
Allicdata Part #: | HM216514TTI5SE-ND |
Manufacturer Part#: |
HM216514TTI5SE |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Renesas Electronics America |
Short Description: | IC SRAM 44TSOP |
More Detail: | Memory IC |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | * |
Part Status: | Obsolete |
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HM216514TTI5SE is a type of SDRAM module. It is suitable for high-speed dynamic random access memory (DRAM) applications related to the field of telecommunications, computer and data communication networks. It is characterized by large capacity, fast speed and low power consumption. The module can meet the data transmission requirements of optical network, wireless network and storage system.
Before introducing its application fields and working principles, we first see the structure of HM216514TTI5SE. Its upper and lower substrates are composed of 6 layers of circuits and respective mounting points for connecting the controller. The upper and lower substrates feature a ferrite cover to reduce the influence of radio frequency (RF) signals and protect the display from being damaged by static electricity. They also make use of a LGA socket to attach the memory module to the circuit board. This ensures that the module will not be dislodged from the controller.
Application fields
The HM216514TTI5SE is suitable for applications related to the field of telecommunications, computer and data communication networks. It is able to handle heavy data transmission tasks that was once not available to systems, such as in high-definition video streaming. It also helps to realize the extended working time of routers, being able to handle long-term data transmission tasks in an efficient manner. It is increasingly used in high-end devicel to improve the efficiency of gadgets.
Due to its excellent features, the HM216514TTI5SE is widely used in various devices in the medical industry, such as diagnosis and operation of digital medical images. The high speed data transmission efficiency of HM216514TTI5SE helps medical staff to make quicker and more accurate decisions, thus improving the accuracy and efficiency of the medical operations.
Apart from the medical industry, the HM216514TTI5SE is also widely used in other areas, such as in the broadcasting, video production industry and gaming industry. The module can provide a larger bandwidth and faster speed data transmission. Therefore, the user can enjoy greater gaming experience and better video production.
Working principles
The HM216514TTI5SE uses 12 dynamic random access memory (DRAM) chips, each of them having 8 data lines, which are all connected together. These DRAM chips are controlled by the SDRAM controller, which enables them to store information and data using dynamic random access memory technology. Each SDRAM chip stores an arbitrary amount of data, ranging from 64 KB up to 1 MB.
The dynamic random access memory (DRAM) technology consists of a capacitor, an access transistor and a buffer circuit. It works in the following way: when a voltage is applied to the capacitor, it acts to store the charge and create a bit of information. This bit of information is then read or written to the transistor by the controller, and it is also buffered by the buffer circuit to ensure the reliable transmission of the data.
Therefore, when using the HM216514TTI5SE, the arbitary number of data that is stored can be read and written to by the controller, allowing for the efficient transmission of data and information. However, since DRAM technology requires the charge to be constantly refreshed, the controller must continuously refresh the DRAM chips.
In conclusion, the HM216514TTI5SE is suitable for applications in the field of telecommunications, computer, broadcasting, video production as well as medical industry. It works based on DRAM technology, which stores bits of information in a capacitor and is accessed and controlled by the controller. With its large capacity, fast speed and low power consumption, the HM216514TTI5SE is becoming increasingly popular.
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