DBRF5110C
Manufacturer No:
DBRF5110C
Description:
IC MOD CORTEX-A9 800MHZ 1GB
Datasheet:
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DBRF5110C Specifications
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TypeParameter
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Operating Temperature0°C ~ 70°C
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Size / Dimension-
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Connector Type3 x 140 Pins 0.6mm Pitch
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RAM Size1GB
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Flash Size1GB (NAND), 32MB (NOR)
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Speed800MHz
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Co-ProcessorArtix-7
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Core ProcessorARM® Cortex®-A9, XC7Z020-3
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Module/Board TypeMPU, FPGA Core
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PackagingBox
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Product StatusActive
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SeriesBORA
The DBRF5110C integrated circuit chips have several advantages and application scenarios:Advantages: 1. High Performance: The DBRF5110C chips offer high performance with low power consumption, making them suitable for various applications. 2. Wide Frequency Range: These chips support a wide frequency range, enabling them to be used in different communication systems. 3. Low Noise Figure: The DBRF5110C chips have a low noise figure, which helps in maintaining signal integrity and improving overall system performance. 4. Small Form Factor: These chips are available in a small form factor, making them suitable for compact and portable devices. 5. Easy Integration: The DBRF5110C chips are designed for easy integration into existing systems, reducing development time and effort.Application Scenarios: 1. Wireless Communication Systems: The DBRF5110C chips can be used in wireless communication systems such as cellular networks, Wi-Fi, Bluetooth, and IoT devices. 2. Satellite Communication: These chips can be utilized in satellite communication systems for signal amplification and noise reduction. 3. Radar Systems: The DBRF5110C chips can be employed in radar systems for signal processing and amplification. 4. Test and Measurement Equipment: These chips can be integrated into test and measurement equipment for accurate signal analysis and measurement. 5. Medical Devices: The DBRF5110C chips can be used in medical devices such as MRI machines, ultrasound systems, and patient monitoring systems for signal amplification and noise reduction.Overall, the DBRF5110C integrated circuit chips offer high performance, wide frequency range, and low noise figure, making them suitable for various communication and signal processing applications.
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