XC4005E-3PQ160C Allicdata Electronics
Allicdata Part #:

122-1090-ND

Manufacturer Part#:

XC4005E-3PQ160C

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Xilinx Inc.
Short Description: IC FPGA 112 I/O 160QFP
More Detail: N/A
DataSheet: XC4005E-3PQ160C datasheetXC4005E-3PQ160C Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: XC4000E/X
Part Status: Obsolete
Number of LABs/CLBs: 196
Number of Logic Elements/Cells: 466
Total RAM Bits: 6272
Number of I/O: 112
Number of Gates: 5000
Voltage - Supply: 4.75 V ~ 5.25 V
Mounting Type: Surface Mount
Operating Temperature: 0°C ~ 85°C (TJ)
Package / Case: 160-BQFP
Supplier Device Package: 160-PQFP (28x28)
Base Part Number: XC4005E
Description

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Introduction to XC4005E-3PQ160C

The XC4005E-3PQ160C is an example of a Field Programmable Gate Array (FPGA). An FPGA is an integrated circuit (IC) that can be programmed after fabrication to adapt to particular needs through the association of configurable logic blocks on the chip. This programming, or configuration, is usually done through a processor that is capable of programming the FPGA. In addition, the combination of configurable logic blocks and embedded memory allows FPGAs to be more than just a processor—they can also serve as a custom logic device. As part of the Xilinx® family of FPGAs, the XC4005E-3PQ160C is an example of the leading edge of FPGA technology.

Application Field

The XC4005E-3PQ160C can be used in a wide range of applications, including designs in diverse industries such as aerospace, automotive, communications, consumer electronics, industrial, medical, and military. In particular, FPGAs can be used in embedded systems, robotics, machine vision projects, aerospace systems, research and development, automotive electronics, industrial control systems, and other similar applications.

For example, FPGAs can be used in a number of scenarios. Some of the most common use cases are:

  • The design of high-frequency and low-noise integrated circuits
  • Large-scale logic system prototyping
  • Multi-bit stream chip design
  • Advanced digital signal processing and communication systems
  • High-level microprocessor board design
  • FPGA-based embedded applications
  • Video capturing, processing and recording
  • High-speed field programmable gate array designs for implementation of complex algorithms
  • System on a chip (SoC) integration
  • System integration, such as motor control, machine vision, embedded design, embedded radar and avionics applications.

In addition, FPGAs can also be used in applications that require a high degree of flexibility, such as in the design of custom logic or the implementation of complex algorithms.

Working Principle

FPGAs are programmable. This means that the user can alter the internal circuitry of the FPGA to serve their requirements. This is done by programming the FPGA with a configuration bitstream. This bitstream contains information that defines the structure and operation of the FPGA. Depending on the manufacturer, the bitstream can either be programmed directly from software such as the Xilinx® ISE (Integrated Synthesis Environment) or loaded from a non-volatile memory such as an EPROM or flash memory.

The XC4005E-3PQ160C features an array of configurable logic blocks that can be programmed to perform a range of operations. Each block contains an array of small logic elements, such as multiplexers, counters, and state machines. These blocks can be interconnected in various configurations to form different logic and arithmetic functions. In addition, the FPGA also contains embedded memory blocks, which can be configured to store data during the operation of the FPGA.

FPGAs also contain programmable interconnects. These interconnects allow the user to specify how the different logic and memory blocks are interconnected. In addition, the user can also specify timing constraints, such as how quickly the FPGA needs to perform its operations. Proper programming of the FPGA’s programmable interconnects is essential to ensure that the FPGA can meet any timing constraints that are imposed on it.

The XC4005E-3PQ160C also features enhanced system monitoring capabilities. This includes the ability to detect power supply faults, signals that are outside valid range, and other system level errors. This means that the user can ensure that the FPGA is operating within safe parameters and that any issues can be detected and rectified in a timely manner.

Overall, FPGAs like the XC4005E-3PQ160C offer the user a high degree of flexibility when it comes to their application design, allowing them to configure the FPGA as necessary for their particular needs. This makes FPGAs a great choice for embedded, robotics, machine vision, and other similar applications.

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

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