
AMD Xilinx
XC7354-7PC44C
XC7354-7PC44C ECAD Model
XC7354-7PC44C Attributes
Type | Description | Select |
---|---|---|
Rohs Code | No | |
Part Life Cycle Code | Obsolete | |
Supply Voltage-Nom | 5 V | |
Propagation Delay | 16.5 ns | |
Number of Dedicated Inputs | 8 | |
Number of Macro Cells | 54 | |
Number of I/O Lines | 25 | |
Programmable Logic Type | OT PLD | |
Temperature Grade | COMMERCIAL | |
Package Shape | SQUARE | |
Technology | CMOS | |
Organization | 8 DEDICATED INPUTS, 25 I/O | |
Additional Feature | 54 MACROCELLS; CONFIGURABLE I/O OPERATION-3.3V OR 5V; 2 EXTERNAL CLOCKS; 108 FLIP-FLOPS... more | |
Clock Frequency-Max | 95.2 MHz | |
In-System Programmable | NO | |
JTAG BST | NO | |
Output Function | MACROCELL | |
Power Supplies | 3.3/5,5 V | |
Supply Voltage-Max | 5.25 V | |
Supply Voltage-Min | 4.75 V | |
JESD-30 Code | S-PQCC-J44 | |
Qualification Status | Not Qualified | |
JESD-609 Code | e0 | |
Moisture Sensitivity Level | 3 | |
Operating Temperature-Max | 70 °C | |
Peak Reflow Temperature (Cel) | 225 | |
Time@Peak Reflow Temperature-Max (s) | 30 | |
Number of Terminals | 44 | |
Package Body Material | PLASTIC/EPOXY | |
Package Code | QCCJ | |
Package Equivalence Code | LDCC44,.7SQ | |
Package Shape | SQUARE | |
Package Style | CHIP CARRIER | |
Surface Mount | YES | |
Terminal Finish | TIN LEAD | |
Terminal Form | J BEND | |
Terminal Pitch | 1.27 mm | |
Terminal Position | QUAD | |
Width | 16.5862 mm | |
Length | 16.5862 mm | |
Seated Height-Max | 4.57 mm | |
Ihs Manufacturer | XILINX INC | |
Part Package Code | LCC | |
Package Description | PLASTIC, LCC-44 | |
Pin Count | 44 | |
Reach Compliance Code | not_compliant | |
HTS Code | 8542.39.00.01 |
XC7354-7PC44C Datasheet Download
XC7354-7PC44C Overview
The XC7354-7PC44C chip model is a powerful tool for high-performance digital signal processing, embedded processing, and image processing. It is a powerful chip that is capable of handling complex tasks and can be used in a variety of applications. This chip is designed with a HDL language, which is a powerful language for designing complex systems.
The XC7354-7PC44C chip model is well suited for applications in networks and intelligent scenarios. It is capable of handling complex tasks such as data analysis, machine learning, and artificial intelligence. This chip is also well-suited for the era of fully intelligent systems, as it is capable of handling large amounts of data efficiently and quickly.
The product description and design requirements of the XC7354-7PC44C chip model are quite extensive. It is designed to handle a wide range of tasks and is capable of running complex algorithms. The chip is also designed to be robust and reliable, and is capable of handling large amounts of data.
When designing with the XC7354-7PC44C chip model, there are a few things to keep in mind. It is important to ensure that the chip is properly configured and that the code is optimized for the chip's architecture. Additionally, it is important to ensure that the chip is properly connected to the system and that it is powered correctly.
Case studies of the XC7354-7PC44C chip model have been conducted in a variety of applications. One example is the use of the chip for image processing applications. In this case, the chip was able to accurately process images and detect objects in the images. Another example is the use of the chip for autonomous driving applications. In this case, the chip was able to accurately detect obstacles and navigate around them.
The XC7354-7PC44C chip model is a powerful tool for high-performance digital signal processing, embedded processing, and image processing. It is a robust and reliable chip that is capable of handling complex tasks and can be used in a variety of applications. This chip is designed with a HDL language, which is a powerful language for designing complex systems. It is well suited for applications in networks and intelligent scenarios, and is capable of handling large amounts of data efficiently and quickly. When designing with the chip, it is important to ensure that it is properly configured and that the code is optimized for the chip's architecture. Additionally, it is important to ensure that the chip is properly connected to the system and that it is powered correctly. Case studies of the chip have been conducted in a variety of applications, and it has proven to be a powerful and reliable chip.
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