5CEFA7U19I7N FPGAs: Applications, Alternatives and Datasheet

2025-04-01 17:50:11 1616

5CEFA7U19I7N Description

The 5CEFA7U19I7N is a member of the Cyclone V E FPGA family from Intel (Altera), designed for high-performance and low-power applications. This Field-Programmable Gate Array (FPGA) offers a balance of logic density, embedded memory, and DSP (Digital Signal Processing) resources, making it suitable for a range of industries, including automotive, industrial, communications, and more. It is built using a 28 nm process technology, delivering efficient power consumption for cost-sensitive applications.

 

5CEFA7U19I7N Features

28 nm Process Technology:

Fabricated on a 28 nm low-power process, providing an optimal balance between performance and energy efficiency.

Logic Elements (LE):

Contains 77,600 Logic Elements (LEs), offering ample capacity for implementing custom logic functions.

Embedded Memory:

Equipped with 6,325 Kbits of embedded memory, facilitating data storage and processing for complex designs.

DSP Blocks:

Integrated 87 DSP blocks support intensive signal processing tasks, making it ideal for applications requiring high-performance computations.

I/O Pins:

Provides 288 I/O pins, enabling versatile connectivity with external devices, sensors, and systems.

Transceivers:

Includes high-speed transceivers for high-performance data transfer, useful in communication applications.

Operating Temperature:

Rated for industrial temperature ranges (-40°C to 100°C), suitable for harsh environmental conditions.

Low Power Consumption:

Designed with low power usage in mind, making it an excellent fit for energy-sensitive designs in automotive and industrial fields.

 

5CEFA7U19I7N Applications

Automotive Systems:

Suitable for automotive control units, sensor fusion, and infotainment systems, thanks to its robustness and low power consumption.

Industrial Automation:

Used in programmable logic controllers (PLCs), motor control, and other industrial control applications where reliability is key.

Communications:

Ideal for communication systems requiring high-speed data transfer, such as base stations, routers, and network switches.

Embedded Systems:

Fits well in embedded applications requiring reconfigurable hardware, including IoT devices, wearable technology, and portable equipment.

Video and Image Processing:

With integrated DSP blocks, the FPGA is capable of handling video and image processing tasks in security cameras, video encoders, and surveillance systems.

 

5CEFA7U19I7N Manufacturer

Intel Corporation is a leading global technology company known for designing and manufacturing microprocessors and semiconductor chips. Founded in 1968 by Robert Noyce and Gordon Moore, Intel played a pivotal role in shaping the modern computing era, especially with its development of the x86 series of microprocessors, which became the standard architecture for personal computers.

Intel's product portfolio includes processors, chipsets, memory modules, storage solutions, and hardware for data centers, artificial intelligence, 5G, autonomous driving, and cloud computing. Its processors power a wide range of devices, from personal computers and laptops to servers and Internet of Things (IoT) devices.

Headquartered in Santa Clara, California, Intel is renowned for its innovation in semiconductor technology, making significant advancements in processing power, energy efficiency, and AI-driven technologies. Intel continues to be a key player in the tech industry, driving progress in fields such as high-performance computing and artificial intelligence.

 

5CEFA7U19I7N Alternatives

Xilinx Spartan-7:

An alternative FPGA offering similar performance for low-power applications in automotive, industrial, and communications sectors.

Lattice ECP5:

A mid-range FPGA designed for power efficiency and high-speed I/O, used in similar application fields.

Microsemi SmartFusion2:

An alternative offering a combination of FPGA fabric, ARM Cortex-M3, and security features, often used in industrial and communications systems.

 

5CEFA7U19I7N CAD Model

Footprint

3D Model

 

5CEFA7U19I7N FAQ

1. What is the operating temperature range of the 5CEFA7U19I7N?

The 5CEFA7U19I7N is rated for industrial-grade operating temperatures, from -40°C to 100°C, making it suitable for harsh environments.

 

2. How many logic elements does the 5CEFA7U19I7N have?

It contains 77,600 Logic Elements (LEs), offering significant capacity for implementing complex logic designs.

 

3. What is the power consumption of the 5CEFA7U19I7N?

The 5CEFA7U19I7N is designed with low power consumption in mind, making it suitable for power-sensitive applications, though specific power usage depends on the design implementation.

 

4. Does the 5CEFA7U19I7N support DSP applications?

Yes, it features 87 DSP blocks that can handle high-performance digital signal processing tasks, useful in communications and video processing.

 

5. What applications can benefit from the 5CEFA7U19I7N FPGA?

The FPGA is well-suited for automotive systems, industrial automation, communications, embedded systems, and video processing, providing flexibility and reconfigurability for diverse applications.

Tags:

Share

Related News more>

Application of GaN Devices in Compact Adapters: Solutions to High-Frequency Switching and EMI Challenges
The dual demands for charging efficiency and device portability have driven technological innovation in compact adapters. Gallium nitride (GaN) devices, with their high-frequency switching characteristics and low-loss advantages, have emerged as the core technology to overcome the performance limitations of traditional silicon-based adapters. However, electromagnetic interference (EMI) issues arising from high-frequency switching, coupled with thermal management and reliability challenges within compact des....
ams OSRAM Launches New Laser Diode for Next-Generation Automotive Lidar Applications
Shanghai, China, 14 November 2025 – ams OSRAM, a global leader in lighting and sensing innovation, today announced the launch of a new five-junction edge-emitting laser diode, driving lidar system performance to new heights. The realisation of autonomous driving relies on sensor technology capable of delivering precise, reliable, and long-range detection at all times. Lidar systems operate independently of lighting conditions, continuously capturing three-dimensional environmental data to enable real-....
EP2C5T144C8N FPGAs: Features, Applications and Datasheet
EP2C5T144C8N Description The EP2C5T144C8N is a member of the Altera Cyclone II FPGA family, designed to deliver high performance at low cost. Built using a 90 nm CMOS process, this FPGA offers a balance of logic density, low power consumption, and rich I/O options. It is housed in a 144-pin TQFP package, making it ideal for cost-sensitive and space-constrained applications such as embedded systems, communications, and consumer electronics. EP2C5T144C8N Features Logic Elements (LEs): 4,608 Embedded Memory:....
How to Measure Circuit Current Using Shunt Resistors: Principles, Steps and Practical Guide
In electronic circuit testing and troubleshooting, current measurement is a fundamental and critical operation. Whilst multimeters can directly measure current, shunt resistors prove a more reliable choice when dealing with high currents (e.g. exceeding 10A) or demanding high-precision measurements, owing to their low cost and high stability. This article systematically explains shunt resistor selection, connection methods, practical measurement steps, error control, and safety precautions, starting from th....