IS62WV10248DBLL-55TLI Allicdata Electronics
Allicdata Part #:

706-1149-ND

Manufacturer Part#:

IS62WV10248DBLL-55TLI

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: ISSI, Integrated Silicon Solution Inc
Short Description: IC SRAM 8M PARALLEL 44TSOP2
More Detail: SRAM - Asynchronous Memory IC 8Mb (1M x 8) Paralle...
DataSheet: IS62WV10248DBLL-55TLI datasheetIS62WV10248DBLL-55TLI Datasheet/PDF
Quantity: 527
Stock 527Can Ship Immediately
Specifications
Series: --
Packaging: Tray 
Part Status: Active
Memory Type: Volatile
Memory Format: SRAM
Technology: SRAM - Asynchronous
Memory Size: 8Mb (1M x 8)
Write Cycle Time - Word, Page: 55ns
Access Time: 55ns
Memory Interface: Parallel
Voltage - Supply: 2.4 V ~ 3.6 V
Operating Temperature: -40°C ~ 85°C (TA)
Mounting Type: Surface Mount
Package / Case: 44-TSOP (0.400", 10.16mm Width)
Supplier Device Package: 44-TSOP2
Description

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Memory Applications and Working Principles of IS62WV10248DBLL-55TLI

Memory is one of the most important components in every computing system, forming the backbone of today\'s faster and more powerful computers. IS62WV10248DBLL-55TLI is a type of memory technology that plays a vital role in the storage and retrieval of data within a computing system. This article will discuss the application field and working principle of the IS62WV10248DBLL-55TLI.

IS62WV10248DBLL-55TLI Applications

The primary use of IS62WV10248DBLL-55TLI is as an extended form of dynamic random access memory (DRAM). This memory type works by storing data on tiny transistors using electrical charges. It is often used in embedded systems, such as smart phones, cameras, and other small electronic devices. Additionally, it can be used as a backup memory in computers, which provides additional storage capacity in case of a power outage or system crash.

The IS62WV10248DBLL-55TLI is also used in industrial machines, where high-speed data processing needs to be completed quickly and accurately. These memory modules are designed to provide reliable memory access and data transfer rates that are significantly faster than other available options. In addition, they offer excellent high temperature performance, low power consumption and a high endurance rating, making them suitable for many high-end industrial applications.

IS62WV10248DBLL-55TLI Working Principle

The IS62WV10248DBLL-55TLI follows the working principle of dynamic random-access memory (DRAM) devices. This type of memory works by storing data in the form of electrical charges on tiny transistors. The data stored in this way can be retrieved and processed incredibly quickly, making it ideal for many high-performance applications.

This system works by using a capacitor to store data on each memory cell. This data is stored in the form of a charge on the capacitor. When the data is read from the memory cell, the capacitor is discharged and the charge is transferred to another transistor, where it is read and interpreted. This process is repeated for each memory cell in the device, allowing for extremely high speeds.

The IS62WV10248DBLL-55TLI also utilizes a power-reduction technology called Dynamic Low-Power (DP) mode. This technology helps to reduce the average power used by the memory module by using a state of reduced power to store data. This means that less energy is consumed while the device is idle, resulting in longer battery life and more efficient use of resources.

Conclusion

The IS62WV10248DBLL-55TLI is a type of memory technology that has become widely used in embedded systems, computers, and industrial machines. The device utilizes a working principle of dynamic random access memory (DRAM), which relies on tiny transistors to store and retrieve data. Additionally, the device utilizes a low-power mode that helps reduce the amount of energy consumed when the device is idle. With its excellent performance, reliability, and low power consumption, the IS62WV10248DBLL-55TLI is an ideal choice for many high-performance applications.

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

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