LCMXO640E-3FN256I Allicdata Electronics
Allicdata Part #:

LCMXO640E-3FN256I-ND

Manufacturer Part#:

LCMXO640E-3FN256I

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Lattice Semiconductor Corporation
Short Description: IC FPGA 159 I/O 256FBGA
More Detail: N/A
DataSheet: LCMXO640E-3FN256I datasheetLCMXO640E-3FN256I Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: MachXO
Part Status: Obsolete
Number of LABs/CLBs: 80
Number of Logic Elements/Cells: 640
Number of I/O: 159
Voltage - Supply: 1.14 V ~ 1.26 V
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 100°C (TJ)
Package / Case: 256-BGA
Supplier Device Package: 256-FPBGA (17x17)
Base Part Number: LCMXO640
Description

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Field Programmable Gate Arrays (FPGA) are an important part of embedded technology. The FPGA, along with ASICs and microcontrollers, are the three most commonly used embedded components. FPGAs though offer more flexibility in terms of usability and programmability, making them an attractive option. FPGA technology is used in many different industries, ranging from telecommunications and computers to scientific instruments and military applications, depending on the specific needs of the user.

In the field of embedded technology, FPGAs have undergone a period of steady evolution. One such improvement is the LCMXO640E-3FN256I, which is a smaller, faster, and more power-efficient FPGA device. It is also said to offer new levels of performance, which make it suitable for a wide range of highly-demanding applications. To understand more, let’s examine the application field and working principle of the LCMXO640E-3FN256I.

Application Field

The application field of the LCMXO640E-3FN256I covers a range of different embedded applications, and it excels in areas such as digital signal processing, clock management, automotive and industrial control, high-speed data transfer and communication, artificial intelligence and machine vision, as well as many other applications with high system speed or high-speed data transfer needs.

The LCMXO640E-3FN256I has been designed with automotive, industrial and medical industries in mind, making it a suitable choice for use in these sectors. Thanks to its high-speed operation, efficient power consumption and smaller size, it is particularly well-suited to automotive control systems and industrial surveillance systems. The data transfer speed is also very high (up to 800 Mbps depending on the variant), so it can be used to transfer data quickly between different systems.

In the medical field, the LCMXO640E-3FN256I excels as a control hub for a range of medical devices, such as ECG sensors, ultrasound devices, infusion pumps, and ventilation pumps. Its small size and unmatched performance enables it to be reliably used in a range of medical applications.

Working Principle

The LCMXO640E-3FN256I is an FPGA device, which means it is designed to be programmable and re-programmable. It works by providing the user with the ability to customize the functionality of the device, with functionality being determined by the type of user-defined program or configuration that is loaded onto the device. This allows for a great deal of flexibility and control, as the same device can be used to perform a range of different tasks, based on its programmed configuration.

In terms of performance, the LCMXO640E-3FN256I is a versatile and powerful device. Its logic element density is 1Mb – the highest in its class – and it operates at speeds of up to 800 Mbps. This makes it ideal for applications where speed and flexibility are critical, such as high-speed data transfer, medical device control, and automotive control.

Additionally, the LCMXO640E-3FN256I features advanced power management capabilities. It has a small footprint and a low power consumption rating (at 1.2V/ 200mA), which makes it suitable for use in embedded devices where power is an issue.

Conclusion

The LCMXO640E-3FN256I is an excellent example of a modern FPGA device, offering the user outstanding performance and advanced power management capabilities. Its small size, high-speed data transfer rates, and large logic element density make it an excellent choice for a variety of applications, particularly those in the automotive, industrial, and medical sectors.

The specific data is subject to PDF, and the above content is for reference

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