to Be Discontinued: 2 Form C type (Standard, Reverse polarity type)
Last time buy:
March
31, 2015
DS
2) 2 coil latching type
Type
Nominal coil
voltage
1.5V DC
3V DC
5V DC
6V DC
9V DC
12V DC
24V DC
48V DC
1.5V DC
3V DC
5V DC
High
sensitivity
(S) type
6V DC
9V DC
12V DC
24V DC
48V DC
1 Form C:
80%V or less of
nominal voltage
2 Form C:
70%V or less of
nominal voltage
(Initial)
1 Form C:
80%V or less of
nominal voltage
2 Form C:
70%V or less of
nominal voltage
(Initial)
Set voltage
(at 20°C
68°F)
Reset voltage
(at 20°C
68°F)
Nominal operating
current [±10%]
(at 20°C
68°F)
Set coil Reset coil
240mA
120mA
72mA
60mA
40mA
30mA
15mA
7.5mA
120mA
60mA
36mA
30mA
20mA
15mA
7.5mA
3.75mA
240mA
120mA
72mA
60mA
40mA
30mA
15mA
7.5mA
120mA
60mA
36mA
30mA
20mA
15mA
7.5mA
3.75mA
Coil resistance
[±10%]
(at 20°C
68°F)
Set coil Reset coil
6.25Ω
25Ω
69.4Ω
100Ω
225Ω
400Ω
1,600Ω
6,400Ω
12.5Ω
50Ω
139Ω
200Ω
450Ω
800Ω
3,200Ω
12,800Ω
6.25Ω
25Ω
69.4Ω
100Ω
225Ω
400Ω
1,600Ω
6,400Ω
12.5Ω
50Ω
139Ω
200Ω
450Ω
800Ω
3,200Ω
12,800Ω
180mW
180mW
2 Form C:
200%V of
nominal voltage
Nominal operating
power
Set coil
Reset coil
1 Form C:
120%V of
nominal voltage
360mW
360mW
2 Form C:
150%V of
nominal voltage
Max. applied voltage
(at 50°C
122°F)
Standard
(M) type
70%V or less of
nominal voltage
(Initial)
70%V or less of
nominal voltage
(Initial)
1 Form C:
160%V of
nominal voltage
2. Specifications
Characteristics
Contact
Item
Arrangement
Initial contact resistance, max.
Contact material
Nominal switching capacity
Max. switching power
Max. switching voltage
Max. carrying current
Min. switching capacity (Reference value)*
1
Nominal operating power
Insulation resistance (Initial)
Breakdown voltage
(Initial)
Electrical
characteristics
Temperature rise
Operate time [Set time] (at 20°C
68°F)
Release time [Reset time] (at 20°C
68°F)
Functional*
2
Destructive
Functional
Vibration resistance
Destructive
Mechanical
Electrical
Shock resistance
Conditions for operation, transport and storage*
3
Max. operating speed (at rated load)
Unit weight
Between open contacts
Between contact and coil
Specifications
1 Form C
2 Form C
Max. 50 mΩ (By voltage drop 6 V DC 1A)
Ag+Au clad
2 A 30 V DC (resistive load)
60 W, 125 VA (resistive load)
220 V DC, 250 V AC
3A
10µA 10m V DC
Single side stable (M type: 400 mW, S type: 200 mW);
latching (M type: 360 mW, S type: 180 mW)
Min. 100MΩ (at 500V DC)
Measurement at same location as “Initial breakdown voltage” section.
1,000 Vrms for 1min.
(500 Vrms for 1min: 1 Form C high sensitivity type) (Detection current: 10mA.)
1,500 Vrms for 1min.
(1,000 Vrms for 1min: 1 Form C high sensitivity type) (Detection current: 10mA.)
Max. 65°C
(By resistive method, nominal coil voltage applied to the coil, contact carrying current: 2A.)
Max. 10 ms [10 ms] (Nominal coil voltage applied to the coil, excluding contact bounce time.)
Max. 5 ms [10 ms] (Nominal coil voltage applied to the coil, excluding contact bounce time.)
(without diode)
Min. 490 m/s
2
Min. 490 m/s
2
2
(Half-wave pulse of sine wave: 6 ms.)
Min. 980 m/s
10 to 55 Hz at double amplitude of 3.3 mm (Detection time: 10µs.)
10 to 55 Hz at double amplitude of 5 mm
Min. 10
8
(10
7
: 1 Form C latching type) (at 600 cpm)
Min. 5×10
5
rated load (at 60 cpm)
Ambient temperature: –40°C to +70°C
–40°F to +158°F
Humidity: 5 to 85% R.H. (Not freezing and condensing at low temperature)
60 cpm
Approx. 3 g
.11 oz
Approx. 4g
.14oz
Rating
Mechanical
characteristics
Expected life
Conditions
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. (TX/TX-S/TX-D relay AgPd contact type are available for low level load switching [10V DC, 10mA max. level])
*2 Half-wave pulse of sine wave: 11ms; detection time: 10µs
*3 Refer to 6. Conditions for operation, transport and storage mentioned in AMBIENT ENVIRONMENT (Page 24).
Panasonic Corporation Automation Controls Business Division
The program has been burned into the board, but the chip doesn't seem to run. . . I wrote a program to control the GPIO port and used an oscilloscope to measure the waveform of the pin (p0.4), but it ...
Hello everyone, I just got in touch with DSP. I am working on a small project about Bluetooth headsets. I use CSR's bluecore05 chip, which has an integrated kalimba dsp for voice data processing. Howe...
[p=24, null, left][color=rgb(0, 0, 0)][font=simsun, Arial]Cold storage temperature sensor is a kind of temperature sensor. As its name shows, the application occasions of cold storage temperature sens...
principle:
Simply put, a resistive touch screen is a sensor that uses pressure sensing to control and convert the physical position of the touch point (X, Y) in a rectangular area into a voltage repre...
[i=s]This post was last edited by dcexpert on 2016-5-16 23:02[/i] Some netizens may not know how to learn MicroPython, and where to find introductory routines. In fact, in the MicroPython source code,...
Wave soldering is a crucial electronic component soldering technique used in the production of a wide range of electronic devices, from home appliances to computers to avionics. The process is wide...[Details]
ISP devices, such as field programmable devices (FPGAs and CPLDs), do not require a programmer. Using programming kits provided by the device manufacturer, they employ a top-down modular design app...[Details]
Limited vocabulary recognition
According to the number of characters, words or short sentences in the vocabulary, it can be roughly divided into: less than 100 is small vocabulary; 100-1000 is...[Details]
On August 25th, TSMC, the world's leading contract chip manufacturer, attracted significant attention for its decision to build a chip manufacturing facility in Arizona. TSMC primarily manufactures...[Details]
There are basically three causes of spontaneous combustion of electric vehicles: The first is that the battery components are punctured or suffer fatal damage due to a collision accident, and part ...[Details]
Permanent magnets are essential components in a wide range of household and industrial devices. They are particularly crucial in the renewable energy sector, including electric vehicle motors. Curr...[Details]
The complexity of the integrated circuits (ICs) used in electronic systems in vehicles is increasing. They aim to execute artificial intelligence (AI) algorithms to control autonomous driving funct...[Details]
With the increasing number of new energy vehicles on the road, the deployment of supporting facilities for these vehicles has accelerated, and new energy vehicles have gradually entered the vision ...[Details]
As the range of electric vehicles continues to increase, driving electric vehicles for long-distance travel has become a trend. For high-speed travel, how much impact will high-speed driving of ele...[Details]
With the gradual popularization of new energy vehicles in recent years, more and more people have been able to access and purchase electric vehicles. The structure of electric vehicles is composed ...[Details]
On August 18th, China's largest expressway
charging station,
the G25 Changshen Expressway Tonglu Service Area (South Area), officially opened and launched its integrated solar-storage-charg...[Details]
Today,
the Intel®
Universal
Quick Connector (UQD) Interchangeability Alliance was officially established
. At the inaugural ceremony, Intel and its first certified partners—Invicta...[Details]
summary
Modern cars strive to provide the same comfort and entertainment features found in the home, resulting in explosive growth in demand for electronic control units (ECUs). Howe...[Details]
As my country's industrialization continues to improve, environmental pollution is also facing tremendous pressure. In recent years, national environmental protection policies have become increasin...[Details]
At the 2025 KeyBanc Investor Conference,
ON
Semiconductor CEO Hassane S. El-Khoury, framing global industrial transformation as the basis for
his strategic layout in two high-growth sect...[Details]