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 The prototype consists of the main control blade, compute blade, switching backplane, heat dissipation system, power supply, and chassis.


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1.1  main control blade

FT - D2000 CPU choose DDR4 particles as a memory / 8, 32 gb capacity, 3200 MTPS physical rate;

X100 SOC choose DDR4 particles as memory, 8 gb capacity, 3200 MTPS physical rate;

FT - D2000 / CPU between 8 and X100 SOC use PCle Gen3X16 connection;

FT - D2000/8 CPU by PCle Gen3X4 mount NVME hard disk, hard disk capacity of not less than 256 gb;

FT - D2000/8 WX1820AL NETSOC via PCIE connection, providing two 10 g front-end ports;

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Reserved debug serial port debugging so;


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1.2  compute blade

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Provide panel with two USB 3.0 interface, using the Type - A interface;Provide panel with six software programmable control indicator light;

eFT - D2000/8 CPU by PCle Gen3X4 mount NVME hard disk, hard disk capacity of not less than 256 gb;

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Through the network exchange chip 4 RK3588J FSL91030 soc and XPU connection module, access rate to 1 GBPS;

Each RK3588J SOC module USES LPDDR4X memory, not less than 8 gb capacity, rate of not less than 4266 MTPS;

FT - D2000/8 CPU through two PCle Gen3X4 and 2 PCle Gen3X1 four RK3588J SOC and connectivity;


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1.3 switching backplaner


Using FSL91030 XPU in exchange for chips, two pieces of FSL91030 XPU are redundant;

Each FSL91030 XPU can provide up to eight 1 gbe port, each slot P2 side provide 2 road 1 gbe interface to be redundant FSL91030XPU;

Each FSL91030 XPU can provide up to two 10 gbe port, the P1 end of the slot number 3 and 4 provide 2 road 10 gbe interface to the FSL91030 XPU are redundantBack to the slot provides IPMI management interface based on 12 c, located in each slot P0 end;

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The backplane provides the engine fan power supply and control.



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2. Hardware Design

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