Allicdata Part #: | A3PE3000L-FG896I-ND |
Manufacturer Part#: |
A3PE3000L-FG896I |
Price: | $ 509.26 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Microsemi Corporation |
Short Description: | IC FPGA 620 I/O 896FBGA |
More Detail: | N/A |
DataSheet: | A3PE3000L-FG896I Datasheet/PDF |
Quantity: | 1000 |
27 +: | $ 462.95600 |
Series: | ProASIC3L |
Part Status: | Active |
Total RAM Bits: | 516096 |
Number of I/O: | 620 |
Number of Gates: | 3000000 |
Voltage - Supply: | 1.14 V ~ 1.575 V |
Mounting Type: | Surface Mount |
Operating Temperature: | -40°C ~ 100°C (TJ) |
Package / Case: | 896-BGA |
Supplier Device Package: | 896-FBGA (31x31) |
Base Part Number: | A3PE3000L |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
A3PE3000L-FG896I Application Field and Working Principle
Introduction
The A3PE3000L-FG896I is a Field Programmable Gate Array(FPGA) device in embedded systems that offers incredible flexibility in design and operation. This product series provides advanced high-performance FPGAs that deliver exceptional system performance and energy efficiency to the embedded world for use in consumer, communications, industrial, and medical applications. It has a wide array of features including low power consumption, very high performance density, ultra-low I/O support, and embedded design tools.
Features
- Advanced high-performance FPGAs with exceptional system performance and energy efficiency
- Ultra-low I/O support and embedded design tools
- Configurable device clocking architectures with multiple clocks per device
- Multiple memory architectures, including SRAM and QDRIV
- Support for external memory devices including NAND Flash, NOR Flash, SDRAM, and DDR SDRAM
- On-chip Flash memory for coding options and boot setting configuration
- Integrated JTAG debug interface
- Support for advanced I/O options such as gigabit Ethernet, HDMI, PCIe, and USB
A3PE3000L-FG896I Application Fields
The A3PE3000L-FG896I is ideal for applications that require high performance with low power consumption and a small form factor. It is especially suitable for low power applications such as handheld and portable medical devices, consumer electronics, networking and communications, automotive, and industrial control systems. Additionally, the device supports a wide range of interfaces, making it suitable for applications like border control, identity verification, security and surveillance systems, robotics, and more.
A3PE3000L-FG896I Working Principle
An FPGA is a digital circuit made up of a large number of interconnected logic elements (or cells). The cells are connected together in a manner that allows the FPGA to be programmed to implement a specific digital logic design. The FPGA is programmed by writing a bit stream, which is typically generated by logic synthesis tools that are available from various vendors. This bit stream is then used to implement the desired logic design on the FPGA. For example, a user can write a program that implements a basic algorithm and then use the logic synthesis tools to generate a bit stream that will implement the algorithm on the FPGA.
The A3PE3000L-FG896I is a highly flexible device, allowing for the easy design and configuration of complex logic designs. Its array of features make it suitable for a wide range of applications, from consumer to industrial, from embedded to networking.
Additionally, the A3PE3000L-FG896I supports multiple memory architectures, a variety of clocking architectures, and a wide range of I/O options. These features allow for the development of high-performance, low-power, and low-cost solutions for any application.
Conclusion
The A3PE3000L-FG896I is an advanced Field Programmable Gate Array(FPGA) that offers high-performance and exceptional energy efficiency. It is an ideal solution for a wide array of applications in the consumer, communications, industrial, and medical industries. Additionally, its wide array of features, such as its multiple memory architectures, configurable clocking strategies, and support for a variety of I/O options, make it an ideal choice for embedded, low-power applications.
The specific data is subject to PDF, and the above content is for reference
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