Allicdata Part #: | 1-1393761-6-ND |
Manufacturer Part#: |
1-1393761-6 |
Price: | $ 300.71 |
Product Category: | Relays |
Manufacturer: | TE Connectivity Potter & Brumfield Relays |
Short Description: | RELAY GEN PURPOSE |
More Detail: | Relay |
DataSheet: | 1-1393761-6 Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 273.37000 |
Series: | -- |
Packaging: | -- |
Part Status: | Active |
Relay Type: | -- |
Coil Type: | -- |
Coil Voltage: | -- |
Contact Form: | -- |
Switching Voltage: | -- |
Turn On Voltage (Max): | -- |
Turn Off Voltage (Min): | -- |
Features: | -- |
Mounting Type: | -- |
Termination Style: | -- |
Operating Temperature: | -- |
Contact Material: | -- |
Coil Power: | -- |
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Signal relays up to 2 amps are used for a variety of applications, mainly to switch electrical signals and control circuits. 1-1393761-6 relays are part of this type of relay family. To understand the application field and working principle of these relays it is important to understand the basic structure and features of this type of relays.
The 1-1393761-6 are class "C" special form relays, which means they are made with a variety of features that reduce size and increase their immunity to shocks and vibrations. This type of relay is designed to be mounted in circuit board layouts with limited space and requires fewer connection wires than standard relays. The coils are wound with the coil bobbin in the middle, which reduces the overall size and enables it to use the standard base to make connection points on circuit board. This also helps to maintain the heat balance inside the relay.
The working principle of these relays is based on exploiting the magnetic field generated through an electrically controlled coil. When a voltage is applied to the coil, it generates a magnetic field. When the magnetic field is generated, it interacts with the internal moving components and controls the circuit. When the voltage applied to the coil is removed, the magnetic field is reversed and the circuit will be discharged. The 1-1393761-6 relays are designed to switch signals, and provide isolation of the other components in the circuits. This means the relay will not emit any high frequency noise, which would otherwise create interference in other circuits.
1-1393761-6 relays can be used in a number of different applications. As these relays are designed to work with signals, they are used in a wide range of electronics applications. They are commonly used for switching and controlling various devices, including lasers. These relays can also be used to switch radio frequency (RF) signals, which are often found in communications systems. They can also be found in automotive and medical devices, where they are used to switch large amount of current but only for a short time.
Another application field where this type of relays are used is in automation systems. These systems require precise control over the power, and these relays are used to switch high voltage or current depending on the needs of the system. They are also used in process automation applications such as industrial robots, where the relay is used to control the speed of a motor or other components. These relays are also commonly found in industrial control systems.
When using 1-1393761-6 relays in any application, it is important to consider the environmental conditions in which the relays will be used. Relays need to be able to protecct themselves against external conditions, such as shock, vibration, humidity and temperature. Other factors to consider include contact materials, voltage rating, contact configurations and strength, as well as whether the relay needs to be sealed to protect it from potential moisture or dust contamination.
In conclusion, signal relays up to 2 amps are heavily used in a variety of electronic applications. The 1-1393761-6 relays are part of this family of relays and are used for switching signals and controlling various devices. Their working principle is based on exploiting the magnetic field generated by an electrically controlled coil and their application fields include electronics, communications systems, process automation and industrial control systems. When using these relays, it is important to consider environmental conditions such as humidity, temperature and vibration, as well as the correct contact materials, voltage rating and contact strength.
The specific data is subject to PDF, and the above content is for reference
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