Fiber series tenth week news Abstract 5

2012-03-08 11:32:59

The abstract is mainly about the optical communication related products,including: FTTH,GPON,EPON,SFPPLC,PTN,ODN,Optical module,Optical devices,optical communications,Optical transceiver module,Etc.

Lease space in the fiber optic cables in the area of ??Krakow and Tarnow.
Contract awarded for telecommunications network First The contract is for lease space in the fiber optic cables in the area of ??Krakow and Tarnow. A. The performance of the contract the company Krak-MAN Broadband Network Operator Krakow Sp. Ltd., a telecommunications operator, according to the contract to supply fiber U-133/2011 No, give the Employer in the lease space in the fiber optic cables in the area of ??Krakow and Tarnow in the relations specified in Annex 3 to the call. B. As part of the contract, the Contractor agrees to accept the lodgement of the occurrence of damage to fiber optic cables.
Weekly: EMCORE Corporation price 23.9% above volume weighted price
EMCORE Corporation (EMCORE) is a provider of compound semiconductor-based components and subsystems for the broadband, fiber optic, satellite, and terrestrial solar power markets. The Company has two reporting segments: Fiber Optics and Photovoltaics. Fiber Optics segment offers optical components, subsystems, and systems that enable the transmission of video, voice, and data over high-capacity fiber optic cables for high-speed data and telecommunications, cable television (CATV) and fiber-to-the-premises (FTTP) networks. Photovoltaics segment provides solar products for satellite and terrestrial applications. On February 22, 2008, EMCORE acquired telecom-related assets of Intel Corporation's Optical Platform Division (OPD). On April 20, 2008, EMCORE acquired the enterprise and storage-related assets of Intel Corporation's OPD business, as well as Intel's Connects Cables business. In January 2009, the Company completed the sale of WorldWater & Solar Technologies Corporation.
U.S. Patents Awarded to Inventors in Massachusetts (Feb. 11)
ALEXANDRIA, Va., Feb. 11 -- Massachusetts Institute of Technology, Cambridge, Mass., and Children's Medical Center, Boston, have been assigned a patent (8,110,213) developed by five co-inventors for "method of forming a tissue structure by introducing cells into an implanted matrix." The co-inventors are Antonios G. Mikos, Houston, Robert S. Langer, Newton, Mass., Joseph P. Vacanti, Winchester, Mass., Linda G. Griffith, Cambridge, Mass., and Georgios Sarakinos, Maastricht, The Netherlands.The abstract of the patent published by the U.S. Patent and Trademark Office states: "Polymeric materials are used to make a pliable, non-toxic, injectable porous template for vascular ingrowth. The pore size, usually between approximately 100 and 300 microns, allows vascular and connective tissue ingrowth throughout approximately 10 to 90% of the matrix following implantation, and the injection of cells uniformly throughout the implanted matrix without damage to the cells or patient. The introduced cells attach to the connective tissue within the matrix and are fed by the blood vessels. The preferred material for forming the matrix or support structure is a biocompatible synthetic polymer which degrades in a controlled manner by hydrolysis into harmless metabolites, for example, polyglycolic acid, polylactic acid, polyorthoester, polyanhydride, or copolymers thereof. The rate of tissue ingrowth increases as the porosity and/or the pore size of the implanted devices increases. The time required for the tissue to fill the device depends on the polymer crystallinity and is less for amorphous polymers versus semicrystalline polymers. The vascularity of the advancing tissue is consistent with time and independent of the biomaterial composition and morphology."
The above information is edited by 10GTEK.

10GTEK is a professional manufacturer engaged in the R&D,manufacturing and marketing of Fiber Optic Transceivers and High Performance Cables Assemblies.

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