Allicdata Part #: | MT46H8M16LFCF-10-ND |
Manufacturer Part#: |
MT46H8M16LFCF-10 |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Micron Technology Inc. |
Short Description: | IC DRAM 128M PARALLEL 60VFBGA |
More Detail: | SDRAM - Mobile LPDDR Memory IC 128Mb (8M x 16) Par... |
DataSheet: | MT46H8M16LFCF-10 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Write Cycle Time - Word, Page: | 15ns |
Base Part Number: | MT46H8M16 |
Supplier Device Package: | 60-VFBGA (8x10) |
Package / Case: | 60-VFBGA |
Mounting Type: | Surface Mount |
Operating Temperature: | 0°C ~ 70°C (TA) |
Voltage - Supply: | 1.7 V ~ 1.9 V |
Memory Interface: | Parallel |
Access Time: | 7.0ns |
Series: | -- |
Clock Frequency: | 104MHz |
Memory Size: | 128Mb (8M x 16) |
Technology: | SDRAM - Mobile LPDDR |
Memory Format: | DRAM |
Memory Type: | Volatile |
Part Status: | Discontinued at Digi-Key |
Packaging: | Tray |
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MT46H8M16LFCF-10 is a dynamic random-access memory chip, commonly referred to as DRAM, which is widely used in the electronics industry. It is a reliable memory component that is used in many applications, and has been designed to provide a high level of performance, reliability and scalability. This article will discuss the application and working principle of MT46H8M16LFCF-10.
Application of MT46H8M16LFCF-10
MT46H8M16LFCF-10 has many applications in the electronics industry. It is used in a variety of consumer electronics, such as video game consoles, personal computers and laptops, smartphones and tablets, digital cameras, and home appliances. It is also widely used in industrial applications such as robotics, machine vision, process automation and control systems. This chip is also widely employed in medical devices, as well as aerospace and defense applications.
MT46H8M16LFCF-10 is widely used in commercial applications, such as server memory, data storage systems and embedded systems. It is also used in network applications, such as routers, switches and firewalls, as well as for streaming video and audio applications. In addition, it is widely employed in the automotive industry and military systems.
Working Principle of MT46H8M16LFCF-10
MT46H8M16LFCF-10 is a dynamic random-access memory, or DRAM, chip. DRAM chips work by storing data as electrical charges stored on capacitors. This data is stored until it is accessed, at which point the capacitors discharge their stored electrical energy and then recharge depending on the new data being written to the memory. This allows rapid access of data, but at the cost of a finite amount of energy each time the capacitors are discharged and recharged.
MT46H8M16LFCF-10 is a synchronous DRAM chip, meaning that the memory controller and the DRAM chip work in concert, as opposed to asynchronous DRAM, which requires a far slower flow of information. Synchronous DRAM is also known as SDRAM, which stands for Synchronous Dynamic Random Access Memory, and is widely used in modern computing systems.
The MT46H8M16LFCF-10 chip consists of a 256Mbit, 7-bit wide DRAM array that is organized as a 4,096 x 4,096 matrix, with four data output drivers that can operate in either a toggling mode, or in a pipelined mode. The chip is also capable of operating in a low-power mode, in which the frequency of operation can be reduced in order to conserve power.
The chip\'s internal architecture consists of a pre-charge circuit, a row access circuit, a refresh counter, and a column select circuit. The pre-charge circuit charges all of the capacitors in the array to 4.2V, which is the reference voltage used by the chip. The row access circuit selects the appropriate row of data that the user wishes to access. The refresh counter then refreshes the data in the selected rows by sending a periodic refresh signal to the array. Finally, the column select circuit selects the appropriate column of data that the user wishes to access from the specified row.
Conclusion
In conclusion, MT46H8M16LFCF-10 is a dynamic random-access memory chip that is widely used in the electronics industry. It is used in many commercial and industrial applications, and is capable of operating in either a toggling mode, or in a pipelined mode. It is also capable of operating in a low-power mode, in which the frequency of operation can be reduced in order to conserve power. The chip utilizes a pre-charge circuit, a row access circuit, a refresh counter, and a column select circuit in order to access and store data quickly and efficiently.
The specific data is subject to PDF, and the above content is for reference
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