AW56P7258BKH9M Allicdata Electronics
Allicdata Part #:

AW56P7258BKH9M-ND

Manufacturer Part#:

AW56P7258BKH9M

Price: $ 38.39
Product Category:

Memory Cards, Modules

Manufacturer: ATP Electronics, Inc.
Short Description: 2GB 204 PIN REGISTERED ECC SO-DI
More Detail: Memory Module 2GB 204-RDIMM
DataSheet: AW56P7258BKH9M datasheetAW56P7258BKH9M Datasheet/PDF
Quantity: 1000
30 +: $ 34.89570
Stock 1000Can Ship Immediately
$ 38.39
Specifications
Series: --
Part Status: Active
Memory Size: 2GB
Package / Case: 204-RDIMM
Description

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 are used to construct computer memory systems because they are easy to install and replace. Memory modules also have the added benefit of being replaceable when issues arise or upgrades are needed. Memory modules are multi-layer circuits with a memory chip that stores information, a controller chip that controls the memory, and an interface to connect the module to the rest of the system. The AW56P7258BKH9M is a memory module that is used in many applications for storage and data transmission.

The AW56P7258BKH9M is a high speed non-volatile RAM (NVRAM) module. It is a dual-banked module with bank switching. It has a 16 bit write and a 32 bit read mode. The AW56P7258BKH9M also features error correction code (ECC) for reliable data storage and retrieval. The module uses a low-power consumption design and has a maximum operating speed of 800 MHz. The module is also compliant with RoHS, CE, and FCC regulations.

The AW56P7258BKH9M is used in a variety of applications, including industrial, networking, telecommunications, medical, military, and aerospace systems. Because of its high speed and robust design, the module is well-suited for applications that require rapid data storage and retrieval. It is often used in instrumentation applications where accurate and reliable data is necessary. The AW56P7258BKH9M is also often used in embedded systems where large amounts of data need to be stored and retrieved quickly.

The AW56P7258BKH9M uses a highly advanced non-volatile RAM technology that allows for fast data read and write operations. It has a high speed write power down mode that reduces power consumption when the module is idle. The module also has an automatic power-on reset that initiates a reset of the chip if the power was removed. This ensures that data stored on the module is always kept safe and secure.

The AW56P7258BKH9M incorporates a range of unique features that enable it to operate in a wide variety of applications. The module has a wide temperature range operating capability and is designed to withstand environmental conditions such as humidity, temperature, shock, vibration, dust, and sand exposure. It is also resistant to electromagnetic interference and has a high degree of data reliability.

The AW56P7258BKH9M also has a range of application programming interfaces (APIs) that enable users to access the module’s features and services. These APIs provide standard ways of communication between the module and other components in the system. The interfaces include SPI, UART, I2C, HSIC, I2S, and SDIO. These enable users to access the module’s features and services in a standard and reliable manner.

In conclusion, the AW56P7258BKH9M is a reliable and high performance memory module that is used in many programs and applications in a variety of environments. It has a range of features that enable it to operate in a wide range of applications. The module has a low power consumption design and has a maximum operating speed of 800 MHz, making it ideal for applications where rapid data storage and retrieval is necessary. The module also has a range of application programming interfaces that enable users to access the module’s features and services in a standard and reliable manner. The AW56P7258BKH9M is a reliable and high performance memory module that is designed to meet the needs of many applications and environments.

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

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