XC7372-12WC84I
XC7372-12WC84I
Image shown is a representation only, Exact specifications should be obtained from the product data sheet.
rohs

AMD Xilinx

XC7372-12WC84I


XC7372-12WC84I
F20-XC7372-12WC84I
Active
UV PLD, 28 ns, 72-Cell, CMOS, WQCCJ, LDCC84,1.2SQ
WQCCJ, LDCC84,1.2SQ

XC7372-12WC84I ECAD Model


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XC7372-12WC84I Attributes


Type Description Select
Rohs Code No
Part Life Cycle Code Obsolete
Supply Voltage-Nom 5 V
Propagation Delay 28 ns
Number of Dedicated Inputs 12
Number of Macro Cells 72
Number of I/O Lines 37
Programmable Logic Type UV PLD
Temperature Grade INDUSTRIAL
Package Shape SQUARE
Technology CMOS
Organization 12 DEDICATED INPUTS, 37 I/O
Additional Feature 72 MACROCELLS; CONFIGURABLE I/O OPERATION-3.3V OR 5V; 3 EXTERNAL CLOCKS; 126 FLIP-FLOPS... more
Clock Frequency-Max 62.5 MHz
In-System Programmable NO
JTAG BST NO
Output Function MACROCELL
Power Supplies 3.3/5,5 V
Supply Voltage-Max 5.5 V
Supply Voltage-Min 4.5 V
JESD-30 Code S-CQCC-J84
Qualification Status Not Qualified
Moisture Sensitivity Level 1
Operating Temperature-Max 85 °C
Operating Temperature-Min -40 °C
Number of Terminals 84
Package Body Material CERAMIC, METAL-SEALED COFIRED
Package Code WQCCJ
Package Equivalence Code LDCC84,1.2SQ
Package Shape SQUARE
Package Style CHIP CARRIER, WINDOW
Surface Mount YES
Terminal Form J BEND
Terminal Pitch 1.27 mm
Terminal Position QUAD
Width 29.21 mm
Length 29.21 mm
Seated Height-Max 4.826 mm
Ihs Manufacturer XILINX INC
Part Package Code LCC
Package Description WQCCJ, LDCC84,1.2SQ
Pin Count 84
Reach Compliance Code unknown
HTS Code 8542.39.00.01

XC7372-12WC84I Datasheet Download


XC7372-12WC84I Overview



The Xilinx XC7372-12WC84I chip model is a powerful integrated circuit that is designed to meet the needs of today's advanced communication systems. It is a high-performance, low-power FPGA that combines advanced signal processing, memory, and logic capabilities. This chip model is well suited for applications such as video and image processing, wireless communication, and data processing.


The original design intention of the XC7372-12WC84I was to provide a high-performance, low-power solution for advanced communication systems. It is capable of providing high-speed data transfer, along with reliable signal processing and memory capabilities. It is also designed to be easily upgradable, allowing for future improvements and customization.


When it comes to the product description and specific design requirements of the XC7372-12WC84I, the chip model is designed to provide a wide range of features and functions. It is designed to be used in a variety of applications, including video and image processing, wireless communication, and data processing. It also has a wide range of peripherals, such as Ethernet, USB, and serial ports, which can be used to connect to various devices. In addition, the chip model also has a powerful memory system, allowing for large data storage.


When it comes to actual case studies, the XC7372-12WC84I has been used in a variety of applications. It has been used in the development of advanced wireless communication systems, as well as in the development of video and image processing systems. It has also been used in the development of data processing systems, such as those used in machine learning and artificial intelligence.


When it comes to the possibility of future upgrades, the XC7372-12WC84I is designed to be easily upgradable. This allows for future improvements and customization. It also has the potential to be used in the development and popularization of future intelligent robots. However, it should be noted that the chip model requires a certain level of technical expertise to be used effectively.


In conclusion, the Xilinx XC7372-12WC84I chip model is a powerful integrated circuit that is designed to meet the needs of today's advanced communication systems. It is capable of providing high-speed data transfer, along with reliable signal processing and memory capabilities. It is also designed to be easily upgradable, allowing for future improvements and customization. It has been used in a variety of applications, and it has the potential to be used in the development and popularization of future intelligent robots. However, it should be noted that the chip model requires a certain level of technical expertise to be used effectively.



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