5089 Allicdata Electronics

5089 Connectors, Interconnects

Allicdata Part #:

5089-ND

Manufacturer Part#:

5089

Price: $ 56.82
Product Category:

Connectors, Interconnects

Manufacturer: Pomona Electronics
Short Description: CONN ADAPT JACK-JACK N 50 OHM
More Detail: Adapter Coaxial Connector N Jack, Female Socket To...
DataSheet: 5089 datasheet5089 Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: $ 51.65370
Stock 1000Can Ship Immediately
$ 56.82
Specifications
Mounting Feature: --
Operating Temperature: --
Insertion Loss: --
Mating Cycles: --
Dielectric Material: Polytetrafluoroethylene (PTFE)
Center Contact Material: Beryllium Copper
Body Finish: White Bronze
Body Material: Brass
Includes: --
Features: --
Center Contact Plating: Gold
Ingress Protection: --
Fastening Type: Threaded, Threaded
Series: --
Mounting Type: Free Hanging (In-Line)
Style: T-Shape
Impedance: 50 Ohm
Convert To (Adapter End): N Jack, Female Socket (2)
Convert From (Adapter End): N Jack, Female Socket
Center Gender: Female to Female
Adapter Series: N to N, Dual
Conversion Type: Same Series
Adapter Type: Jack to Jack
Part Status: Active
Lead Free Status / RoHS Status: --
Packaging: Bulk 
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Coaxial Connectors (RF), commonly referred to as RF adapters, are electronic components used to connect two coaxial cables together, and are used in a variety of applications such as broadcasting, telecommunications, and aerospace engineering. The 5089 RF adapter operates using two basic principles, namely impedance matching and RF shielding. Each of these principles play an important role in ensuring the highest levels of signal integrity and performance.

Impedance Matching

The 5089 RF adapter ensures that the impedance levels between the two coaxial cables match as closely as possible. Impedance is defined as the measure of opposition that a circuit or cable presents to alternating current due to its capacitance, inductance, and resistive properties. When two coaxial cables of different impedance levels are connected, a distortion of the signal is caused, resulting in poorer performance. By connecting the two coaxial cables using the 5089 RF adapter, the impedance levels between the two cables can be adjusted, resulting in improved signal performance, increased signal-to-noise ratio, and reduced electromagnetic interference.

RF Shielding

The 5089 RF adapter also helps in RF shielding, which is the practice of utilizing a material to block the electromagnetic radiation generated by the cables from escaping. RF shielding is important since the radiation generated by the cables can interfere with other devices or components, causing performance degradation and other issues. The 5089 RF adapter helps to reduce the levels of radiation that escape from the cables, thereby reducing the chances of interference with other systems.

Applications

The 5089 RF adapter has a wide range of applications, including broadcasting, telecommunications, and aerospace engineering. In broadcasting, the 5089 RF adapter is used to connect two coaxial cables carrying radio signals from transmitters to receivers. In telecommunications, the adapter is used to connect two cables for transmission of digital signals between phones and other devices. In aerospace engineering, the adapter is used for connecting cables carrying signals for navigation and instrumentation systems.

Conclusion

The 5089 RF adapter is a vital component of numerous applications, as it helps to ensure the best possible signal performance and reliability. By using the adapter in broadcasting, telecommunications, and aerospace engineering applications, high levels of signal integrity and reliability can be achieved. Furthermore, the 5089 RF adapter helps reduce electromagnetic interference, thereby allowing other systems to operate without interference.

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

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