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Supplier: Accuris
Description: SECOND-GENERATION KU-BAND AND KA-BAND SATELLITE COMMUNICATION SYSTEM
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Supplier: Accuris
Description: MARK I AVIATION KU-BAND AND KA-BAND SATELLITE COMMUNICATION SYSTEM PART 2 ELECTRICAL INTERFACES
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Supplier: Accuris
Description: MARK I AVIATION KU-BAND AND KA-BAND SATELLITE COMMUNICATION SYSTEM, PART 3 INFORMATION TRANSFER AND INTERNETWORKING
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Supplier: Accuris
Description: MARK I AVIATION KU-BAND AND KA-BAND SATELLITE COMMUNICATION SYSTEM PART 3 INFORMATION TRANSFER AND INTERNETWORKING
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Supplier: Anokiwave
Description: Ku-Band Quad 4x2 Tx Beamformer IC The AWMF-0147 is a highly integrated silicon quad core IC intended for satellite communications applications. The device supports four dual polarization radiating elements with full polarization flexibility. Additional features include gain
- Operating Frequency: 13,750 to 14,500 MHz
- Supply Voltage: 1.2 V
- Device Type: Beamformers, Transmitter
- Features: Dual Polarity, Ku-Band, Other
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Supplier: Anokiwave
Description: Ku-Band Quad 4x2 Rx Beamformer IC The AWMF-0146 is a highly integrated silicon quad core IC intended for satellite communications applications. The device supports four dual polarization radiating elements with full polarization flexibility. Additional features include gain
- Operating Frequency: 10,700 to 12,750 MHz
- Supply Voltage: 1.2 V
- Device Type: Beamformers, Receiver
- Features: Dual Polarity, Ku-Band, Other
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Supplier: Airbus Group
Description: E3000 spacecraft with a launch mass of approximately 6,000kg and an electrical power of 15kW. Y1A is equipped with a communications payload operating in C-, Ku- and Ka-bands whilst Y1B is an all-Ka-band satellite. Launched in 2011 and 2012, they will operate for a minimum
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Supplier: Airbus Group
Description: A satellite system for Asian telecommunications The ST-1 satellite and its payload, which were launched in 1998, were designed and built by Airbus Defence and Space to provide telecommunications and direct-to-home broadcast services to most of Asia. The contract included the
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Supplier: Qorvo
Description: Qorvo's CMD227 die is a broadband MMIC GaAs x2 passive frequency multiplier. When driven by a +15 dBm signal, the multiplier provides 11 dB conversion loss at an output frequency of 23 GHz. The Fo and 3Fo isolations are 40 dBc and 43 dBc respectively. The CMD227 multiplier MMIC is a 50 ohm matched
- Input Frequency Range: 8,000 to 15,000 MHz
- Output Frequency Range: 16,000 to 30,000 MHz
- Conversion Gain: -11 dB
- Form Factor: IC Chip
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Supplier: Qorvo
Description: Qorvo's CMD227C3 is a broadband MMIC GaAs x2 passive frequency multiplier in a ceramic, QFN-style package. When driven by a +15 dBm signal, the multiplier provides 11 dB conversion loss at an output frequency of 23 GHz. The Fo and 3Fo isolations are 38 dBc and 49 dBc respectively. The CMD227C3 is a
- Input Frequency Range: 8,000 to 15,000 MHz
- Output Frequency Range: 16,000 to 30,000 MHz
- Conversion Gain: -11 dB
- Form Factor: IC Chip
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Supplier: Cobham Antennas Systems
Description: Band, X Band, KU Band, K Band, K Band as well as wideband and ultra-wideband (UWB).
- Primary Frequency Range: 2,350 to 2,550 MHz
- Gain: 7 dB
- Pattern Type: Directional
- Applications: Dual Band / Multi-band
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Supplier: Microwave Photonic Systems, Inc.
Description: 10350A, with the Ku-Band optical receiver plug-in module, Model # 10350B. The IFL can also support mixed mode satellite operations; that is, simultaneous X-Band and Ku-Band operations. The IFL is delivered with a Windows based RS-485, Monitor and Control
- Wavelength: 1,550 nm
- Bandwidth: 100 to 18,000 MHz
- Signal Output:: RF
- Cable Type: Single Mode
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Supplier: Airbus Group
Description: communications system with dedicated military communications satellites. Airbus Defence and Space was prime contractor of the space segment, which is composed of two satellites and based on a Spacebus platform. The first satellite was launched in autumn 2009, the second
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Supplier: Qorvo
Description: commercial Ku-band radar and satellite communication systems. Lead-free and RoHS compliant. Evaluation boards are available upon request.
- Frequency Range: 13,400 to 16,500 MHz
- Minimum Gain: 26 dB
- Maximum Gain: 26 dB
- Minimum Operating Voltage: 28 volts
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Supplier: Qorvo
Description: for military and commercial Ku-band radar and satellite communication systems. Lead-free and RoHS compliant. Evaluation boards are available upon request. For additional information on GaN thermal performance refer to the following application note and video.
- Open-Loop Gain (AVOL): 34.4 dB
- Supply Voltage (VS): 28 volts
- Operating Range: Military
- Features: Other, Power Operational Amplifiers
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Supplier: Infineon Technologies AG
Description: as high as 12 GHz. Summary of Features • Low inductance Ls = 2 nH (typical) • Low capacitance C = 0.29 pF (typical) • Industry standard SOT143 (2.9 mm x 2.4 mm x 1 mm) • Pb-free (RoHS compliant) and halogen free Potential Applications For mixers in: • Satellite systems • Low noise
- VF: 0.25 to 0.32 volts
- IF: 110 mA
- VR: 4 volts
- Diode Applications: Detector, Mixer
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Supplier: ValueTronics International, Inc.
Description: system applications. This includes high-technology systems operating in the Ku-band range. You can measure signal performance on a wide variety of microwave systems; radar, satellite and terrestrial communications, and complex military communications and
- Frequency Range: 20,000,000 kHz
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stable microwave signal transmission, our X Ku Band 8.0-18.0GHz Broadband Coaxial RF Microwave Isolator is professionally designed for satellite communication, radar, base station, aerospace and other high-demand microwave scenarios. (read more)
Browse RF Isolators and RF Circulators Datasheets for 5o.com -
, covering both X Band and Ku Band applications. This precision-engineered adapter features a robust construction with a square flange design, ensuring secure and stable connections between waveguide systems and coaxial cables. Designed for radar (read more)
Browse RF Waveguide Components Datasheets for 5o.com -
handle the requirements of radar systems, satellite communications, and wireless networks, covering both the X-band and Ku-band. Key Design Features: Available in dual or triple junction (read more)
Browse RF Isolators and RF Circulators Datasheets for UIY Inc. -
The design of our Ku-Band Airborne Frequency Converter is ideal for phase noise requirements of commercial and defence (read more)
Browse Frequency Synthesizers Datasheets for Molex Signal Tech Industrial Ltd. -
MicroMATES are high-frequency wire solutions designed specifically to serve Ku Band and X Band applications, provide high bandwidth for data and support satellite communications. (read more)
Browse Coaxial Cables and Triaxial Cables Datasheets for PIC Wire & Cable -
power amplifiers in 4G/LTE and 5G base stations from antenna mismatch and load variations. ·Satellite Communications: Ensures signal integrity in both uplink and downlink systems operating within Ku- and C-band frequencies. ·Military & Radar Systems (read more)
Browse RF Isolators and RF Circulators Datasheets for 5o.com -
with precision. GPS Connectivity: Supporting accurate global positioning for navigation and communication. Iridium: Enabling robust satellite communication solutions. Ku-Band SATCOM Antennas: Delivering high (read more)
Browse Coaxial Cables and Triaxial Cables Datasheets for PIC Wire & Cable -
need to support satellite communications. Like all our 50 ohm RF cables, MicroMATES® far exceed Mil-Spec Standards with minimum 200° rated materials throughout. Designed specifically to serve Ku Band Cable and X Band Cable (read more)
Browse RF and Microwave Connectors Datasheets for PIC Wire & Cable -
and simplifies manufacturing. Trend 2: Operating at Increasingly High Frequencies In response to the ever-increasing demand for communications via satellite, satcom designers are pushing through X and Ku bands to the Ka and V bands. This shift is ideal for high-throughput satellites (read more)
Browse RF Filters and Microwave Filters Datasheets for Knowles Precision Devices
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XFdtd Analysis of a Ku-band Satellite Antenna Array for Mobile Devices
In this example, a compact Ku-band antenna array is demonstrated for use in mobile device applications. The antenna is tuned for 12.5 GHz operation and contains a 4x4 array of elements which each consist of a set of patch antennas oriented and phased to produce a circularly-polarized far field
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What are the Differences Between Ka-band and Ku-band in Satellite Communications?
The Ka-band with frequency range 26.5 ~ 40GHz, is part of the microwave band of the electromagnetic spectrum. In other words, the band is directly above the K-band. The Ka-band is also known as the 30/20 GHz band and is commonly used for satellite communications.
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Common Frequency Band of Satellite Communication (C / Ku / KA band)
UIY Inc. specializes in RF and microwave passive components (RF isolator, circulator, attenuator, coaxial load, filter, etc.), integrating R &D, production, sales and service. The products are widely used in radar, instrument, navigation, microwave communication, mobile communication, space
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Broadband multiple satellite MIMO system
As the number of mobile broadband users is expected to explode and they will require higher bit rate services, the capacity provided by the Ku band satellite system must be increased within the allocated frequency bandwidth.
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Adaptive Multi-Carrier Demodulator for Variable Polarization Frequency Division Multiplexing
In a typical Ku band satellite system , either Vertical or Horizontal (V/H) linear polarization is assigned to each user station.
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Mobile satellite communication systems. A competitive scenario for new systems and services
… theX.400standardprotocols; - Use of special, optunised pmtocols for localisation and contrdoffleetsofvehicles; - Modular system approach (the hub station can be upgraded or other hubs can be added to ammmodate growing traftic); - Predisposition for future L/ Ku band satellite systems ; - Use of special modulation …
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Federal Register > Monday, August 12, 2013 > [78 FR 48855] Secretarial Infrastructure Business Development Mission to Mexico November 18-23, 2013
Greater broadband penetration, the development of a national mobile 4G network, a new L and Ku band satellite system for national security and civil communications, and government programs to promote digital literacy will in turn fuel demand for a wide array of …
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Comparison of Ku-band satellite rain attenuation with ITU-R prediction models in the tropics
In order to accurately estimate the required fade margin for Ku band satellite system , designers need to carefully evaluate and quantify all available signal attenuation information.
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Modeling the influence of onboard processing and Linearization Units on the performance enhancement of a high data rate satellite
The details of simulation of onboard processing effects in a Ku band satellite system such as noise effect and nonlinearity of amplifier are presented.
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An integrated approach for IP networking over the wideband gapfiller satellite
To complement MILSATCOM systems, commercial C and Ku band satellite systems also provide significant ca- pacity for military communications networks.
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Tripulse: A system for determining orientation and attitude of a satellite borne active phased array
Consider a Ku band satellite system in a geostationary orbit.
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Spread-Spectrum Multiple Access Using Wideband Noncoherent MFSK
A bit error rate performance analysis is presented and system throughput is calculated for sample C band and Ku band satellite systems .
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TVRO Antenna Size, Ku Band Versus C Band
It will not necessarily be true for Ku band satellite systems operating in the broadcast satellite service band, where maximum power flux density, and therefore EIRP, is limited.
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