Reinforced insulation, EN 60730-1 (VDE 0631, part 1)
EN 60335-1 (VDE 0700, part 1)
•
UL, CUR file E43203
•
VDE file 40010953
CONTACTS
Arrangement
Ratings
SPDT (1 Form C), DPDT (2 Form C)
SPST (1 Form A and 1 Form B)
Resistive load:
Max. switched power: 240 W or 2500 VA
(2 Form C: 150 W or 1250 VA)
Max. switched current: 10 A
(2 Form C: 5 A)
Max. switched voltage: 240* VDC or 440 VAC
*
Note: If switching voltage is greater than 30 VDC,
•
•
•
•
•
•
•
GENERAL DATA
Life Expectancy
Mechanical
Electrical
Operate Time (typical)
Release Time (typical)
Minimum operations
3 x 10
7
1 x 10
5
at 8 A 250 VAC res.
7 ms at nominal coil voltage
3 ms at nominal coil voltage
(with no coil suppression)
special precautions must be taken.
Please contact the factory.
Dielectric Strength
5000 Vrms coil to contact
(at sea level for 1 min.)
2500 Vrms between contact sets
1000 Vrms between open contacts
Insulation
Resistance
Insulation
(according to
DIN VDE 0110,
IEC 60664-1)
Dropout
Ambient Temperature
Operating
Storage
Vibration
Shock
Enclosure
1000 megohms min. at 20°C, 500 VDC,
50% RH
C250
Overvoltage category: III
Pollution degree: 3
Nominal voltage: 250 VAC
Greater than 10% of nominal coil voltage
At nominal coil voltage
-40°C (-40°F) to 85°C (185°F)
-40°C (-40°F) to 105°C (221°F)
Break Contact: 5 g at 10 …500 Hz
Make Contact: 20 g at 10…500 Hz
10 g
P.B.T. polyester, UL94 V-O
Tinned copper alloy, P.C.
270°C (518°F)
5 seconds
80°C (176°F)
30 seconds
8 grams
20 per plastic tube / 1000 per carton box
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)
8 A at 250 VAC resistive, 100k cycles [1], [2], [3]
(1 Form A, 1 Form B and 1 Form C)
Silver tin oxide [1] or silver nickel [2],
gold plated silver nickel [3] available
< 100 milliohms initially
VDE
Material
Resistance
COIL
Power
At Pickup Voltage
(typical)
Max. Continuous
Dissipation
Temperature Rise
Temperature
120 mW (up to 24 VDC coil)
140 mW (48 VDC and 60 VDC coil)
1.2 W at 20°C (68°F) ambient
Terminals
Max. Solder Temp.
Max. Solder Time
20°C (36°F) at nominal coil voltage
Max. 130°C (266°F)
Max. Solvent Temp.
Max. Immersion Time
Weight
NOTES
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.
Packing unit in pcs
ZETTLER
electronics GmbH
Tel. +49 89 800 97 0
Fax +49 89 800 97 200
office@ZETTLERelectronics.com
www.ZETTLERelectronics.com
2004-07-28
Junkersstrasse 3, D-82178 Puchheim, Germany
AZ6962
RELAY ORDERING DATA
COIL SPECIFICATIONS
Nominal Coil
VDC
5
6
9
12
15
18
24
48
60
Must Operate
VDC
3.5
4.2
6.3
8.4
10.5
12.6
16.8
33.6
42.0
Max. Continuous
VDC
11.6
14.0
20.8
27.2
31.0
39.4
53.1
98.0
122.4
Coil Resistance
Ohm
113 ± 10%
164 ± 10%
360 ± 10%
620 ± 10%
800 ± 10%
1,295 ± 10%
2,350 ± 10%
8,000 ± 15%
12,500 ± 15%
ORDER NUMBER*
1 Form A
(SPST-NO)
AZ6962–1AE–5D
AZ6962–1AE–6D
AZ6962–1AE–9D
AZ6962–1AE–12D
AZ6962–1AE–15D
AZ6962–1AE–18D
AZ6962–1AE–24D
AZ6962–1AE–48D
AZ6962–1AE–60D
1 Form C
(SPDT)
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
*
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
FORM C VERSION
1.122
[28.5]
.398
[10.1]
FORM A and FORM B VERSION
1.122
[28.5]
.398
[10.1]
Coil Temperature Rise
160
150
140
130
120
110
100
90
80
70
60
50
40
30
20
10
0
.492
[12.5]
.492
[12.5]
.012
[0.3]
.142
[3.6]
.012
[0.3]
.142
[3.6]
2 x ø .020
[ø 0.5]
3 x .016
[0.4]
3 x .031
[0.8]
2 x ø .020
[ø 0.5]
2 x .016
[0.4]
2 x .031
[0.8]
Coil Temperature Rise
°C
10A
0A
60%
80%
100%
120%
140%
160%
180%
200%
220%
*
*
*
*
Not used on 1 Form C relay
Percent of Nominal Coil Voltage at 20°C
PC BOARD LAYOUT
5 x ø .051
[ø 1.3]
.870
[22.1]
.062
[1.57]
CIRCUIT DIAGRAM
1
.050
[1.3]
4
Maximum Switching Capacity
(1 Form A, 1 Form B and 1 Form C)
.298
[7.56]
1 FORM C
1 FORM C
.126
[3.2]
.126
[3.2]
2
1
3
3
5
10.0
9.0
8.0
7.0
6.0
5.0
4.0
3.0
4 x ø .051
[ø 1.3]
.744
[18.9]
.116
[2.95]
1 FORM A
DC Resistive
Load
CURRENT
.298
[7.56]
1 FORM A
1 FORM B
.198
[5.04]
.050
[1.3]
2
1
3
4
2.0
AC Resistive
Load
1 FORM B
.062
[1.57]
2
1
8
7
4
6
1.0
.9
.8
.7
.6
.5
8 x ø .051
[ø 1.3]
.744
[18.9]
.4
.3
.2
.298
[7.56]
2 FORM C
.050
[1.3]
2 FORM C
10
100
.126
[3.2]
.126
[3.2]
VIEWED TOWARD TERMINALS
VIEWED TOWARD TERMINALS
VOLTAGE
Dimensions in inches with metric equivalents in parentheses. Tolerance: ± .010"
Dear experts: I encountered the following problems when debugging the CMUX of the SIMCOM_SIM500 module: 1. After the module is started, AT+CMUX=0 is sent to start the module multiplexing. At this time...
Is it possible to learn by myself? I want to find a job in electronics after graduation. How should I learn by myself? I hope everyone can give me some advice....
I use 5438 to collect analog quantity. There is voltage value at A4 pin, but the analog quantity collected in the interrupt generated by ADC12 is always 0. I have checked the correspondence between A4...
[i=s] This post was last edited by bqgup on 2021-5-6 17:26 [/i] # HyperLynx High-speed Circuit Design and Simulation (III) Termination Resistance Experiment##1. Refer to the above post##[HyperLynx Hig...
What is "Car Electronic Fence"
Fleet managers can define a graphical area (regular or irregular) or divide it into administrative zones in Yamei Technology's vehicle backend management system ...[Details]
When we travel in cities, we all find that electric vehicles have many advantages. As a means of transportation, they can also fulfill their mission well. Now, more and more residential communities...[Details]
In recent years, the government has increasingly supported electric vehicles, and the number of electric vehicles has increased. Observant drivers will notice that there are many more green license...[Details]
Introduction to the principles of speech recognition technology
Automatic speech recognition (ASR) technology aims to enable computers to understand human speech and extract the textual inform...[Details]
Recently,
Xpeng Motors and Xinlian Integrated Circuit jointly announced the mass production of China's first hybrid silicon carbide product.
Designed and developed by Xpeng Motors and joint...[Details]
Capable of providing precise and efficient thermal management for artificial intelligence computing power, intelligent sensing and autonomous driving systems
Shenzhen, ...[Details]
1 Introduction
In the mid-1960s, American scientist Maas conducted extensive experimental research on the charging process of open-cell batteries and proposed an acceptable charging curve for ...[Details]
Recently, Tesla released the "Tesla Car Voice Assistant Terms of Use", announcing that the car voice assistant will be connected to the Doubao large model (Skylark large model) and DeepSeek Chat pr...[Details]
1 Source of creativity
With the further development of electronic technology, electronic pets have gradually entered people's family life. At present, there are two main categories of relative...[Details]
With the development of science, the use of variable frequency technology is becoming more and more widespread, and it is used in both industrial equipment and household appliances. Inverter air co...[Details]
Spark plugs are an indispensable device for engines. As the saying goes, without spark plugs, the engine cannot work properly. The serious consequence is that when driving at high speeds, the engin...[Details]
The 2025 China International Automotive Testing Exhibition will be held at the Shanghai World Expo Exhibition and Convention Center from August 27 to 29, 2025.
Clacton Seafront, UK, ...[Details]
According to Nikkei, a survey found that global electric vehicle battery supply is expected to reach more than three times the required quantity due to
cooling
demand for electric vehicles,...[Details]
Tiantai Robot's official Weibo account announced on the evening of August 20 that Tiantai Robot Co., Ltd., together with strategic partners including Shandong Future Robot Technology Co., Ltd., Sha...[Details]
My career has been closely tied to the semiconductor industry. From product management to content marketing, I've provided countless forecasts and predictions across a variety of roles. Whethe...[Details]