What is the most cost effective UPS configuration for a company that operates 8 hours a day, 5 days a week and requires redundancy?
A. Capacity
B. System + system
C. Parallel redundant
D. Distributed redundant
In order to determine the most appropriate UPS configuration for your business, which two factors should be considered? (Choose two.)
A. How long recovery from failure will take
B. How many employees will support the UPS
C. How much money is budgeted for IT equipment
D. How much money is flowing through the company every minute
Which UPS configuration presents the fewest single points of failure?
A. System + system
B. Parallel redundant
C. Isolated redundant
D. Distributed redundant
What are two advantages of the distributed redundant UPS configuration? (Choose two.)
A. It is the easiest configuration to manage.
B. It uses dual power paths for dual corded servers.
C. It has increased reliability by eliminating the static transfer switches (STS).
D. Equipment can be maintained without transferring the load to the bypass.
Which two statements describe the parallel redundant UPS configuration? (Choose two.)
A. It uses older and outdated technology.
B. The parallel redundant UPS configuration is not scalable.
C. If one UPS module goes down, the other UPS module(s) assumes the load.
D. Both modules must be the same design, manufacturer, rating, technology, and configuration.
What is the minimum number of UPS modules used in a distributed redundant configuration?
A. One
B. Two
C. Four
D. Three
What is a disadvantage of an 'N' or capacity UPS configuration when compared to the other configurations?
A. Not scalable
B. Not redundant
C. Most difficult to design
D. Most recent design that is not yet widely accepted
Which UPS configuration has the highest availability?
A. Capacity
B. Parallel redundant
C. Isolated redundant
D. Distributed redundant
Which two should be used as a basis for determining the UPS redundancy configuration? (Choose two.)
A. Voltage level
B. Cost of downtime
C. Availability requirements
D. Size of the electrical load
A UPS system consists of three modules in a parallel redundant configuration. Each module is rated to provide 200 kW of power. If the electrical load grows from 350 kW to 420 kW, what will happen?
A. The UPS system will not provide any additional power beyond 400 kW.
B. The UPS system will reach an overload state and switch to its static bypass.
C. The UPS system's response will vary depending on the rate of electrical load growth.
D. The UPS system will continue to support the load and become a capacity configuration.
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