JS1-F-18V-F Allicdata Electronics
Allicdata Part #:

JS1-F-18V-F-ND

Manufacturer Part#:

JS1-F-18V-F

Price: $ 1.23
Product Category:

Relays

Manufacturer: Panasonic Electric Works
Short Description: RELAY GEN PURPOSE SPDT 10A 18V
More Detail: General Purpose Relay SPDT (1 Form C) 18VDC Coil T...
DataSheet: JS1-F-18V-F datasheetJS1-F-18V-F Datasheet/PDF
Quantity: 1000
100 +: $ 1.11132
Stock 1000Can Ship Immediately
$ 1.23
Specifications
Turn On Voltage (Max): 12.6 VDC
Coil Resistance: 900 Ohms
Coil Power: 360 mW
Contact Material: Silver Tin Oxide (AgSnO)
Operating Temperature: -40°C ~ 105°C
Termination Style: PC Pin
Mounting Type: Through Hole
Features: Insulation - Class F
Release Time: 10ms
Operate Time: 10ms
Turn Off Voltage (Min): 1.8 VDC
Series: JS
Switching Voltage: 250VAC, 100VDC - Max
Contact Rating (Current): 10A
Contact Form: SPDT (1 Form C)
Coil Voltage: 18VDC
Coil Current: 20.0mA
Coil Type: Non Latching
Relay Type: General Purpose
Part Status: Active
Packaging: Bulk 
Description

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Power relays are used as electric switches to transfer electricity from one circuit to another. They have many commercial and industrial applications, including power distribution, signal processing, automation, and motor control. The JS1-F-18V-F power relay is a common device that is used for switching purposes in different contexts.

Breaker Construction

The JS1-F-18V-F power relay consists of a sealed metal housing with two main parts, one known as the relay coil and the other ‘housing’. The coil is made of a magnesium alloy, whereas the housing is made of high-durability plastic material. The coil is enclosed in the housing and is designed to bear a certain amount of electrical current. The overall composition and construction of the JS1-F-18V-F power relay is designed to protect the device from overheating, current surges, and other potential damages.

Input Connections

The JS1-F-18V-F power relay features two main connections, providing input and output connections. The input connection carries the signal current, while the output connection carries the electrical power that will be supplied to the load. The two connections can be connected to different configurations, such as a series connection or a parallel connection. The series connection enables the transmission of power from one source to another, while the parallel connection enables the transmission of power from different sources simultaneously.

Working Principle

The working principle of the JS1-F-18V-F power relay is based on the action of the coil. When the input signal current is applied to the coil, it induces a magnetic field inside the housing. This magnetic field causes the contacts inside the relay to be attracted towards each other, forming a closed contact circuit. Once the circuit is closed, the output current is allowed to travel through the contacts and to the load. When the input signal current is removed, the coil’s magnetic field disappears and the output current is blocked, causing the contacts to open automatically, thus preventing any further flow of current though the contacts.

Fields of Application

The JS1-F-18V-F power relay is widely used in many different contexts. It is often used in power-distribution systems to help make the distribution process more efficient. It is also used in industry to control motors and other automated equipment. Additionally, it is used in signal processing, where it can be used to control various electronic devices such as fans, pumps, and other machinery. Its wide range of applications makes it a flexible and useful tool for many different settings and purposes.

Conclusion

The JS1-F-18V-F power relay is a widely used device for the purpose of switching electricity from one circuit to another. It is composed of two main components, the relay coil and the housing, and has two main connections, providing input and output connections. Its working principle is based on the action of the coil, which inducts a magnetic field and causes the closing of the contacts. It has a wide range of applications, including power distribution, signal processing, automation, and motor control.

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

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