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Supplier: Ubiquiti Networks, Inc.
Description: Featuring enhanced protection against ESD events, the LiteBeam® AC offers a more robust mount with separate azimuth and elevation adjustments. High-Gain, Directional, 2x2 MIMO Antenna The LiteBeam® AC provides 23 dBi of gain for long-distance connectivity and uses a directional antenna
- Applications: Cellular / PCS Base Station
- Pattern Type: Directional
- Technology Type: Dish / Reflector
- Form Factor / Mounting: Stationary / Fixed
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Supplier: Ubiquiti Networks, Inc.
Description: 2x2 MIMO airMAX® ac Sector AP The LiteBeam™ ac AP is an ultra-lightweight airMAX ac Access Point with incredible performance and disruptive pricing. airMAX ac Sector Coverage The LiteBeam ac AP features a 2x2 MIMO antenna and communicates with multiple airMAX ac CPEs within a 120° coverage
- Applications: Broadband Network / WLAN
- Pattern Type: Directional
- Technology Type: Panel / Sector
- Form Factor / Mounting: Stationary / Fixed
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Supplier: Ubiquiti Networks, Inc.
Description: Slant 45 Antenna for airFiber® The airFiber® X Antennas feature significant advances in noise isolation and beam performance to complement the airFiber X radios for carrier backhauls and Point-to-Point (PtP) bridging. Compact Footprint for Deployment Flexibility
- Primary Frequency Range: 2,400 to 11,000 MHz
- Gain: 23 to 35 dB
- Applications: Cellular / PCS Base Station
- Pattern Type: Directional
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Supplier: Ubiquiti Networks, Inc.
Description: 5 GHz, 3x30° HD Sector Antenna The innovative airPrism® Antenna features significant advances in noise isolation and beam performance for co‑location deployments in a multipoint network. 3 x 30° Beamwidth Coverage The three Rocket5ac Prism™ radios are installed at the
- Primary Frequency Range: 5,000 MHz
- Applications: Broadband Network / WLAN
- Pattern Type: Directional
- Technology Type: Panel / Sector
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Supplier: Qorvo
Description: Qorvo's AWS-0105 is a highly integrated silicon quad core IC intended for radar and 5G phased array applications. The device supports four radiating elements, single beam transmit and receive, and includes all requisite beam steering controls for 6 bit phase and gain control for
- Operating Frequency: 8,500 to 10,550 MHz
- Device Type: Beamformers, Transceiver
- Features: Other, RoHS Compliant, Single Polarity, X-Band
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Supplier: ValueTronics International, Inc.
Description: The SA5-6017-DP is an antenna from Proxim Wireless. Antennas boost signals and can overcome signal losses related to splitters and junctions. Used and refurbished antennas and antenna preamplifiers can save you money while delivering the same high quality as new products.
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Supplier: L-com, Inc.
Description: The Hyperlink HG5816SXP-090 spatial diversity antenna is designed with two identical and independent cross polarized antenna arrays fed via (4) connectors. The HG5816SXP-090 provides high gain with a wide 90° beam-width making them ideal professional quality "cell site"
- Primary Frequency Range: 5,000 MHz
- Gain: 16 dB
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Supplier: KP Performance Antennas
Description: KP-TWVP65S-12 features 12 dBi of gain and operates from 470 MHz to 698 MHz. Features 470 MHz to 698 MHz single vertically polarized TVWS sector antenna 12 dBi gain, 65 degree beam width 1x Type N female connectors Heavy duty mounting brackets & small footprint Built-in GPS
- Primary Frequency Range: 470 to 698 MHz
- Gain: 12 dB
- VSWR: 1.3 :1
- Operating Temperature: -40 to 140 F
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Supplier: L-com, Inc.
Description: The Hyperlink HG2412SXP-120 spatial diversity antenna is designed with two identical and independent cross polarized antenna arrays fed via (4) connectors. The HG2412SXP-120 provides high gain with a wide 120° beam-width making them ideal professional quality "cell site"
- Primary Frequency Range: 2,400 MHz
- Gain: 12 dB
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Supplier: L-com, Inc.
Description: The Hyperlink HG2416SXP-090 spatial diversity antenna is designed with two identical and independent cross polarized antenna arrays fed via (4) connectors. The HG2416SXP-090 provides high gain with a wide 90° beam-width making them ideal professional quality "cell site"
- Primary Frequency Range: 2,400 MHz
- Gain: 16 dB
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Supplier: L-com, Inc.
Description: applications. The wide band design of this antenna eliminates the need to purchase different antennas for each frequency. This simplifies installations since the same antenna can be used for a wide array of wireless applications. This antenna features 32 dBi of gain with
- Primary Frequency Range: 5,100 to 5,800 MHz
- Gain: 32 dB
- Applications: Broadband Network / WLAN
- Technology Type: Dish / Reflector, Horn / Aperture / Slot
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Supplier: KP Performance Antennas
Description: 902 MHz to 928 MHz. This antenna also features 2 ports and ±45° slant polarization. Features 902 MHz to 928 MHz dual polarized sector antenna 12.5 dBi gain, 120 degree beam width 2x Type N female integrated connectors Heavy duty mounting brackets & small footprint
- Primary Frequency Range: 900 MHz
- Gain: 12.5 dB
- VSWR: 1.5 :1
- Operating Temperature: -40 to 140 F
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Supplier: KP Performance Antennas
Description: Note: This 8-port sector antenna is specially designed to fit 2x Mimosa A5c radios (4-ports each radio), but will work with other 4-port 5 GHz radios. The KP-5HVX8-65 8-Port 65° 5 GHz Sector Antenna features dual-horizontal/vertical-polarization with a 65° azimuth beam width and
- Primary Frequency Range: 5,000 MHz
- Gain: 17.6 dB
- VSWR: 2.1 :1
- Operating Temperature: -40 to 140 F
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Description: In recent years, transmitarray antennas have attracted growing interest with many antenna researchers. Transmitarrays combines both optical and antenna array theory, leading to a low profile design with high gain, high radiation efficiency, and versatile radiation performance
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Supplier: KP Performance Antennas
Description: clients. The size of this sector antenna will allow you to install four sectors on one small tower, its 38 x 9.5 x 3 inches and weighs only 12 Ibs. Because of its high gain it offers superior extended range. The 90 degree beam width covers a large service area. The heavy
- Primary Frequency Range: 900 MHz
- Gain: 12.5 dB
- VSWR: 1.5 :1
- Operating Temperature: -40 to 140 F
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Supplier: Allied Electronics, Inc.
Description: Superior Performance The HyperLink Technologies's HyperGain® HG9013Y High-Performance Yagi Antennas combines high gain with a wide beam-width. They are ideally suited for directional applications in the 900MHz ISM and GSM bands. Typical applications include 900MHz Wireless LAN, SCADA,
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Supplier: Allied Electronics, Inc.
Description: Superior Performance The HyperGain® HG2424G High-Performance Reflector Grid Wi-Fi Antenna provides 24 dBi gain with an 8 degree beam-width for long-range highly directional applications. Applications include point to point systems, point to multi-point and wireless bridges in the
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Supplier: Qorvo
Description: Qorvo's AWS-0103 is a highly integrated silicon quad core IC intended for radar and 5G phased array applications. The device supports four radiating elements, single beam transmit and dual beam receive, and includes all requisite beam steering controls for 6 bit phase and gain
- Operating Frequency: 8,500 to 10,550 MHz
- Device Type: Beamformers, Transceiver
- Features: Other, RoHS Compliant, Single Polarity, X-Band
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Supplier: Anokiwave
Description: The AWS-0101 is a highly integrated silicon quad core IC intended for radar and 5G phased array applications. The device supports four radiating elements, single beam transmit, and dual beam receive and includes all requisite beam steering controls for 6 bit phase and gain
- Frequency Range: 8,500 to 10,550 MHz
- Package Type: Surface Mount
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Supplier: APITech
Description: Nominal Impedance: 50 Ohm RF Connectors: SMA Female Operating Frequency: Varies by configuration Applications: WiFi, WiMAX, 3G/4G LTE Testing, Link Simulation MIMO Testing Multipath Simulation and Performance Evaluation Antenna Array Beam-forming Interferometer System Simulation and
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Supplier: Qorvo
Description: Qorvo's AWMF-0156 is a highly integrated silicon quad core IC intended for 5G phased array applications. The device supports four Tx/Rx radiating elements, includes all requisite beam steering controls for phase and gain control, and operates in half duplex fashion to enable a single
- Operating Frequency: 37,000 to 40,000 MHz
- Device Type: Beamformers, Transceiver
- Features: Other, RoHS Compliant, Single Polarity
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Supplier: Qorvo
Description: Qorvo's AWMF-0158 is a highly integrated silicon quad core IC intended for 5G phased array applications. The device supports four Tx/Rx radiating elements, includes all requisite beam steering controls for phase and gain control, and operates in half duplex fashion to enable a single
- Operating Frequency: 26,500 to 29,500 MHz
- Device Type: Beamformers, Transceiver
- Features: Other, RoHS Compliant, Single Polarity
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Supplier: Anokiwave
Description: and improved efficiency 4 dual-pol or 8 single-pol antenna configuration Tx/Rx half duplex operation Single antenna for Tx and Rx Phase and gain control Telemetry reporting Fast beam steering Zero-Cal® phase/gain calibration free NEW FC-CSP package Consider AWMF-0210 or
- Operating Frequency: 24,500 to 29,500 MHz
- Device Type: Beamformers, Transceiver
- Features: Dual Polarity, Other
- Package Type: FCCSP
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Supplier: Loos & Co., Inc.
Description: in any application, thus adding an additional margin of safety. It is designed to enhance low light or nighttime visibility where delineation is needed for hard-to-see hazardous objects. A brilliant series of silver white dashes are reflected directly back to the light source when a beam of
- Diameter: 0.09375 to 0.25 inch
- Number of Strands: 7
- Wires per Strand: 7
- Application: Aircraft Cable, Automotive / Vehicular, Commercial, Crane / Hoist / Lift, Elevator, Forestry, Marine, Mining, Oil and Gas Wells, Structural / Bridge, Tower / Antenna Guy Wire
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Supplier: Anokiwave
Description: fast beam switching using on-chip beam weight storage registers. The device features ESD protection on all pins, operates from +1.8 V and 2.5V supplies, and is packaged in a 3.6 mm x 3.6 mm WLCSP (wafer level chip scale package) for easy flip chip installation in planar phased
- Input Frequency: 26,500 to 29,500 MHz
- Bandwidth: 28,000 MHz
- Technology: ASIC
- Applications: Communication
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Supplier: Anokiwave
Description: compensation over temperature, temperature reporting, Tx power telemetry, and fast beam switching using on-chip beam weight storage registers. The device features ESD protection on all pins, operates from a +1.8 V and 2.5 V supply, and is packaged in a 3.70 x 3.70 mm WLCSP
- Frequency Range: 37,100 to 40,000 MHz
- Package Type: Surface Mount
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Supplier: SAE International
Description: 500 kW at X-band and S-band frequencies. The combination of antenna reflector size and high frequency results in a very narrow beam with extensive oscillating near-field pattern. Another unique feature of the DSN antennas is that they (and the radiated beam) move
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Supplier: KRYTAR, Inc.
Description: direction of a beam, or beams, of radio transmission. KRYTAR’s Butler Matrix can be utilized as a beamforming network used to feed a phased array of antenna elements with the purpose to control the direction of a beam, or beams, of radio transmission. The advantage
- Operating Frequency: 2,000 to 8,000 MHz
- Device Type: Beamformers
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Supplier: KRYTAR, Inc.
Description: direction of a beam, or beams, of radio transmission. KRYTAR’s Butler Matrix can be utilized as a beamforming network used to feed a phased array of antenna elements with the purpose to control the direction of a beam, or beams, of radio transmission. The advantage
- Operating Frequency: 24,000 to 30,000 MHz
- Device Type: Beamformers
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Supplier: KRYTAR, Inc.
Description: direction of a beam, or beams, of radio transmission. KRYTAR’s Butler Matrix can be utilized as a beamforming network used to feed a phased array of antenna elements with the purpose to control the direction of a beam, or beams, of radio transmission. The advantage
- Frequency Range: 10,000 to 40,000 MHz
- Insertion Loss: 12 dB
- Input VSWR: 2 :1
- Input Power: 43.01029995663981 dBm
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Supplier: KRYTAR, Inc.
Description: direction of a beam, or beams, of radio transmission. KRYTAR’s Butler Matrix can be utilized as a beamforming network used to feed a phased array of antenna elements with the purpose to control the direction of a beam, or beams, of radio transmission. The advantage
- Operating Frequency: 2,000 to 7,000 MHz
- Device Type: Beamformers
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Supplier: Richardson RFPD
Description: amplitude balance, low insertion loss, and high port-to-port isolation. They are designed to deliver maximum power with progressive phase shift to the output in the transmitting mode and collect signals from all beam directions with the full gain of antenna array in the receiving mode.
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Supplier: Airbus Group
Description: carry a large planar phased array antenna, twice the stowed satellite length. Mechanical steering of the whole satellite provides major beam pointing of ±45°, enabling access to both left and right sides, augmenting and simplifying the electronic beam steering thus minimising
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Supplier: Exail
Description: antenna provides exclusive tiltable sonar beams, providing three dimensional water column and biomass control all around the vessel, even with rough sea conditions and shallow water. SeapiX brings rich functionalities to the skipper, from six simultaneous sonar and echo sounder modes
- Features: Multiple Frequencies
- Transducer Style: Transmitter / Receiver Combination
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Supplier: Infineon Technologies AG
Description: radar sensor to detect motion and direction of motion using only two GPIOs. Summary of Features 18 mm x 20 mm size 1Tx 1Rx Antennas in Package (AIP) 80° Half Power Beam Width (HPBW) Radar MMIC configured in Autonmous mode 2 LEDs indicating the detectors' outputs FCC
- Category: Development Board
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and test equipment announces a New 4X4 BUTLER Matrix with broadband frequency coverage from 2.4 to 7.25 GHz. A Butler matrix is a beamforming network used to feed a phased array of antenna elements. Its purpose is to control the direction of a beam, or beams, of radio transmission. KRYTAR’s (read more)
Browse RF Phase Shifters Datasheets for KRYTAR, Inc. -
monitoring and measurement, antenna beam forming, and EMC testing environments. For many space-restricted applications the compact size makes KRYTAR directional couplers ideal. KRYTAR’s new directional coupler, Model 110050030, offers superior (read more)
Browse RF Couplers Datasheets for KRYTAR, Inc. -
Couplers offer the tightest specifications in the industry and are uniquely designed for systems applications to perform many functions, including splitting and combining signals in amplifiers, switching circuits, and antenna beam-forming networks used in a wide range of commercial and military (read more)
Browse RF Couplers Datasheets for KRYTAR, Inc. -
Couplers offer the tightest specifications in the industry and are uniquely designed for systems applications to perform many functions, including splitting and combining signals in amplifiers, switching circuits, and antenna beam-forming networks used in a wide range of commercial and military (read more)
Browse RF Couplers Datasheets for KRYTAR, Inc. -
Couplers offer the tightest specifications in the industry and are uniquely designed for systems applications to perform many functions, including splitting and combining signals in amplifiers, switching circuits, and antenna beam-forming networks used in a wide range of commercial and military (read more)
Browse RF Couplers Datasheets for KRYTAR, Inc. -
. SUMMIT 2629 Product Highlights: • Industry leading efficiency more than 2X better than existing solutions • Four-element Dual-pol. TX/RX with Independent Polarization Beam Directions • High-Power, High-Efficiency SOI CMOS Power Amplifiers • State-of-the-art Low (read more)
Browse RF Modules Datasheets for Richardson RFPD -
directional coupler also lends itself to wireless designs and many test and measurement applications from UHF through C-Band including electronic warfare (EW), commercial wireless, SATCOM, radar, signal monitoring and measurement, antenna beam forming, and EMC testing environments. For many space (read more)
Browse RF Couplers Datasheets for KRYTAR, Inc. -
measurement applications within 2 to 50 GHz (S- through Q-Bands) including electronic warfare (EW), commercial wireless, 5G communications, SATCOM, radar, signal monitoring and measurement, antenna beam forming, electric vehicle (EV) systems, and EMC (electromagnetic compatibility) testing environments. For (read more)
Browse RF Couplers Datasheets for KRYTAR, Inc. -
Wave, SATCOM, radar, signal monitoring and measurement, antenna beam forming, and EMC (electromagnetic compatibility) testing environments. For many space-restricted applications the compact size makes KRYTAR directional couplers ideal solutions. The directional coupler can also be manufactured to meet ridged military specifications. (read more)
Browse RF Couplers Datasheets for KRYTAR, Inc. -
of antenna elements. Its purpose is to control the direction of a beam, or beams, of radio transmission. KRYTAR’s long history of excellence in the design of broadband microwave components affords the ability to produce unique ultra-broadband passive beamforming network solutions to the (read more)
Browse RF Couplers Datasheets for KRYTAR, Inc.
Conduct Research Top
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Phase Conjugate Laser Optics - Preface
are now routinely used to focus high-energy densities on a. surface. This ability also opens new opportunities in basic science interactions for. plasma physics or X-ray generation with sources delivering ultrashort pulses. Also. due to the directivity of optical antennas, lasers will undoubtly
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Journal of Guidance, Control, and Dynamics > Attitude Commands Avoiding Bright Objects and Maintaining Communication with Ground Station
The requirement for communication, then, is Á¡x · µcone where µcone is the semicone angle of the ¡ x antenna beam .
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Results from TerraSAR-X geometric and radiometric calibration
According to the previously described test site configuration a total of 30 target positions have been established in an area of 120 km x 40 km covering several crossing orbits of TerraSAR- X antenna beams .
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Analyzing Options for Airborne Emergency Wireless Communications
… in order to reduce the antenna footprint while increasing sensitivity x Antennas should be capable of transmitting more than one carrier frequency x Due to the gains in coverage area, antennas should be adaptive systems x Antenna beam width should be such …
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Individual T/R module characterisation of the TerraSAR-X active phased array antenna by calibration pulse sequences with orthogonal codes
The TerraSAR- X antenna beams are realised by applying row- wise excitation settings for elevation steering and panel-wise excitation settings for azimuth steering.
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Journal of Aircraft > New Airborne Weather Radar Systems
7=31og- PRF(Hz) x antenna beam width (deg) total antenna scan angle (deg) The final form of the weather radar range equation becomes .
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Bistatic TerraSAR-X/F-SAR Spaceborne–Airborne SAR Experiment: Description, Data Processing, and Results
As stated in the pre- vious section, the TerraSAR- X antenna beam was steered in azimuth to perform a high-resolution spotlight illumination of the scene so that footprint overlapping time was maximized.
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W-band noise radar sensor for car collision warning systems
During this time interval W T X antenna beams pass over eight adjacent azimuth positions while holding on for 5ms in each of them.
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A multiple beam antenna with simultaneous independent beams over limited scan sectors
For a 10 x 10 beam antenna r l t h scanrange o f 16 beamwidths along each principal plane, the phase aberration .
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Spread Spectrum in Communication
x ^ beam antenna response factor .
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RADIATION PHENOMENA IN PLASMAS
a l s o included t o compare with the beam antenna e x c i t a t i o n s .
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