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EPCQ4ASI8N: Features, Specs & More

2024-11-26 15:27:03Mr.Ming
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EPCQ4ASI8N: Features, Specs & More

In the fast-evolving world of electronics, the need for high-performance, reliable, and efficient memory solutions is critical. The Intel/Altera EPCQ4ASI8N stands out as an exceptional choice in the field of FPGA (Field-Programmable Gate Array) configuration memory. In this comprehensive article, we'll delve into the intricacies of the EPCQ4ASI8N, uncovering its definition, key features, specifications, applications, and a closer look at its manufacturer.

 

Catalog

EPCQ4ASI8N's Overview

Key Features

Specifications

Applications

EPCQ4ASI8N's Manufacturer

Conclusion

 

EPCQ4ASI8N's Overview

The Intel/Altera EPCQ4ASI8N is a FPGA configuration flash memory designed to provide non-volatile storage for FPGA configurations. This device supports serial (AS x1) and quad-serial (AS x4) configuration schemes, making it suitable for a wide range of applications where high-speed and reliable memory storage is essential. It offers a low pin count, cost-effective solution that integrates easily into designs that require in-system programming (ISP) and fast read/write capabilities.

 

Key Features

Let's delve into the standout features that make the EPCQ4ASI8N a standout in the world of electronics:

· With just 8 pins in a small-outline integrated circuit (SOIC) package, the EPCQ4ASI8N is space-efficient and ideal for designs with limited space.

· Supports active serial (AS) x1 and AS x4 configuration schemes, allowing for flexible integration with Intel FPGA devices.

· Operates between 2.7V and 3.6V, providing compatibility with various power configurations.

· Capable of more than 100,000 program-erase cycles, ensuring longevity and flexibility.

· Features a status register to protect memory sectors from unintended writes.

· Supports fast read, extended dual-input, and quad-input fast read modes for efficient data retrieval.

 

Specifications

Now, let's take a closer look at the technical specifications that define the capabilities of the EPCQ4ASI8N:

Type

Parameter

Mounting

Surface Mount

Package Height

1.5(Max)

Package Width

3.9

Package Length

4.9

PCB changed

8

Standard Package Name

SO

Supplier Package

SOIC

Pin Count

8

Lead Shape

Gull-wing

 * EPCQ4ASI8N's Datasheet

 

Applications

The EPCQ4ASI8N is used in various fields where FPGA configuration memory is needed. Some of the primary applications include:

· FPGA-Based Systems: Ideal for configuring FPGA devices in communication systems, industrial controls, and data processing applications.

· Embedded Systems: Offers memory solutions for microcontrollers, digital signal processors (DSPs), and other embedded systems requiring configuration storage.

· Consumer Electronics: Plays a vital role in consumer electronics, providing efficient memory solutions for product customization and reprogramming.

· Automotive Systems: Helps in memory storage for automotive ECUs (Electronic Control Units), ensuring reliable operation in harsh environments.

 

EPCQ4ASI8N's Manufacturer

Intel and Altera announced on June 1, 2015, that they had entered into a definitive agreement under which Intel would acquire Altera. The transaction closed December 28, 2015. The acquisition couples Intel's leading-edge products and manufacturing process with Altera's leading field-programmable gate array (FPGA) technology. The combination enables new classes of products that meet customer needs in the data center and Internet of Things (IoT) market segments. Intel enables designers of electronic systems to rapidly and cost effectively innovate, differentiate, and win in their markets. Intel offers FPGAs, SoCs, CPLDs, and Power Solutions, to provide high-value solutions to customers worldwide.

 

Conclusion

The Intel EPCQ4ASI8N FPGA configuration flash memory is an exceptional choice for any electronics project that requires reliable and fast memory for FPGA configuration. Its low pin count, long data retention, and reprogrammable capabilities ensure that it meets the rigorous demands of modern applications, all while maintaining a compact and efficient footprint.

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