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Recycle Infineon SRAM Memory:Asynchronous SRAM,Synchronous SRAM

Recycle Infineon SRAM Memory:Asynchronous SRAM,Synchronous SRAM

Source:our siteTime:2025-04-19Views: 13

Recycle Infineon SRAM Memory:Asynchronous SRAM,Synchronous SRAMShenzhen Mingjiada Electronics Co., Ltd. is an experienced electronic components recycler with a strong team, high-priced recycling of imported original IC, the acquisition of integrated c…

Recycle Infineon SRAM Memory:Asynchronous SRAM,Synchronous SRAM


Shenzhen Mingjiada Electronics Co., Ltd. is an experienced electronic components recycler with a strong team, high-priced recycling of imported original IC, the acquisition of integrated circuits IC, the acquisition of sensors, the acquisition of microcontrollers MCU, the acquisition of Bluetooth chips, the acquisition of Ethernet chips, the acquisition of the factory's backlog of electronic materials, the acquisition of electronic components! 


We are committed to customers to digest inventory, reduce warehousing, and reduce customer storage costs and management costs.

The main recycling object: factory surplus materials, electronic components agents.

Formal channel sources: only the recovery of formal channel sources, such as agents, traders, terminal factories, etc., do not accept informal channel sources.

Service features:Provide a variety of services such as resale, consignment, clearance, etc., with a wealth of experience in recycling, strong, well-funded, reasonable recycling prices.


Recycling details:

1、Recycling of electronic materials / sluggish materials / factory inventory / electronic inventory / personal inventory, etc..

2, has a wealth of recycling experience, strong strength, abundant funds, can quickly door to door.

3, abide by the integrity, keep promises, heavy reputation, professional and convenient, reasonable recovery price.


Infineon SRAM Memory Overview and Technical Characteristics

As an important category of semiconductor memory, static random access memory (SRAM) occupies an irreplaceable position in specific application scenarios with its unique performance characteristics. Compared to Dynamic Random Access Memory (DRAM), SRAM does not require periodic refreshing to hold data, has faster access speeds and lower power consumption, but has a higher cost per unit capacity. Infineon's SRAM product line is known for its high performance, high reliability and excellent quality, and is widely used in automotive electronics, industrial control, medical equipment and communication infrastructure, where data access speed and reliability are critical.


Infineon's SRAM products can be classified into two categories, asynchronous SRAM and synchronous SRAM, according to their mode of operation, each with its own unique technical characteristics and application scenarios. Asynchronous SRAM is a memory that does not rely on clock signals, and its read/write operations are directly managed by control signals such as chip enable (CE), write enable (WE) and output enable (OE), which has the advantages of a simple interface and fast response. These SRAMs are commonly used in applications requiring simple interfaces and fast random access, such as industrial control systems, medical devices and various embedded systems. Infineon's asynchronous SRAM products are available in densities ranging from 256Kb to 144Mb, and offer a variety of package forms and voltage options to meet the needs of different application scenarios.


Synchronous SRAM uses a clock signal to synchronise all operations, usually performing read and write commands on the rising or falling edges of the clock. Compared to asynchronous SRAM, synchronous SRAM offers higher data transfer rates and more precise timing control, making it suitable for high-speed data processing applications. Infineon's synchronous SRAM products include standard synchronous SRAM, Zero Bus Transition (ZBT) SRAM and Quadruple Data Rate (QDR) SRAM, which meet the different needs of applications ranging from routine to ultra-high performance computing. In particular, QDR SRAMs, with separate read and write ports and double data rate technology, can achieve extremely high data throughput and are widely used in network routers, base station equipment and high-end test instruments.


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