1-1462001-2 Allicdata Electronics
Allicdata Part #:

1-1462001-2-ND

Manufacturer Part#:

1-1462001-2

Price: $ 1.40
Product Category:

Relays

Manufacturer: TE Connectivity Potter & Brumfield Relays
Short Description: RELAY TELECOM DPDT 2A 3V
More Detail: Telecom Relay DPDT (2 Form C) Through Hole
DataSheet: 1-1462001-2 datasheet1-1462001-2 Datasheet/PDF
Quantity: 1000
1000 +: $ 1.27008
Stock 1000Can Ship Immediately
$ 1.4
Specifications
Turn On Voltage (Max): 2.1 VDC
Coil Resistance: 60 Ohms
Coil Power: 150 mW
Contact Material: Silver Nickel (AgNi), Gold (Au)
Operating Temperature: -55°C ~ 85°C
Termination Style: PC Pin
Mounting Type: Through Hole
Features: --
Release Time: 3ms
Operate Time: 5ms
Turn Off Voltage (Min): 0.3 VDC
Series: MT2, AXICOM
Switching Voltage: 250VAC, 220VDC - Max
Contact Rating (Current): 2A
Contact Form: DPDT (2 Form C)
Coil Voltage: 3VDC
Coil Current: 50.0mA
Coil Type: Non Latching
Relay Type: Telecom
Part Status: Active
Packaging: Tube 
Description

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Signal Relays, Up to 2 Amps

Signal relays are extremely useful devices for electrical and electronic applications. They are used to switch signals, from low-level to low-level, between different parts of circuits. In this article, we\'ll discuss the application field and working principle of signal relays with a maximum current rating of 2 Amps (1462001-2).

Signal relays are widely used in many different applications, including communication, home automation, automotive electronics and robotic systems. In automotive electronics, they are used as part of the vehicle’s electrical circuit, to control the fuel injection, headlights, door locks, and other components. In communication applications, signal relays are used to switch signals between different radio links, including base stations, cell phones, and broadband modems. In robotic systems, they are used to switch signals between different actuators and sensors.

The working principle of a signal relay is based on electromagnetism. When current flows through a coil of wire (known as the relay armature), it creates a magnetic field, which attracts the armature of the relay. This, in turn, causes the armature to move, and the contact points of the relay close, thus completing the electrical circuit. When the current is removed, the armature and contact points return to their original positions, and the circuit is broken once again.

Signal relays with a maximum current rating of 2Amps (1462001-2) are designed to switch low-level signals between two points within a circuit. These relays feature a contact rating of 0.4VA (Volts x Amps) at 20mA (or 0.008 Amps), with a maximum switching current of 2 Amps. They have a dielectric strength of 500VAC with a minimum insulation resistance of 1000MΩ at 500VDC. They also feature an operating temperature range of -40°C to +85°C.

The design of signal relays with a maximum current rating of 2 Amps is such that the contacts are operated at a very low voltage and current. This is done to prevent damage to sensitive components, such as integrated circuits, and ensure reliable switching. The use of high grades of steel ensures the contacts last for many years without any wear and tear.

In order to ensure safe and reliable switching, the signal relays should be installed correctly and with the appropriate size of cable for the current rating. It is also important that the appropriate number of turns on the relay armature are specified to ensure smooth and accurate switching. Finally, the signal relays should be tested regularly, either manually or through the use of an automated testing system.

In conclusion, signal relays with a maximum current rating of 2 Amps (1462001-2) are widely used in many applications, from automotive electronics to robotic systems. Their working principle is based on electromagnetism and the contacts are designed to withstand low-level voltages and currents. It is important to install them correctly and test them regularly in order to ensure reliable and safe operation.

The specific data is subject to PDF, and the above content is for reference

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