Allicdata Part #: | LPS69273NT-61SMAM-ND |
Manufacturer Part#: |
LPS69273NT-61SMAM |
Price: | $ 30.56 |
Product Category: | RF/IF and RFID |
Manufacturer: | Laird Technologies IAS |
Short Description: | ANT OMNI SISO 3G 4G SMA MALE |
More Detail: | 700MHz, 850MHz, 900MHz, 1.8GHz, 1.9GHz, 2.4GHz, 2.... |
DataSheet: | LPS69273NT-61SMAM Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 27.77670 |
Return Loss: | -- |
Applications: | LTE, Wi-Fi, WLAN |
Height (Max): | 1.220" (31.00mm) |
Mounting Type: | Panel Mount |
Ingress Protection: | IP67 |
Termination: | Cable (610mm) - SMA Male |
Features: | -- |
Power - Max: | 10W |
Gain: | 2.5dBi, 1.1dBi, 2.3dBi, 5.9dBi, 4.8dBi, 4.9dBi, 3.8dBi, 4dBi |
Series: | -- |
VSWR: | 3 |
Number of Bands: | 8 |
Antenna Type: | Puck |
Frequency Range: | 698MHz ~ 960MHz, 1.71GHz ~ 2.7GHz |
Frequency (Center/Band): | 700MHz, 850MHz, 900MHz, 1.8GHz, 1.9GHz, 2.4GHz, 2.6GHz |
Frequency Group: | Wide Band |
Part Status: | Active |
Packaging: | Bulk |
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Introduction to LPS 69273NT 61SMAM RF Antenna
The LPS 69273NT 61SMAM is a highly efficient, ultra-wideband antenna designed to offer exceptional performance in both urban and rural transmission environments. The antenna consists of a circularly-polarized array of 3/8 inch diameter, pre-tuned dipoles mounted on a 7.3 foot tall mount. The antenna features two 1/4 wave, individually adjustable dipoles, each providing a total gain of 6 dB. The antenna is connected to the transmitter via a coaxial cable, which carries the RF signal to the antenna.
Application Field of LPS 69273NT 61SMAM RF Antenna
The LPS 69273NT 61SMAM is an extremely versatile antenna, offering high efficiency and ultra-wideband coverage for a variety of applications. The antenna is commonly used for radio communication purposes, such as two-way radio, amateur radio, FM broadcasting, and military communications. Additionally, the antenna is often used to broadcast television and digital signals, such as those used in satellite and digital television transmission. The antenna is also used in cellular radio applications, such as trunked systems, cell phone towers, and base station sites.
Working Principle of LPS 69273NT 61SMAM RF Antenna
The LPS 69273NT 61SMAM works by receiving radio frequency signals from the transmitter, and then radiating the signals across a wide-angle pattern. The antenna features two independently adjustable, circularly-polarized dipoles, which serve to both receive and transmit radio signals. The dipoles are connected to the transmitter via a coaxial cable, which carries the RF signal to the antenna. Both dipoles are located in such a way that they provide equal coverage in both the horizontal and vertical planes. This allows the antenna to receive signals from a variety of directions simultaneously, and transmit signals out in a wide-angle pattern. The antenna is also highly directional – meaning that signals are primarily received and transmitted in the direction of the antenna\'s main lobe.
Advantage of LPS 69273NT 61SMAM RF Antenna
The primary advantage of the LPS 69273NT 61SMAM antenna is its ultra-Wideband coverage. This antenna has a beamwidth of 180° - meaning that it can receive and transmit signals in all directions simultaneously. This makes the antenna an ideal choice for a variety of applications, particularly broadcasting and two-way radio communication. Furthermore, the antenna features two pre-tuned dipoles, each providing a total gain of 6 dB. This helps to significantly increase signal strength and range, providing excellent performance in both urban and rural environments.
Conclusion
The LPS 69273NT 61SMAM is a highly efficient, ultra-wideband, circularly-polarized antenna designed to provide exceptional signal performance in both urban and rural environments. The antenna consists of two pre-tuned dipoles, each providing a gain of 6 dB, and is connected to the transmitter via a coaxial cable. The antenna is highly directional – meaning that signals are primarily received and transmitted in the direction of the antenna\'s main lobe. Furthermore, the antenna\'s ultra-wideband coverage makes it an ideal choice for a variety of applications, particularly broadcasting and two-way radio communication.
The specific data is subject to PDF, and the above content is for reference
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