WIH-AT-FA-HW Allicdata Electronics
Allicdata Part #:

WIH-AT-FA-HW-ND

Manufacturer Part#:

WIH-AT-FA-HW

Price: $ 0.00
Product Category:

RF/IF and RFID

Manufacturer: Thomas Research Products
Short Description: FIXED ANTENNA HALF WAVE DIPOLE
More Detail: 916MHz Whip, Straight RF Antenna Connector, RP-...
DataSheet: WIH-AT-FA-HW datasheetWIH-AT-FA-HW Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: wiHUBB®
Packaging: Bulk 
Part Status: Obsolete
Frequency Group: UHF (300 MHz ~ 1 GHz)
Frequency (Center/Band): 916MHz
Frequency Range: --
Antenna Type: Whip, Straight
Number of Bands: 1
VSWR: 1.9
Return Loss: --
Gain: --
Features: --
Termination: Connector, RP-SMA Male
Ingress Protection: --
Mounting Type: Connector Mount
Height (Max): 4.724" (120.00mm)
Applications: --
Description

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RF Antennas

WIH-AT-FA-HW stands for Wireless Home Automation Antenna Technology for Fixed-Input Application with Home Wireless functionality. It is a type of RF antenna technology which is used in wireless home automation applications. In this article, we will discuss the RF antennas applications and the working principle behind them.

Applications: RF antennas are used in various wireless communication systems, such as cellular phones, satellite television, broadcast radio, Wi-Fi networks, and even aircraft communications. These antennas are also useful for Home Automation applications, which allow automation of certain tasks in the home such as lighting, temperature, and security.

RF antennas can also be used in the manufacturing industry to detect and identify objects in a specific area. This is done using a special type of RF antenna technology known as RF Identification (RFID). RFID antennas are used to transmit and receive signals for identification purposes. They can be used to track goods and people, as well as to provide data security.

Working Principle: RF antennas work by converting electric signals into radio waves. The antenna acts as the receiver for radio signals to be received and as the transmitter for radio signals to be sent. The antenna is made up of two types of components: an antenna radiator and a reflector.

The antenna radiator consists of a rod, or dipole, which is connected to an RF circuit. This circuit is responsible for converting the electric signal into an electromagnetic wave to be radiated. The dipole acts as an aerial, radiating the RF energy outwards. The reflector is a dish or cone-shaped antenna which is used to focus the transmitted RF energy.

The way an RF antenna works is determined by its size, shape, and design. Different types of RF antenna technology have different features and can be used in different applications. For example, an RF antenna designed for a home automation system can have different features such as multiple antennas, adjustable gain, and low-noise levels.

In conclusion, RF antennas are an important part of modern technology and can be used in various applications. They are used to transmit and receive wireless signals and can be used in many different applications, from communications to home automation. Understanding the working principle of RF antennas is key to successful use of this technology.

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

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