] (at 20°C 68°F)  
Max. 5 ms (Nominal coil voltage applied to the coil, excluding contact bounce time.)  
Max. 4 ms (Nominal coil voltage applied to the coil, excluding contact bounce time.)  
(without diode)  
Functional  
Shock resistance  
Min. 98 m/s2 (Half-wave pulse of sine wave: 11 ms; detection time: 10µs.)  
Min. 980 m/s2 (Half-wave pulse of sine wave: 6 ms.)  
10 to 55 Hz at double amplitude of 1 mm (Detection time: 10µs.)  
10 to 55 Hz at double amplitude of 2 mm  
Destructive  
Mechanical  
characteristics  
Functional  
Vibration resistance  
Destructive  
Mechanical  
Electrical  
Min. 107 (at 180 cpm)  
Min. 105 (1 A 30 V DC resistive) (at 20 cpm)  
Expected life  
Ambient temperature: –40°C to +70°C –40°F to +158°F  
Conditions for operation, transport and storage*2  
Max. operating speed (at rated load)  
Humidity: 5 to 85% R.H. (Not freezing and condensing at low temperature)  
Conditions  
Unit weight  
20 cpm  
Approx. 1.8 g .063 oz  
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 Refer to 6. Conditions for operation, transport and storage mentioned in AMBIENT ENVIRONMENT.  
ASCTB212E 201201-T  
Panasonic Corporation Automation Controls Business Unit industrial.panasonic.com/ac/e  
HY  
REFERENCE DATA  
1. Maximum switching power  
2. Life curve  
3. Mechanical life  
Tested sample: HY1Z-12V, 10 pcs.  
Ambient temperature: 20°C to 25°C 68°F to 77°F  
100  
90  
5.0  
300  
200  
30 V DC  
resistive load  
DC resistive  
AC resistive  
80  
2.0  
100  
70  
50  
Pick-up voltage  
1.0  
60  
50  
40  
30  
20  
10  
0
Max.  
Min.  
30  
20  
10  
0.5  
0.2  
Drop-out voltage  
100 V AC  
Max.  
Min.  
resistive load  
0.1  
10  
100  
1,000 2,000  
10  
30  
60 100  
300  
0.2 0.4 0.6 0.8 1.0 1.2 1.4  
Switching current, A  
No. of operations, ×104  
Contact voltage, V  
4. Electrical life  
Change of pick-up and drop-out voltage  
Change of contact resistance  
Tested sample: HY1-12V, 6 pcs.  
Condition: 1 A 30 V DC resistive load, 30 cpm  
100  
90  
Pick-up voltage  
Drop-out voltage  
80  
70  
60  
50  
40  
30  
20  
10  
0
80  
60  
40  
20  
Max.  
Min.  
Max.  
Min.  
Max.  
Min.  
0
10  
20  
10  
20  
No. of operations, × 104  
No. of operations, ×104  
5-(1). Coil temperature rise  
(150 mW high sensitivity type)  
Tested sample: HY1-9V, 5 pcs.  
5-(2). Coil temperature rise  
(200 mW Standard type)  
Tested sample: HY1Z-12V, 5 pcs.  
6. Operate/release time characteristics  
Tested sample: HY1Z-12V, 5 pcs.  
Ambient temperature: 25°C 77°F  
Ambient temperature:24°C 75°F  
Ambient temperature: 23°C 74°F  
3
100  
90  
100  
90  
80  
80  
1A  
Operate time  
2
70  
70  
60  
50  
40  
30  
20  
10  
0
1A  
60  
0A  
50  
0A  
Max.  
x
40  
30  
20  
10  
0
Min.  
1
0
Release time  
Max.  
x
Min.  
80  
100 120  
140  
160  
180  
80  
100  
120  
80  
100 120  
140  
160  
180  
Coil applied voltage, %V  
Coil applied voltage, %V  
Coil applied voltage, %V  
7. Distribution of pick-up and drop-out voltages  
8. Distribution of contact resistance  
9. Malfunction shock  
Tested sample: HY1-12V, 50 pcs.  
Ambient temperature: 23°C 74°F  
Tested sample: HY1-12V, 50 pcs.  
N.C. side N.O. side  
Tested sample: HY1Z-12V, 6 pcs.  
30  
30  
Deenergized condition  
Energized condition  
XX’  
N.C. side  
N.O. side  
Z
Y
980m/s2  
Z’  
Y
Drop-out voltage  
25  
25  
20  
15  
10  
5
Y’  
980m/s2  
X
Z
20  
980m/s2  
Pick-up voltage  
15  
980m/s2  
Z’  
980m/s2  
X’  
10  
5
980m/s2  
Y’  
0
0
30  
40  
Contact resistance mΩ  
10 20 30 40 50 60 70 80 90 100  
Pick-up/drop-out voltage, V  
ASCTB212E 201201-T  
Panasonic Corporation Automation Controls Business Unit industrial.panasonic.com/ac/e  
HY  
The CAD data of the products with a CAD Data mark can be downloaded from: http://panasonic-electric-works.net/ac  
DIMENSIONS (mm inch)  
CAD Data  
External dimensions  
PC board pattern (Bottom view)  
7.4  
.291  
12  
.462  
6-1 dia.  
6-.039 dia.  
2.54  
.100  
7.62  
.300  
10.1  
.398  
5.08  
.200  
2.54  
.100  
3.5  
0.5  
.020  
.138  
0.4 dia.  
.016 dia.  
0.25  
.010  
2.54  
.100  
0.5  
.020  
(0.82)  
(.032)  
5.08  
.200  
0.25  
Tolerance: 0.1 .004  
.010  
7.62  
.300  
(0.82)  
(.032)  
Schematic (Bottom view)  
1
2
5
General tolerance: 0.3 .012  
NC  
NO  
COM  
10  
9
6
NOTE  
1. Packing style  
2. Automatic insertion  
1) As shown in the diagram below, the  
relays are presented in tube packages  
with pins 1 and 10 on the left. Be sure to  
maintain relays in the correct orientation  
when mounting on PC boards.  
To maintain the internal function of the  
relay, the chucking pressure should not  
exceed the values below.  
Chucking pressure in the direction A:  
4.9 N {500gf} or less  
Chucking pressure in the direction B:  
4.9 N {500gf} or less  
Side with pins 1 and 10.  
Chucking pressure in the direction C:  
4.9 N {500gf} or less  
C
A
B
Stopper  
(gray)  
Stopper  
(green)  
Avoid chucking the center of the relay.  
In addition, excessive chucking pressure  
to the pinpoint of the relay should be  
avoided.  
For general cautions for use,  
please refer to the “Cautions for  
use of Signal Relays” or “General  
Application Guidelines”.  
ASCTB212E 201201-T  
Panasonic Corporation Automation Controls Business Unit industrial.panasonic.com/ac/e  

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