
AMD Xilinx
XC4020XLA-08PQ160C
XC4020XLA-08PQ160C ECAD Model
XC4020XLA-08PQ160C Attributes
Type | Description | Select |
---|---|---|
Rohs Code | No | |
Part Life Cycle Code | Obsolete | |
Supply Voltage-Nom | 3.3 V | |
Number of Inputs | 224 | |
Number of Outputs | 224 | |
Number of Logic Cells | 784 | |
Number of Equivalent Gates | 13000 | |
Number of CLBs | 784 | |
Combinatorial Delay of a CLB-Max | 1 ns | |
Programmable Logic Type | FIELD PROGRAMMABLE GATE ARRAY | |
Temperature Grade | OTHER | |
Package Shape | SQUARE | |
Technology | CMOS | |
Organization | 784 CLBS, 13000 GATES | |
Additional Feature | CAN ALSO USE 40000 GATES | |
Clock Frequency-Max | 263 MHz | |
Power Supplies | 3.3 V | |
Supply Voltage-Max | 3.6 V | |
Supply Voltage-Min | 3 V | |
JESD-30 Code | S-PQFP-G160 | |
Qualification Status | Not Qualified | |
JESD-609 Code | e0 | |
Moisture Sensitivity Level | 3 | |
Operating Temperature-Max | 85 °C | |
Peak Reflow Temperature (Cel) | 225 | |
Time@Peak Reflow Temperature-Max (s) | 30 | |
Number of Terminals | 160 | |
Package Body Material | PLASTIC/EPOXY | |
Package Code | QFP | |
Package Equivalence Code | QFP160,1.2SQ | |
Package Shape | SQUARE | |
Package Style | FLATPACK | |
Surface Mount | YES | |
Terminal Finish | Tin/Lead (Sn85Pb15) | |
Terminal Form | GULL WING | |
Terminal Pitch | 650 µm | |
Terminal Position | QUAD | |
Width | 28 mm | |
Length | 28 mm | |
Seated Height-Max | 4.1 mm | |
Ihs Manufacturer | XILINX INC | |
Part Package Code | QFP | |
Package Description | PLASTIC, QFP-160 | |
Pin Count | 160 | |
Reach Compliance Code | not_compliant | |
HTS Code | 8542.39.00.01 |
XC4020XLA-08PQ160C Datasheet Download
XC4020XLA-08PQ160C Overview
The XC4020XLA-08PQ160C chip model is a powerful and versatile chip that has been designed to meet the needs of a wide range of industries. It is well-suited for applications in communications, robotics, and other areas. Its design is intended to be robust and reliable, while providing a high degree of flexibility and scalability.
This chip model is capable of running a wide range of applications, including complex communication systems and advanced robotic systems. It has a wide range of features designed to meet the needs of a variety of industries. This includes support for multiple communications protocols, high-speed data transfer, and advanced security features. In addition, the chip model is capable of supporting multiple operating systems and a range of programming languages.
The XC4020XLA-08PQ160C chip model is expected to experience high demand in the future as more industries adopt it for their applications. This includes the telecommunications industry, which is expected to benefit from the chip's ability to support multiple communications protocols and its high-speed data transfer capabilities. Additionally, the chip is expected to be used in the development and popularization of future intelligent robots. This could include robots that are able to interact with their environment in a natural and intuitive way.
In order to use the XC4020XLA-08PQ160C chip model effectively, a variety of technical talents are needed. This includes software engineers, hardware engineers, and robotics engineers. Software engineers are needed to develop applications that are compatible with the chip model and to ensure that they run smoothly and efficiently. Hardware engineers are needed to design and build the physical components of the chip model, while robotics engineers are needed to design and build the robotic systems that the chip model is intended to support.
The XC4020XLA-08PQ160C chip model has been designed with the intention of allowing for future upgrades. This means that the chip model can be adapted to meet the changing needs of the industries it is used in. This could include the addition of new features or the development of new communication protocols. This could also include the development of new robotic systems that are able to interact with their environment in a natural and intuitive way.
Overall, the XC4020XLA-08PQ160C chip model is a powerful and versatile chip that is well-suited for a variety of industries. It is expected to experience high demand in the future as more industries adopt it for their applications. In order to use the chip model effectively, a variety of technical talents are needed, and the chip model is designed to allow for future upgrades. As such, it could be a key component of the development and popularization of future intelligent robots.
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