Intel
DescriptionIC SOC CORTEX-A9 925MHZ 896FBGA
PackageTray
Stock1000
PriceActive
Download5ASXBB5D4F31C4G is a system on chip (SoC) device that combines a dual-core ARM Cortex-A9 processor and an Arria V SX FPGA in a single package. It is designed by Intel and can be used for various applications that require high performance, low power consumption, and flexible customization.
The main parameters of 5ASXBB5D4F31C4G are as follows:
• Core: Dual ARM Cortex-A9 MPCore with CoreSight
• Maximum Clock Frequency: 925 MHz
• L1 Cache Instruction Memory: 2 x 32 KB
• L1 Cache Data Memory: 2 x 32 KB
• Number of Logic Elements: 462,000 LE
• Adaptive Logic Modules: 174,340 ALM
• Embedded Memory: 22.29 Mbit
• Number of Logic Array Blocks: 17,434 LAB
• Packaging: 896-BBGA, FCBGA
• Supplier Device Package: 896-FBGA (31x31)
• Number of I/O: MCU - 208, FPGA - 250
• Operating Temperature: 0°C ~ 85°C (TJ)
5ASXBB5D4F31C4G is a SoC device that integrates a dual-core ARM Cortex-A9 processor and an Arria V SX FPGA on a single die. The processor can run Linux or other operating systems and supports various peripherals, such as Ethernet, USB, SD/MMC, SPI, UART, and I2C. The FPGA can implement custom logic, such as DSP, video, and encryption functions, and can communicate with the processor via a high-speed interface. The device also supports dynamic partial reconfiguration, which allows changing the FPGA configuration without affecting the processor operation.
5ASXBB5D4F31C4G is based on Intel's 28 nm technology and offers high performance, low power consumption, and high integration. It can achieve up to 925 MHz clock frequency, 22.29 Mbit embedded memory, and 462,000 logic elements. It also has a low standby power of less than 100 mW and a typical core power of 3.5 W. It has a compact package size of 31 x 31 mm and supports various power management modes.
5ASXBB5D4F31C4G can be used for a wide range of applications that require high performance, low power consumption, and flexible customization. Some examples are:
• Mobile Devices: 5ASXBB5D4F31C4G can provide high-performance processing and graphics capabilities for smartphones, tablets, and wearable devices. It can also implement custom functions, such as gesture recognition, face detection, and biometric authentication, on the FPGA.
• Automotive: 5ASXBB5D4F31C4G can support advanced driver assistance systems (ADAS), such as lane departure warning, adaptive cruise control, and collision avoidance. It can also enable infotainment and navigation systems, such as touch screens, voice control, and rear-view cameras, on the FPGA.
• Industrial: 5ASXBB5D4F31C4G can enable industrial automation and control systems, such as robotics, machine vision, and motion control. It can also support industrial communication protocols, such as EtherCAT, PROFINET, and Modbus, on the FPGA.
• Medical: 5ASXBB5D4F31C4G can support medical imaging and diagnosis systems, such as ultrasound, MRI, and CT. It can also implement custom algorithms, such as image processing, compression, and encryption, on the FPGA.
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