HL1-PL-AC240V Allicdata Electronics
Allicdata Part #:

HL1-PL-AC240V-ND

Manufacturer Part#:

HL1-PL-AC240V

Price: $ 0.00
Product Category:

Relays

Manufacturer: Panasonic Electric Works
Short Description: RELAY GEN PURPOSE SPDT 15A 240V
More Detail: General Purpose Relay SPDT (1 Form C) 240VAC Coil ...
DataSheet: HL1-PL-AC240V datasheetHL1-PL-AC240V Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Turn On Voltage (Max): 192 VAC
Coil Power: 1.2 VA
Contact Material: Silver Alloy
Operating Temperature: -50°C ~ 70°C
Termination Style: PC Pin
Mounting Type: Through Hole
Features: LED Indicator
Release Time: 10ms
Operate Time: 10ms
Turn Off Voltage (Min): 72 VAC
Series: HL
Switching Voltage: 125VAC - Nom
Contact Rating (Current): 15A
Contact Form: SPDT (1 Form C)
Coil Voltage: 240VAC
Coil Current: 5.0mA
Coil Type: Non Latching
Relay Type: General Purpose
Part Status: Obsolete
Packaging: Bulk 
Description

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HL1-PL-AC240V (AC power relay) is a type of power relay which are used to control high voltage and current in electrical power systems. This type of relay is typically used in applications such as home lighting systems, industrial applications, and other high voltage applications. It is rated for up to 2 amps, meaning it can handle a maximum power of 240 volts with 2 amps of current running through it. The main components of the HL1-PL-AC240V are the contactor, spring-loaded contacts, and a series of coils.

The contactor is the main part of the power relay and it is a conducting device that is used to physically connect two terminals together. This is done by moving two contact plates together, and then allowing them to rest in the energized position. The contactor also serves as an insulation between the two terminals, so that no current flows between them. The spring-loaded contacts are made up of two metal plates that are connected together and are spring-loaded so that they close when current is applied and open when the current is removed.

The series of coils is also an integral part of the HL1-PL-AC240V power relay. The coils provide the magnetic field necessary to move the contactor between the two terminals. This is accomplished by energizing the coils, thus creating a magnetic field. As the contactor is moved between the two terminals, the electromagnetic field keeps the contactor in the desired position. The maximum current that can be transmitted through the power relay is determined by the size and number of the coils in the system.

The working principle of the HL1-PL-AC240V power relay is fairly simple. When power is supplied to the terminals, the electromagnetic field created by the coils causes the contactor to move between the two terminals. This will then enable the current to flow through the circuit. When the current is turned off, the contactor will move back to its original position, thus breaking the circuit and preventing any further current flow.

The HL1-PL-AC240V power relay is an invaluable tool in the world of electronics. It can be used in a variety of applications ranging from home lighting systems and industrial machinery, to complex control systems. With its maximum current capacity of 2 amps, it is a useful device in a wide variety of electrical systems.

The HL1-PL-AC240V power relay is a type of power relay used in applications requiring high voltage and current. This type of relay is typically used to control high voltage applications such as home lighting systems, industrial applications, and other high voltage applications. It is rated for up to 2 amps, meaning it can handle a maximum power of 240 volts with 2 amps of current running through it. The main components of the power relay are the contactor, spring-loaded contacts, and a series of coils. The working principle is fairly straightforward, with power being supplied to the terminals which energizes the coils. This increases the magnetic field and causes the contactor to move between the two terminals, allowing for the current to flow through the circuit. When the current is turned off, the contactor will move back to its original position, thus breaking the circuit and preventing any further current flow.

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

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