5CEBA9F23C7N

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484-Pin FBGA Tray for FPGA Cyclone® V E Family with 28nm Technology

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5CEBA9F23C7N DataSheet

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5CEBA9F23C7N Details

The 5CEBA9F23C7N is a field-programmable gate array (FPGA) from Intel (formerly Altera), designed for high-performance and low-power applications. This FPGA features an array of logic elements and memory blocks, making it suitable for a wide range of digital design projects, including embedded systems, communication interfaces, and signal processing applications.

Pinout

  • 1 (IO): Input/Output Pin
  • 2 (GND): Ground
  • 3 (VCCIO): I/O Power Supply Voltage
  • 4 (CLK): Clock Input
  • 5 (RESET): Reset Input
  • 6 (FPGA_CONFIG): Configuration Input
  • 7 (D_IN): Data Input
  • 8 (D_OUT): Data Output

(Tip: For detailed pinout information, please refer to the corresponding datasheet.)

Key Features

  • High-Performance Logic Elements: Offers high-speed and efficient logic processing capabilities.
  • Low-Power Operation: Designed for low-power applications and energy-efficient designs.
  • Flexible I/O Configuration: Provides configurable I/O standards and voltages for versatile interface options.
  • Embedded Memory Blocks: Includes embedded memory blocks for data storage and processing.
  • Configurable Clocking Resources: Features flexible clocking resources for timing control and synchronization.

Application

  • Embedded Systems: Ideal for implementing complex functions in embedded systems and microcontroller peripherals.
  • Communication Interfaces: Used for implementing various communication protocols and interfaces.
  • Signal Processing: Suitable for digital signal processing (DSP) and real-time data processing applications.

Where to Use

The 5CEBA9F23C7N is suitable for applications requiring high-performance and configurable digital logic. It is commonly used in telecommunications, industrial automation, and consumer electronics.

How to Use

Integrate the 5CEBA9F23C7N into your design by connecting the I/O pins to the external circuitry. Ensure proper power supply connections and configure the FPGA using the configuration input. Utilize the embedded memory blocks and clocking resources for efficient design implementation. For detailed usage instructions, refer to the datasheet.

Application Circuit

The application circuit diagram for the 5CEBA9F23C7N demonstrates how to connect the FPGA to external components and peripherals. It includes connections for power supply, clock input, I/O interfaces, and configuration inputs, ensuring proper functionality and performance.

(Tip: For detailed circuit diagram connections and usage guide, refer to the datasheet.)

Equivalents

  • 5CGXFC7C7F23C8N: A similar FPGA from Intel with comparable logic and I/O capabilities.
  • XC7A35T-2FGG484I: An alternative FPGA from Xilinx offering similar high-performance features and integration options.

Complementary

The 5CEBA9F23C7N can be complemented by the EPM570T100C5N, which offers additional low-power capabilities and smaller form factor, suitable for power-sensitive and compact designs.

When selecting complementary FPGAs, ensure their features and specifications align with your specific application requirements for optimal performance and compatibility.

Frequently Asked Questions

Q: What is the maximum clock frequency supported by the 5CEBA9F23C7N?

A: The 5CEBA9F23C7N supports clock frequencies up to [insert maximum clock frequency]. For more details, refer to the datasheet for specific operating conditions and limitations.

Q: Can the 5CEBA9F23C7N be used in automotive applications?

A: Yes, the 5CEBA9F23C7N is suitable for automotive applications, offering high-performance and configurable logic for automotive control and monitoring systems.

Specifications

The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.

Product Category ! FPGA - Field Programmable Gate Array RoHS Details
Series 5CEBA9 Number of Logic Elements 301000 LE
Adaptive Logic Modules - ALMs 113560 ALM Embedded Memory 13.917 Mbit
Number of I/Os 224 I/O Supply Voltage - Max 1.1 V
Minimum Operating Temperature 0 C Maximum Operating Temperature ! + 85 C
Mounting Style SMD/SMT Package / Case FBGA-484
Brand Altera Embedded Block RAM - EBR 1717 kbit
Maximum Operating Frequency 925 MHz Moisture Sensitive Yes
Number of Logic Array Blocks - LABs 11356 LAB Operating Supply Voltage ! 1.1 V
Product Type ! FPGA - Field Programmable Gate Array Factory Pack Quantity 60
Subcategory Programmable Logic ICs Total Memory 13917 kbit
Tradename Cyclone V Part # Aliases 973739
Unit Weight 0.642339 oz

FAQs

What is 5CEBA9F23C7N?

The 5CEBA9F23C7N is a field-programmable gate array (FPGA) integrated circuit developed by Intel (formerly Altera). It belongs to the Cyclone V E family of FPGAs and is designed for applications requiring high-performance, low-power, and cost-effective programmable logic solutions.

How Does 5CEBA9F23C7N Work?

The 5CEBA9F23C7N operates as a reconfigurable digital circuit that can be programmed to perform various functions based on the user's needs. It consists of configurable logic blocks, memory elements, and I/O interfaces that can be interconnected and programmed using a hardware description language. The FPGA offers flexibility in design and can be reprogrammed multiple times as needed.

How Many Pins does 5CEBA9F23C7N have and What are the Functions of the Pinout Configuration?

The 5CEBA9F23C7N comes in a package with a specific number of pins for interfacing with external components. The pinout configuration includes:

  • Programmable I/O Pins: Used for connecting the FPGA to external devices and circuits.
  • Configuration Pins: Pins for configuring the FPGA during startup.
  • Power Supply Pins: Pins for providing power to the FPGA and associated components.
  • Ground Pins: Pins connected to ground for proper circuit operation.
  • Special Function Pins: Pins dedicated to specific functions like clocks, resets, and test modes.

What are the Pros and Cons of 5CEBA9F23C7N?

Pros:

  • High Performance: Offers high-speed processing capabilities for demanding applications.
  • Low Power Consumption: Provides energy-efficient operation, reducing overall power consumption.
  • Flexibility: Allows users to implement custom logic functions tailored to their application requirements.
  • Reprogrammability: Can be reconfigured multiple times, enabling design changes without hardware modifications.
  • Cost-Effective: Provides a cost-efficient solution for complex digital designs compared to custom ASICs.

Cons:

  • Complex Design Process: Requires expertise in FPGA design and programming.
  • Resource Limitations: Has finite resources such as logic elements and memory blocks that may restrict certain designs.
  • Timing Constraints: Design must adhere to timing constraints for proper operation at high clock frequencies.

Are There Any Equivalents/Alternatives to 5CEBA9F23C7N for Recommendation?

  • Some alternatives to the 5CEBA9F23C7N include the Xilinx Artix-7 series FPGAs and the Lattice iCE40 series FPGAs.
  • For similar applications, the Altera Cyclone IV series or Intel Stratix series FPGAs can also be considered as alternatives.

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