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
5
6
9
12
24
48
V DC
V DC
V DC
V DC
V DC
V DC
V DC
4.5 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
2 Form C
6
9
12
24
48
V DC
V DC
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
—
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
2 Form C
5
6
9
12
24
V DC
V DC
V DC
V DC
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
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
5
6
9
12
24
48
V DC
V DC
V DC
V DC
V DC
V DC
V DC
4.5 V DC
2c
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
—
: 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 -L-3V-Z
TQ2S -L-4.5V-Z
TQ2S -L-5V-Z
TQ2S -L-6V-Z
TQ2S -L-9V-Z
TQ2S -L-12V-Z
TQ2S -L-24V-Z
—
2 coil latching
Part No.
TQ2S -L2-1.5V-Z
TQ2S -L2-3V-Z
TQ2S -L2-4.5V-Z
TQ2S -L2-5V-Z
TQ2S -L2-6V-Z
TQ2S -L2-9V-Z
TQ2S -L2-12V-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
5
6
9
12
24
V DC
V DC
V DC
V DC
V DC
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
250
360
810
1,440
3,840
Ω
Ω
Ω
Ω
Ω
Ω
202.5
Ω
100 mW
150%V of
nominal voltage
Nominal operating
power
Max. applied voltage
(at 20°C
68°F)
4.5 V DC
150 mW
–3–
ASCTB14E 201407-T
TQ
3) 2 coil latching (2 Form C)
Nominal coil
voltage
3
5
6
9
12
24
V DC
V DC
V DC
V DC
V DC
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)
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
125
180
405
720
1,920
Ω
Ω
Ω
Ω
Ω
Ω
101.2
Ω
Reset coil
45
125
180
405
720
1,920
Ω
Ω
Ω
Ω
Ω
Ω
300 mW
300 mW
120%V of
nominal voltage
150%V of
nominal voltage
101.2
Ω
200 mW
200 mW
Nominal operating
power
Set coil
Reset coil
Max. applied voltage
(at 20°C
68°F)
4.5 V DC
[M.B.B. type]
Nominal coil
voltage
3
5
6
9
12
24
V DC
V DC
V DC
V DC
V DC
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
150%V of
nominal voltage
Nominal operating
power
Max. applied voltage
(at 20°C
68°F)
4.5 V DC
*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.
I have put the details in the attachment, I hope it can be helpful to everyone! [align=left]Needless to say, the software can be downloaded from the official website and our forum. [/align][align=left...
I am a sophomore in college and I am studying microcontrollers at school. I want to make some friends who are interested in microcontrollers. I hope to make a few friends and communicate more with the...
I am not sure if TI has a firmware library for M3 or M4? ST certainly has one, and they are very common. But so far I have not seen a firmware library for TI's M3 products. The advantage of the firmwa...
A parallel inverter consists of two thyristors (T1 and T2), a capacitor, a center-tapped transformer, and an inductor. The thyristors provide a current path, while the inductor L maintains a consta...[Details]
As the number of cars increases, environmental pressures are also increasing. At this time, some people are saying that new energy vehicles are energy-efficient and environmentally friendly, and ar...[Details]
In recent years, many people have switched to new energy vehicles, and this type of vehicle has indeed been highly sought after and is considered the future direction of automobile development, and...[Details]
Current Development Status of DVR Market
A DVR, or digital video recorder, uses a hard disk for recording, unlike traditional analog video recorders. It's often called a DVR because it's a com...[Details]
Amidst the wave of intelligent automotive transformation, advanced driver assistance is gradually emerging from cutting-edge technology into the mainstream, becoming a new frontier of industry comp...[Details]
Charging is a familiar process for new energy vehicles, and as a source of battery energy, charging piles are crucial. New energy vehicle charging can be divided into fast charging and slow chargin...[Details]
During daily operation of an R-type power transformer, the voltage used varies as the equipment being used adjusts. This raises the question: can the transformer change voltage at this point? The a...[Details]
Lithium-ion batteries are a key component of electric vehicles. Their high energy density enables them to store a large amount of energy in a relatively compact and lightweight package, which is cr...[Details]
0 Introduction
With a rapidly aging population, a young couple is now required to care for an increasing number of elderly people, leading to a growing difficulty in providing care for them. E...[Details]
We know that the power output by the engine does not directly act on the wheels to drive the car, but needs to pass through a series of power transmission mechanisms. So how is the power transmitte...[Details]
Abstract: This design uses field-effect transistors to create a tube-like audio power amplifier. The preamplifier uses a single Class A transistor, while the power stage utilizes Class AB push-pull...[Details]
The BB-Black is a development platform based on the TI AM335X processor, manufactured and sold by Embest under license from BeagleBoard.org. The BB-Black boasts superior graphics performance among ...[Details]
End-to-end autonomous driving sounds impressive. Raw data from onboard cameras, radar, lidar, and other sensors is fed directly into a large network, which then outputs steering wheel angle, accele...[Details]
A fuel-powered vehicle primarily consists of four main components: the engine, chassis, body, and electrical system. Compared to fuel-powered vehicles, a pure electric vehicle's structure primarily...[Details]
1. Direct starting of squirrel cage motor
1. Contactor self-locking and overload protection
1)
Close the power switch QS, press the start button SB2, the AC contactor KM is...[Details]