Laird Connectivity

Laird Connectivity

Laird Connectivity is a global leader in wireless connectivity solutions for the Internet of Things (IoT) and machine-to-machine (M2M) applications. The company provides a comprehensive range of wireless modules, antennas, and connectivity solutions that enable seamless communication across various industries. Laird Connectivity's products cater to a wide range of applications such as smart homes, energy management, medical devices, and transportation. The company's expertise in wireless communication technologies, coupled with its commitment to innovation, ensures that its customers have access to cutting-edge solutions that meet the demands of the rapidly evolving IoT landscape. With a global presence and a focus on customer satisfaction, Laird Connectivity is poised to be a leading provider of wireless connectivity solutions for the foreseeable future.

Memory - Modules

Results:
3
Series
Memory Size
Package / Case
Memory Type
Transfer Rate (Mb/s, MT/s, MHz)
Results remaining3
Applied Filters:
Laird Connectivity
Select
ImageProduct DetailPriceAvailabilityECAD ModelSeriesPackage / CaseMemory SizeMemory TypeTransfer Rate (Mb/s, MT/s, MHz)
453-00032
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
-
-
-
453-00133
SOM 2GB LPDDR1 4GB NAND FLASH
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
-
-
-
453-00182
SOM 2GB LPDDR1 4GB NAND FLASH
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
-
-
-

Memory - Modules

Memory modules are essential components used for data storage in various computer equipment, single board computers, and similar devices that support standardized memory modules. These modules adhere to specific physical formats and standards, ensuring compatibility and ease of integration. There are two main types of memory technologies utilized in memory modules: non-volatile and volatile memory. Non-volatile memory technologies include flash memory and NVRAM (Non-Volatile Random Access Memory), while volatile memory refers to SDRAM (Synchronous Dynamic Random Access Memory). Flash memory is a non-volatile memory technology commonly used in memory modules. It retains data even when power is removed and offers high-speed read and write operations. NVRAM, another type of non-volatile memory, combines the benefits of both non-volatile and volatile memory and provides fast access times along with the ability to retain data without power. On the other hand, SDRAM is a type of volatile memory that requires continuous power to retain data. It offers high-speed data access and is commonly used for temporary storage and data processing tasks. Memory modules are designed to have standardized physical formats, such as DIMM (Dual In-Line Memory Module) or SO-DIMM (Small Outline Dual In-Line Memory Module). These formats ensure that the modules can be easily installed and replaced in compatible devices that support the respective module types. By utilizing memory modules, users can expand the storage capacity or improve the performance of their computer systems, single board computers, or similar devices. These modules provide a standardized and convenient solution for data storage, offering both non-volatile and volatile memory options depending on the specific requirements and applications. In summary, memory modules are solid-state data storage devices that conform to standardized physical module formats. They are used in various computer equipment, single board computers, and similar devices capable of accepting standardized memory modules. These modules utilize both non-volatile memory technologies like flash memory and NVRAM, as well as volatile memory technology like SDRAM to meet different storage and performance needs.