Allicdata Part #: | 2271028-ND |
Manufacturer Part#: |
2271028 |
Price: | $ 9.18 |
Product Category: | Relays |
Manufacturer: | Phoenix Contact |
Short Description: | PLUG-IN BASE STD I/O MOD |
More Detail: | Relay |
DataSheet: | 2271028 Datasheet/PDF |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
1 +: | $ 8.34750 |
Series: | * |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Moisture Sensitivity Level (MSL): | -- |
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Relay Sockets are electrical connections that are commonly used to control and relay signals in a variety of applications. The relay sockets are generally configured to properly connect and route signals to the necessary components by using a variety of contact configurations and/or pressure encounters. As such a variety of forms can be used depending on the requirements of the application.
The primary purpose of a relay sockets is to serve as a medium for power and signal transmission between two or more components. This is achieved by electrically connecting contacts together using what is known as a contactor. The contactor may be electromechanical or electronic in nature and is used to control the transfer of power or signals between two or more components. In the case of a contactor, the electrical contacts are connected through a set of contact pins that are inserted into a contact block. The contact block is then connected to the terminals on the contactor.
The most common type of relay socket is the SPDT (single pole double throw). This device is generally used for controlling the speed of electrical devices or the switching of multiple power sources. The SPDT generally works by allowing power to be directed between two or more electrical components. The device is configured with two sets of contact pins; one to allow power from the source to the destination and the other to allow power from the destination back to the source.
Other relay sockets such as the DIP (dual in-line packages) are also available. These are generally used in applications where multiple signals are routed to multiple locations. In a DIP configuration, two sets of contact pins are inserted into a contact block. The contact block is then connected to both the inputs and outputs of the device. An example of this type of device would be a signal amplifier.
Relay sockets can also be used in a wide variety of applications which include controlling the speed and power of a motor, providing remote control of loads on an electrical system, and providing a means of power and signal transmission between components in an automated system. They can also be used to provide accurate and reliable interconnections for parallel source systems. These sockets are used in a wide range of applications including automotive, industrial, and medical.
The working principle of a relay socket is simple. The relay socket contacts are connected together with a set of pins that are inserted into a contact block. This contact block is then connected to the terminals on the contactor which allows the power and/or signal to be transferred from one source to another. In the case of a SPDT, the power is provided between two electrical components. With a DIP configuration, it is possible to provide the power and signal to multiple sources and destinations.
Relay sockets can also be configured to provide remote control of loads on an electrical system. By using a combination of signal and power relay sockets, it is possible to control several loads from a single remote location. This type of configuration is often used in industrial and medical applications as it provides a more secure and reliable way of controlling loads.
In conclusion, relay sockets are highly versatile devices that are used in a variety of applications. They serve to connect and route signals to the necessary components while providing reliable power and signal transmission. They can be used for controlling the speed of motors, providing remote control of loads, and providing accurate and reliable interconnections for parallel source systems. Additionally, they can also provide power and signal transmission between multiple components in an automated system.
The specific data is subject to PDF, and the above content is for reference
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1-227161-4 | TE Connectiv... | 0.0 $ | 1000 | CONN BNC JACK R/A 50 OHM ... |
227169-5 | TE Connectiv... | 0.0 $ | 1000 | CONN BNC RCPT STR 50 OHM ... |
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2271031 | Phoenix Cont... | 9.18 $ | 1000 | PLUG-IN BASE STD I/O MOD ... |
2271484 | Phoenix Cont... | 7.11 $ | 1000 | RETAINER FOR MINI RELAYRe... |
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2271015 | Phoenix Cont... | 7.28 $ | 19 | PLUG-IN BASE STD I/O MODU... |
2271390 | Phoenix Cont... | 8.01 $ | 7 | PLUG-IN BASE STD I/O MODU... |
227161-9 | TE Connectiv... | 1.53 $ | 1000 | CONN BNC JACK R/A 50 OHM ... |
227161-2 | TE Connectiv... | 1.6 $ | 1000 | CONN BNC JACK R/A 50 OHM ... |
227161-6 | TE Connectiv... | 1.64 $ | 1000 | CONN BNC JACK R/A 50 OHM ... |
1-227161-5 | TE Connectiv... | 1.71 $ | 1000 | CONN BNC JACK R/A 50 OHM ... |
227161-3 | TE Connectiv... | 1.79 $ | 1000 | CONN BNC JACK R/A 50 OHM ... |
227161-1 | TE Connectiv... | 3.02 $ | 387 | CONN BNC JACK R/A 50 OHM ... |
227161-7 | TE Connectiv... | 2.18 $ | 1000 | CONN BNC JACK R/A 50 OHM ... |
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2271200-R | Microsemi Co... | 0.0 $ | 1000 | ADAPTEC RAID 6805 KITSAS/... |
2271700-R | Microsemi Co... | 0.0 $ | 1000 | ADAPTEC RAID 6405E KITSAS... |
2271800-R | Microsemi Co... | 0.0 $ | 1000 | ADAPTEC RAID 6805E KITSAS... |
2271-2 | Keystone Ele... | 0.27 $ | 1000 | HEX STANDOFF #4-40 BRASS ... |
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2271277-1 | TE Connectiv... | 0.06 $ | 9500 | GROUNDING SHELL FOR MMC C... |
2271285-1 | TE Connectiv... | 0.02 $ | 6000 | GROUNDING CLIP FOR MMC CO... |
2271284-1 | TE Connectiv... | 0.69 $ | 3115 | DUST CAP FOR ENCODER |
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