MT48H16M32LFCM-6 L IT:B Allicdata Electronics
Allicdata Part #:

MT48H16M32LFCM-6LIT:B-ND

Manufacturer Part#:

MT48H16M32LFCM-6 L IT:B

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Micron Technology Inc.
Short Description: IC DRAM 512M PARALLEL 90VFBGA
More Detail: SDRAM - Mobile LPSDR Memory IC 512Mb (16M x 32) Pa...
DataSheet: MT48H16M32LFCM-6 L IT:B datasheetMT48H16M32LFCM-6 L IT:B Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Write Cycle Time - Word, Page: 15ns
Base Part Number: MT48H16M32
Supplier Device Package: 90-VFBGA (10x13)
Package / Case: 90-VFBGA
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 85°C (TA)
Voltage - Supply: 1.7 V ~ 1.95 V
Memory Interface: Parallel
Access Time: 5ns
Series: --
Clock Frequency: 166MHz
Memory Size: 512Mb (16M x 32)
Technology: SDRAM - Mobile LPSDR
Memory Format: DRAM
Memory Type: Volatile
Part Status: Obsolete
Packaging: Tray 
Description

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Memory devices are essential devices used in many electronic devices and electronic systems. The MT48H16M32LFCM-6 L IT:B is such a memory device, commonly used in embedded systems, accessed externally via a microcontroller. This article will discuss the application field and the working principle of MT48H16M32LFCM-6 L IT:B.

The MT48H16M32LFCM-6 L IT:B belongs to a family of low-power and low-noise synchronous SRAMs. It allows data to be read or written with the same clock frequency (or very similar). Its total memory capacity is 32 Mbit with a bus interface width of 16-bits, and its control signals are positive logic, respecting the basic 3-state logic. Just like a typical synchronous SRAM, it uses just two control signals, namely CS (Chip Select, used to select the chip) and OE (Output Enable, used to activate the output buffer).

The Memory Access Timing of MT48H16M32LFCM-6 L IT:B is low power and low noise, designed to work between 0 and 70 °C. All the parameters of this device can be individually programmed, including the access time. This feature allows engineers to adjust the device\'s performance to match the performance of the system, plus its low standby current makes it an ideal choice in energy-saving applications.

As for the application field of MT48H16M32LFCM-6 L IT:B, it is widely used in embedded systems, such as automotive and industrial systems, medical devices, and other applications. It is also used in networking equipment, operating machinery, robotics, home appliances, and wearables. This memory device is compatible with various memory systems, ranging from basic to high-end, and provides data security and high-speed data access.

The working principle of MT48H16M32LFCM-6 L IT:B is simple but highly effective. It uses a process called synchronous addressing to read or write information. Synchronous addressing works by transferring the address data in synchronization with the programmed clock cycles. This makes it possible to process the data quickly and precisely, while keeping the power consumption low. Additionally, the device supports both byte and half-byte modes, which allows engineers to access the full range of its memory capacity more accurately. This is an advantage over other types of memory devices, which are only capable of byte-level addressing.

Due to its flexibility and low power requirements, the MT48H16M32LFCM-6 L IT:B is a popular choice for embedded system designers. This memory device is capable of handling data transfer and processing tasks quickly and efficiently, while maintaining low power consumption. Its low standby current helps to reduce the power consumption, and the chip\'s compatibility with various memory systems allows engineers to use this memory device for many different types of applications.

In conclusion, the MT48H16M32LFCM-6 L IT:B is a well-designed memory device with a wide range of applications. It is suitable for embedded systems, networking equipment, robotics, wearables, and more. Its low power design and synchronous addressing make it a reliable choice for quick and accurate data transfer and processing. This gives engineers the flexibility to achieve their performance goals while keeping the power consumption low.

The specific data is subject to PDF, and the above content is for reference

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