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XC2C64A-7QFG48I
+Lista de MateriaisIC CPLD 64MC 6.7NS 48QFN
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FabricanteAMD Xilinx
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Peça do Fabricante #XC2C64A-7QFG48I
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Pacote QFN-48
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Especificações
| Atributo | Valor |
| Package | Tray |
| Series | CoolRunner II |
| ProductStatus | Active |
| ProgrammableType | In System Programmable |
| DelayTimetpd(1)Max | 6.7 ns |
| VoltageSupply-Internal | 1.7V ~ 1.9V |
| NumberofLogicElements/Blocks | 4 |
| NumberofMacrocells | 64 |
| NumberofGates | 1500 |
| NumberofI/O | 37 |
| OperatingTemperature | -40°C ~ 85°C (TA) |
| MountingType | Surface Mount |
| Package/Case | 48-VFQFN Exposed Pad |
Visão Geral
Description
Key features include low static power consumption, making it ideal for battery-operated devices. It supports a wide range of operating voltages, typically from 1.8V to 3.3V, providing flexibility for various system requirements. The CoolRunner-II architecture is known for its fast input-to-output delay, efficient clock management, and ability to handle complex logic functions, making it suitable for digital signal processing, data communications, and portable electronics.
In summary, the XC2C64A-7QFG48I is a versatile, power-efficient CPLD option for designers needing high-speed logic operations in space-constrained environments.
Equivalent
1. Lattice Semiconductor LC4032V, similar in low power CPLDs.
2. Altera (now Intel) MAX II series like EPM240.
3. Microchip (formerly Atmel) ATF1502AS, offering similar capabilities.
When selecting an equivalent, consider the specific requirements like logic density, I/O count, package type, and power consumption.
Features
1. Low Power Consumption: Utilizes Xilinx's CoolRunner-II technology for low dynamic power and static power consumption, making it ideal for battery-powered applications.
2. Logic Density: Offers 64 macrocells, which provide the logic resources needed for various digital designs.
3. Speed Grade: The "-7" in its name indicates a faster speed grade suitable for timing-critical applications.
4. I/O Pins: Comes in a 48-pin QFG (Quad Flat No-lead) package with a total of 37 available I/O pins, providing flexibility for interfacing with other components.
5. Non-volatile: Retains its configuration even after power is removed, thanks to its non-volatile nature.
6. Flexible Clocking: Features advanced clock management capabilities, including support for global and local clocks.
7. Wide Operating Range: Operates over a wide voltage range, making it versatile for various design requirements.
8. In-system Programmability: Allows updates and reconfiguration without removing the device from its system.
These features make it suitable for a range of applications including consumer electronics, communications, and industrial control systems.
Pinout
Key features include:
1. Pin Count: 48 pins.
2. Functionality: Designed for low-power applications, the XC2C64A provides a balance between performance and power efficiency. It is used for implementing custom logic circuits, including state machines, data processing, and interface bridging.
3. I/O Pins: It includes 36 user I/O pins, with the remainder used for power, ground, and configuration.
4. Operating Temperature: The "I" in the part number indicates an industrial-grade temperature range, from -40°C to 100°C.
5. Speed Grade: The "7" represents the speed grade, indicating the performance characteristics of the device.
Overall, the XC2C64A-7QFG48I serves applications requiring compact and efficient programmable logic solutions.
Manufacturer
As a company, Xilinx has been instrumental in driving innovations in the semiconductor industry, providing hardware platforms that enable developers to design and deploy advanced electronic systems efficiently. The acquisition by AMD has integrated Xilinx's expertise in FPGAs and adaptive computing with AMD's strengths in CPUs and GPUs, thereby creating a more comprehensive portfolio of products across various computing markets.
Application
1. Consumer Electronics: Used in devices requiring low power and high-speed processing.
2. Industrial Automation: Ideal for control and interfacing tasks due to its reliability and efficiency.
3. Telecommunications: Supports data processing and protocol bridging in communication devices.
4. Automotive Systems: Offers robust performance for automotive control systems and infotainment.
5. Medical Devices: Powers reliable and precise signal processing in medical equipment.
These CPLDs are favored for their ease of use, low-cost, and versatility in various embedded applications.