W29GL128PH9T Allicdata Electronics
Allicdata Part #:

W29GL128PH9T-ND

Manufacturer Part#:

W29GL128PH9T

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Winbond Electronics
Short Description: IC FLASH 128M PARALLEL 56TSOP
More Detail: FLASH - NOR Memory IC 128Mb (16M x 8, 8M x 16) Par...
DataSheet: W29GL128PH9T datasheetW29GL128PH9T Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: --
Part Status: Obsolete
Memory Type: Non-Volatile
Memory Format: FLASH
Technology: FLASH - NOR
Memory Size: 128Mb (16M x 8, 8M x 16)
Write Cycle Time - Word, Page: 90ns
Access Time: 90ns
Memory Interface: Parallel
Voltage - Supply: 2.7 V ~ 3.6 V
Operating Temperature: -40°C ~ 85°C (TA)
Description

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The W29GL128PH9T is a type of memory technology that has numerous applications, and is now commonly used in server, communication, and industrial solutions. It is also used in some consumer applications, such as digital cameras and smartphones. It is a high performance, cost-effective solution, providing fast, reliable data storage with low power consumption. This memory technology is designed for use in embedded applications and can provide an effective solution for applications requiring high speed, reliability, and scalability.

What Technology is Used in the W29GL128PH9T?

The W29GL128PH9T memory technology uses a type of Non-Volatile Memory (NVM) known as Phase-Change random Access Memory (PRAM). PRAM is a form of non-volatile memory, meaning it can hold data without power, and requires very little energy when in operation. Its architecture is based on the use of chalcogenide materials, which are materials that change between different crystalline phases when exposed to an electric current. It is ideal for storing large amounts of data and is used in embedded solutions.

Features of the W29GL128PH9T

The main features of the W29GL128PH9T memory technology are its durability, scalability, and performance. It has a range of technology features that enable it to be used in embedded solutions, such as its ability to be used in small form factors, a high-speed read/write capability, and a high level of endurance. It is also able to work in a very wide operating temperature range and is compliant with RoHS standards. It also operates in a very low power mode, using only 0.2W at minimum, making it suitable for low-power applications.

Applications of the W29GL128PH9T

Due to its features, the W29GL128PH9T memory technology has become a popular choice for server, communication, and industrial applications. It is commonly used in products such as communications processors and industrial controllers. It is also gaining traction in other areas such as applications requiring high speed, reliability and scalability, such as digital camera and smartphone applications. In addition, it is also used in a variety of embedded applications, such as in-vehicle electronics, automotive ECUs, home appliances and medical devices.

Working Principle of the W29GL128PH9T

The working principle of the W29GL128PH9T memory technology revolves around the use of chalcogenide materials. These materials are applied to a die and then exposed to an electric current. When the current is applied, the chalcogenide materials change state from a crystalline phase to an amorphous state. This change creates data points that can be read from and written to the memory, enabling the memory to store data and reliably recall it when needed. Since the chalcogenide materials remain in this state even when the power is turned off, the data is stored permanently until it is overwritten or erased.

Conclusion

The W29GL128PH9T is a type of Non-Volatile Memory that is designed for use in embedded and server applications. It has the capabilities to enable fast and reliable data storage while using very little energy. Its features, such as its ability to work in a variety of temperatures, make it ideal for a wide range of applications. Its working principle involves the use of chalcogenide materials, which can change between crystalline and amorphous states when exposed to an electric current. This change creates data points that can be read and written to the memory, enabling the memory to reliably store and recall data.

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

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