Allicdata Part #: | 931-1148-ND |
Manufacturer Part#: |
AP.10F.07.0039B |
Price: | $ 13.87 |
Product Category: | RF/IF and RFID |
Manufacturer: | Taoglas Limited |
Short Description: | ANTENNA GPS PATCH IPEX MHFI SMD |
More Detail: | 1.575GHz GPS Ceramic Patch RF Antenna 1.574GHz ~ 1... |
DataSheet: | AP.10F.07.0039B Datasheet/PDF |
Quantity: | 122 |
1 +: | $ 12.61260 |
100 +: | $ 9.46099 |
500 +: | $ 8.40980 |
Series: | -- |
Packaging: | Tray |
Part Status: | Active |
Frequency Group: | UHF (1 GHz ~ 2 GHz) |
Frequency (Center/Band): | 1.575GHz |
Frequency Range: | 1.574GHz ~ 1.576GHz |
Antenna Type: | Ceramic Patch |
Number of Bands: | 1 |
VSWR: | 2 |
Return Loss: | -- |
Gain: | -10dBic |
Features: | LNA, Filter |
Termination: | Cable (39mm) - U.FL |
Ingress Protection: | -- |
Mounting Type: | Surface Mount |
Height (Max): | 0.244" (6.20mm) |
Applications: | GPS |
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RF antennas have become incredibly popular in recent years, as their use allows for a range of innovative products and applications, from personal devices to large-scale infrastructures. Applications of RF antennas encompass a wide range of areas, from consumer electronics to large-scale military installations. One particular application that has seen significant use recently in the electronics industry is the AP.10F.07.0039B application field and working principle.
The AP.10F.07.0039B application and working principle utilizes an antenna that operates at the RF frequency of 868MHz. This antenna was developed to offer a flexible approach to short and medium-distance communication, with a range of up to three kilometers. The AP.10F.07.0039B antenna provides a number of advantages over other antennas operating at this frequency, such as improved antenna reception and high effective impedance. In addition, the AP.10F.07.0039B is designed for low power consumption and non-line-of-sight operation, making it an ideal choice for operators intending to utilize its power for longer-range communication.
The working principle of the AP.10F.07.0039B antenna includes the use of three dipoles arranged in a triangular layout. These dipoles are arranged along the vertical and horizontal axes, with the vertical dipole radiating most of the signal, while the other two dipoles act to improve the reception and directivity. The dipoles are placed on a plastic grid substrate with a coaxial feedline connected to the antenna\'s center. This is then connected to a transmitter or receiver module, which is responsible for sending and receiving the signal.
The AP.10F.07.0039B antenna operates in the linear polarization mode and has a narrow directional beam, making it more suitable for mobile devices. Additionally, the antenna is designed with a circularly polarized signal pattern, to help minimize multipath interference and provide an improved signal-to-noise ratio. A series of radials, placed along the antenna’s perimeter, are used to cancel out any undesirable radiation patterns, which can affect the antenna’s performance. This ensures that the antenna will operate at its highest efficiency in certain environments.
AP.10F.07.0039B antenna has been tested in a variety of applications and its performance has indicated that it can be used to handle transmissions over shorter-range distances very efficiently. In addition, the antenna is highly resistant to fading due to interference and has a high power capacity. This makes the antenna an ideal choice for applications where high signal strength, low power consumption and low complexity are important factors. The antenna is also beneficial in transmitting data over longer-range applications, as it can reduce the amount of interference produced by adjacent antennas.
The AP.10F.07.0039B antenna has proven to be a valuable addition to the electronics industry, offering applications a reliable and cost-effective means of communication. Its flexibility and low power consumption offer a range of benefits that include improved antenna reception, enhanced signal-to-noise ratio and low complexity. These advantages make the AP.10F.07.0039B a cost-effective choice for operators seeking to utilize RF antennas for shorter- and medium-distance communication.
The specific data is subject to PDF, and the above content is for reference
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