Allicdata Part #: | AQ24P6418BLH9M-ND |
Manufacturer Part#: |
AQ24P6418BLH9M |
Price: | $ 93.12 |
Product Category: | Memory Cards, Modules |
Manufacturer: | ATP Electronics, Inc. |
Short Description: | 8GB 240 PIN VLP UNBUFFERED NON E |
More Detail: | Memory Module 8GB Module |
DataSheet: | AQ24P6418BLH9M Datasheet/PDF |
Quantity: | 1000 |
10 +: | $ 84.65170 |
Series: | -- |
Part Status: | Active |
Memory Size: | 8GB |
Package / Case: | Module |
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 Modules and the AQ24P6418BLH9M Application Field and Working Principle
In computing, memory modules are special components that are used to increase the amount of physical memory in a system or enable server-level connectivity. With the advent of faster processors, there is a need for more memory as larger data sets continue to become more commonplace. To handle this, memory modules are used to provide for reliable data transfer and quick access to RAM data. The AQ24P6418BLH9M is a family of DRAM chips that have been designed for use in high-end gaming and server level applications.
The AQ24P6418BLH9M is a dual-channel DDR4 module. It is capable of transferring data at a rate of 8,400 Mbps. It has a latency of 23.7ns and an operating voltage of 1.2V. It is a low-cost solution for those systems that need high performance memory modules. It also features Error Checking and Correction (ECC) capabilities as well as an On-Die Termination (ODT) circuit for improved noise immunity. It also has support for SPD and XMP profiles.
The AQ24P6418BLH9M is designed to support applications such as gaming, professional media editing, and server-level computing. In gaming, the module provides for the transfer of large amounts of data efficiently. It is also capable of handling multiple tasks simultaneously, making it well suited for use in professional media editing applications. For server-level applications, it supports faster data transfer speeds, increased memory density, and better reliability, all of which are important considerations when using this type of memory.
The AQ24P6418BLH9M uses a set of control registers to control how the memory module functions. These registers allow the system to control the memory access protocol, the clock speeds, and the latencies. They also allow for the initialization of error handling and reporting. Additionally, on-board voltage converters are used to enable various operating voltage levels, allowing the module to operate at different voltages to support applications that require higher performance.
In addition to using these control registers, the AQ24P6418BLH9M also incorporates advanced error checking and correction techniques. This is done to ensure that data is read and written accurately and quickly. In the event of an error, the module is able to detect and correct the errors with minimum data loss. To further improve reliability, the module also incorporates power cycling, which allows the module to preserve the data stored in it during power outages and brown-outs.
In terms of performance, the AQ24P6418BLH9M is designed to provide superior performance with superior power efficiency. The module achieves this by using a wide range of technologies, including advanced thermal management, DDR4 memory optimization, and RAS support, to deliver the best performance per watt when compared to similar memory modules. By using these advanced techniques, the module is able to achieve higher bandwidths and better response times while consuming the same amount of power.
As a result of its superior performance and power efficiency, the AQ24P6418BLH9M is a highly sought-after memory module for use in demanding applications. It is ideal for gaming, professional media editing, and server-level computing, due to its low-cost, high-speed operation, enhanced reliability, and energy efficiency. In addition, the module also supports a wide range of technologies, making it a versatile choice for a variety of different systems.
The specific data is subject to PDF, and the above content is for reference
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