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EP2C35F672C7
+NomenclatureIC FPGA 475 I/O 672FBGA
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FabricantAltra
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Pièce fabricant #EP2C35F672C7
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Fiche technique EP2C35F672C7 DataSheet
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En stock2568
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Spécifications
| Attribut | Valeur |
| Series | Cyclone® II |
| Part Status | Active |
| Digi Key Programmable | Not Verified |
| Total RAM Bits | 483840 |
| Number of I/O | 475 |
| Voltage - Supply | 1.15V ~ 1.25V |
| Mounting Type | Surface Mount |
| Operating Temperature | 0°C ~ 85°C (TJ) |
| Package / Case | 672-BGA |
| Supplier Device Package | 672-FBGA (27x27) |
| Base Product Number | EP2C35 |
| Number of Logic Elements / Cells | 33216 |
| Number of LA Bs / CL Bs | 2076 |
Présentation
Description
Key specifications include:
- 672 configurable I/O pins
- Support for various I/O standards
- Embedded multipliers and memory blocks for efficient data processing
- Integrated phase-locked loops (PLLs) for clock management
The EP2C35F672C7 is commonly used in telecommunications, automotive applications, and industrial control systems, where adaptability and rapid prototyping are essential. Its programming is typically done using hardware description languages like VHDL or Verilog, allowing developers to implement custom logic tailored to specific needs. Overall, this FPGA serves as a versatile platform for engineers to develop and deploy digital solutions while balancing performance and cost.
Equivalent
1. Lattice Semiconductor's LatticeECP2M35
2. Xilinx's Spartan-6 XC6SLX35
3. Microsemi's SmartFusion2 M2S050
These alternatives provide comparable logic capacity and performance for similar applications. Always verify specific requirements and features before choosing an equivalent.
Features
1. Logic Elements: Approximately 35,000 logic elements, enabling complex designs.
2. Memory: Up to 1,188 Kbits of embedded memory blocks for data storage.
3. I/O Pins: 672 user I/O pins with support for various signaling standards, including LVTTL and LVCMOS.
4. Performance: Maximum operating frequency of around 200 MHz, depending on application.
5. DSP Blocks: Integrated DSP (Digital Signal Processing) blocks for efficient arithmetic operations.
6. Power: Low power consumption with options for different operating voltages.
7. Design Flexibility: Supports multiple design tools and languages, such as Verilog and VHDL, through Intel's Quartus software.
This FPGA is suitable for applications in communications, automotive, industrial control, and more, offering a balance between performance and cost.
Pinout
1. I/O Pins: Configurable for general-purpose input/output, supporting various voltage levels and standards.
2. Power Supply Pins: For providing power to the FPGA.
3. Clock Pins: Dedicated pins for clock signals.
4. Configuration Pins: Used for programming the FPGA.
5. Ground Pins: Essential for stable operation and signal integrity.
The FPGA is designed for low-cost, low-power applications, making it suitable for a wide range of digital logic functions, including signal processing, control systems, and various embedded applications.
Manufacturer
Intel, originally founded as a semiconductor manufacturer famous for its microprocessors, has expanded its portfolio through acquisitions, including the purchase of Altera in 2015. Altera was renowned for its FPGA technology, and under Intel, these devices are used in various applications, including telecommunications, automotive, industrial automation, and data centers.
As a technology company, Intel focuses on innovation in computing and semiconductor technology, producing not only FPGAs but also CPUs, memory products, and other advanced hardware solutions. The company is a key player in the global electronics industry, emphasizing research and development to push the boundaries of computing performance and efficiency.
Application
1. Digital Signal Processing (DSP): Used in audio and video processing systems.
2. Communications: Employed in networking equipment and protocols.
3. Industrial Automation: Utilized in control systems and robotics.
4. Consumer Electronics: Integrated into devices for enhanced functionality.
5. Medical Devices: Applied in imaging and diagnostic equipment.
6. Military and Aerospace: Used in secure communications and radar systems.
Its flexibility and performance make it suitable for both prototyping and production in diverse fields.