W972GG6KB-25 Allicdata Electronics
Allicdata Part #:

W972GG6KB-25-ND

Manufacturer Part#:

W972GG6KB-25

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Winbond Electronics
Short Description: IC DDR2 SDRAM 2GBIT 2.5NS 84BGA
More Detail: Memory IC 84-WBGA (8x12.5)
DataSheet: W972GG6KB-25 datasheetW972GG6KB-25 Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: *
Packaging: Tray 
Part Status: Active
Mounting Type: Surface Mount
Package / Case: 84-TFBGA
Supplier Device Package: 84-WBGA (8x12.5)
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Memory is widely used in modern technology, and a variety of memory devices are constantly being developed. One such device is the W972GG6KB-25, which is widely used in both commercial and industrial applications. This article will explore the application field and working principle of the W972GG6KB-25.

Application Field of the W972GG6KB-25

The W972GG6KB-25 is a two gigabit high-speed, low power Static RAM (SRAM). It is a type of monolithic integrated circuit specifically designed for use in high-end, high-speed memory applications. It is widely used in applications such as computers, networking, storage, controllers, and embedded systems. The device is also suitable for use in industrial applications such as robotics, automation, and scientific instrumentation.

The W972GG6KB-25 is a high-performance memory device with a built-in write-and-read capability, allowing it to perform high-speed memory operations. It also offers excellent reliability, eliminating the need for periodic maintenance or repairs. In addition, its low power consumption and small size make it highly suitable for use in portable equipment.

The W972GG6KB-25 is also widely used in automotive applications, such as in-vehicle control systems and navigation systems. Its high-performance and low power consumption make it a good choice for automotive applications. It is also used in audio and video systems as a semiconductor for audio processing, and for video image decoding.

Working Principle of the W972GG6KB-25

The W972GG6KB-25 is an SRAM device that operates on a five-volt power supply. It consists of a memory array, control logic and a data input/output (I/O) circuit. The memory array consists of an array of storage cells, each containing two transistors and two capacitors. The transistors are connected in pairs and act as switches to access the information stored in the memory cells.

The control logic section of the W972GG6KB-25 contains the control circuits needed to access data in the memory array and transfer that data to the I/O circuit. The control logic also processes commands from the external system, such as read and write instructions, and generates an appropriate control signal for the data transfer. The memory array can be implemented either in a parallel or a serial form.

The I/O circuit is used to receive data from the memory array and send it to the external system. It also receives commands from the external system and sends them to the control logic. In this way, it acts as an interface between the memory array and the external system.

The working principle of the W972GG6KB-25 is quite simple. When a command is received, the control logic processes it and generates the appropriate control signal to access data in the memory array. The data is then transferred to the I/O circuit and sent to the external system. This process is repeated for each command.

Conclusion

The W972GG6KB-25 is a two gigabit high-speed, low power SRAM device that is widely used in both commercial and industrial applications. It is suitable for use in computers, networking, storage, controllers, embedded systems, automotive applications, audio and video systems and more. Its high speed and low power consumption make it a preferred choice for many different applications. The working principle of the W972GG6KB-25 is simple, with the control logic processing commands and generating the appropriate control signal to access data in the memory array.

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

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