LEV100A4ANG Allicdata Electronics
Allicdata Part #:

A101163-ND

Manufacturer Part#:

LEV100A4ANG

Price: $ 65.51
Product Category:

Relays

Manufacturer: TE Connectivity Aerospace, Defense and Marine
Short Description: RELAY CONTACTOR SPST 100A 12V
More Detail: N/A
DataSheet: LEV100A4ANG datasheetLEV100A4ANG Datasheet/PDF
Quantity: 109
1 +: $ 59.56020
10 +: $ 56.24890
25 +: $ 52.94020
50 +: $ 49.63140
100 +: $ 46.32260
Stock 109Can Ship Immediately
$ 65.51
Specifications
Series: LEV100, KILOVAC
Packaging: Bulk 
Part Status: Active
Mounting Type: Chassis Mount
Coil Voltage: 12VDC
Contact Form: SPST-NO (DM) (1 Form X)
Contact Rating (Current): 100A
Switching Voltage: 900VDC - Max
Features: Sealed - Hermetically
Termination Style: Stud
Operating Temperature: -40°C ~ 85°C
Turn On Voltage (Max): 8 VDC
Turn Off Voltage (Min): 1.2 VDC
Contact Material: --
Operate Time: 25ms
Release Time: 10ms
Coil Current: 461mA
Coil Power: 5.5 W
Coil Resistance: 26 Ohms
Description

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A contactor, also known as an electromechanical relay, is a device used to control electric circuits. The contactors are commonly composed of two parts; a switch mechanism and a set of contacts for controlling electric loads. The switch mechanism is usually actuated by an electromagnetic coil in order to operate the contacts. The LEV100A4ANG contactor is a type of contactor used for controlling high-voltage electric circuits. It is specifically designed for industrial applications, such as HVAC systems, automotive, and other industrial equipment.

The LEV100A4ANG contactor is composed of four main components: a main body, an electromagnetic mechanism, a set of contacts, and a pole. The main body houses the internal components of the contactor and provides an enclosure for the internal parts. The electromagnetic mechanism is actuated by a power supply, typically supplied by a low-voltage source. This then energizes the contactor, causing the switch mechanism to move and engaging the contacts.

The contact set consists of three main parts: the main contact, the secondary contact, and the contact support bracket. The main contact is typically made from a conductive material such as copper or aluminum. This contact provides a physical connection between the two poles. The secondary contact helps protect the main contact from arcing by helping to insulate it from stray electric fields. The contact support bracket is used to support the contact set, and typically comes in a noncorrosive material, such as plastic or stainless steel.

The pole is an important part of the contactor and serves two main purposes. The first is to provide a secure attachment point for the main contact to the power supply. The second is to provide a pivot point for the main contact so it can move freely. Typically, the pole is made from a strong metal, such as steel or bronze.

In order to ensure proper operation of the contactor, it is important to ensure that all the components are properly connected and functioning correctly. The contact set must be firmly attached to the main body of the contactor in order to provide the proper connections. All the contact set components, including the main contact, the secondary contact, and the contact support bracket, must also be firmly attached to the contactor in order for the contacts to move freely and engage properly. The pole must also be securely mounted on the contactor body to ensure that it can pivot freely and provide the maximum amount of electrical contact.

Once all the components are connected and functioning properly, the contactor is ready for use. To initiate operation of the contactor, a low-voltage power supply is required. Upon energizing the contactor, the switch mechanism is engaged, allowing current to flow through the contact set and completing the circuit.

In conclusion, the LEV100A4ANG contactor is a type of electromechanical relay specifically designed for industrial applications. It is composed of four main components; a main body, an electromagnetic mechanism, a set of contacts, and a pole. Proper installation and connection of these components is required in order for the contactor to operate properly. Once the contactor is energized, the switch mechanism is enabled, allowing current to flow through the contact set and completing the electric circuit.

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

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