FS-373 Allicdata Electronics
Allicdata Part #:

602-1046-ND

Manufacturer Part#:

FS-373

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Digi International
Short Description: MODULE UNC90 32MB SDRAM FLASH
More Detail: - Embedded Module AT91RM200 160MHz 32MB 16MB
DataSheet: FS-373 datasheetFS-373 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Part Status: Obsolete
Module/Board Type: MPU Core
Core Processor: AT91RM200
Co-Processor: --
Speed: 160MHz
Flash Size: 16MB
RAM Size: 32MB
Connector Type: 48-DIP
Size / Dimension: 2.48" x 0.73" (62.9mm x 18.5mm)
Operating Temperature: -25°C ~ 70°C
Description

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Embedded - Microcontroller, Microprocessor, FPGA Modules,

The FS-373 application field and its working principle have been of great interest to embedded system enthusiasts and technological innovators. This article will provide an overview of the application field and working principle of the FS-373, in order to gain a deeper understanding of how this advanced embedded system can be used to improve the efficiency and accuracy of a variety of tasks.

The FS-373 is a programmable embedded system. This embedded system includes two main components: a microcontroller and a field-programmable gate array (FPGA). The microcontroller serves as the central processing unit (CPU) and includes digital hardware components, such as timers, counters, interrupts and input/output (I/O) ports. The FPGA is an integrated circuit that allows the user to logically connect and configure different hardware devices and signals. The combination of the microcontroller and the FPGA allows the user to quickly program and assemble a custom system with specific capability.

The FS-373 has a wide-range of applications. The most popular application of the FS-373 is in the automotive industry. The embedded system can be used in automobile and truck designs to ensure that the safety standards, such as anti-lock braking system (ABS), airbags, adaptive cruise control, and lane-keeping technology are met. This embedded system is also used in manufacturing to automate processes and increase the efficiency of industrial plants. Additionally, this embedded system is used in the aerospace industry to enable precise control over satellites, aircrafts and other vehicles.

Beyond its applications in the automotive, manufacturing and aerospace industries, the FS-373 is used in a number of other fields, including medical instrumentation, security and surveillance systems, industrial automation, and intelligent transport systems. As a result, the FS-373 is a versatile embedded system that can be used to improve the performance of a wide range of systems.

The FS-373 works by connecting to two main components: the microcontroller and the FPGA. The microcontroller gives instructions to the FPGA, which then performs logical operations in response to those instructions. The FPGA is able to carry out computational functions by connecting to the microcontroller, such as memory management, clock control and data validation. The FPGA also allows the user to customize the logic design of the embedded system, which enables the system to achieve specific tasks such as motion control, image processing and artificial intelligence.

In addition to its programmability, the FS-373 is also known for its flexibility. The embedded system can be customized to meet the unique needs of any application. By connecting different components, such as displays, cameras, sensors, and radio frequency (RF) devices, to the FS-373, the user can extend the functionality of the system beyond what is possible with a standard microcontroller. This makes it an ideal choice for various embedded systems.

In conclusion, the FS-373 application field and its working principle have unleashed a wide range of possibilities for embedded system enthusiasts and innovators. By leveraging its programmability and flexibility, the FS-373 is capable of meeting the demands of a variety of application fields. The FS-373 is an excellent example of how embedded systems can be used to improve the performance of numerous tasks and processes.

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

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