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Supplier: Linx Technologies
Description: Tiny GNSS Receiver for Positioning, Tracking and Navigation The TM Series GNSS receiver module is a self-contained high-performance Global Satellite Navigation System receiver designed for navigation, tracking and positioning applications. Based on the MediaTek chipset,
- Operating Frequency: 1,575.42 to 1,605.375 MHz
- Supply Voltage: 2.7 V
- Technology: GPS, USB
- Features: Other, RS232, Receiver
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Supplier: Broadcom Inc.
Description: Avago’s AMMP-6522 is an easy-to-use broadband integrated receiver in a surface mount package. The MMIC includes a 3-stage LNA to provide gain amplification and a gate-pumped image-reject mixer for frequency translation. The overall receiver performs Single Side Band down-conversion in
- Receiver Inputs: 1
- Operating Frequency: 7 to 20 MHz
- Operating Temperature: 150 C
- Supply Voltage: 3 to 5 volts
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Supplier: Linx Technologies
Description: The GM Series GNSS receiver module is a self-contained high-performance Global Satellite Navigation System receiver designed for navigation, tracking and positioning applications. Based on the MediaTek chipset, it can simultaneously acquire and track multiple satellite
- Operating Frequency: 1,575.42 to 1,605.375 MHz
- Supply Voltage: 2.7 V
- Technology: GPS, USB
- Features: Other, RS232, Receiver
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Supplier: Linx Technologies
Description: GPS Receiver for Positioning, Tracking and Navigation The FM Series GPS receiver module is a self-contained high-performance Global Positioning System receiver designed for navigation, tracking and positioning applications. Based on the MediaTek chipset, it can simultaneously
- Sensitivity: -161 to -143 dBm
- Operating Frequency: 1,575.42 MHz
- Operating Temperature: -40 to 85 C
- Supply Voltage: 3 to 4.3 volts
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Supplier: WINSYSTEMS, INC.
Description: The WinSystems GNSS/GPS Receiver Module is a self-contained, high performance Global Navigation Satellite System receiver based on the MediaTek 3337 chip set. While consuming less power than competitive products, the 3337 chip set can still simultaneously acquire
- Operating Temperature: -40 to 185 F
- Data Acquisition: Data Acquisition Computer Board
- Host Connection: Direct Backplane Interface
- Application: General Lab and Industrial
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Supplier: Quarktwin Technology Ltd.
Description: - Converter, Analog and Digital Satellite Receivers Voltage Regulator IC 1 Output 16-SOIC
- Operating Temperature: -20 to 85 C
- Features: Other
- Type: SOIC
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Supplier: Richardson RFPD
Description: Multi-band access to all four satellite constellations strengthens the receiver’s capability for delivering more reliable performance. ZED-F9T includes advanced security features such as secure boot, secure interfaces, and T-RAIM to provide the highest level timing integrity. The
- Supply Voltage: 1.8 V
- Technology: GPS
- Device Type: Receiver
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Supplier: Teledyne e2v Semiconductors
Description: Product Status: Active EV10AQ190A is fit for various applications, such as: High-Speed Data Acquisition High-Speed Test Instrumentation Automatic Test Equipment S-band Direct RF Down Conversion Ultra Wideband Satellite Digital Receiver Point-to-Point Microwave Receivers Machine
- Resolution: 10 bits
- Features: Other
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Supplier: Qorvo
Description: reporting. The chip features ESD protection on all pins, operates from a +1.2V supply, and is packaged in a WLCSP (Wafer Level Chip Scale Package) for easy installation in planar phased array antennas. The 2nd generation Ku-Band SATCOM beamformer IC family enables active antenna SATCOM
- Operating Frequency: 10,700 to 12,750 MHz
- Device Type: Beamformers, Receiver
- Features: Dual Polarity, Ku-Band, Other, RoHS Compliant
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Supplier: Anokiwave
Description: temperature and temperature reporting. The chip features ESD protection on all pins, operates from a +1.2V supply, and is packaged in a WLCSP (Wafer Level Chip Scale Package) for easy installation in planar phased array antennas. The 2nd generation Ka-Band SATCOM beamformer IC family
- Operating Frequency: 17,700 to 20,200 MHz
- Supply Voltage: 1.2 V
- Device Type: Beamformers, Receiver
- Features: Dual Polarity, K-Band, Other
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Supplier: Anokiwave
Description: The AWS-0102 is a highly integrated silicon quad core IC intended for satellite communications applications. The device supports four dual polarization radiating elements with full programmable polarization flexibility. The device provides 22 dB of gain with a noise figure of 3.4 dB.
- Input Frequency: 17,700 to 20,200 MHz
- Technology: ASIC
- Applications: Communication
- Features: ESD Protected
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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: Front End
- Features: Other
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Supplier: Qorvo
Description: AWMF-0238 sets a new industry benchmark in CMOS beamformers for satellite communications.
- Operating Frequency: 17,700 to 21,200 MHz
- Device Type: Beamformers, Receiver
- Features: Dual Polarity, K-Band, Other, RoHS Compliant
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Supplier: Telit IoT Solutions, Inc.
Description: eCall directive). The A-GPS receiver features very low power consumption, and adaptive micro-power controller to maintain hot start, position resolution accuracy of less than 2.5m, and a satellite based augmentation system, including GAGAN.
- Operating Frequency: 850 to 1,900 MHz
- Bias / Operating Current: 1.5 to 240 mA
- TJ: -40 to 85 C
- Sensitivity: -163 dBm
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Supplier: Broadcom Inc.
Description: VSAT or DBS receivers. The fully integrated microwave circuit eliminated the complex tuning and assembly processes typically required by hybrid (discrete-FET) amplifiers. The surface mount package allows elimination of “chip & wire” assembly for lower cost. The device has 50ohm input
- Frequency Range: 18,000 to 32,000 MHz
- Minimum Gain: 19 dB
- Maximum Gain: 24.4 dB
- Output Power( P1dB): 7.999999999999998 dBm
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Supplier: TOP-electronics USA
Description: and 210 PRN channels, L76 can acquire and track any mix of multiple satellite signals. Compared with using GPS only, enabling multiple GNSS systems generally increases the number of visible satellites, reduces the time to first fix and increases positioning accuracy, especially when
- Technology: GPS
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Supplier: Telit IoT Solutions, Inc.
Description: same time providing enhanced mechanical resistance to shock. An on-board ARM11 processor lets you deploy even the most demanding applications with high processing power requirements. The dual constellation GPS and GLONASS capability significantly boosts the satellite receiver’s overall
- Operating Frequency: 850 to 1,900 MHz
- Sensitivity: -146 to -162 dBm
- Technology: GPS
- Interface: I2C, USB
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Supplier: ValueTronics International, Inc.
Description: Engineers use RF signal generators as test equipment, mostly to measure responses of filters, amplifiers, and electrical components. Additional Features: Frequency Range: 10 MHz to 3 GHz Resolution: 1 Hz BPSK, QPSK, 8PSK, 16QAM, Optional 64QAM Direct-sequence spread spectrum modulation with
- Minimum Frequency Range: 3,000 MHz
- Maximum Frequency Range: 3,000 MHz
- Device Type: Generator
- Generator Type: Signal, Sweep
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Supplier: Telit IoT Solutions, Inc.
Description: The Jupiter SL869 V2 is a member of the SL869 family based on the low-power Mediatek MT3333. It features easy integration and superior battery-life performance.The receiver is designed for applications not requiring TRAIM or dead reckoning support; USB or CAN connection. The SL869 V2 allows
- Bias / Operating Current: 25 to 30 mA
- TJ: -40 to 85 C
- Pin Count: 24 #
- Sensitivity: -148 to -165 dBm
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Supplier: ValueTronics International, Inc.
Description: transmission lines can be compensated thus the signal fidelity at the receiver side increased. The AWG7000 Series, with its performance and analog output, enables users to directly generate pre/de-emphasized signals for next-generation serial data standards. It also enables users to generate
- Minimum Frequency Range: 750 MHz
- Maximum Frequency Range: 750 MHz
- Device Type: Generator
- Generator Type: Signal
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of transponders consists of a 10-Gbits transmitter and receiver, 16:1 electrical mux/demux components, and clock and data recovery (CDR) circuits all in the same module. Semiconductor Alert! (Aug. 28-Sept. 1) Chip-testing houses struggle to get new ATE systems SAN JOSE -- Faced with expanding lead times
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diode market, including three new LED-protecting encapsulants and a moldable resin. Siano launches chipset for mobile digital TV Mobile digital television (MDTV) chip developer Siano Mobile Silicon will introduce a standard receiver chipset for mobile digital television (MDTV) to the Asian market
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DirecTV D12-300 Satellite Receiver Set-Top Box
Overall, the DirecTV satellite receiver box is ST Microelectronics solution featuring the STV0299B satellite receiver chip , STB6000 tuner and STi5300GUB set-top decoder IC.
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Guoxin recently announced the successful qualification of a next generation satellite receiver chip at He Jian.
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Hybrid tuners, Digital Demodulator, Satellite receiver chips .
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Hybrid tuners, Digital Demodulator, Satellite receiver chips .
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Hybrid tuners, Digital Demodulator, Satellite receiver chips .
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Broadcom Accelerates The Emerging Market Transformation To HDTV
• Broadcom's new BCM7358 single-channel 1080p HD advanced video coding (AVC) satellite receiver chip features a high performance CPU and graphics engine, DLNA® (Digital Living Network Alliance) connectivity support and advanced security functionality.
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SMIC reports 2005 fourth quarter results
The new products we manufactured for those companies include the first 3G baseband chips on 0.13 micron process for the TD-SCDMA, WCDMA, and CDMA2000 standards, a digital satellite receiver chip for set-top boxes, and an HDTV video processor chip.
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Satellite Receiver Chip Block Diagram.
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Sparse equalizer using adaptive weight activation for fast start-up in ATSC DTV systems
From 1995 to 2000, he was with LSI Logic, Co. Ltd, where he developed digital Satellite receiver chip .
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However, the first MMIC satellite TV receiver chips [20,21] were not able to achieve a low enough noise figure because the MESFET was not good enough, and because of the high on-chip matching network losses.
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