Intel_EP3C40U484I7N
original

Intel
EP3C40U484I7N

696-EP3C40U484I7N
PDF Datasheet
Field Programmable Gate Array, 39600 CLBs, 472.5MHz, 39600-Cell, CMOS, PBGA484, 19 X 19 MM, 2.20 MM HEIGHT, 0.80 MM PITCH, LEAD FREE, UFBGA-484
26 Weeks

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Tech Specifications

Package/Case
FBGA
Frequency
437.5MHz
Max Frequency
315MHz
Max Operating Temperature
100°C
Max Supply Voltage
1.25V
Memory Size
1161216b
Min Operating Temperature
-40°C
Min Supply Voltage
1.15V
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EP3C40U484I7N Description

Intel's EP3C40U484I7N is a high-performance field-programmable gate array (FPGA) belonging to the Cyclone III family. This device is designed to offer a balance between performance, power consumption, and cost, making it suitable for a wide range of applications.

Description:

The EP3C40U484I7N is an FPGA that features a low-power 6.8V core supply and a -40°C to 85°C extended industrial temperature range. It has a total of 33,792 programmable logic elements (LEs) and 352 macro cells, providing ample resources for complex digital designs. The device also includes 484 I/O pins, allowing for extensive connectivity with other components and systems.

Features:

  1. Cyclone III family: The EP3C40U484I7N belongs to the Cyclone III family, which is known for its high performance, low power consumption, and cost-effectiveness.
  2. Low-power 6.8V core supply: The device operates with a low-power core supply, which helps reduce overall power consumption and heat generation.
  3. Extended industrial temperature range: The EP3C40U484I7N is designed to function reliably in a wide temperature range of -40°C to 85°C, making it suitable for various industrial applications.
  4. 33,792 programmable logic elements (LEs): The device offers a large number of LEs, providing ample resources for complex digital designs.
  5. 352 macro cells: The macro cells in the EP3C40U484I7N can be used for dedicated functions, such as memory or DSP blocks, to optimize the design.
  6. 484 I/O pins: The extensive number of I/O pins allows for a wide range of connectivity options with other components and systems.
  7. High-performance clock management: The EP3C40U484I7N features advanced clock management capabilities, enabling designers to optimize clock distribution and reduce timing issues.

Applications:

The Intel EP3C40U484I7N FPGA is suitable for a variety of applications due to its balance of performance, power consumption, and cost. Some potential applications include:

  1. Industrial automation and control systems: The extended temperature range and robust I/O capabilities make the EP3C40U484I7N suitable for use in harsh industrial environments.
  2. Communications infrastructure: The device's high-performance and low-power characteristics make it well-suited for applications such as network routers, switches, and other communication equipment.
  3. Video processing and image recognition: The EP3C40U484I7N can be used in applications that require real-time video processing, such as surveillance systems, image recognition, and machine vision.
  4. Medical imaging and diagnostic equipment: The FPGA's high performance and reliability make it suitable for use in medical imaging and diagnostic devices, such as ultrasound machines and CT scanners.
  5. Automotive systems: The EP3C40U484I7N can be used in various automotive applications, such as advanced driver assistance systems (ADAS), infotainment systems, and engine control units (ECUs).
  6. Aerospace and defense: The device's extended temperature range and high reliability make it suitable for aerospace and defense applications, such as satellite systems, radar, and communication equipment.

In summary, the Intel EP3C40U484I7N is a versatile and powerful FPGA that offers a balance of performance, power consumption, and cost. Its features, such as a low-power core supply, extended temperature range, and extensive I/O capabilities, make it suitable for a wide range of applications across various industries.

FAQ

What is EP3C40U484I7N?
EP3C40U484I7N is a FPGAs from Intel. This product page provides its main specifications, pricing information, availability, and inquiry options.
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