VR7PU566458GBAMKT Memory Cards, Modules |
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Allicdata Part #: | 1803-1025-ND |
Manufacturer Part#: |
VR7PU566458GBAMKT |
Price: | $ 40.88 |
Product Category: | Memory Cards, Modules |
Manufacturer: | Viking Technology |
Short Description: | MODULE DDR3 SDRAM 2GB 204-SODIMM |
More Detail: | Memory Module DDR3 SDRAM 2GB 1066MT/s 204-SODIMM |
DataSheet: | VR7PU566458GBAMKT Datasheet/PDF |
Quantity: | 20 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
1 +: | $ 37.16370 |
Series: | -- |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Memory Type: | DDR3 SDRAM |
Moisture Sensitivity Level (MSL): | -- |
Memory Size: | 2GB |
Speed: | 1066MT/s |
Package / Case: | 204-SODIMM |
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VR7PU566458GBAMKT Application Field And Working Principle
The VR7PU566458GBAMKT is a high-performance non-volatile memory chip that is specifically designed to support virtual reality (VR) applications. It combines double-stacked multiplexed address and data simultaneously, allowing for higher throughput times. Furthermore, the VR7PU566458GBAMKT has a unique “job scheduling” feature that helps to ensuring that more important functions are performed first, with the help of programmable instruction, task, and time management functions.
The VR7PU566458GBAMKT provides virtual reality participants with a high-quality, immersive experience. This device provides for asynchronous buffering of large data sets, ensuring that refresh times remain constant while drastically reducing latency. Asynchronous buffering allows for much higher levels of data transmission and playback, and is also capable of upscaling the video resolution to 4K and 8K standards.
The primary feature of the VR7PU566458GBAMKT is its low-latency multiplexing, which allows for virtual reality streaming applications at up to 8 Gbps. This feature ensures that data packets can be quickly sorted through to determine the relevant ones. Additionally, this chip has a built-in power management unit (PMU), which improves its overall energy efficiency. It also has security features to protect against malicious hackers.
Architecture
The VR7PU566458GBAMKT is based on a 4-channel architecture, allowing for up to 8 inputs/outputs. This multiplexed system allows for data transfer and storage operations to be performed on different channels in parallel. It also features built-in logic functions that allow the processor to quickly identify the priority of data streams and properly route them. This enables faster responses to user interaction and greatly enhances the overall performance of the system.
Working Principle
VR7PU566458GBAMKT works based on several principles that combine to allow for faster, smoother, and more accurate data transfer between the memory and the processor. The main principles are: asynchronous buffering, logic functions, multiplexed address and data, and task scheduling. These features all operate in tandem to enable high-performance non-volatile memory solutions that have minimal latency and support up to 8Gbps data transfer rates.
Asynchronous buffering allows the system to store data in designated “chunks”, ensuring that large data sets are transferred with minimal latency. Logic functions allow for more efficient data processing by reducing the search time for specific data types. Additionally, multiplexed address and data support allow for parallel data read and write operations, improving data throughput. The task scheduling feature works in conjunction with the logic functions to prioritize certain data and instructions and create a more efficient jobs stream.
Conclusion
The VR7PU566458GBAMKT is an advanced non-volatile memory chip designed specifically for virtual reality applications. This chip utilizes multiplexed address and data simultaneously, allowing for higher throughput times and lower latency. Additionally, its built-in power management unit greatly increases the efficiency of the system. With these features, the VR7PU566458GBAMKT is an excellent choice for virtual reality applications that require high-quality data processing and transfer rates.
The specific data is subject to PDF, and the above content is for reference
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