S29GL256N11FFA010 Allicdata Electronics
Allicdata Part #:

S29GL256N11FFA010-ND

Manufacturer Part#:

S29GL256N11FFA010

Price: $ 8.81
Product Category:

Integrated Circuits (ICs)

Manufacturer: Cypress Semiconductor Corp
Short Description: IC FLASH 256M PARALLEL
More Detail: FLASH - NOR Memory IC 256Mb (32M x 8, 16M x 16) Pa...
DataSheet: S29GL256N11FFA010 datasheetS29GL256N11FFA010 Datasheet/PDF
Quantity: 1000
180 +: $ 8.01458
Stock 1000Can Ship Immediately
$ 8.81
Specifications
Series: Automotive, AEC-Q100, GL-N
Part Status: Active
Memory Type: Non-Volatile
Memory Format: FLASH
Technology: FLASH - NOR
Memory Size: 256Mb (32M x 8, 16M x 16)
Write Cycle Time - Word, Page: 110ns
Access Time: 110ns
Memory Interface: Parallel
Voltage - Supply: 2.7 V ~ 3.6 V
Operating Temperature: -40°C ~ 85°C (TA)
Description

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Introduction

S29GL256N11FFA010 is a type of serial Flash memory chip. It is typically used in digital consumer, industrial, automation and communication systems for applications such as image processing, data storage and memory expansion. The chip provides fast read/write access times and uses a low power consumption design for efficient power management. S29GL256N11FFA010 features an array ofPage Gates and floating gates in order to control data storage and retrieval.

Application Field of S29GL256N11FFA010

S29GL256N11FFA010 is suitable for applications such as consumer electronics, industrial automation, storage and transmission, telecommunication networks and consumer products. The chip can be used in different kinds of applications including:

  • High volume consumer electronic products such as digital cameras, PDAs, MP3 players, computer monitors and other digital consumer devices.
  • Industrial automation, control systems, robotics and automated machinery.
  • Data storage and transmission applications requiring a fast, reliable memory.
  • Data processing and image processing systems for image transmission and image capture.
  • Portable and home audio/video products that require a small form factor, low power consumption, and fast read/write access times.

S29GL256N11FFA010 is a highly reliable chip and offers high speed operation as well as low power consumption. It offers a wide dynamic voltage range and excellent operation even in low temperatures. The chip can work in harsh environments and is also capable of being reprogrammed after data has been written.

Working Principle of S29GL256N11FFA010

S29GL256N11FFA010 is a type of non-volatile Flash memory chip and uses the Page Gate and floating Gate technology. The chip is programmed by sending electrical current to each Page Gate and causing a voltage difference between the Page Gate and the floating gate. This voltage difference will cause the electrons in the floating gate to move and form an insulation between the Page Gate and the substrate of the memory chip. Each Page Gate can store a single bit of data and multiple Page Gates are connected together to form an array of data.

When the memory chip is operational, the stored data can be accessed using the Page Gates. Each Page Gate can be individually switched on or off, depending on the stored data. A high voltage is sent to the specific Page Gate for the data that is desired to be accessed and a low voltage is sent to the other Page Gates. This allows the specified data to be accessed quickly and efficiently.

The S29GL256N11FFA010 chip also uses a low power consumption design to reduce power consumption and allow for an efficient power management system. The chip contains an array of transistors and an embedded programming system that allows easy programming of the page gates and the corresponding data. This allows for easy data storage and retrieval with little or no power consumption.

Conclusion

S29GL256N11FFA010 is a type of serial Flash memory chip suitable for consumer, industrial, automation and communication applications. The chip uses Page Gates and Floating Gates to store and retrieve data, providing fast access times and reliable operation. The chip also uses a low power consumption design to ensure efficient power management.

The specific data is subject to PDF, and the above content is for reference

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