8693390000 Allicdata Electronics
Allicdata Part #:

8693390000-ND

Manufacturer Part#:

8693390000

Price: $ 7.28
Product Category:

Relays

Manufacturer: Weidmuller
Short Description: RELAY GEN PURPOSE SPDT 12A 115V
More Detail: General Purpose Relay SPDT (1 Form C) 115VAC Coil ...
DataSheet: 8693390000 datasheet8693390000 Datasheet/PDF
Quantity: 1000
20 +: $ 6.61595
Stock 1000Can Ship Immediately
$ 7.28
Specifications
Turn On Voltage (Max): 86.3 VAC
Coil Resistance: 8.1 kOhms
Coil Power: 0.8 VA
Contact Material: Silver Nickel (AgNi)
Operating Temperature: -40°C ~ 70°C
Termination Style: PC Pin
Mounting Type: Through Hole
Features: Sealed - Flux Protection
Release Time: 3ms
Operate Time: 7ms
Turn Off Voltage (Min): 17.3 VAC
Series: RCL
Switching Voltage: 250VAC - Max
Contact Rating (Current): 12A
Contact Form: SPDT (1 Form C)
Coil Voltage: 115VAC
Coil Current: 6.6mA
Coil Type: Non Latching
Relay Type: General Purpose
Part Status: Active
Packaging: Bulk 
Description

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Power Relays - Over 2 Amps, 8693390000 Application Field and Working Principle

Power relays, also known as contactors, semiconductor planar relays, or optically coupled relays, are electromechanical devices that can be used to switch larger amounts of electrical power than other standard types of relays. They are made up of either a single or two coils that are insulated from each other with a non-conductive material. Power relays that can handle two amps or more are widely used in industrial, commercial, and automotive applications. In order to understand the 8693390000 application field and working principle of a power relay, it helps to take a close look at the components that make up the relay.

Components of a Power Relay

Power relays consist of two distinct parts, the electromechanical switch and the coil. The switch contains two contacts, which are divided into two parts — the fixed contact and the movable contact. The contact must remain flat and level in order to ensure proper operation of the relay, and the most common materials used to manufacture the contacts are Nickel Iron alloys or steel.

The coil is the second component of the power relay. This component is what energizes the relay and causes it to switch on. The coil is made of heavy copper wire that is wrapped many times around the movable contact. The current that is sent through the wire that makes up the coil can be controlled by changing the voltage. The coil can also be created with several layers of thin copper strips and plates.

Electromechanical Switch

The electromechanical switch is the main component of the power relay and it is the part that actually switches the current on and off. The electromechanical switch works by using an electromagnet to open and close the contacts, thereby controlling the flow of current. The two contact points are connected to the electromagnet, and when the coil is energized, the contact points open and close, thereby switching the current on and off.

The way in which the switch is energized or de-energized plays a role in the reliability of the relay. If the switch does not receive enough current, it will not be able to open and close quickly and efficiently, resulting in a decrease in the overall performance and reliability of the relay.

8693390000 Application Field and Working Principle

The 8693390000 application field of a power relay is typically used for powering high amperage applications and switching of high power equipment. These relays are usually used in circuits where the switch needs to be able to handle large amounts of current and can be found in a variety of industrial processes and commercial applications. For instance, they can be used to power heavy-duty machinery, elevators, transformers, elevators and other electrical devices.

Power relays are typically used in circuits that contain a large amount of power. As such, the relay must be able to handle a large amount of current and must be able to open and close quickly and efficiently in order to ensure proper operation. The working principle of a power relay is quite simple — the relay is energized, causing a magnetic field to be created which causes the contact points to open or close, thereby switching the current on and off.

The working principle of power relays is based on a physical phenomenon called electro-magnetic induction, which occurs when a current is passed through a coil. This causes a magnetic field to be created which results in the contact points moving in and out, thereby controlling the current flow. This makes power relays an ideal choice for industrial and commercial applications.

Conclusion

Power relays are electromechanical devices that are able to switch high amperage current. They are ideal for a variety of industrial, commercial and automotive applications. The 8693390000 application field of a power relay is typically used for powering high amperage circuits and switching of high-power equipment. The working principle of a power relay is based on the physical phenomenon of electro-magnetic induction, which occurs when a current is passed through a coil. This causes a magnetic field to be created which results in the contact points moving in and out, thereby controlling the current flow. Understanding the components, application field and working principle of a power relay is the key to making sure it is used properly.

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

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