AZ6962-1AE-9D [ZETTLER]

10 AMP SUBMINIATURE POWER RELAY; 10 AMP超小型功率继电器
AZ6962-1AE-9D
型号: AZ6962-1AE-9D
厂家: ZETTLER ELECTRONICS    ZETTLER ELECTRONICS
描述:

10 AMP SUBMINIATURE POWER RELAY
10 AMP超小型功率继电器

继电器 功率继电器
文件: 总2页 (文件大小:56K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
AZ6962  
10 AMP SUBMINIATURE  
POWER RELAY  
FEATURES  
High sensitivity, 120 mW pickup  
Dielectric strength 5000 Vrms  
Isolation spacing greater than 10 mm  
Proof tracking index (PTI/CTI) 250  
10 Amp switching capability  
Epoxy sealed version available  
Reinforced insulation, EN 60730-1 (VDE 0631, part 1)  
EN 60335-1 (VDE 0700, part 1)  
UL, CUR file E43203  
VDE file 40010953  
GENERAL DATA  
CONTACTS  
Life Expectancy  
Mechanical  
Electrical  
Minimum operations  
3 x 107  
1 x 105 at 8 A 250 VAC res.  
Arrangement  
SPDT (1 Form C), DPDT (2 Form C)  
SPST (1 Form A and 1 Form B)  
Ratings  
Resistive load:  
Operate Time (typical) 7 ms at nominal coil voltage  
Max. switched power: 240 W or 2500 VA  
(2 Form C: 150 W or 1250 VA)  
Max. switched current: 10 A  
Release Time (typical) 3 ms at nominal coil voltage  
(with no coil suppression)  
(2 Form C: 5 A)  
Max. switched voltage: 240* VDC or 440 VAC  
Dielectric Strength  
5000 Vrms coil to contact  
(at sea level for 1 min.) 2500 Vrms between contact sets  
* Note: If switching voltage is greater than 30 VDC,  
special precautions must be taken.  
Please contact the factory.  
1000 Vrms between open contacts  
Insulation  
Resistance  
1000 megohms min. at 20°C, 500 VDC,  
50% RH  
Rated Load  
UL, CUR  
10 A at 250 VAC resistive, 30k cycles [1], [2], [3]  
10 A at 30 VDC resistive, 30k cycles [1], [2], [3]  
B300, R300  
5 A at 250 VAC resistive, 30k cycles [1], [2], [3]  
(2 Form C)  
Insulation  
C250  
(according to  
DIN VDE 0110,  
IEC 60664-1)  
Overvoltage category: III  
Pollution degree: 3  
Nominal voltage: 250 VAC  
Dropout  
Greater than 10% of nominal coil voltage  
VDE  
8 A at 250 VAC resistive, 100k cycles [1], [2], [3]  
(1 Form A, 1 Form B and 1 Form C)  
Ambient Temperature At nominal coil voltage  
Material  
Silver tin oxide [1] or silver nickel [2],  
gold plated silver nickel [3] available  
Operating  
Storage  
-40°C (-40°F) to 85°C (185°F)  
-40°C (-40°F) to 105°C (221°F)  
Resistance  
< 100 milliohms initially  
Vibration  
Break Contact: 5 g at 10 …500 Hz  
Make Contact: 20 g at 10…500 Hz  
Shock  
10 g  
COIL  
Enclosure  
P.B.T. polyester, UL94 V-O  
Tinned copper alloy, P.C.  
270°C (518°F)  
5 seconds  
Power  
Terminals  
At Pickup Voltage  
(typical)  
120 mW (up to 24 VDC coil)  
140 mW (48 VDC and 60 VDC coil)  
Max. Solder Temp.  
Max. Solder Time  
Max. Solvent Temp.  
Max. Continuous  
Dissipation  
1.2 W at 20°C (68°F) ambient  
Temperature Rise  
Temperature  
20°C (36°F) at nominal coil voltage  
Max. 130°C (266°F)  
80°C (176°F)  
Max. Immersion Time 30 seconds  
Weight  
8 grams  
NOTES  
Packing unit in pcs  
20 per plastic tube / 1000 per carton box  
1. All values at 20°C (68°F).  
2. Relay may pull in with less than “Must Operate” value.  
3. Specifications subject to change without notice.  
ZETTLER electronics GmbH  
Junkersstrasse 3, D-82178 Puchheim, Germany  
Tel. +49 89 800 97 0  
Fax +49 89 800 97 200  
office@ZETTLERelectronics.com  
www.ZETTLERelectronics.com  
2004-07-28  
AZ6962  
RELAY ORDERING DATA  
COIL SPECIFICATIONS  
ORDER NUMBER*  
Nominal Coil  
VDC  
Must Operate  
VDC  
Max. Continuous  
VDC  
Coil Resistance  
Ohm  
1 Form A  
(SPST-NO)  
1 Form C  
(SPDT)  
5
6
3.5  
4.2  
11.6  
14.0  
20.8  
27.2  
31.0  
39.4  
53.1  
98.0  
122.4  
113 ± 10%  
164 ± 10%  
AZ6962–1AE–5D  
AZ6962–1CE–5D  
AZ6962–1CE–6D  
AZ6962–1CE–9D  
AZ6962–1CE–12D  
AZ6962–1CE–15D  
AZ6962–1CE–18D  
AZ6962–1CE–24D  
AZ6962–1CE–48D  
AZ6962–1CE–60D  
AZ6962–1AE–6D  
AZ6962–1AE–9D  
AZ6962–1AE–12D  
AZ6962–1AE–15D  
AZ6962–1AE–18D  
AZ6962–1AE–24D  
AZ6962–1AE–48D  
AZ6962–1AE–60D  
9
6.3  
360 ± 10%  
12  
15  
18  
24  
48  
60  
8.4  
620 ± 10%  
10.5  
12.6  
16.8  
33.6  
42.0  
800 ± 10%  
1,295 ± 10%  
2,350 ± 10%  
8,000 ± 15%  
12,500 ± 15%  
*
Substitute “1B” in place of “1A” for Form B contacts. Suffix “E” at “1AE”, “1BE” or “1CE” indicates silver tin oxide contacts.  
Substitute suffix “B” in place of “E” at “1AE”, “1BE” or “1CE” for silver nickel contacts. Substitute “2C” in place of “1C” for 2 Form C relay.  
Add suffix “E” at the end of order number for sealed version. Add suffix “A” at the end of order number for gold plated contacts (at silver nickel only).  
MECHANICAL DATA  
Coil Temperature Rise  
FORM C VERSION  
FORM A and FORM B VERSION  
1.122  
[28.5]  
.398  
[10.1]  
.398  
[10.1]  
1.122  
[28.5]  
160  
150  
140  
130  
120  
110  
100  
90  
.492  
[12.5]  
.492  
[12.5]  
80  
.012  
[0.3]  
.012  
[0.3]  
.142  
[3.6]  
.142  
[3.6]  
70  
60  
50  
40  
2 x ø .020  
[ø 0.5]  
2 x .016  
[0.4]  
3 x .016  
[0.4]  
2 x ø .020  
[ø 0.5]  
30  
10A  
%
20  
0A  
3 x .031  
[0.8]  
2 x .031  
[0.8]  
10  
0
60  
80%  
100%  
120%  
140%  
160%  
180%  
200%  
220%  
*
*
Percent of Nominal Coil Voltage at 20°C  
*
* Not used on 1 Form C relay  
PC BOARD LAYOUT  
CIRCUIT DIAGRAM  
.062  
[1.57]  
.870  
[22.1]  
5 x ø .051  
[ø 1.3]  
1
4
Maximum Switching Capacity  
.050  
[1.3]  
(1 Form A, 1 Form B and 1 Form C)  
.298  
[7.56]  
1 FORM C  
1 FORM C  
2
1
3
5
.126  
[3.2]  
.126  
[3.2]  
10  
.
0
9.0  
8.0  
7.0  
3
6.0  
5.0  
DC Resistive  
Load  
.744  
[18.9]  
.116  
[2.95]  
4 x ø .051  
[ø 1.3]  
1 FORM A  
1 FORM B  
4.0  
3.0  
.050  
[1.3]  
2
1
4
1 FORM A  
1 FORM B  
.298  
[7.56]  
2.0  
AC Resistive  
Load  
3
.198  
[5.04]  
1.  
0
.9  
.8  
.7  
.6  
.5  
.062  
[1.57]  
2
1
4
.744  
[18.9]  
8 x ø .051  
[ø 1.3]  
.4  
.3  
8
7
6
5
.050  
[1.3]  
.2  
.298  
[7.56]  
2 FORM C  
2 FORM C  
.1  
2
3
4
.126  
[3.2]  
.126  
[3.2]  
VOLTAGE  
VIEWED TOWARD TERMINALS  
VIEWED TOWARD TERMINALS  
Dimensions in inches with metric equivalents in parentheses. Tolerance: ± .010"  
ZETTLER electronics GmbH  
Junkersstrasse 3, D-82178 Puchheim, Germany  
Tel. +49 89 800 97 0  
Fax +49 89 800 97 200  
office@ZETTLERelectronics.com  
www.ZETTLERelectronics.com  
2004-07-28  

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