Note: Please add “-1” to the end of the part number for AgPd contacts (low level load).
2. self-clinching terminal
Contact
arrangement
Nominal coil
voltage
1.5V DC
3V DC
4.5V DC
2 Fom C
5V DC
6V DC
9V DC
12V DC
24V DC
48V DC
Single side stable
Part No.
TX2-H-1.5V
TX2-H-3V
TX2-H-4.5V
TX2-H-5V
TX2-H-6V
TX2-H-9V
TX2-H-12V
TX2-H-24V
TX2-H-48V
1 coil latching
Part No.
TX2-L-H-1.5V
TX2-L-H-3V
TX2-L-H-4.5V
TX2-L-H-5V
TX2-L-H-6V
TX2-L-H-9V
TX2-L-H-12V
TX2-L-H-24V
—
2 coil latching (L2)
Part No.
TX2-L2-H-1.5V
TX2-L2-H-3V
TX2-L2-H-4.5V
TX2-L2-H-5V
TX2-L2-H-6V
TX2-L2-H-9V
TX2-L2-H-12V
TX2-L2-H-24V
—
2 coil latching (LT)
Part No.
TX2-LT-H-1.5V
TX2-LT-H-3V
TX2-LT-H-4.5V
TX2-LT-H-5V
TX2-LT-H-6V
TX2-LT-H-9V
TX2-LT-H-12V
TX2-LT-H-24V
—
Standard packing: Tube: 40 pcs.; Case: 1,000 pcs.
Note: Please add “-1” to the end of the part number for AgPd contacts (low level load).
3. Surface-mount terminal
1) Tube packing
Contact
arrangement
Nominal coil
voltage
1.5V DC
3V DC
4.5V DC
5V DC
6V DC
9V DC
12V DC
24V DC
48V DC
Single side stable
Part No.
TX2S -1.5V
TX2S -3V
TX2S -4.5V
TX2S -5V
TX2S -6V
TX2S -9V
TX2S -12V
TX2S -24V
TX2S -48V
1 coil latching
Part No.
TX2S -L-1.5V
TX2S -L-3V
TX2S -L-4.5V
TX2S -L-5V
TX2S -L-6V
TX2S -L-9V
TX2S -L-12V
TX2S -L-24V
—
2 coil latching (L2)
Part No.
TX2S -L2-1.5V
TX2S -L2-3V
TX2S -L2-4.5V
TX2S -L2-5V
TX2S -L2-6V
TX2S -L2-9V
TX2S -L2-12V
TX2S -L2-24V
—
2 coil latching (LT)
Part No.
TX2S -LT-1.5V
TX2S -LT-3V
TX2S -LT-4.5V
TX2S -LT-5V
TX2S -LT-6V
TX2S -LT-9V
TX2S -LT-12V
TX2S -LT-24V
—
2c
: For each surface-mounted terminal identification, input the following letter. SA type: A, SL type: L, SS type: S
Standard packing: Tube: 40 pcs.; Case: 1,000 pcs.
Note: Please add “-1” to the end of the part number for AgPd contacts (low level load).
2) Tape and reel packing
Contact
arrangement
Nominal coil
voltage
1.5V DC
3V DC
4.5V DC
5V DC
6V DC
9V DC
12V DC
24V DC
48V DC
Single side stable
Part No.
TX2S -1.5V-Z
TX2S -3V-Z
TX2S -4.5V-Z
TX2S -5V-Z
TX2S -6V-Z
TX2S -9V-Z
TX2S -12V-Z
TX2S -24V-Z
TX2S -48V-Z
1 coil latching
Part No.
TX2S -L-1.5V-Z
TX2S -L-3V-Z
TX2S -L-4.5V-Z
TX2S -L-5V-Z
TX2S -L-6V-Z
TX2S -L-9V-Z
TX2S -L-12V-Z
TX2S -L-24V-Z
—
2 coil latching (L2)
Part No.
TX2S -L2-1.5V-Z
TX2S -L2-3V-Z
TX2S -L2-4.5V-Z
TX2S -L2-5V-Z
TX2S -L2-6V-Z
TX2S -L2-9V-Z
TX2S -L2-12V-Z
TX2S -L2-24V-Z
—
2 coil latching (LT)
Part No.
TX2S -LT-1.5V-Z
TX2S -LT-3V-Z
TX2S -LT-4.5V-Z
TX2S -LT-5V-Z
TX2S -LT-6V-Z
TX2S -LT-9V-Z
TX2S -LT-12V-Z
TX2S -LT-24V-Z
—
2 Form C
Standard packing: Tape and reel: 500 pcs.; Case: 1,000 pcs.
Notes: 1. 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.
2. Please add “-1” to the end of the part number for AgPd contacts (low level load).
Standard contact: 2 A 30 V DC, AgPd contact: 1 A 30 V DC (resistive load)
Standard contact: 60 W (DC), AgPd contact: 30 W (DC) (resistive load)
220V DC
Standard contact: 2 A, AgPd contact: 1 A
10µA 10mV DC
140 mW (1.5 to 24 V DC), 270 mW (48 V DC)
100 mW (1.5 to 24 V DC)
200 mW (1.5 to 24 V DC)
Min. 1,000MΩ (at 500V DC)
Measurement at same location as “Initial breakdown voltage” section.
1,000 Vrms for 1min. (Detection current: 10mA)
2,000 Vrms for 1min. (Detection current: 10mA)
1,000 Vrms for 1min. (Detection current: 10mA)
1,500 V (10×160µs) (FCC Part 68)
2,500 V (2×10µs) (Telcordia)
Max. 50°C
(By resistive method, nominal coil voltage applied to the coil; contact carrying current: 2A.)
Max. 4 ms [Max. 4 ms] (Nominal coil voltage applied to the coil, excluding contact bounce
time.)
Max. 4 ms [Max. 4 ms] (Nominal coil voltage applied to the coil, excluding contact bounce
time.) (without diode)
Min. 750 m/s
2
(Half-wave pulse of sine wave: 6 ms; detection time: 10µs.)
Min. 1,000 m/s
2
(Half-wave pulse of sine wave: 6 ms.)
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
(at 180 cpm)
Min. 10
5
(2 A 30 V DC resistive), 5×10
5
(1 A 30 V DC resistive) (at 20 cpm)
Ambient temperature: –40°C to +85°C (up to 24 V coil)
–40°F to +185°F (up to 24 V coil)
[–40°C to +70°C (48 V coil)
–40°F to +158°F (48 V coil)];
Humidity: 5 to 85% R.H. (Not freezing and condensing at low temperature)
20 cpm
Approx. 2 g
.071 oz
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. (AgPd contact type is available for low level load switching [10V DC, 10mA max. level])
*2 Refer to 6. Conditions for operation, transport and storage mentioned in AMBIENT ENVIRONMENT (Page 25).
I just finished learning 51 and heard some "legends" about 430. I heard from my senior that 430 is a very good processor. I am going to buy one through this group buying opportunity and study 430 syst...
Now I need to use FPGA to measure the frequency of about 10 MHz. The frequency signal is TTL. How to input it into FPGA? How to convert it to LVTTL? Please help....
Does WinCE 6.0 have a standard SDK? Microsoft seems to have provided one for 5.0, but I can't find one for 6.0. Do I have to customize it myself? Also, does the 6.0 SDK support SMS, phone calls, and G...
This example is mainly to familiarize you with the register configuration of timer A and the configuration method of IAR. [/size][/font][/color][/align] [color=#000][font=宋体][size=12px] [list=1] [*][c...
I recently used an ultrasonic probe to do an experiment. The signal I got at the receiving end is as follows. After amplification and filtering, the yellow signal is the signal received by the probe. ...
After a period of hard work, the design of the intelligent energy metering system from schematic diagram to PCB has been basically completed.This circuit uses NXP's LPC1114 as the main control chip, A...
Microchip's PIC18F46J50 is a low-power, high-performance 8-bit USB microcontroller (MCU) using nanoWatt XLP technology. The current in deep sleep mode can be as low as 13nA, the operating voltage i...[Details]
1. Introduction
This design was made for participating in an electronic design competition. It effectively solved the problem of the operation and control of an electric car on a seesaw. The s...[Details]
With the advent of increasingly powerful processors, image sensors, memory, and other semiconductor devices, as well as the algorithms that enable them, computer vision can be implemented in a wide...[Details]
In this article, the high-performance DSP developed by TI can be used as an effective confidentiality method if it is applied to PC encryption cards.
As an effective network security solution,...[Details]
Introduction
Power subsystems are becoming more and more integrated into the overall system. Power systems have moved from being separate "essential dangerous devices" to being monitorable...[Details]
Two simple circuits are implemented to drive two LEDs from a battery powered microprocessor.
This design is based on a circuit that uses three resistors and a microprocessor I/O pin as an input h...[Details]
Microcalorimetry
is used to determine energy relationships. Microcalorimetry techniques are often required when performing calorimetric experiments with small sample sizes or slow heating rat...[Details]
Contact resistance
is the resistance to current flow through a closed pair of contacts. This type of measurement is performed on devices such as connectors,
relays
, and switches. The...[Details]
1 Introduction to HART Protocol
HART (Highway Addressable Remote Transducer), an open communication protocol for addressable remote sensor high-speed channels, was launched by Rosemen in the U...[Details]
The concept of state machine
State machine is an important concept in software programming. More important than this concept is its flexible application. In a clear and efficient program, ther...[Details]
Continuity test
A variety of devices need to be checked for continuity, including cable assemblies, printed circuit boards, and connectors to ensure that these components have the expected contin...[Details]
1. Disadvantages of choosing too high a voltage level
Choosing too high a voltage level will result in too high an investment and a long payback period. As the voltage level increases, the...[Details]
As people's requirements for safety and comfort in the process of driving cars continue to increase, automotive radars are widely used in the car's adaptive cruise system, collision avoidance syste...[Details]
introduction
At present, measuring instruments are developing towards networking, and each individual embedded instrument will become a node on the Internet. This system realizes the network...[Details]
Introduction
In industrial control, speed measurement is often required. Generally, a contact tachometer is used. This tachometer must be placed against the center of the shaft to measure. It...[Details]