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XC7V2000T-1FL1925C

Xilinx

XC7V2000T-1FL1925C by Xilinx

XC7V2000T-1FL1925C by Xilinx is a CMOS-based FPGA with 1954560 logic cells. It operates at a max clock frequency of 1818 MHz and has 1200 inputs and outputs. This FPGA is commonly used in applications requiring high-speed processing and programmable logic capabilities.

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Overview

Looking to elevate your designs to the next level? Look no further than the XC7V2000T-1FL1925C by Xilinx. As a leading manufacturer in the field, Xilinx guarantees exceptional quality and reliability. This Field Programmable Gate Array (FPGA) offers endless possibilities for your applications, with its impressive 1,954,560 logic cells and 1,200 inputs and outputs. With a maximum clock frequency of 1818 MHz, this FPGA delivers lightning-fast performance. Its compact square package shape and surface mount capability make it easy to integrate into any project. Say goodbye to limitations and unlock your creativity with the XC7V2000T-1FL1925C.

Feature Benefit Bullets

Package Body Material

PLASTIC/EPOXY - This material provides a durable and cost-effective solution for the product, ensuring longevity and affordability.

No. of Logic Cells

1954560 - With a high number of logic cells, this FPGA offers extensive capabilities for complex designs and enables the execution of intricate algorithms.

Surface Mount

YES - The ability to surface mount this FPGA facilitates easier integration and installation, saving time and effort during the assembly process.

Maximum Supply Voltage

0.93 V - This low maximum voltage requirement enhances energy efficiency and minimizes power consumption, making it an environmentally friendly choice.

Technology Used

CMOS - Utilizing CMOS technology allows for low power consumption, high-speed operation, and compatibility with a wide range of digital systems.

No. of Inputs

1200 - With a large number of inputs, this FPGA can handle multiple data streams simultaneously, enabling advanced data processing capabilities.

Package Shape

SQUARE - The square package shape provides a compact form factor, allowing for efficient use of space in electronic designs and reducing overall footprint.

Form Of Terminal

BALL - The ball terminal form facilitates reliable connections and better heat dissipation, ensuring optimal performance and high reliability.

Nominal Supply Voltage (V)

0.9 - The low nominal supply voltage implies lower power consumption, which contributes to energy efficiency and prolonging the product's lifespan.

Power Supplies (V)

0.9, 1.8 - Offering multiple power supply options enhances flexibility, compatibility, and the ability to integrate with various systems and voltage levels.

No. of Terminals

1924 - With a substantial number of terminals, this FPGA enables connectivity to diverse external devices and supports large-scale integration projects.

Programmable IC Type

FIELD PROGRAMMABLE GATE ARRAY - Being a field-programmable IC type empowers users to tailor the functionality of the FPGA to meet specific application requirements, providing enhanced versatility.

Package Style (Meter)

GRID ARRAY - The grid array package style ensures a reliable and robust mechanical connection, making it suitable for applications where durability is paramount.

Minimum Supply Voltage

0.87 V - A low minimum supply voltage further enhances power efficiency and allows for operation in lower power scenarios, increasing overall energy savings.

Maximum Operating Temperature

85 °C - This high maximum operating temperature enables the FPGA to operate reliably even in demanding environments, enhancing its suitability for industrial or extreme conditions.

Pitch Of Terminal

1 mm - The small terminal pitch facilitates high-density interconnection, enabling more compact designs and supporting intricate circuitry layouts.

Minimum Operating Temperature

0 °C - The low minimum operating temperature range allows the FPGA to perform reliably in cold conditions, opening up possibilities for use in a variety of environments.

Finishing Of Terminal Used

Tin/Lead (Sn/Pb) - The use of tin/lead finishing on the terminals ensures proper soldering and reliable connections, promoting longevity and operational stability.

Position Of Terminal

BOTTOM - Having the terminals positioned at the bottom of the package simplifies PCB routing and installation, optimizing the overall design and enhancing ease of use.

Maximum Clock Frequency

1818 MHz - With a high maximum clock frequency, this FPGA can handle demanding and time-critical applications, processing data efficiently and delivering high performance.

No. of Outputs

1200 - The numerous output options allow for the FPGA to drive multiple signals simultaneously, facilitating complex systems and various output requirements.

Technical Specifications

Field Programmable Gate Arrays (FPGA) XC7V2000T-1FL1925C attributes and parameters. Explore more Field Programmable Gate Arrays (FPGA) devices from Xilinx

IC Features

Programmable IC Type:

No. of Logic Cells:

1954560

No. of Inputs:

1200

No. of Outputs:

1200

Maximum Clock Frequency:

1818 MHz

Technology:

CMOS

Sub-Category:

Field Programmable Gate Arrays

Power Characteristics

Nominal Supply Voltage:

0.9

Minimum Supply Voltage:

.87 V

Maximum Supply Voltage:

.93 V

Power Supplies:

0.9,1.8 V

Temperature and Environmental Ratings

Minimum Operating Temperature:

0 °C (32 °F)

Maximum Operating Temperature:

85 °C (185 °F)

Packaging and Physical Characteristics

Package Body Material:

Plastic/Epoxy

Surface Mountable:

Yes

Package Style:

Grid Array

Package Code:

BGA

Package Shape:

Package Equivalence Code:

BGA1924,44X44,40

Terminal Characteristcs

Terminal Position:

Bottom

Terminal Style:

Terminal Finish:

Tin/Lead

Terminal Pitch:

1 mm

No. of Terminals:

Standards

JESD-30 Code:

S-PBGA-B1924

JESD-609 Code:

e0

Qualified:

No

Trade Compliance

XC7V2000T-1FL1925C Programmable ICs trade compliance attributes, and parameters.

ECCN

3A001.A.7.A

ECCN Governance

EAR

HTS

8542.39.00.01

SB

8542.39.00.00

Manufacturer Highlights

Xilinx

Xilinx, Inc. (XIlinx) in February 2022 acquired by AMD

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