
AMD Xilinx
XCR5064-12PC68I
XCR5064-12PC68I ECAD Model
XCR5064-12PC68I Attributes
Type | Description | Select |
---|---|---|
Rohs Code | No | |
Part Life Cycle Code | Obsolete | |
Supply Voltage-Nom | 5 V | |
Propagation Delay | 12 ns | |
Number of Dedicated Inputs | 2 | |
Number of Macro Cells | 64 | |
Number of I/O Lines | 48 | |
Programmable Logic Type | EE PLD | |
Temperature Grade | INDUSTRIAL | |
Package Shape | SQUARE | |
Technology | CMOS | |
Organization | 2 DEDICATED INPUTS, 48 I/O | |
Additional Feature | NO | |
Clock Frequency-Max | 67 MHz | |
In-System Programmable | NO | |
JTAG BST | NO | |
Output Function | MACROCELL | |
Power Supplies | 5 V | |
Supply Voltage-Max | 5.5 V | |
Supply Voltage-Min | 4.5 V | |
JESD-30 Code | S-PQCC-J68 | |
Qualification Status | Not Qualified | |
Moisture Sensitivity Level | 1 | |
Operating Temperature-Max | 85 °C | |
Operating Temperature-Min | -40 °C | |
Number of Terminals | 68 | |
Package Body Material | PLASTIC/EPOXY | |
Package Code | QCCJ | |
Package Equivalence Code | LDCC68,1.0SQ | |
Package Shape | SQUARE | |
Package Style | CHIP CARRIER | |
Surface Mount | YES | |
Terminal Form | J BEND | |
Terminal Pitch | 1.27 mm | |
Terminal Position | QUAD | |
Width | 24.2316 mm | |
Length | 24.2316 mm | |
Seated Height-Max | 5.08 mm | |
Ihs Manufacturer | XILINX INC | |
Part Package Code | LCC | |
Package Description | QCCJ, LDCC68,1.0SQ | |
Pin Count | 68 | |
Reach Compliance Code | unknown | |
HTS Code | 8542.39.00.01 |
XCR5064-12PC68I Datasheet Download
XCR5064-12PC68I Overview
The chip model XCR5064-12PC68I is a powerful and versatile integrated circuit designed for high-performance digital signal processing, embedded processing, and image processing applications. It is a high-end product from the world-renowned semiconductor manufacturer, Xilinx. This chip model is designed with the latest technology and is capable of delivering a high level of computing performance. It also has a wide range of features, including a large memory capacity and a high speed clock frequency.
The XCR5064-12PC68I is designed to be used in conjunction with a hardware description language (HDL). This is a specialized language used to program and control the chip. The use of HDL allows for the development of sophisticated algorithms and applications that can be used to process digital signals and images. In addition, it can be used to program and control embedded systems, such as robots.
The XCR5064-12PC68I is suitable for a variety of applications, including digital signal processing, embedded processing, and image processing. It has a large memory capacity and a high clock frequency, which makes it an ideal choice for high-performance applications. Furthermore, its wide range of features makes it suitable for a variety of applications.
In order to use the XCR5064-12PC68I effectively, it is important to understand the product description and specific design requirements. It is also important to have knowledge of HDL programming and embedded systems programming. Furthermore, it is important to have an understanding of the actual case studies and precautions associated with the use of this chip model.
The XCR5064-12PC68I can be applied to the development and popularization of future intelligent robots. It has the capacity to process digital signals and images quickly and accurately, making it an ideal choice for robotic applications. In order to use the XCR5064-12PC68I effectively, the technical talents needed include knowledge of HDL programming and embedded systems programming. Additionally, it is important to have an understanding of the actual case studies and precautions associated with the use of this chip model.
In conclusion, the XCR5064-12PC68I is a powerful and versatile integrated circuit designed for high-performance digital signal processing, embedded processing, and image processing applications. It is suitable for a variety of applications and can be used to develop and popularize future intelligent robots. In order to use the XCR5064-12PC68I effectively, technical talents are needed, including knowledge of HDL programming and embedded systems programming, as well as an understanding of the actual case studies and precautions associated with the use of this chip model.
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