TU810V1 3BSE013230R1 Embedded processor

TU810V1 3BSE013230R1

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Xiamen Xiongba E-commerce Co., Ltd

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Contact: Amy Sun

Website: https://www.dcsplcsystem.com

Address: Unit 2008, Chuangxiang Center, No. 1733, Luling Road, Siming District, Xiamen, Fujian

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Simon Zhang
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Description

TU810V1 3BSE013230R1 Embedded processor


TU810V1 3BSE013230R1 The total power of the heating system of the preoxygenation furnace is 600KW, divided into 35 heating zones. The heating body is made of ferrochromium aluminium material, the use temperature is 0~450℃, nickel-chromium-nickel-silicon thermocouple is used for temperature measurement, and the relay controls the contactor on and off, so that the heating temperature is basically the same as the given temperature. The heating power supply is low voltage 380V three-phase power supply. The heating body adopts star-shaped connection, they are laid on the top and bottom of the furnace. Application of this temperature control heating system there are many disadvantages

TU810V1 3BSE013230R1 Features:
1, the design of the product manual globe valve manufacturing in line with the American National Standard ANS valve manufacturer 1B16.34, the United States BS1873 and other advanced foreign standards.
2, the shape of the valve body for the barrel-shaped or streamlined shape beautiful. The flow shape is straight-through. Fluid resistance is small.
3, the closing member (gate) and the valve valve manufacturer seat sealing surface using valve manufacturer cone sealing, closing force is small, resistant to scouring, reliable sealing.

The TU810V1 3BSE013230R1 is pre-provided with best-in-class low-power computing performance and is optimised for price-sensitive markets. Compared to the AMD Radeon V1000 processor, it has a more streamlined feature set and offers a range of attractive features, including 2 cores with Hyper-Threading support, 3 Radeon Vega Compute Units, and support for up to 3 4K display outputs, a TDP range of 12 to 24 watts, and CPU speeds of up to 3.5GHz, with strong processing power in a single thread.