Z: Tape and reel packing (picked from the 6/7/8/9/10-pin side)
Notes: 1. *48 V coil type: Single side stable only
2. In case of 5 V transistor drive circuit, it is recommended to use 4.5 V type relay.
–1–
ASCTB14E 201407-T
TQ
TYPES
■
Standard PC board terminal and self-clinching terminal
1. Standard (B.B.M.) type
1) Standard PC board terminal
Contact
arrangement
Nominal coil
voltage
3 V DC
4.5 V DC
5 V DC
6 V DC
9 V DC
12 V DC
24 V DC
48 V DC
Single side stable
Part No.
TQ2-3V
TQ2-4.5V
TQ2-5V
TQ2-6V
TQ2-9V
TQ2-12V
TQ2-24V
TQ2-48V
1 coil latching
Part No.
TQ2-L-3V
TQ2-L-4.5V
TQ2-L-5V
TQ2-L-6V
TQ2-L-9V
TQ2-L-12V
TQ2-L-24V
—
2 coil latching
Part No.
TQ2-L2-3V
TQ2-L2-4.5V
TQ2-L2-5V
TQ2-L2-6V
TQ2-L2-9V
TQ2-L2-12V
TQ2-L2-24V
—
2 Form C
Standard packing (2 Form C): Tube: 50 pcs.; Case: 1,000 pcs.
2) Self-clinching terminal
Contact
arrangement
Nominal coil
voltage
3
V DC
4.5 V DC
5 V DC
6 V DC
9
12
24
48
V DC
V DC
V DC
V DC
Single side stable
Part No.
TQ2H-3V
TQ2H-4.5V
TQ2H-5V
TQ2H-6V
TQ2H-9V
TQ2H-12V
TQ2H-24V
TQ2H-48V
1 coil latching
Part No.
TQ2H-L-3V
TQ2H-L-4.5V
TQ2H-L-5V
TQ2H-L-6V
TQ2H-L-9V
TQ2H-L-12V
TQ2H-L-24V
—
2 coil latching
Part No.
TQ2H-L2-3V
TQ2H-L2-4.5V
TQ2H-L2-5V
TQ2H-L2-6V
TQ2H-L2-9V
TQ2H-L2-12V
TQ2H-L2-24V
—
2 Form C
Note: Types (“-3” to the end of part No.) designed to withstand strong vibration caused, for example, by the use of terminal cutters, can also be ordered.
However, please contact us if you need parts for use in low level load.
2. M.B.B. type
1) Standard PC board terminal
Contact arrangement
Nominal coil voltage
3 V DC
4.5 V DC
5 V DC
6 V DC
9 V DC
12 V DC
24 V DC
Single side stable
Part No.
TQ2-2M-3V
TQ2-2M-4.5V
TQ2-2M-5V
TQ2-2M-6V
TQ2-2M-9V
TQ2-2M-12V
TQ2-2M-24V
2 Form C
Standard packing: Tube: 50 pcs.; Case: 1,000 pcs.
2) Self-clinching terminal
Contact arrangement
Nominal coil voltage
3 V DC
4.5 V DC
5 V DC
6 V DC
9 V DC
12 V DC
24 V DC
Single side stable
Part No.
TQ2H-2M-3V
TQ2H-2M-4.5V
TQ2H-2M-5V
TQ2H-2M-6V
TQ2H-2M-9V
TQ2H-2M-12V
TQ2H-2M-24V
2 Form C
Standard packing: Tube: 50 pcs.; Case: 1,000 pcs.
Notes: 1. Latching types are available by request. Please consult us for details.
3. Types (“-1” to the end of part No.) designed to withstand strong vibration caused, for example, by the use of terminal cutters, can also be ordered.
However, please contact us if you need parts for use in low level load and low thermal power.
–2–
ASCTB14E 201407-T
TQ
■
Surface-mount terminal
1) Tube packing
Contact
arrangement
Nominal coil
voltage
1.5 V DC
3 V DC
4.5 V DC
5 V DC
6 V DC
9 V DC
12 V DC
24 V DC
48 V DC
Single side stable
Part No.
TQ2S -1.5V
TQ2S -3V
TQ2S -4.5V
TQ2S -5V
TQ2S -6V
TQ2S -9V
TQ2S -12V
TQ2S -24V
TQ2S -48V
1 coil latching
Part No.
TQ2S -L-1.5V
TQ2S -L-3V
TQ2S -L-4.5V
TQ2S -L-5V
TQ2S -L-6V
TQ2S -L-9V
TQ2S -L-12V
TQ2S -L-24V
—
2 coil latching
Part No.
TQ2S -L2-1.5V
TQ2S -L2-3V
TQ2S -L2-4.5V
TQ2S -L2-5V
TQ2S -L2-6V
TQ2S -L2-9V
TQ2S -L2-12V
TQ2S -L2-24V
—
2c
: For each surface-mounted terminal identification, input the following letter. SA type: A, SL type: L, SS type: S
Standard packing: Tube: 50 pcs.; Case: 1,000 pcs.
2) Tape and reel packing
Contact
arrangement
Nominal coil
voltage
1.5 V DC
3 V DC
4.5 V DC
5 V DC
2 Form C
6
9
12
24
48
V DC
V DC
V DC
V DC
V DC
Single side stable
Part No.
TQ2S -1.5V-Z
TQ2S -3V-Z
TQ2S -4.5V-Z
TQ2S -5V-Z
TQ2S -6V-Z
TQ2S -9V-Z
TQ2S -12V-Z
TQ2S -24V-Z
TQ2S -48V-Z
1 coil latching
Part No.
TQ2S -L-1.5V-Z
TQ2S
TQ2S
TQ2S
TQ2S
TQ2S
TQ2S
-L-3V-Z
-L-4.5V-Z
-L-5V-Z
-L-6V-Z
-L-9V-Z
-L-12V-Z
2 coil latching
Part No.
TQ2S -L2-1.5V-Z
TQ2S
TQ2S
TQ2S
TQ2S
TQ2S
TQ2S
-L2-3V-Z
-L2-4.5V-Z
-L2-5V-Z
-L2-6V-Z
-L2-9V-Z
-L2-12V-Z
TQ2S -L-24V-Z
—
TQ2S -L2-24V-Z
—
: For each surface-mounted terminal identification, input the following letter. SA type: A, SL type: L, SS type: S
Standard packing: Tape and reel: 500 pcs.; Case: 1,000 pcs.
Note: Tape and reel packing symbol “-Z” is not marked on the relay. “X” type tape and reel packing (picked from 1/2/3/4-pin side) is also available.
RATING
■
Standard PC board terminal and self-clinching terminal
1. Coil data
[Standard (B.B.M.) type]
1) Single side stable (2 Form C)
Nominal coil
voltage
3
V DC
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)
46.7 mA
31.1
28.1
23.3
15.5
11.7
8.3
mA
mA
mA
mA
mA
mA
Coil resistance
[±10%] (at 20°C
68°F)
64.3
Ω
144.6
Ω
178
Ω
257
Ω
579
Ω
1,028
Ω
2,880
Ω
7,680
Ω
Nominal operating
power
Max. applied voltage
(at 20°C
68°F)
4.5 V DC
5 V DC
6 V DC
9 V DC
12 V DC
24 V DC
48
V DC
140 mW
75%V or less of
nominal voltage*
(Initial)
10%V or more of
nominal voltage*
(Initial)
150%V of
nominal voltage
200 mW
300 mW
120%V of
nominal voltage
6.25 mA
2) 1 coil latching (2 Form C)
Nominal coil
voltage
3
V DC
75%V or less of
nominal voltage*
(Initial)
75%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)
33.3 mA
22.2 mA
20 mA
16.7 mA
11.1 mA
8.3 mA
6.3 mA
Coil resistance
[±10%] (at 20°C
68°F)
90
Ω
202.5
Ω
250
Ω
360
Ω
810
Ω
1,440
Ω
3,840
Ω
Nominal operating
power
Max. applied voltage
(at 20°C
68°F)
4.5 V DC
5 V DC
6 V DC
9 V DC
12 V DC
24 V DC
100 mW
150%V of
nominal voltage
150 mW
–3–
ASCTB14E 201407-T
TQ
3) 2 coil latching (2 Form C)
Nominal coil
voltage
3
V DC
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
66.7 mA
44.4 mA
40 mA
33.3 mA
22.2 mA
16.7 mA
12.5 mA
66.7 mA
44.4 mA
40 mA
33.3 mA
22.2 mA
16.7 mA
12.5 mA
Coil resistance
[±10%] (at 20°C
68°F)
Set coil
45
Ω
101.2
Ω
125
Ω
180
Ω
405
Ω
720
Ω
1,920
Ω
Reset coil
45
Ω
150%V of
nominal voltage
101.2
Ω
125
Ω
180
Ω
405
Ω
720
Ω
1,920
Ω
Nominal operating
power
Set coil
Reset coil
Max. applied voltage
(at 20°C
68°F)
4.5 V DC
5 V DC
6 V DC
9 V DC
12 V DC
24
V DC
75%V or less of
nominal voltage*
(Initial)
75%V or less of
nominal voltage*
(Initial)
200 mW
200 mW
300 mW
300 mW
120%V of
nominal voltage
[M.B.B. type]
Nominal coil
voltage
3
V DC
80%V or less of
nominal voltage*
(Initial)
10%V or more of
nominal voltage*
(Initial)
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)
66.7 mA
44.4 mA
40 mA
33.3 mA
22.2 mA
16.7 mA
8.3 mA
Coil resistance
[±10%] (at 20°C
68°F)
45
Ω
101
Ω
125
Ω
180
Ω
405
Ω
720
Ω
2,880
Ω
200 mW
Nominal operating
power
Max. applied voltage
(at 20°C
68°F)
4.5 V DC
5 V DC
6
9
12
24
V DC
V DC
V DC
V DC
150%V of
nominal voltage
*Pulse drive (JIS C 5442-1986)
2. Specifications
Characteristics
Arrangement
Contact
Initial contact resistance, max.
Contact material
Nominal switching capacity
Max. switching power
Max. switching voltage
Max. switching current
Min. switching capacity (Reference value)*
1
Single side stable
Nominal
operating power 1 coil latching
2 coil latching
Insulation resistance (Initial)
Between open contacts
Electrical
characteristics
Breakdown
voltage (Initial)
Between contact and coil
Between contact sets
Temperature rise (at 20°C
68°F)
Operate time [Set time] (at 20°C
68°F)
Release time [Reset time] (at 20°C
68°F)
Shock
resistance
Vibration
resistance
Functional
Destructive
Item
2 Form C, 2 Form D (M.B.B.)
Max. 50mΩ (By voltage drop 6 V DC 1A)
Ag+Au clad
1 A 30 V DC, 0.5 A 125 V AC (resistive load)
30 W (DC), 62.5 V A (AC) (resistive load)
110 V DC, 125 V AC
1A
10μA 10mV DC
Standard (B.B.M) type: 140 mW (3 to 12 V DC), 200 mW (24 V DC), 300 mW (48 V DC)
M.B.B. type: 200 mW
100 mW (3 to 12 V DC), 150 mW (24 V DC)
200 mW (3 to 12 V DC), 300 mW (24 V DC)
Min. 1,000MΩ (at 500V DC)
Measurement at same location as “Initial breakdown voltage” section.
Standard (B.B.M) type: 750 Vrms for 1min. (Detection current: 10 mA),
M.B.B. type: 300 Vrms for 1 min. (Detection current: 10 mA)
1,000 Vrms for 1min. (Detection current: 10 mA)
1,000 Vrms for 1min. (Detection current: 10 mA)
Max. 50°C (By resistive method, nominal coil voltage applied to the coil; contact carrying current: 1A.)
Max. 3 ms [Max. 3 ms] (Nominal coil voltage applied to the coil, excluding contact bounce time.)
Max. 3 ms [Max. 3 ms] (Nominal coil voltage applied to the coil, excluding contact bounce time.)
(without diode)
Min. 490 m/s
2
(Half-wave pulse of sine wave: 11 ms; detection time: 10μs.)
Min. 980 m/s
2
(Half-wave pulse of sine wave: 6 ms.)
10 to 55 Hz at double amplitude of 3 mm (Detection time: 10μs.)
10 to 55 Hz at double amplitude of 5 mm
Standard (B.B.M) type: Min. 10
8
, M.B.B. type: Min. 10
7
Standard (B.B.M) type: Min. 2×10
5
(1 A 30 V DC resistive), Min. 10
5
(0.5 A 125 V AC resistive)
M.B.B. type: Min. 10
5
(1 A 30 V DC resistive)
Standard (B.B.M) type:
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)
M.B.B. type:
Ambient temperature: –40°C to +50°C
–40°F to +122°F;
Humidity: 5 to 85% R.H. (Not freezing and condensing at low temperature)
20 cpm
Approx. 1.5 g
.053 oz
Specifications
Rating
Mechanical
characteristics
Functional
Destructive
Mechanical (at 180 cpm)
Electrical (at 20 cpm)
Expected life
Conditions
Conditions for operation, transport and
storage*
2
Max. operating speed (at rated load)
Unit weight
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 Refer to “AMBIENT ENVIRONMENT” in GENERAL APPLICATION GUIDELINES.
As shown above, I am not very familiar with the FreeRTOS operating system. How can I quickly complete a function, such as testing an LED light, using the FreeRTOS operating system's tasks?...
Why can't I select the CPU type when I start EVC to create a new project? All CPU types are grayed out? I can manually start the simulator under Tools->confure platform manage. In addition, the progra...
I wrote a program to read and write IIC. There was an error when operating the register. Program header #define rGPECON (*(volatile unsigned *)0x56000040) //Port E control #define rGPEDAT (*(volatile ...
On February 9, 2010, a classmate of mine who graduated three years ago "secretly" went back to her hometown with her boyfriend to have a "naked wedding". The wedding was simple. The hero and heroine h...
Google's driverless technology is not only an eye-catching technology, but also a subversion of the car usage model.
Those who have watched anti-terrorism films and TV dramas must have been im...[Details]
0. Introduction
In daily life, we often see some special-purpose vehicles. When these vehicles pass through intersections, they often obtain the right of way at intersections by temporarily op...[Details]
Overview
As a remote network communication control method with advanced technology, high reliability, complete functions and reasonable cost, CAN-bus has been widely used in various automa...[Details]
1 Introduction
In recent years, there have been many major advances in the production technology and processes of automotive headlights, which have greatly improved the performance of automoti...[Details]
LED lamps and bulbs are now rapidly replacing incandescent, halogen and CFL (compact fluorescent lamp) light sources in many general lighting applications. Flyback DC/DC converters are the power su...[Details]
Different initialization between C8051F and 80C51 series microcontrollers
In the past 30 years, major electronic component manufacturers in the world have launched their own unique single-chip...[Details]
The rectified DC voltage is then converted back to AC using power electronics such as insulated gate bipolar transistors.
The output voltage is switched on and off at a high frequency, control...[Details]
1. Overview
At present, an information revolution is in the ascendant around the world, led by microelectronics, computers and communication technologies, and centered on information technolog...[Details]
1 Introduction
With the improvement of people's quality of life, lamps are no longer just basic indoor lighting tools, but also a kind of practical art for architectural decoration. When ther...[Details]
At present, how various communication technologies will evolve after 3G is a focus of great concern in the industry. Especially for TD-SCDMA, whether it can achieve smooth evolution to the next gen...[Details]
Overview
By transmitting ultrasonic energy into the human body and receiving and processing the returning reflected signals, phased array ultrasound systems can generate images of organs and s...[Details]
Almost everyone in a student dormitory has a bedside lamp. But if you want to read for a while after turning off the lights and don't want to disturb your roommates' sleep, you may need a reading l...[Details]
LED is now known as the fourth generation of light sources. High-power LED has many advantages over traditional light sources in outdoor lighting.
1 LED lamps have high light efficiency
C...[Details]
The fluorescent lamps and energy-saving lamps we commonly use now have greatly improved luminous efficiency compared with the earlier ordinary incandescent lamps and have been widely used. With the...[Details]
Today, with the increasing integration of functions, mobile phones can also be used as portable media players (PMP), digital cameras, handheld computers (PDAs), and even global positioning systems (GP...[Details]