Recycle SK Hynix DRAM Memory Product:DDR,LPDDR,HBM,GDDR
Shenzhen Mingjiada Electronics Co., Ltd. is a strong global electronic components inventory recycler, recycling factories, individuals and agents backlog of electronic components inventory, long-term recycling of 5G chips, new energy ICs, IoT ICs, Bluetooth ICs, Internet of Things ICs, automotive ICs, automotive grade ICs, communication ICs, artificial intelligence ICs, memory ICs, sensor ICs, microcontroller ICs, transceiver ICs, Ethernet IC, WiFi chips, wireless communication modules, connectors and a series of products.
Recycling details:
1, Recycling electronic materials / sluggish materials / factory inventory / electronic inventory / personal inventory, etc..
2, has a wealth of experience in recycling, strong, well-funded, can be quickly door to door.
3、Keep integrity, keep promise, heavy reputation, professional and convenient, reasonable recycling price.
Recycling process:
1、Consultation: If you have stock of electronic components need to be disposed of, you can send the IC/module inventory that needs to be sold by email.
2、Door-to-door recycling: our company will send professionals to your home to recycle your inventory of electronic components, and preliminary testing and classification of components.
3、Quotation:The company will give the corresponding recovery price according to the type, quantity, quality and other factors of the recycled components.
4、Settlement: If both parties reach an agreement, we can negotiate specific transaction methods for delivery.
SK Hynix DRAM Product Line Overview
DRAM products cover a wide range of needs from traditional computing devices to cutting-edge high-performance computing applications, and are available in four main categories: DDR series, LPDDR series, HBM high-bandwidth memory and GDDR graphics memory. Each of these products has its own characteristics in terms of performance, power consumption and application scenarios, and form the core components of memory systems for modern electronic devices.
DDR series memory:
DDR4 DRAM: As the current mainstream memory standard with high speed and low power consumption, DDR4 DRAM is widely used in personal computers, servers and various enterprise-level computing devices.
DDR5 DRAM: A new generation of memory technology that offers higher bandwidth (up to twice that of DDR4) and lower power consumption (operating voltage down to 1.1V) than DDR4, making it particularly suitable for next-generation computing platforms and high-end server applications.
Other DDR variants: These include DDR3 and DDR3L, which are optimised for specific application scenarios. Although the technology is relatively obsolete, there is still a stable demand for them in areas such as industrial control and embedded systems.
LPDDR Series:
LPDDR4/LPDDR4X DRAM: Designed for mobile devices such as smartphones and tablets, LPDDR4/LPDDR4X DRAM significantly reduces power consumption while maintaining high performance through optimised circuit design and the use of advanced manufacturing processes.
LPDDR5 DRAM: Currently the top memory standard for mobile devices, it offers 50% higher bandwidth and lower power consumption than LPDDR4, perfectly supporting high-end mobile applications such as 5G communications, high-resolution displays and AI computing.
HBM (High Bandwidth Memory):
HBM uses vertically stacked 3D architecture and through-silicon vias (TSV) technology to vertically connect multiple DRAM chips to achieve bandwidth performance that far exceeds traditional memory.
It is mainly used in high-performance computing (HPC), artificial intelligence accelerators, graphics workstations and other areas with extremely high requirements for memory bandwidth, such as HBM3 products with a bandwidth of up to 819 GB/s.
GDDR (Graphics Double Data Rate) graphics memory:
Designed for graphics cards, game consoles, AI acceleration cards and other graphics-intensive applications, featuring ultra-high bandwidth and higher clock frequencies.
Includes GDDR5, GDDR6 and other generations of products, of which GDDR6's bandwidth can be up to twice that of GDDR5, and is gradually becoming the mainstream choice for high-end graphics cards.
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