Allicdata Part #: | 10AS022E4F27E3LG-ND |
Manufacturer Part#: |
10AS022E4F27E3LG |
Price: | $ 485.79 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Intel FPGAs/Altera |
Short Description: | 672-PIN FBGA |
More Detail: | Dual ARM® Cortex®-A9 MPCore™ with CoreSight™ Syste... |
DataSheet: | 10AS022E4F27E3LG Datasheet/PDF |
Quantity: | 1000 |
3 +: | $ 441.63000 |
Series: | Arria 10 SX |
Packaging: | Tray |
Part Status: | Active |
Architecture: | MCU, FPGA |
Core Processor: | Dual ARM® Cortex®-A9 MPCore™ with CoreSight™ |
Flash Size: | -- |
RAM Size: | 256KB |
Peripherals: | DMA, POR, WDT |
Connectivity: | EBI/EMI, Ethernet, I²C, MMC/SD/SDIO, SPI, UART/USART, USB OTG |
Speed: | 1.5GHz |
Primary Attributes: | FPGA - 220K Logic Elements |
Operating Temperature: | 0°C ~ 100°C (TJ) |
Number of I/O: | 240 |
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System on Chip (SoC) is a type of technology that combines hardware components and software applications on a single integrated circuit. This technology was developed in the late 1980s and has become increasingly popular as the complexity of technology has increased. The 10AS022E4F27E3LG application field and working principle are discussed in this article.
SoC technology combines various hardware elements and software applications on a single die to create devices that are capable of performing specific functions. This technology has several advantages, including the ability to reduce power consumption and the cost of production, increased performance, faster time to market, and improved scalability.
The 10AS022E4F27E3LG application field and working principle are that it is an embedded system-on-chip (SoC) designed for use in applications such as alarm systems, tracking/location devices, and robotic applications. The chip is made up of a low power ARM Cortex-M0 processor core and other peripherals, such as memory, timers, I/O ports, analog-to-digital converters, and power sources.
The 10AS022E4F27E3LG application field and working principle involve its low power operation, which is important in embedded systems. The chip has an operating voltage range from 2.0V to 3.6V with a maximum input voltage of 5.5V. It also supports various low-power operations, such as sleep and standby modes, so the system can save power during low-activity periods. The chip also features a fast wake-up of typically 200 microseconds, allowing for quick response times. In addition, the chip also has protection features built-in, such as over-voltage protection and short-circuit protection.
The 10AS022E4F27E3LG application field and working principle also include its support for data transmission. The chip has serial interfaces like SPI, USART, I2C and CAN. These interfaces are used for communication with external devices such as sensors, actuators, and displays. The chip also supports various touch sensors such as capacitive touch, resistive touch, and proximity sensors.
The 10AS022E4F27E3LG application field and working principle also include its real-time support capabilities. The chip can handle multiple tasks simultaneously, as it has multiple interrupts and events that allow for rapid response when tasks are switched. The chip also supports multiple threads of execution for better multi-tasking capability. In addition, the chip has several power modes, including run, sleep, deep sleep and power down. These power modes allow for conserving energy, increasing battery life and maximizing performance.
The 10AS022E4F27E3LG application field and working principle have been successfully demonstrated in many applications. For example, it is being used in tracking and location systems, robotic platforms, and automotive applications. The chip has also been used in the development of wearables, such as smart watches, fitness trackers, and medical monitors. It has also been used to develop smart homes and alleviate industries, such as healthcare, transportation, and retail.
In conclusion, System on Chip (SoC) technology has revolutionized the way embedded systems are designed and developed. The 10AS022E4F27E3LG application field and working principles demonstrate how this technology can be used to build powerful and reliable embedded systems for a range of applications. Its low power consumption, quick response time, and various peripherals make it an ideal choice for embedded systems.
The specific data is subject to PDF, and the above content is for reference
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10AS022E4F27E3SG | Intel FPGAs/... | 388.77 $ | 1000 | 672-PIN FBGADual ARM Cort... |
10AS016E4F27I3SG | Intel FPGAs/... | 390.16 $ | 1000 | IC SOC FPGA 240 I/O 672FB... |
10AS016E4F27E3LG | Intel FPGAs/... | 406.1 $ | 1000 | IC SOC FPGA 240 I/O 672FB... |
10AS022C4U19I3SG | Intel FPGAs/... | 414.41 $ | 1000 | 484-PIN UBGADual ARM Cort... |
10AS022E4F29E3SG | Intel FPGAs/... | 418.57 $ | 1000 | 780-PIN FBGADual ARM Cort... |
10AS016E4F29I3SG | Intel FPGAs/... | 419.27 $ | 1000 | IC SOC FPGA 288 I/O 780FB... |
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10AS022C4U19E3LG | Intel FPGAs/... | 431.74 $ | 1000 | 484-PIN UBGADual ARM Cort... |
10AS016C3U19I2SG | Intel FPGAs/... | 433.13 $ | 1000 | IC SOC FPGA 192 I/O 484UB... |
10AS016E4F29E3LG | Intel FPGAs/... | 436.59 $ | 1000 | IC SOC FPGA 288 I/O 780FB... |
10AS022C3U19E2SG | Intel FPGAs/... | 455.3 $ | 1000 | 484-PIN UBGADual ARM Cort... |
10AS016E3F29E2SG | Intel FPGAs/... | 460.85 $ | 1000 | IC SOC FPGA 288 I/O 780FB... |
10AS016C3U19E2LG | Intel FPGAs/... | 464.31 $ | 1000 | IC SOC FPGA 192 I/O 484UB... |
10AS022E4F27I3SG | Intel FPGAs/... | 466.39 $ | 1000 | 672-PIN FBGADual ARM Cort... |
10AS027E4F27E3SG | Intel FPGAs/... | 476.09 $ | 1000 | 672-PIN FBGADual ARM Cort... |
10AS022E4F27E3LG | Intel FPGAs/... | 485.79 $ | 1000 | 672-PIN FBGADual ARM Cort... |
10AS016E4F27I3LG | Intel FPGAs/... | 487.87 $ | 1000 | IC SOC FPGA 240 I/O 672FB... |
10AS016E3F27E1HG | Intel FPGAs/... | 500.35 $ | 1000 | IC SOC FPGA 240 I/O 672FB... |
10AS016E3F27I2SG | Intel FPGAs/... | 500.35 $ | 1000 | IC SOC FPGA 240 I/O 672FB... |
10AS022E4F29I3SG | Intel FPGAs/... | 502.43 $ | 1000 | 780-PIN FBGADual ARM Cort... |
10AS022E3F27E2SG | Intel FPGAs/... | 513.51 $ | 1000 | 672-PIN FBGADual ARM Cort... |
10AS022C4U19I3LG | Intel FPGAs/... | 518.36 $ | 1000 | 484-PIN UBGADual ARM Cort... |
10AS022E4F29E3LG | Intel FPGAs/... | 523.22 $ | 1000 | 780-PIN FBGADual ARM Cort... |
10AS016E4F29I3LG | Intel FPGAs/... | 523.91 $ | 1000 | IC SOC FPGA 288 I/O 780FB... |
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10AS016E3F29I2SG | Intel FPGAs/... | 537.77 $ | 1000 | IC SOC FPGA 288 I/O 780FB... |
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