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XC7A200T-2FFG1156C New and original integrated Circuit ic chip

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Product Detail

Product Tags

Product Attributes

TYPE DESCRIPTION
Category Integrated Circuits (ICs)Embedded

FPGAs (Field Programmable Gate Array)

Mfr AMD
Series Artix-7
Package Tray
Product Status Active
Number of LABs/CLBs 16825
Number of Logic Elements/Cells 215360
Total RAM Bits 13455360
Number of I/O 500
Voltage – Supply 0.95V ~ 1.05V
Mounting Type Surface Mount
Operating Temperature 0°C ~ 85°C (TJ)
Package / Case 1156-BBGA, FCBGA
Supplier Device Package 1156-FCBGA (35×35)
Base Product Number XC7A200

 Documents & Media

RESOURCE TYPE LINK
Datasheets Artix-7 FPGAs DatasheetArtix-7 FPGAs Brief

7 Series FPGA Overview

Product Training Modules Powering Series 7 Xilinx FPGAs with TI Power Management Solutions
Environmental Information Xiliinx RoHS CertXilinx REACH211 Cert
Featured Product Artix®-7 FPGAUSB104 A7 Artix-7 FPGA Development Board
PCN Design/Specification Mult Dev Material Chg 16/Dec/2019Cross-Ship Lead-Free Notice 31/Oct/2016
Errata XC7A100T/200T Errata

 Environmental & Export Classifications

ATTRIBUTE DESCRIPTION
RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 4 (72 Hours)
REACH Status REACH Unaffected
ECCN 3A991D
HTSUS 8542.39.0001

 Additional Resources

ATTRIBUTE DESCRIPTION
Other Names 122-1863
Standard Package 1

The full name of FPGA is Field-Programmable Gate Array. FPGA is the product of further development on the basis of PAL, GAL, CPLD and other programmable devices. As a semi-customized circuit in the field of ASIC, FPGA not only solves the shortage of customized circuit, but also overcomes the shortcoming of the limited number of the original programmable device gate circuit. In short, an FPGA is a chip that can be programmed to change its internal structure.

Over the past few years, the role of FPGA in the development of networking and telecommunications systems has greatly expanded beyond just being used to bridge logic between different components on an integrated circuit board. FPGA-based solutions offer the functionality, performance, and flexibility of dedicated chip solutions while reducing development costs. With the decreasing cost of FPGA devices and increasing density/performance, today’s FPGAs can cover everything from the lowest end DSLAM and Ethernet switches to the highest end core routers and WDM devices.

The emergence of FPGA to automotive products and automotive electronics technology has brought revolutionary changes, the world’s automotive industry FPGA consumption surge, from the former monolithic FPGA processor developed into a multi-FPGA processor, or FPGA array of high-speed processors. Automotive electronic products based on FPGA can meet the needs of future automotive development, and in the era of multiple models coexist, the general hardware platform built with FPGA as the core can achieve the compatibility through different ways of software loading. With the continuous development of automotive electronic technology in the future, the speed of FPGA will continue to improve.

As for the industrial market, it has become a slightly flat but steadily growing market for the semiconductor industry. Compared with the thrill of consumer products, the industrial market seems more reliable, especially in a tough market like the current one, which gives the semiconductor industry some warmth. For such special powerful devices as FPGA, the stable development of the industrial market has brought it a huge development opportunity.


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