P1664 Allicdata Electronics
Allicdata Part #:

P1664-ND

Manufacturer Part#:

P1664

Price: $ 55.70
Product Category:

RF/IF and RFID

Manufacturer: Laird Technologies IAS
Short Description: ANT YAGI VHF ECO 162-166.5MHZ
More Detail: 164MHz Yagi, 4-Element RF Antenna 162MHz ~ 166MHz...
DataSheet: P1664 datasheetP1664 Datasheet/PDF
Quantity: 1000
10 +: $ 50.63310
Stock 1000Can Ship Immediately
$ 55.7
Specifications
Return Loss: --
Applications: --
Height (Max): 44.000" (111.76cm)
Mounting Type: Bracket Mount
Ingress Protection: --
Termination: Connector, UHF
Features: --
Power - Max: 400W
Gain: 6.5dBi
Series: --
VSWR: --
Number of Bands: 1
Antenna Type: Yagi, 4-Element
Frequency Range: 162MHz ~ 166MHz
Frequency (Center/Band): 164MHz
Frequency Group: VHF (f
Part Status: Active
Packaging: Bulk 
Description

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RF antennas are an essential part of modern communication and broadcast systems, as well as many modern radar and telemetry systems. The P1664, or patch antenna, is one type of antenna used for this type of purpose. Like other types of antennas, the patch antenna can be used to transmit and receive signals over a wide range of frequencies, and it is often used for wireless applications. In this article, we will discuss the various application fields for the P1664 antenna, as well as its working principle.

A patch antenna is typically used for mobile devices, such as cell phones, laptops, tablets, and their accessories. It excels in applications such as WLAN, Bluetooth, Zigbee, and LTE antennas, and it is typically used for portable devices because of its small size and low power consumption. The compact size of a patch antenna also makes it suitable for use in limited space. It can also be used for base station applications. Additionally, a patch antenna can be used in non-mobile applications, such as radar systems and satellite communication, as well as in TV and radio broadcasting.

A P1664 patch antenna typically consists of a substrate material upon which a radiating patch is placed at an appropriate distance from a ground plane. The patch antenna is then connected to an impedance matching circuit. This circuit helps to ensure that the antenna is matched to the input impedance of the transmitter or receiver. It also helps to reduce the losses in the system, making sure the signal is transmitted or received at its maximum strength. The most common materials used in patch antennas are FR4 and foam-filled air (FFAF). FR4 is a high-speed material which allows for high bandwidth and good standing-wave ratio (SWR). Foam-filled air provides a low-profile, lightweight antenna that can still handle high frequency signals.

The patch antenna works by sending energy across a surface, which reflects off the ground plane to form the signal. Rays of energy leave the radiating patch and travel in a wide area, forming a spherical pattern of radiation. The type of radiation pattern will depend on the design of the antenna. It can be an omnidirectional or directional pattern, with the surroundings or antenna gain influencing the pattern shape. Additionally, the radiation pattern will depend on the operating frequency.

The patch antenna is a versatile piece of equipment, and can be used for a wide range of applications. It is an efficient way of sending and receiving signals in a small form factor. Its ability to handle high frequencies, as well as its small size and low power requirements, make it ideal for applications such as WLAN, Bluetooth, Zigbee, and LTE antennas, as well as for base stations and other applications. Additionally, its spherical radiation pattern makes it suitable for a range of applications. With its wide range of uses and efficient performance, the P1664 patch antenna is a reliable and cost-effective choice for wireless communication.

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

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