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XC4010XL-2BG256I Xilinx
Xilinx
Xilinx stands as a preeminent purveyor of All Programmable Field-Programmable Gate Arrays (FPGAs), System on Chips (SoCs), Multiprocessor System on Chips (MPSoCs), and Three-Dimensional Integrated Circuits (3D ICs). AMD stands in a distinctive position, facilitating applications that embody a dual nature of software-defined sophistication and hardware-honed optimization. This empowering of industries finds its zenith in the realms of Cloud Computing, 5G Wireless Connectivity, Embedded Vision, and the sprawling domain of Industrial Internet of Things (IIoT).
View All Product from Xilinx
The XC4010XL-09BG256I Field-Programmable Gate Array Family is engineered to
deliver low cost. Building on experiences gained with three previous successful
SRAM FPGA families, the XC4010X Lfamily brings a robust feature set to
programmable logic design. The VersaBlock™ logic module, the VersaRing I/O
interface, and a rich hierarchy of interconnect resources combine to enhance
design flexibility and reduce time-to-market. Complete support for the XC4010XL-09BG256I family
is delivered through the familiar Xilinx software environment. The XC4010XL-09BG256I family
is fully supported on popular workstation and PC platforms. Popular design
entry methods are fully supported, including ABEL, schematic capture, VHDL, and
Verilog HDL synthesis. Designers utilizing logic synthesis can use their
existing tools to design with the XC4010XL-09BG256I devices.
• Low-cost, register/latch rich, SRAM based reprogrammable architecture
- 0.5µm three-layer metal CMOS process technology
- 256 to 1936 logic cells (3,000 to 23,000 “gates”)
- Price competitive with Gate Arrays
• System Level Features
- System performance beyond 50 MHz
- 6 levels of interconnect hierarchy
- VersaRing™ I/O Interface for pin-locking
- Dedicated carry logic for high-speed arithmetic functions
- Cascade chain for wide input functions
- Built-in IEEE 1149.1 JTAG boundary scan test circuitry on all I/O pins
- Internal 3-state bussing capability
- Four dedicated low-skew clock or signal distribution nets
• Versatile I/O and Packaging
- Innovative VersaRing™ I/O interface provides a high logic cell to I/O ratio, with up to 244 I/O signals
- Programmable output slew-rate control maximizes performance and reduces noise
- Zero Flip-Flop hold time for input registers simplifies system timing
- Independent Output Enables for external bussing
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Our strategic hubs located in Futian, Longgang, Nanshan offer a variety of customized programs designed for specific customers' needs.
We also have long-standing relationships with major logistics carriers and provide flexible solutions to meet your individual requirements.
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A: Our professional business development department conducts rigorous testing and verification of the qualifications of original manufacturers and agents of . All suppliers must undergo and pass our qualification review before they are allowed to list their XC4010XL-2BG256I devices on our platform. We prioritize the sourcing channels and quality of XC4010XL-2BG256I products above everything else, ensuring thorough supplier audits so you can make your purchase with utmost confidence.
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A: For any After-Sales service, including datasheets and pin diagrams for XC4010XL-2BG256I, feel free to contact us at [email protected]
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Mfr Part # | Price ($) | Quantity Available | |
---|---|---|---|
XC4010E-4PG191IIC FPGA 160 I/O 191CPGA | 1129.96 |
4027
Marketplace | |
XC4010E-4PQ208CIC FPGA 160 I/O 208QFP | 74.41 |
120
Marketplace |
TYPE | DESCRIPTION | Select all |
---|---|---|
Number of Gates | 10000 | |
Voltage - Supply | 3V ~ 3.6V | |
Mounting Type | Surface Mount | |
Series | XC4000E/X | |
Operating Temperature | -40°C ~ 100°C (TJ) | |
Package | Tray | |
Package / Case | 256-BBGA | |
Product Status | Obsolete | |
Supplier Device Package | 256-PBGA (27x27) | |
Programmable | Not Verified | |
Number of LABs/CLBs | 400 | |
Number of Logic Elements/Cells | 950 | |
Total RAM Bits | 12800 | |
Number of I/O | 160 |
Xilinx
Xilinx stands as a preeminent purveyor of All Programmable Field-Programmable Gate Arrays (FPGAs), System on Chips (SoCs), Multiprocessor System on Chips (MPSoCs), and Three-Dimensional Integrated Circuits (3D ICs). AMD stands in a distinctive position, facilitating applications that embody a dual nature of software-defined sophistication and hardware-honed optimization. This empowering of industries finds its zenith in the realms of Cloud Computing, 5G Wireless Connectivity, Embedded Vision, and the sprawling domain of Industrial Internet of Things (IIoT).
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