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AC platform power consumption (high-line input)
The actual amount of power draw from the AC source depends on the type and number of blades and the power supply
AC source voltage and redundancy configuration. This table shows several possible configurations for high-line voltage
and the typical and maximum power draw.
Table 3: AC mains total system power draw (high-line input)
Number of power supplies
installed
Maximum system power
draw
Typical system power draw
Blade quantity and type
2
900W
675W
1 x PB100
2
1275W
975W
2 x PB100
4
1650W
1325W
3 x PB100
4
2025W
1625W
4 x PB100
2
925W
700W
1 x PB200
2
1325W
1025W
2 x PB200
4
1725W
1400W
3 x PB200
4
2125W
1725W
4 x PB200
DC power requirements
When working with a DC-powered VIPRION platform, it is important to understand the DC power options and
requirements.
DC power redundancy provisioning
The platform supports one to four DC power supplies. Each slot is provisioned to draw up to 600W; therefore, one power
supply can support two blade slots with no redundancy. This table shows some of the possible blade and power supply
redundancy configurations.
Table 4: DC power provisioning recommendations
1 + 1 redundancy
No redundancy
Blade quantity
2 (1200W available)
1 (1200W available)
1 (600W)
2 (1200W available)
1 (1200W available)
2 (1200W)
4 (4800W available)
2 (2400W available)
3 (1800W)
4 (4800W available)
2 (2400W available)
4 (2400W)
56 | Platform Guide: VIPRION | Platform Specifications
Содержание Viprion
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