DK-S6-CONN-G-J-XP1
DK-S6-CONN-G-J-XP1
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Xilinx

DK-S6-CONN-G-J-XP1


DK-S6-CONN-G-J-XP1
F20-DK-S6-CONN-G-J-XP1
Active
DEV KIT CONNECTIVITY SPARTAN 6

DK-S6-CONN-G-J-XP1 ECAD Model


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DK-S6-CONN-G-J-XP1 Attributes


Type Description Select
Mfr AMD Xilinx
Series Spartan®-6 LXT
Package Box
Type FPGA
For Use With/Related Products XC6SLX45T
Platform Spartan-6 FPGA Connectivity XP1 Japan
Contents Board(s), Cable(s) - Power Supply Not Included -
Interconnect System FMC
Suggested Programming Environment ISE
Note P/N Breakdown: J = Japan version does not ship with a power supply
Base Product Number XC6SLX45

DK-S6-CONN-G-J-XP1 Datasheet Download


DK-S6-CONN-G-J-XP1 Overview



As an AI language model, I do not have access to the specific details of the Xilinx model 'DK-S6-CONN-G-J-XP1'. However, I can explain in general what the specification, description, and application fields of an FPGA module like DK-S6-CONN-G-J-XP1 could be.


FPGA modules are integrated circuits that offer great flexibility and programmability to designers. They consist of configurable logic blocks, memory blocks, and programmable interconnects, which allow designers to create custom digital logic circuits tailored to their application's requirements.


The Xilinx model 'DK-S6-CONN-G-J-XP1' could be a specific implementation of an FPGA development kit designed for industrial and IoT applications. The specification could include information about the FPGA's logic capacity, power consumption, I/O interfaces, and development tools. The FPGA could be based on a high-performance system-on-chip (SoC) architecture that includes processors, memory, and communication interfaces.


The description of the DK-S6-CONN-G-J-XP1 model could highlight its features and benefits, such as its high processing speed, low power consumption, and flexibility. The development kit could come with software tools and documentation to help designers create custom logic designs and test them on the FPGA module.


The application field of the DK-S6-CONN-G-J-XP1 model could be diverse, ranging from industrial automation and control systems to IoT devices and sensors. The FPGA module could be used to implement real-time processing, data acquisition, and communication interfaces in these applications, enabling them to operate efficiently and reliably in harsh environments.



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