71V2546S150PFG Allicdata Electronics
Allicdata Part #:

71V2546S150PFG-ND

Manufacturer Part#:

71V2546S150PFG

Price: $ 3.50
Product Category:

Integrated Circuits (ICs)

Manufacturer: IDT, Integrated Device Technology Inc
Short Description: IC SRAM 4.5M PARALLEL 100TQFP
More Detail: SRAM - Synchronous ZBT Memory IC 4.5Mb (128K x 36)...
DataSheet: 71V2546S150PFG datasheet71V2546S150PFG Datasheet/PDF
Quantity: 1000
144 +: $ 3.17839
Stock 1000Can Ship Immediately
$ 3.5
Specifications
Write Cycle Time - Word, Page: --
Base Part Number: IDT71V2546
Supplier Device Package: 100-TQFP (14x14)
Package / Case: 100-LQFP
Mounting Type: Surface Mount
Operating Temperature: 0°C ~ 70°C (TA)
Voltage - Supply: 3.135 V ~ 3.465 V
Memory Interface: Parallel
Access Time: 3.8ns
Series: --
Clock Frequency: 150MHz
Memory Size: 4.5Mb (128K x 36)
Technology: SRAM - Synchronous ZBT
Memory Format: SRAM
Memory Type: Volatile
Part Status: Active
Packaging: Tray 
Description

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Memory technology has come a long way since its inception in the early 1950s. In the years since, various types of memory have been developed for various applications, from basic Random Access Memory (RAM) to Solid State Disks (SSDS) used in modern computing machines. The 71V2546S150PFG is a type of specialized Dynamic Random Access Memory (DRAM) that is used in high performance, real-time applications. This article will discuss the application field and working principle of the 71V2546S150PFG.

The 71V2546S150PFG is a type of DRAM, which is a type of random access memory that can store and recall data. It is commonly used in embedded computer systems and other applications where multiple and concurrent requests for data storage and retrieval must be made quickly and accurately. This type of memory is also used in networking and networking-related applications, as it can reliably store and transmit data at high speeds. The 71V2546S150PFG is a type of DRAM specifically designed for use in high-speed, low-latency environments, such as those found in data centers and supercomputers.

The 71V2546S150PFG works by storing data in memory cells, which can then be accessed and changed by a control logic circuit. Memory cells are arranged in an array, and each cell is connected to a row and column address line. The control logic circuit uses the address lines to determine which cell to access and write data to. The data is then stored in the memory cell, which can then be recalled when the appropriate address is accessed again. This type of memory is known as "dynamic" because the data can be altered while it is still stored in the memory cell.

The 71V2546S150PFG is designed for use in a variety of high-performance applications, such as high-performance databases, server and enterprise applications, multimedia processing, telecom systems, real-time transaction processing, and high-performance computing. It is also used in many embedded computing systems, such as memory for specialized applications, embedded controllers, and motor controllers. Its unique design and high-speed architecture make it well suited for these environments.

The 71V2546S150PFG is also designed to consume low power, resulting in less heat, lower costs, and longer product lifecycles. Its low power profile also makes it attractive for many green computing initiatives and other applications that require efficient power management. The 71V2546S150PFG is often used in combination with other DRAM technologies, such as Synchronous DRAM (SDRAM) and Double Data Rate DRAM (DDR DRAM), to provide superior performance and scalability.

In conclusion, the 71V2546S150PFG is a specialized type of Dynamic Random Access Memory designed for use in high-performance, low-latency environments, such as those found in data centers and supercomputers. It is designed to consume low power, resulting in less heat, lower costs, and longer product lifecycles. Additionally, it is used in many embedded computing systems, such as memory for specialized applications, embedded controllers, and motor controllers. This type of DRAM is often used in combination with other DRAM technologies, such as Synchronous DRAM (SDRAM) and Double Data Rate DRAM (DDR DRAM), to provide superior performance and scalability.

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

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