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Adata SD600 SSD

10.03.2017

Adata Technology, a manufacturer of memory modules, drives and mobile accessories, has introduced the SD600 external SSD based on 3D TLC NAND memory. The novelty has two capacity options - 256 GB and 512 GB, and provides read and write speeds of 440 MB / s and 430 MB / s, weighs 90 g and is widely compatible (Windows PC, Xbox One, PS4 and Android). The SD600 is available in black and red/black.

The novelty provides read and write speeds of 440 MB / s and 430 MB / s. The SD600 is four times faster than its spindle counterparts, delivering faster load times and better performance in games and applications.

The SD600 model is based on 3D TLC NAND Flash technology. Adata, like the rest of the industry, is moving to the new 3D/bulk memory as it has greater data density, reliability and lifetime than 2D/planar memory, the company said.

Thanks to DRAM and SLC caches, the SD600 does not slow down in case of heavy workloads and large files. Of particular interest is the SLC cache, which allows the drive to partially operate in pseudo-SLC mode (pSLC), which is effective when working with priority tasks, Adata said.

The SD600 fits easily into your pocket or bag. The device connects via USB 3.1 and is compatible with Windows desktops and laptops, Xbox One, PS4 and Android devices. The case is covered with impact-resistant material.

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Cooling material based on camel fur 15.11.2020

The researchers took inspiration from camel fur and developed a material that can lower its temperature without consuming electricity.

Materials cool when water evaporates from their surface. But as soon as all the water evaporates, the cooling effect disappears. Camels, like no other, are adapted to life in the desert. Although at first glance it seems that a "bald" camel will cool more efficiently than a fur-covered one, in fact this is not the case. Fur protects the animal's skin from heat and at the same time allows sweat to evaporate more slowly. As a result, cooling lasts longer, which allows the camel to save water by cooling the skin.

A new material created by researchers at MIT works in a similar way. It consists of two layers: a hydrogel is located on the bottom, and a porous silica-based airgel is located on top. The hydrogel is 97% water, which evaporates when heated. Due to this, the temperature of the material decreases when heat is applied. Airgel has very low thermal conductivity and absorbs very little heat from the environment. This allows you to keep the bottom layer of the hydrogel cold.

During the experiments, a "naked" hydrogel layer 5 millimeters thick lost all its water within 40 hours at an ambient temperature of 30 °C. However, after coating the hydrogel with a 5 mm layer of airgel, the drying time of the material at the same temperature increased to 200 hours. During cooling, the temperature of the material dropped by 7 °C. The cooling effect is "renewable": after the material has completely dried, it is enough to add water to it, and it will again cool the external environment.

Creating an airgel is still a rather difficult and expensive task, so researchers are looking for new materials that could replace it. Scientists hope that their technology will help people in hot regions. It can reduce the cost of shipping and storing food and medicine.

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