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WE GIVE YOU POWER! 06.12.2011 1 www.power-backup.ro 6 December 2011 Modular UPS Technology 1 IT Data Center Seminar 6 December 2011 Our Company is Specialized in Power. Power Back-up Systems for long backup time and high availability! Over 100 3-Phase units installed in 2011 Preventive Maintenance Contracts – our customers are Radisson Hotel, Romanian Athenaeum, Horback, private customers As a bank wants to know which is the beneficiary funds of each company, we are proud of telling you that beneficiary of our service are Intel Corporation, “U Cluj Arena”, Auchan Mall, Maritimo Mall, ING, Carrefour, Draxelmaier, Primaria Sector 1 – Amzei Project, many others
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Page 1: 6dec2011 - Power Back-up_1

WE GIVE YOU POWER!

06.12.2011 1www.power-backup.ro6 December 2011 Modular UPS Technology

1

IT Data Center Seminar6 December 2011

Our Company is Specialized in Power.

Power Back-up Systems for long backup time and high availability!

• Over 100 3-Phase units installed in 2011

• Preventive Maintenance Contracts – our customers are Radisson Hotel, Romanian Athenaeum, Horback, private customers

• As a bank wants to know which is the beneficiary funds of each company, we are proud of telling you that beneficiary of our service are Intel Corporation, “U Cluj Arena”, Auchan Mall, Maritimo Mall, ING, Carrefour, Draxelmaier, Primaria Sector 1 – Amzei Project, many others

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06.12.2011 2www.power-backup.ro6 December 2011 Modular UPS Technology

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Newave Modular UPS Technology

The modular technology

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• Focus of attention

• Newave modular concept Highlights Safe Swap Modules Parallel Architecture Scalability & Flexibility

• Benefits

• Conclusion

Newave Modular UPS Technology

Content

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3 major decision making criteria when choosing a UPS System for Critical and Mission Critical Applications:

1. Availability

- proportion of time a system is in a

functioning condition

1. Total Cost of Ownership (TCO)

- financial impact during whole life-cycle; the

acquisition and the ongoing costs.

1. Flexibility

- respond to potential internal or external changes effecting

its value delivery, in a timely and cost-effective manner CriticalApplication

UPS BATTERY

Power Protection

PDU

Focus of attention

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AvailabilityIn order to keep the Downtime cost low, the choice of the appropriate Power Protection Solution to suit your Level of Application Criticality is of paramount of importance

Level o

f A

pp

lica

tio

n C

riti

cality

LowDowntime

Cost

High Availability

Reliable

Availab

ilit

y R

eq

uir

em

en

ts

Medium/High Downtime

Cost

Standard Business

Processing

Non Critical Bu

sin

ess

Im

pact

of

Inte

rru

pti

on

Small organizations The focus is set on Reliabilityof Hardware Components andIndividual Technology Features.

Midsized organizations The focus shifts to Power Protection Architectures Single or Parallel.

3 major decision making criteria

Very HighDowntime

Cost

Continuous Availability

Mission Critical

Large organizations Need Continuous Power Protection Availability:Integration of Technology,Monitoring and Proactive Maintenance.

Picture 37

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Total Cost of Ownership - Lifecycle CostA UPS is usually purchased for the power protection of critical loads and it operates 24h a day and 365 days a year during more then 10 years.

The key parameters/features that have the major impact on the TCO to be considered are:

• Investment costs: Rightsizing the system power over time

• Adding power without need of additional floor space

• UPS efficiency for partial/full load

• Cooling system

• Service/maintenance

3 major decision making criteria

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Flexibility

Definition: The ease which the system can respond to uncertainty in a manner to sustain or increase its value delivery.

Uncertainty can create both risks and opportunities in a system, and it is with the existence of uncertainty that flexibility becomes valuable.

3 major decision making criteria

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06.12.2011 8www.power-backup.ro6 December 2011 Modular UPS Technology

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Newave unique MODULAR power protection concept for mission critical applications

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Highlights

Decentralized ParallelArchitecture (DPA)

Flexibility/Scalability

High Quality

High Power Density

Safe-Swap Modules

Newave Modular Concept

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Safe-swap: hot insertion and removal of modules from a host system without removing power.

In a redundant Power Protection System Safe-swap is achieved only if a module may be added or replaced without interrupting the power to the load and w/o having to transfer the load to the raw mains (by-pass).

High availability of power protection systems Safe scaling-up of system Easy fault recovery

Safe Swap Modules

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Conceptpower DPA-Module

Safe Swap Module

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Parallel System Architectures are designed to increase Power Protection Availability, which cannot be achieved by

STANDALONE UPS’S.

These 2 architectures differ by the level of decentralization of their building blocks.

Parallel Architectures available today:

• Central Parallel Architecture (CPA)

• Decentralized Parallel Architecture (DPA)TM

Introduction: Parallel Architectures

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In a Centralized Parallel Architectures the system is composed of common system building blocks:

Centralized Parallel Architecture (CPA)

CENTRALPROCESSING

UNIT

CENTRAL CONTROL PANNEL

CENTRAL STATIC BYPASS SWITCH

CRITICAL LOAD

MAINS 1 MAINS 2

CENTRAL BATTERY PACKS

• CPU

• Control Panel

• Static Bypass Switch

• Battery

REDUNDANT HOT-SWAP-POWER-

UNIT

REDUNDANT HOT-SWAP-POWER-

UNIT

REDUNDANT HOT-SWAP-POWER-

UNIT

The only Decentralized Parts are

the “Power Units”.

Introduction: Parallel Architectures

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Decentralized Parallel Architecture (DPA) TM

Decentralized Parallel Architecture (DPA)TM was designed to distribute virtually the entire UPS Hardware and Software into each module.A DPA systems includes distributed….

• Control Panel

• CPU

• Power Unit

• Static bypass switch

• Separate Batteries

and

DPA

STATIC BP SWITCH

DPA POWERUNIT

DPA CENTRAL PROCESSING

UNIT

DPA CONTROL PANNEL

CRITICAL LOAD

MAINS 1 MAINS 2

DPA

STATIC BP SWITCH

DPA POWERUNIT

DPA CENTRAL PROCESSING

UNIT

DPA CONTROL PANNEL

DPA

STATIC BP SWITCH

DPA POWERUNIT

DPA CENTRAL PROCESSING

UNIT

DPA CONTROL PANNEL

DPA BATTERY

PACKS

DPA BATTERY

PACKS

DPA BATTERY

PACKS

Introduction: Parallel Architectures

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• Multi Master and Slave Technology through a simplified BUS Communication

• Full redundancy on inverter

DPA

STATIC BP SWITCH

DPA POWERUNIT

DPA CENTRAL PROCESSING

UNIT

DPA CONTROL PANNEL

CRITICAL LOAD

MAINS 1 MAINS 2

DPA

STATIC BP SWITCH

DPA POWERUNIT

DPA CENTRAL PROCESSING

UNIT

DPA CONTROL PANNEL

DPA

STATIC BP SWITCH

DPA POWERUNIT

DPA CENTRAL PROCESSING

UNIT

DPA CONTROL PANNEL

DPA BATTERY

PACKS

DPA BATTERY

PACKS

DPA BATTERY

PACKS

DPA

STATIC BP SWITCH

DPA POWERUNIT

DPA CENTRAL PROCESSING

UNIT

DPA CONTROL PANNEL

CRITICAL LOAD

MAINS 1 MAINS 2

DPA

STATIC BP SWITCH

DPA POWERUNIT

DPA CENTRAL PROCESSING

UNIT

DPA CONTROL PANNEL

DPA

STATIC BP SWITCH

DPA POWERUNIT

DPA CENTRAL PROCESSING

UNIT

DPA CONTROL PANNEL

DPA BATTERY

PACKS

DPA BATTERY

PACKS

DPA BATTERY

PACKS

• Each critical building block is decentralized

> No critical Single Point of Failure

• Full redundancy on Static Bypass Switch (SBS)

ExclusivelyDecentralized Parallel Architecture (DPA)TM

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Static Bypass Switch (SBS) Redundancy

To achieve highest level of availability in Multi-Module configurations it is essential that also the SBS be redundant .

DC/AC SBS

AC/DC

DC/AC SBS

AC/DC

DC/AC SBS

AC/DC

CRITICAL APPLICATION

MAINS POWER SUPPLY

In the event of a SBS-short-circuit the input contactor opens and isolates the SBS short….

The Critical Application remains on reliable inverter supply and will not switch to raw mains supply.

ExclusivelyDecentralized Parallel Architecture (DPA)TM

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Scalability brings Flexibility

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Po

wer

[kV

A]

Year

200 kVA

1 2 3 4 5

100 kVA

60

300 kVA

400 kVA

Load Curve

Expected Critical Load = 200kVA

200kVA 200kVA 200kVA

Exp. Critical Load = 200kVA

50kVA Module

50kVA Module50kVA Module

Standalone Configuration

Modular Configuration

500 kVA

600 kVA

WITH MODULARDESIGN, WASTED ENERGY DURING YEARS IS REDUCED !

Pay as you grow…

50kVA Module

50kVA Module

Rightsizing of the Power Protection System Over Time

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TIER II DATA CENTRE

UPS 2

CoolingSystem

UPS 1

Dist

ribut

ion

Board

Large space required : expensive

Large cables : expensive

Lower efficiency : high losses

Dedicated cooling system: expensive

Redundancy far from load • INITIAL INVESTMENT COST….. HIGH• TCO....... HIGH.

Right Sizing!

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Modular UPS design (pay as you growth)

Simpler and less expensive cabling

Redundancy close to point of use

Reduced floor space utilization

No dedicated cooling system

Easy to service - replacement modules

High speed of deployment

• INITIAL INVESTMENT COST… LOWER• TCO....... LOWER

Distribution

Board FREE SPACE - NO UPS ROOM REQUIRED

O O O

O O O

O O O

O O O

O O O

O O O

TIER II DATA CENTRE

Right Sizing!

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Rapid RecoveryModularity

RecognitionRemote

Monitoring

Proactive Maintenance

Local Service Support

Continuous Power Protection Availability

High Availability Continuous Operation

Double Conversion Topology

Class VFI-SS–111

Fault Tolerance Redundancy

In Business Critical Applications a new availability strategy with near-zero-downtime is required to reduce the risk of threat to the business….the: Continuous Power Protection Availability

High Availibility

To achieve near-zero downtime and avoid very costly consequences of disruption of Mission Critical Applications, advanced Modular Power Protection Architectures with High Availability must be employed.

MTBF MTTR

Benefits

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Results in low losses at PARTIAL and FULL load. Redundant UPS Systems operate typically at 25-75% of the rated load.

Eff

icie

ncy

(%

)

Load (%)

94.5 9595.5 95.5

Energy Saving…

90

91

92

93

94

95

96

97

25% 50% 75% 100%

Traditional UPS efficiency

Flat Efficiency

Reduced TCO

Benefits

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Benefits – Flat efficiency – Reduced TCO

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Benefits:• No phase compensation

filter required• Respect power grid

regulations• Energy savings

Advanced Booster PFC circuit to provide near-unity Input PF even with partial loads.

Load (%)

Inp

ut

PF (%)

0.99

0.94 0.965 0.975

0.5

0.6

0.7

0.8

0.9

1

25% 50% 75% 100%

Input Power Factor versus load

Reduced TCO

Benefits

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UNIQUE ELECTRICAL PERFORMANCE

Advanced Booster PFC circuit toprovide Flat THDI Curve even withpartial loads.

Benefits:• No gen-set oversized required• Small cable/fuses/breakers size • No extra heating of transformers

3.4

2.4 2.32.0

Load (%)

TH

D I

(%)

0

1

2

3

4

25% 50% 75% 100%

Input THDi versus load

Reduced TCO

Benefits

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• Safe-Swap Modular design, minimize service

and maintenance costs

• MTTR reduction maximize your power

protection availability

• No need of skilled personnel on site

• Non need of spares, only modules for an easy

fault recovery

Enhanced Serviceability

Benefits

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1. Optimize capital investment and available space Pay-as-you-grow solution lowers your capital costs and increases utilization rates, while

innovative rack-based technology frees up space previously needed for infrastructure support.2. Adapt to ever-changing power requirements

No need to abandon previous investment when power density needs increase or if physically moving your data centre. Adapt to changing wattage requirements in your racks with single- or multi- branch rack-mount power distribution units.3. Accelerate speed of deployment

Electrical and physical modularity allows for rapid installation with minimal engineering.4. Lower the cost of service contracts

Simplicity of system design and intelligent modular parts lessen the dependency on expensive service contracts.5. Increase availability

Specifically engineered to deliver higher availability through proactively designed, building block architecture and reduced MTTR

10 reasons for choosing a Newave modular UPS

Conclusion

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6. Decrease mean-time-to-recovery (MTTR) Compartmentalize potential failures with system components consisting of intelligent,

maintainable modules for quick fault recovery.7. Plan for a power density that is increasing and unpredictable

Eliminate hot spots in your data centre caused by higher power densities by targeting availability where you need it most.

8. Minimize points of failure between the UPS and the critical load Move redundancy closer to the load and prevent the majority of failures that cause critical load downtime.

9. Minimize human error Simplicity of design and intelligent modules increase system availability by mitigating human error: the number one cause of critical load downtime.

10. Decrease the operating costs With efficiency up to 96% (double conversion mode), the operating costs for a Conceptpower DPA modular UPS can be >40% less compared to those for a previous generation.

10 reasons for choosing a Newave modular UPS

Conclusion

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Thank you for your attention