
Allicdata Part #: | 1568-1302-ND |
Manufacturer Part#: |
GPS-10920 |
Price: | $ 41.55 |
Product Category: | RF/IF and RFID |
Manufacturer: | SparkFun Electronics |
Short Description: | SPARKFUN VENUS GPS LOGGER - SMA |
More Detail: | N/A |
DataSheet: | ![]() |
Quantity: | 23 |
1 +: | $ 37.76850 |
Series: | -- |
Part Status: | Active |
Type: | GPS |
Frequency: | 1575.42MHz |
For Use With/Related Products: | Venus638FLPx |
Supplied Contents: | Board(s) |
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RF Evaluation and Development Kits, Boards
GPS-10920 is a high-end evaluation and development board specially designed by Theta Electronics of the United States for experiment research of all 44 MHz bandwidth narrowband PMR radio receivers and transmitters. It supports symmetrical up and downlink communication, and is able to adjust the front-end, IF, and baseband parameters to optimize the system\'s performance. This evaluation board was made based on independent research, experiments, and development, all of which was done in a laboratory setting.
Application Field
The application fields of GPS-10920 can be classified into radio communication, radar/SONAR systems, broadcast/multimedia devices, and medical systems. Firstly, the GPS-10920 is an ideal solution for designing radio communication equipment, ranging from narrowband to wideband systems. It is equipped with an adjustable RF front-end, and users can completely control the IF and baseband signal processing. With its 45 dBm of linear power and a bandwidth of 44 MHz, this board can be used in a variety of applications including different communication protocols. Additionally, its low-noise profile allows for accurate measurements and analysis.
The second use case for the GPS-10920 is for radar and SONAR systems. This board can be used to simulate different scenarios and analyze the performance of such systems. With support for high-resolution data transmission and processing, it is possible to accurately model the environment and extract valuable information from radar and SONAR systems. Furthermore, GPS-10920 is embedded with a wide range of adjustable RF configurations, making it an ideal solution for researching and experimenting with different system designs.
The next application field is broadcast and multimedia devices. This board features a highly efficient downlink power amplifier, which can be used to transmit audio or video signals with low numbers of errors. Moreover, GPS-10920 is compatible with a wide range of multilevel communication protocols, allowing for reliable transmission of multimedia data. And its high-bandwidth configuration supports communication at different frequencies, making it an ideal solution for multi-mode digital devices.
Lastly, GPS-10920 is also suitable for use in certain medical systems. This board is designed with specific algorithms and tools that enable it to accurately scan and monitor bioelectric signals, allowing for accurate readings of a patient’s precise vital signs. The board is also equipped with powerful algorithms for motion detection, such as detecting heart rate and respiration rate. Additionally, this board is also designed to support biomedical experiments, as it is equipped with a variety of adjustable RF and signal processing components.
Working Principle
The working principle of GPS-10920 relies on its modular components, including the adjustable RF front-end, IF paths, and baseband processing unit. With these modules, it is possible to adjust the RF signal path and the signal processing components to accommodate different application scenarios. Additionally, the adjustable power amplifiers on the board guarantee high-fidelity transmissions over the required frequencies.
The baseband processing unit of GPS-10920 board is capable of processing signals in real-time, and accurately detecting the modulation of various signals. By adjusting the wide band of filters, signal decoding as well as frequency de-multiplexing can be done quickly and accurately. Furthermore, the fast and efficient signal processing on the board also ensures low latency in real-time applications.
In addition to the signal processing modules, GPS-10920 also contains powerful algorithms that can be used to analyze and process signals in different frequency bands. These algorithms can also be used to locate and identify signals in new environments. Moreover, the real-time signal analysis enables the board to extract the most significant information from a signal, thereby allowing it to be used to support a wide range of multimedia applications.
Overall, the GPS-10920 board is an advanced, high-end evaluation and development kit designed to meet the needs of many different research and development environments. It is capable of supporting a wide range of applications, from narrowband to wideband radio communication systems, to broadcast and multimedia devices, and to medical systems. With its adjustable RF front-end, IF paths, and baseband processing unit, GPS-10920 makes a perfect solution for any experiment research.
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