FusionServer X6000 V6 Server
Technical White Paper
3 System Architecture
2021-07-16
11
Figure 3-2
Side view of the X6000 V6 air flow
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Ensure that heat is dissipated from the cabinet in time. Heat accumulation and air reflow
affect the heat dissipation of the server.
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To prevent device damage due to insufficient heat dissipation, do not block air vents.
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The server uses four 8080/8080+ counter-rotating fans with high wind pressure to
improve the heat dissipation capability of X6000 V6 servers, achieving the maximum
configuration, power consumption density, and temperature specifications in the
industry.
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System energy efficiency optimization: DTS 2.0 intelligently adjusts the fan speed to
save energy and achieve optimal energy efficiency.
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With speed adjustment, shock absorption, and noise isolation design, X6000 V6 servers
can minimize noise while dissipating heat efficiently.
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Optimized heat dissipation design:
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Counter-rotating fans with high wind pressure: 20% higher capability of 8080+ fans
compared with the last-generation 8080 fans.
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The refined ventilation channel design concentrates the heat dissipation on
heat-sensitive components, improving the heat dissipation efficiency.
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Reasonable layout of temperature sensors, full coverage of hot spots, and precise
speed adjustment.
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The cellular board increases the porosity by 10% compared with the square hole
design.
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The fan modules use the proportional–integral–derivative (PID) algorithm to ensure
that the system can run stably at 35°C (95°F) for a long time.
3.2 Power Supply System
The X6000 V6 server supports two or four hot-swappable PSUs. Based on the relationship
between the rated power of the PSUs and that of the server, there are different redundancy
modes to ensure that the system performance is not affected and the system does not break
down when a power supply or PSU fault occurs. For details, see Table 3-1.
Summary of Contents for X6000
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