XC3030A-7PQ-100C ApplicationField
-Internet of Things
-Cloud Computing
-Medical Equipment
-Artificial Intelligence
-Industrial Control
-5G Technology
-Consumer Electronics
-Wireless Technology
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XC3030A-7PQ-100C FAQ Chips
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Q: How can I obtain software development tools related to the Xilinx FPGA platform?
A: In FPGA/CPLD design tools, Xilinx’s Vivado Design Suite is easy to use, it is very user-friendly in synthesis and implementation, and it is easier to use than ISE design tools; The specific choice depends on personal habits and functional requirements to specifically select a more suitable match. You can search and download through the FPGA resource channel.
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ICs XC3030A-7PQ-100C Features
– On-chip crystal oscillator amplifier
– Guaranteed toggle rates of 70 to 325 MHz, logic delays from 9 to 2.2 ns
• Ideal for a wide range of custom VLSI design tasks
– In-system logic changes
– Plastic and ceramic surface-mount and pin-grid· array packages
• Flexible FPGA architecture
• High-performance CMOS static memory technology
– Low quiescent and active power consumption
– Standard, off-the-shelf product availability
– Extensive register, combinatorial, and 1/0 capabilities
– High fan-out signal distribution, low-skew clock nets
– Thin and Very Thin Quad Flat Pack (TQFP and VQFP) options
– System clock speeds over 80 MHz
– 100% factory pre-tested devices
– Easy design iteration
– Over 20 different packages
• Unlimited reprogrammability
– TTL or CMOS input thresholds
– Internal 3-state bus capabilities
• Extensive Packaging Options
– Compatible arrays ranging from 1,000 to 7,500 gate complexity
– Avoids the NRE, time delay, and risk of conventional masked gate arrays
– Integrates complete sub-systems into a single package
– Replaces TTL, MSI, and other PLD logic
• Ready for volume production
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Xilinx XC3030A-7PQ-100C Overview
The XC3030A-7PQ-100C provide a group of high-performance, high-density, digital integrated circuits. Their regular, extendable,
flexible, user-programmable array architecture is com·
posed of a configuration program store plus three types of
configurable elements: a perimeter of 1/0 Blocks (lOBs), a
core array of Configurable Logic Bocks (CLBs) and re·
sources for interconnection. The general structure of an
LCA device is shown in XC3030A-7PQ-100C Diagram on the next page. The
XACT development system provides schematic capture
and auto place-and-route for design entry. Logic and
timing simulation, and in-circuit emulation are available as
design verification alternatives. The design editor is used
for interactive design optimization, and to compile the data
pattern that represents the configuration program.
The LCA user logic functions and interconnections are
determined by the configuration program data stored in
internal static memory cells. The program can be loaded in
any of several modes to accommodate various system
requirements. The program data resides externally in an
EEPROM, EPROM or ROM on the application circuit
board, or on a floppy disk or hard disk. On-chip initialization
logic provides for optional automatic loading of program
data at power-up. The companion XC17XX Serial
Configuration PROMs provide a very simple serial config·
uration program storage in a one-lime programmable
package.
XC3030A-7PQ-100C Tags integrated circuit
1. XC3030A-7PQ-100C Datasheet PDF
2. XC3030 development board
3. XC3000 Series FPGAs starter kit
4. Xilinx XC3000 Series FPGAs development board
5. XC3030 reference design
6. XC3000 Series FPGAs evaluation kit
7. Xilinx XC3030
8. XC3000 Series FPGAs XC3030
9. Xilinx XC3000 Series FPGAs development board
Xilinx XC3030A-7PQ-100C TechnicalAttributes