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Supplier: Quarktwin Technology Ltd.
Description: RF Front End 1.6265GHz ~ 1.675GHz GPS
- Device Type / Applications: Front End
- IC Package Type: Other
- RoHS Compliant: Yes
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Supplier: ODG (Origin Data Global)
Description: GPS FRONT-END MODULE
- IC Package Type: Other
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Supplier: Broadcom Inc.
Description: The Avago ALM-GP002 is a GPS front-end module that combines a low noise amplifier (LNA) with GPS FBAR Filters. The LNA uses Avago's proprietary GaAs enhancement-mode pHEMT process to achieve high gain with very low noise figure and high linearity
- Amplifier Type: Low Noise Amplifier
- Applications: Mobile / Wireless Systems
- Frequency Range: 1575 MHz
- Maximum Gain: 19.1 dB
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Supplier: Broadcom Inc.
Description: The Avago ALM-GP001 is an ultra low noise GPS front-end module that combines a low noise amplifier (LNA) with GPS FBAR filters. The LNA uses Avago Technologies' proprietary GaAs enhancement-mode pHEMT process to achieve high gain with very low noise figure and high linearity.
- Amplifier Type: Low Noise Amplifier
- Applications: Mobile / Wireless Systems
- Frequency Range: 1575 MHz
- Maximum Gain: 16.3 dB
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Supplier: ODG (Origin Data Global)
Description: IC RF FRONT END GPS 32VFQFPN
- IC Package Type: Other
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Supplier: Broadcom Inc.
Description: The Avago ALM-GA001 is a low noise amplifier (LNA) designed for GPS/ISM/WiMAX applications. The LNA uses Avago's proprietary GaAs enhancement-mode pHEMT process to achieve high gain with very low noise figure and high linearity.
- Amplifier Type: Low Noise Amplifier
- Applications: Mobile / Wireless Systems
- Frequency Range: 1575 MHz
- Maximum Gain: 19.3 dB
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Supplier: Quarktwin Technology Ltd.
Description: RF Front End 1.575GHz GPS 32-QFN (5x5)
- Device Type / Applications: Front End
- IC Package Type: Other
- RoHS Compliant: Yes
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Supplier: DigiKey
Description: GPS/GNSS FRONT-END AMPLIFIER
- Device Type / Applications: Front End
- IC Package Type: Other
- Pin Count: 10 #
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Supplier: ODG (Origin Data Global)
Description: GPS LNA MODULE
- IC Package Type: Other
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Supplier: ODG (Origin Data Global)
Description: GPS LNA MODULE
- IC Package Type: Other
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Supplier: DigiKey
Description: RF Front End 1.575GHz ~ 4.092GHz GPS 32-QFN (5x5)
- Device Type / Applications: Front End
- IC Package Type: Other
- Pin Count: 32 #
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Supplier: DigiKey
Description: RF Front End 1.575GHz GPS 10-TDFN (3x3)
- Device Type / Applications: Front End
- IC Package Type: Other
- Pin Count: 10 #
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Supplier: DigiKey
Description: RF Front End 1575MHz GPS/GNSS 10-TDFN (3x3)
- Device Type / Applications: Front End
- IC Package Type: Other
- Pin Count: 10 #
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Supplier: Quarktwin Technology Ltd.
Description: RF Front End 1575MHz GPS 24-QFN (4x4)
- Device Type / Applications: Front End
- IC Package Type: Other
- RoHS Compliant: Yes
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Supplier: Quarktwin Technology Ltd.
Description: RF Front End 1.575GHz ~ 4.092GHz GPS 32-QFN (5x5)
- Device Type / Applications: Front End
- IC Package Type: Other
- RoHS Compliant: Yes
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Supplier: Skyworks Solutions, Inc.
Description: GPS/GNSS Pre-Filter + LNA Front-End Module
- Amplifier Type: Low Noise Amplifier
- Frequency Range: 1565 to 1606 MHz
- Maximum Gain: 14.4 dB
- Maximum Operating Voltage: 2.85 volts
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Supplier: Skyworks Solutions, Inc.
Description: GPS/GNSS/GNSS Pre-Filter + LNA Front-End Module
- Amplifier Type: Low Noise Amplifier
- Package Type: Surface Mount Technology (SMT), Through Hole Technology (THT), Other
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Supplier: Skyworks Solutions, Inc.
Description: GPS/GNSS Pre-Filter + LNA Front-End Module
- Amplifier Type: Low Noise Amplifier
- Frequency Range: 1565 to 1606 MHz
- Maximum Gain: 13.5 dB
- Maximum Operating Voltage: 2.85 volts
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Supplier: Skyworks Solutions, Inc.
Description: GPS/GNSS/GNSS Pre-Filter + LNA Front-End Module
- Amplifier Type: Low Noise Amplifier
- Package Type: Surface Mount Technology (SMT), Through Hole Technology (THT), Other
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Supplier: Telit IoT Solutions, Inc.
Description: multi-constellation tracking Ultra-sensitive -165 dBm (tracking) RF front-end Embedded LNA allows use of passive antennas Supports ephemeris file injection (A-GPS) Satellite Based Augmentation System (SBAS) compliant
- Features: RoHS Compliant
- IC Package Type: QFN
- Interface: UART
- Supply Voltage: Other
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Supplier: Richardson RFPD
Description: The SKY65725-11 is a shielded front-end module (FEM) with an integrated low noise amplifier (LNA) and pre-filter designed for Global Positioning System / Global Navigation Satellite System / Beidou Navigation Satellite System (GPS / GNSS / BDS) receiver applications. The device
- Device Type / Applications: Front End
- IC Package Type: Other
- Supply Voltage: Other
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Supplier: Richardson RFPD
Description: The OM8816-62 is a high-power, high-efficiency Front-End Module for GSM850 / EGSM900, DCS1800 and PCS1900 operation. The FEM supports Class12 General Packet Radio Service (GPRS), EDGE multi-slot operation, and dual band TD-SCDMA / TD-LTE linear transmission. This FEM builds upon OnMicro’s
- Device Type / Applications: Front End
- IC Package Type: LGA, Other
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Supplier: Microwave Photonic Systems, Inc.
Description: receive low level GPS satellite signals from various GPS Antennas or simulators. The system detects and converts the optical carriers to an RF signal capable of driving the front end of multiple GPS receivers. The OFW-1328 “L-Band” Fiber Optic Distribution System
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Description: IC RF FRONT END GPS
- Device Type: Other
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Supplier: Acme Chip Technology Co., Limited
Description: IC RF FRONT END GPS
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Supplier: Win Source Electronics
Description: Manufacturer: Microchip Technology Win Source Part Number: 226807-ATR0601 Packaging: Reel - TR Frequency: 1575MHz RF Type: GPS Categories: RF/IF and RFID Status: Obsolete(EOL) Case / Package: 24-QFN (4x4) Popularity: Medium Fake Threat In the Open Market: 41 pct. Supply and Demand Status:
- Frequency: 1.58E9 Hz
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Supplier: Infineon Technologies AG
Description: The BGA231N7 is a front-end low noise amplifier for Global Navigation Satellite Systems (GNSS) from 1550 MHz to 1615 MHz like GPS, Galileo, GLONASS and COMPASS. The LNA provides 16.0 dB gain and 0.75 dB noise figure at a current consumption of 4.4 mA in the application configuration.
- Frequency Range: 1550 to 1615 MHz
- Maximum Gain: 16 dB
- Minimum Gain: 16 dB
- Noise Figure: 0.7500 dB
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Supplier: Win Source Electronics
Description: Win Source Part Number: 1379888-SKY65933-11 Category: RF and Wireless - RF Front End (LNA + PA) Fake Threat In the Open Market: 59 pct. MSL Level: 3 (168 Hours) Mfr: Skyworks Solutions Inc. Package: Tape & Reel Product Status: Active RF Type: Galileo, GLONASS
- IC Package Type: Other
- Operating Frequency: 1559 to 1606 MHz
- Technology: Other
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Supplier: Lingto Electronic Limited
Description: GPS RECEIVER FRONT-END
- Device Type: Transceiver
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Description: GPS RECEIVER FRONT-END
- Device Type / Applications: Receiver, Sensor Interface
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Supplier: Acme Chip Technology Co., Limited
Description: GPS RECEIVER FRONT-END
- Device Type / Applications: Receiver, Sensor Interface
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Supplier: Richardson RFPD
Description: The SUMMIT 2629 integrates novel power amplifiers, low noise amplifiers, T/R switching, beamformers, calibration, gain control, beam table memory, temperature and power telemetry, and high-speed SPI control for a front-end module with optimal partitioning for 5G infrastructure. The SUMMIT
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A USRP2-based reconfigurable multi-constellation multi-frequency GNSS software receiver front end
For this purpose, we established experimental setups that allow simultaneous data collection of the USRP2 front ends, an instrumentation quality custom GPS front end TRIGR, and two high end commercial GNSS receivers from the same antenna and driven by the same local …
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A software approach to access ultra-wide band interference on GPS receivers
Simulated GPS front end functional blocks .
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http://www.nxp.com/documents/application_note/AN11101.pdf
AN11101 BGU7007 GPS front end evaluation board .
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Design and practical implementation of multifrequency RF front ends using direct RF sampling
Portion of the sampling frequency constraint function d(f ) for a civilian dual-frequency GPS front end .
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Design and implementation of a direct digitization GPS receiver front end
In the Section I, basic front end design equations are reviewed and a practical GPS front end implementation is considered.
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A 1.57-GHz RF front-end for triple conversion GPS receiver
A summary of the most important characteristics of this GPS front end is shown in Table I.
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http://etd.auburn.edu/bitstream/handle/10415/3416/clark_dissertation.pdf?sequence=2
The processes that the GPS front end take to generate these data .
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http://www.nxp.com/documents/user_manual/UM10490.pdf
UM10490 User manual for the BGU7004 GPS Front end evaluation board Rev. 1.0 — 14 June 2011 .
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A Software-Defined GPS and Galileo Receiver
Thus, a GPS front end with narrow bandwidth might need an update to be ideal for Galileo reception.
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Comparison of direct and downconverted digitization in GPS receiver front end designs
This paper compares the results of two GPS front end designs: a direct digitization against downconversion.
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