Skip to main content

124.8 Million Mobile TV Users by 2010

Informa Telecoms and Media predicts that there will be 124.8 million broadcast mobile TV users worldwide by 2010, with an inflection point expected in 2009 as network rollout and device availability allow for the market to reach some level of critical mass. The most advanced networks will be S-DMB and T-DMB services, dominating broadcast TV handset sales worldwide from its strongholds of South Korea and Japan. By 2010, there will be 18.11 million terrestrial DMB subscribers, compared with 15.02 million satellite DMB users worldwide. �Despite its slow start, DVB-H will become the dominant format in 2008, reaching significant levels worldwide reaching 74.03 million users by
2010, equating to almost 60% of all broadcast mobile TV users." In terms of devices, the market is forecast to grow from a total of 0.13 million units in 2005 to 83.5 million by 2010. In comparison with mobile video-capable phones, broadcast handset sales will be outstripped by almost 5-to-1 by 2010.

Popular posts from this blog

AI-Driven Data Center Liquid Cooling Demand

The rapid evolution of artificial intelligence (AI) and hyperscale cloud computing is fundamentally reshaping data center infrastructure, and liquid cooling is emerging as an indispensable solution. As traditional air-cooled systems reach their physical limits, the IT industry is under pressure to adopt more efficient thermal management strategies to meet growing demands, while complying with stringent environmental regulations. Liquid Cooling Market Development The latest ABI Research analysis reveals momentum in liquid cooling adoption. Installations are forecast to quadruple between 2023 and 2030. The market will reach $3.7 billion in value by the decade's end, with a CAGR of 22 percent. The urgency behind these numbers becomes clear when examining energy metrics: liquid cooling systems demonstrate 40 percent greater energy efficiency when compared to conventional air-cooling architectures, while simultaneously enabling ~300-500 percent increases in computational density per rac...