
AMD Xilinx
XCR5128-10PQ100I
XCR5128-10PQ100I ECAD Model
XCR5128-10PQ100I 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 | 128 | |
Number of I/O Lines | 80 | |
Programmable Logic Type | EE PLD | |
Temperature Grade | INDUSTRIAL | |
Package Shape | RECTANGULAR | |
Technology | CMOS | |
Organization | 2 DEDICATED INPUTS, 80 I/O | |
Additional Feature | YES | |
Clock Frequency-Max | 66 MHz | |
In-System Programmable | YES | |
JTAG BST | YES | |
Output Function | MACROCELL | |
Power Supplies | 5 V | |
Supply Voltage-Max | 5.5 V | |
Supply Voltage-Min | 4.5 V | |
JESD-30 Code | R-PQFP-G100 | |
Qualification Status | Not Qualified | |
JESD-609 Code | e0 | |
Moisture Sensitivity Level | 3 | |
Operating Temperature-Max | 85 °C | |
Operating Temperature-Min | -40 °C | |
Peak Reflow Temperature (Cel) | 225 | |
Time@Peak Reflow Temperature-Max (s) | 30 | |
Number of Terminals | 100 | |
Package Body Material | PLASTIC/EPOXY | |
Package Code | QFP | |
Package Equivalence Code | QFP100,.7X.9 | |
Package Shape | RECTANGULAR | |
Package Style | FLATPACK | |
Surface Mount | YES | |
Terminal Finish | TIN LEAD | |
Terminal Form | GULL WING | |
Terminal Pitch | 650 µm | |
Terminal Position | QUAD | |
Width | 14 mm | |
Length | 20 mm | |
Seated Height-Max | 3.4 mm | |
Ihs Manufacturer | XILINX INC | |
Part Package Code | QFP | |
Package Description | PLASTIC, QFP-100 | |
Pin Count | 100 | |
Reach Compliance Code | not_compliant | |
HTS Code | 8542.39.00.01 |
XCR5128-10PQ100I Datasheet Download
XCR5128-10PQ100I Overview
The XCR5128-10PQ100I chip model is a cutting-edge technology designed for use in networks and intelligent scenarios. It is a powerful tool for creating and managing intelligent systems, and its potential applications are vast and far-reaching. With its advanced features and high-performance capabilities, the XCR5128-10PQ100I chip model is capable of handling complex tasks and providing reliable and efficient solutions.
The XCR5128-10PQ100I chip model is designed to meet specific requirements and provides a wide range of features. It is capable of supporting a variety of communication protocols, allowing for the transfer of data between different devices. It also provides robust security features, ensuring that data is kept safe and secure. Furthermore, the XCR5128-10PQ100I chip model is capable of supporting a variety of intelligent scenarios, including facial recognition, voice recognition, and natural language processing.
The XCR5128-10PQ100I chip model has been used in a number of case studies to demonstrate its effectiveness. In one study, the chip model was used to create an intelligent system that could detect and respond to changes in the environment. The system was able to detect motion and sound, and respond to different stimuli. This study demonstrated the potential of the XCR5128-10PQ100I chip model to be used in a variety of intelligent scenarios.
The XCR5128-10PQ100I chip model can also be used in the development and popularization of future intelligent robots. The chip model is capable of supporting a variety of robotic tasks, such as navigation and object recognition. Furthermore, the chip model is capable of supporting a variety of programming languages, allowing for the development of complex algorithms that can be used to create intelligent robots.
In order to use the XCR5128-10PQ100I chip model effectively, a certain level of technical knowledge is required. This includes an understanding of programming languages, an understanding of robotics, and an understanding of the features and capabilities of the chip model. Furthermore, it is important to have a good understanding of the environment in which the chip model will be used, as this will affect the performance of the chip model.
Overall, the XCR5128-10PQ100I chip model is a powerful tool for creating and managing intelligent systems. Its potential applications are vast and far-reaching, and it can be used in a variety of intelligent scenarios, including facial recognition, voice recognition, and natural language processing. Furthermore, the chip model can be used in the development and popularization of future intelligent robots, and the necessary technical knowledge is required to use the model effectively.
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