1 / 14

Modular Redundant Scalable UPS for Mumbai Data Center

This preliminary solution proposal outlines three different UPS options for a critical IT data center in Mumbai. The proposal includes details on the initial and ultimate capacities, hot-swap capabilities, control architecture, and site preparation requirements for each option. The proposal also provides a quick comparison of the three solutions.

joanv
Télécharger la présentation

Modular Redundant Scalable UPS for Mumbai Data Center

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Preliminary Solution Proposal For Data Center-MumbaiModular Redundant Scalable UPS By Gamatronic Feb 2013

  2. Requirement • Data Center Environment: Critical IT loads. • Configuration: Tier IV, 2N+1 distributed redundancy. • Initial Capacity: 200KVA. • Ultimate Capacity, at later-stage: 400KVA. • Preferred by the user to upgrade/add capacity without load-shutdown.

  3. Proposal A: Mega Power+

  4. Description • Mega Power+ Modular Redundant Scalable UPS • Initial Capacity: 200KVA/KW N+1 = 225KVA/KW, total 9 power modules each 25KVA/25KW. • Ultimate Capacity: 475KVA/KW N+1= 500KVA/KW, total 20 power modules each 25KVA/25KW. • Hot-swap power modules, hot-swap interface controller. • Distributed redundant control architecture. • No load shutdown required to upgrade capacity. • The upstream infrastructure need to be prepared for the ultimate final power capacity. • It is possible to replace/add battery banks without to shutdown the system. The connection circuitry of the battery banks to the UPS need to be prepared accordingly.

  5. Block Diagram

  6. Mega Power+ Site Preparation

  7. Mega Power+ Site Preparation

  8. Proposal B: Parallel Power+

  9. Description • Power+ Modular Redundant Scalable UPS, 3 units 80KVA in parallel • Initial Capacity: 3X80KVA= 240KVA= 210KVA N+3. (210KVA/168KW). Total 24 power modules each 10KVA/8KW. • Ultimate Capacity: 5X100KVA= 500KVA= 450KVA N+5. (450KVA/360KW) . Total 50 power modules each 10KVA/8KW. • Hot-swap power modules, hot-swap interface controller. • Distributed redundant control architecture. • The upstream infrastructure need to be prepared for the ultimate final power capacity (of each single UPS) • It is recommended to shutdown the system when adding additional UPS unit. • No need to take a shutdown when adding 10KVA/8KW power modules. • Each Power+ unit has its own separate battery bank.

  10. Block Diagram

  11. Parallel Power+ Site Preparation

  12. Proposal C: Conventional Solution

  13. Description • Conventional 2X200KVA=400KVA=200KVA N+1 in parallel. • Initial Capacity: 2X200KVA= 400KVA= 200KVA N+1. • Ultimate Capacity: 3X200KVA= 600KVA= 400KVA N+1. • It is recommended to shutdown the system when adding additional UPS unit.

  14. Quick Comparison

More Related