TE Connectivity AMP Connectors 414088-1
- 414088-1
- TE Connectivity AMP Connectors
- CONN BNC JACK STR 75 OHM PCB
- Coaxial Connectors (RF)
- 414088-1 Datasheet
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What is 414088-1
TE Connectivity AMP Connectors Part Number 414088-1(Coaxial Connectors (RF)), developed and manufactured by TE Connectivity AMP Connectors, distributed globally by Jinftry. We distribute various electronic components from world-renowned brands and provide one-stop services, making us a trusted global electronic component distributor.
414088-1 is one of the part numbers distributed by Jinftry, and you can learn about its specifications/configurations, package/case, Datasheet, and other information here. Electronic components are affected by supply and demand, and prices fluctuate frequently. If you have a demand, please do not hesitate to send us an RFQ or email us immediately [email protected] Please inquire about the real-time unit price, Data Code, Lead time, payment terms, and any other information you would like to know. We will do our best to provide you with a quotation and reply as soon as possible.
414088-1 Specifications
- Part Number414088-1
- CategoryCoaxial Connectors (RF)
- ManufacturerTE Connectivity AMP Connectors
- DescriptionCONN BNC JACK STR 75 OHM PCB
- Package-
- Series-
- Mounting TypeThrough Hole
- Frequency - Max2GHz
- Impedance75 Ohm
- Connector TypeJack, Female Socket
- Contact TerminationPress-Fit
- Connector StyleBNC
- Fastening TypeBayonet Lock
- Housing ColorSilver
- Shield TerminationPress-Fit
- Number of Ports1
Application of 414088-1
414088-1 Datasheet
414088-1 Datasheet , Through Hole,2GHz,75 Ohm,Jack, Female Socket,Press-Fit,BNC,Bayonet Lock,Silver,Press-Fit,1
414088-1 Classification
Coaxial Connectors (RF)
FAQ about Coaxial Connectors (RF)
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1. What is a coaxial connector?
Device for connecting coaxial cables
A coaxial connector is a device used to connect coaxial cables or other electronic devices, primarily used in radio frequency (RF) and microwave communications systems. It effectively reduces signal loss and provides good shielding to prevent electromagnetic interference (EMI).
Basic structure and working principle
The basic structure of a coaxial connector includes an inner conductor, an insulator, an outer conductor and a shield. The inner conductor is usually needle-shaped or hole-shaped, the insulator isolates the inner and outer conductors, and the outer conductor and shielding layer provide electromagnetic shielding to prevent signal interference. -
2. What is coaxial cable in electrical?
Coaxial cable is a transmission medium consisting of an inner conductor, an insulation layer, an outer conductor and a sheath. The inner conductor is usually one or more copper wires, and the outer conductor is composed of a metal braid or metal foil, both located on the same axis. This structure enables coaxial cables to have lower losses and higher anti-interference capabilities when transmitting high-frequency signals.
Coaxial cable structure and characteristics
The structure of coaxial cable includes the following parts:
Inner conductor: usually consists of a single or multiple copper wires.
Insulating layer: Located outside the inner conductor, it acts as an isolation and dielectric.
Outer conductor: usually constructed of metal braid or metal foil to form a shield.
Jacket: The outer layer that protects a cable, usually made of PVC or Teflon material. -
3. What is a coaxial F-type connector?
Coaxial RF connector, F-type connector
The coaxial F-type connector is a radio frequency coaxial connector, which is widely used in the fields of cable TV, satellite TV, cable TV modem and TV connection. It is characterized by threaded connection, convenient insertion, and stable performance. It is suitable for occasions with impedance matching requirements and non-matching occasions.
Definition and historical background
The F-type connector was first invented by Eric Winston in the early 1950s and became a common connection connector for VHF television antennas in the United States in the 1970s. Its characteristic impedance is 75 ohms, and the highest frequency can generally support 1GHz or 2.4GHz.
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