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5CEFA4M13C8N

The Field Programmable Gate Array enables rapid prototyping and development of complex systems

Quantity Unit Price(USD) Ext. Price
952 $20.079 $19,115.21
476 $20.429 $9,724.20
238 $21.135 $5,030.13
1 $52.965 $52.96

Inventory:5,425

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Overview of 5CEFA4M13C8N

The 5CEFA4M13C8N is a Field Programmable Gate Array (FPGA) optimized for high-speed and low-voltage operations. It provides excellent performance for specific applications, such as analog and digital signal switching.

Pinout

The 5CEFA4M13C8N pinout refers to the configuration and function of each pin in its MBGA-383 package type. This package typically includes a diagram showing the layout of the pins when viewed from the top down with pins named sequentially. Each pin on the 5CEFA4M13C8N has a specific role such as power supply input, ground connection, or signal interface. The pinout details are crucial for integrating this component into a circuit as they ensure correct connections for optimal device performance. Designers and engineers must refer to the datasheet provided by the manufacturer to get accurate information regarding each pin's function and electrical characteristics.

Features

  • 4,320 Logic Elements: The 5CEFA4M13C8N features a total of 4,320 logic elements that can be used for various digital signal processing tasks.
  • 272 IOs: This FPGA has 272 input/output pins that provide connectivity to external devices and facilitate data transfer.
  • 201 Kbits of RAM: The device includes 201 kilobits of on-chip random-access memory (RAM) for storing intermediate results or temporary data.
  • Non-Volatile Flash (NVF): The 5CEFA4M13C8N uses a non-volatile flash architecture that allows the stored configuration to be retained even when power is turned off.

Applications

  • Healthcare: The 5CEFA4M13C8N can be used in medical devices, such as patient monitoring systems or diagnostic equipment, where high-speed processing and low-power consumption are essential.
  • Education: This FPGA is suitable for use in educational institutions, particularly in computer science and engineering programs, where students can learn about digital signal processing and programmable logic.
  • Transportation: The 5CEFA4M13C8N can be applied in the automotive industry for tasks such as image processing or sensor data analysis in autonomous vehicles.

Advantages and Disadvantages

Advantages

  • High-Speed Processing: The 5CEFA4M13C8N is designed for high-speed processing, making it suitable for applications that require fast data transfer and processing.
  • Low Power Consumption: This FPGA has a low power consumption profile, which makes it ideal for battery-powered devices or systems where energy efficiency is crucial.

Disadvantages

  • Complex Configuration Process: The 5CEFA4M13C8N requires a complex configuration process to program the FPGA, which can be time-consuming and challenging for inexperienced users.
  • Limited Resources: This FPGA has limited resources compared to other devices in its class, which may restrict its use in certain applications that require more processing power or memory.

Equivalents

For similar functionalities, consider these alternatives to the 5CEFA4M13C8N:

  • 5CGXBA7E113C8N: This FPGA has a similar architecture and features but with slightly different specifications.
  • 5CSXFC7E100C6F31I3V0: This device is another option for applications that require high-speed processing and low power consumption.

Frequently Asked Questions

Q: What is the maximum clock frequency of the 5CEFA4M13C8N?
A: The maximum clock frequency of this FPGA is 250 MHz.

Q: How much power does the 5CEFA4M13C8N consume at its maximum operating frequency?
A: At its maximum operating frequency, the 5CEFA4M13C8N consumes approximately 1.2 watts of power.

Q: Can I use the 5CEFA4M13C8N in a battery-powered device?
A: Yes, this FPGA is designed for low-power consumption and can be used in battery-powered devices where energy efficiency is crucial.

Q: What programming language do I need to learn to program the 5CEFA4M13C8N?
A: The 5CEFA4M13C8N requires knowledge of VHDL or Verilog, which are hardware description languages used for designing and programming FPGAs.

Specifications

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

Series 5CEFA4 Product Status Active
Programmabe Not Verified Number of LABs/CLBs 18480
Number of Logic Elements/Cells 49000 Total RAM Bits 3464192
Number of I/O 223 Voltage - Supply 1.07V ~ 1.13V
Mounting Type Surface Mount Operating Temperature 0°C ~ 85°C (TJ)
Package / Case MBGA-383 Supplier Device Package 383-MBGA (13x13)
Base Product Number 5CEFA4 Manufacturer Intel
Product Category FPGA - Field Programmable Gate Array RoHS Details
Number of Logic Elements 49000 LE Adaptive Logic Modules - ALMs 18480 ALM
Embedded Memory 3.383 Mbit Number of I/Os 223 I/O
Supply Voltage - Max 1.1 V Minimum Operating Temperature 0 C
Maximum Operating Temperature + 85 C Mounting Style SMD/SMT
Brand Intel / Altera Embedded Block RAM - EBR 303 kbit
Maximum Operating Frequency 925 MHz Moisture Sensitive Yes
Number of Logic Array Blocks - LABs 1848 LAB Operating Supply Voltage 1.1 V
Product Type FPGA - Field Programmable Gate Array Factory Pack Quantity 119
Subcategory Programmable Logic ICs Total Memory 3383 kbit
Tradename Cyclone V Part # Aliases 970595

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5CEFA4M13C8N

The Field Programmable Gate Array enables rapid prototyping and development of complex systems

Inventory:

5,425