Allicdata Part #: | 1803-1006-ND |
Manufacturer Part#: |
VP9MU1G7228HBHSE |
Price: | $ 0.00 |
Product Category: | Memory Cards, Modules |
Manufacturer: | Viking Technology |
Short Description: | MODULE DDR4 SDRAM 8GB 288-UDIMM |
More Detail: | Memory Module DDR4 SDRAM 8GB 2133MT/s 288-UDIMM |
DataSheet: | VP9MU1G7228HBHSE Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | -- |
Part Status: | Obsolete |
Memory Type: | DDR4 SDRAM |
Memory Size: | 8GB |
Speed: | 2133MT/s |
Package / Case: | 288-UDIMM |
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
VP9MU1G7228HBHSE consists of a module combining memory and logic, commonly referred to as a memory module. It is designed for use in embedded applications such as remote controls, motion controllers, automation systems, medical devices, and digital cameras. It enables the user to control and manage system memory in a single package.
It provides the user with greater flexibility in their memory designs by allowing the user to utilize multiple memory types in the same system. With multiple memory types, the user can customize their memory solution to suite their application requirements. Furthermore, the module provides for a fast and easy integration into existing systems with minimal need for software or hardware modifications.
The module is an intelligent memory subsystem, containing an intelligent controller-based FPGA that provides additional features and functions to enhance the system design. It connects to the device’s system bus and includes a rich set of software, allowing for seamless integration into existing systems. It also contains a custom control logic for managing access to the memory.
The module is designed to provide a flexible, powerful, and cost-effective memory solution that delivers maximum performance. It offers many advantages over traditional memory solutions, including: improved performance and scalability, increased system flexibility, and enhanced system reliability. In addition to providing the user with the ability to customize their memory solution, the module is also designed to improve system memory speeds.
VP9MU1G7228HBHSE module is designed to operate efficiently in a wide variety of environments. It is built with robust, high-performance components, including high-density DRAM memory and advanced dynamic random access memory (DRAM) controllers. This ensures that the module is able to provide optimal performance in the most demanding application environments.
The module is designed to work in both asynchronous and synchronous systems. The module includes on-board error detection, data integrity, and error recovery features, providing the user with a reliable and robust memory solution. In addition, the module also has built-in self-test and self-refresh features to ensure that the system remains operational in even the most extreme of applications.
The module uses advanced memory control logic to manage memory access time, system performance, and power consumption. This logic enables the module to optimize system performance, maximize system memory throughput, and minimize system power consumption. In terms of system memory, the module allows for a unified memory system, which combines both static and dynamic RAM, for improved performance and reduced memory overhead.
The module uses dynamic power management technology, allowing it to automatically adjust power usage according to the memory load and system temperature. This ensures that the module operates more efficiently and provides a longer life cycle for the system. Furthermore, the module is designed to be backward compatible with existing memory systems, providing the user with a seamless integration into existing memory solutions.
In conclusion, VP9MU1G7228HBHSE module is a powerful and cost-effective memory solution for embedded applications. It offers improved performance, scalability, and system reliability. In addition, it provides a long life cycle, enhanced system performance, and better power management, making it an ideal solution for embedded applications.
The specific data is subject to PDF, and the above content is for reference
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