XC9572XL-10VQG44C

Xilinx,Inc.

XC9572XL-10VQG44C

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Lead time

Semiconductors

FLASH PLD

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Semiconductors

FLASH PLD

Lead time 15 weeks

Complex programmable logic device, XC9572XL-10VQG44C, XILINX The XC9572XL-10VQG44C is a 3.3V CPLD targeted for high-performance, low-voltage applications in leading-edge communications and computing systems. The power dissipation in CPLDs can vary substantially depending on the system frequency, design application and output loading. Features Optimized for high-performance Fast concurrent programming Slew rate control on individual outputs Local clock inversion with three global and one product-term clocks

Technical Data
JTAG BST YES
Technology CMOS
Width (mm) 10
Length (mm) 10
JESD-30 Code S-PQFP-G44
Organization 0 DEDICATED INPUTS, 34 I/O
Package Code TQFP
Package Shape SQUARE
Package Style (Meter) FLATPACK, THIN PROFILE
Surface Mount YES
Terminal Form GULL WING
J-STD-609 Code e3
Output Function MACROCELL
Terminal Finish MATTE TIN
Number of Inputs 34
DLA Qualification Not Qualified
Number of Outputs 34
Temperature Grade COMMERCIAL
Terminal Position QUAD
Additional Feature 72 MACROCELLS
Number of I/O Lines 34
Number of Terminals 44
Terminal Pitch (mm) 0.8
Number of Macro Cells 72
Package Body Material PLASTIC/EPOXY
In-System Programmable YES
Propagation Delay (ns) 10
Seated Height-Max (mm) 1.2
Supply Voltage-Max (V) 3.6
Supply Voltage-Min (V) 3
Supply Voltage-Nom (V) 3.3
Programmable Logic Type FLASH PLD
Package Equivalence Code TQFP44,.47SQ,32
Clock Frequency-Max (MHz) 100
Moisture Sensitivity Level 3
Number of Dedicated Inputs 0
Peak Reflow Temperature (Cel) 260
Operating Temperature-Max (Cel) 70
Operating Temperature-Min (Cel) 0
Time@Peak Reflow Temperature-Max (s) 30

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Frequently Asked Questions

What documentation is available for Xilinx,Inc. XC9572XL-10VQG44C?

You can download the user manual and technical specifications for Xilinx,Inc. XC9572XL-10VQG44C in the documentation section.

What are the key features of Xilinx,Inc. XC9572XL-10VQG44C?

Complex programmable logic device, XC9572XL-10VQG44C, XILINX The XC9572XL-10VQG44C is a 3.3V CPLD targeted for high-performance, low-voltage applications in leading-edge communications and computing systems. The power dissipation in CPLDs can vary substantially depending on the system frequency, design application and output loading. Features Optimized for high-performance Fast concurrent programming Slew rate control on individual outputs Local clock inversion with three global and one product-term clocks

How does Xilinx,Inc. XC9572XL-10VQG44C contribute to energy efficiency?

As part of the category Semiconductors and subcategory Semiconductors, XC9572XL-10VQG44C optimizes energy distribution in electronic devices. Its Complex programmable logic device, XC9572XL-10VQG44C, XILINX The XC9572XL-10VQG44C is a 3.3V CPLD targeted for high-performance, low-voltage applications in leading-edge communications and computing systems. The power dissipation in CPLDs can vary substantially depending on the system frequency, design application and output loading. Features Optimized for high-performance Fast concurrent programming Slew rate control on individual outputs Local clock inversion with three global and one product-term clocks allows minimizing losses and increasing the overall system efficiency.

Why is XC9572XL-10VQG44C suitable for complex power management systems?

As a component of the subcategory Semiconductors, XC9572XL-10VQG44C ensures stable output voltage even when the load changes. Its Complex programmable logic device, XC9572XL-10VQG44C, XILINX The XC9572XL-10VQG44C is a 3.3V CPLD targeted for high-performance, low-voltage applications in leading-edge communications and computing systems. The power dissipation in CPLDs can vary substantially depending on the system frequency, design application and output loading. Features Optimized for high-performance Fast concurrent programming Slew rate control on individual outputs Local clock inversion with three global and one product-term clocks makes it a reliable element in multi-level power systems.