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TY - CONF AU - Rahighi, J. AU - Ahmadi, E. AU - Ajam, H. AU - Akbari, M. AU - Amiri, S. AU - Dehghani, J. AU - Eghbali, R. AU - Einfeld, D. AU - Fatehi, S. AU - Fereidani, M. AU - Ghasem, H. AU - Gholampour, A. AU - Iraji, A. AU - Jafarzadeh, M. AU - Kamkari, B. AU - Kashani, S. AU - Khodadoost, P. AU - Khosroabadi, H. AU - Lamehi, M. AU - Moradi, M. AU - Oveisi, H. AU - Pirani, S. AU - Rahimi, M. AU - Ranjbar, N. AU - Rasoli, R. AU - Razazian, M. AU - Sadeghipanah, A. AU - Saeidi, F. AU - Safian, R. AU - Salimi, E. AU - Sarhadi, Kh.S. AU - Seify, O. AU - Shafiee, M.Sh. AU - Shahveh, A. AU - Shahveh, Z. AU - Shahverdi, A. AU - Shirangi, D. AU - Yousefi, E.H. ED - Petit-Jean-Genaz, Christine ED - Arduini, Gianluigi ED - Michel, Peter ED - Schaa, Volker RW TI - Progress Status of the Iranian Light Source Facility Laboratory J2 - Proc. of IPAC2014, Dresden, Germany, June 15-20, 2014 C1 - Dresden, Germany T2 - International Particle Accelerator Conference T3 - 5 LA - english AB - The Iranian Light Source Facility Project (ILSF) is a 3 GeV third generation light source with a current of 400 mA which will be built on a land of 50 hectares area in the city of Qazvin, located 150 km West of Tehran. ILSF conceptual design report, CDR, was published in October 2012. To have a competitive leading position in the future, 489.6 m storage ring of ILSF is designed to emphasize on small emittance electron beam( 0.93 nm-rad), high photon flux density, brightness, stability and reliability. Moreover, 40% of 489.6 m ring circumference is straight sections (14×8 m+ 14×6 m) which are long enough for the commonly used insertion devices. Some prototype accelerator components such as high power solid state radio frequency amplifiers, LLRF system, thermionic RF gun, Storage ring H-type dipole and quadruple magnets, Hall probe system for magnetic measurement and highly stable magnet power supplies have been constructed in ILSF R&D laboratory. PB - JACoW CP - Geneva, Switzerland SP - 240 EP - 242 KW - booster KW - cavity KW - storage-ring KW - synchrotron KW - dipole DA - 2014/07 PY - 2014 SN - 978-3-95450-132-8 DO - 10.18429/JACoW-IPAC2014-MOPRO069 UR - http://jacow.org/ipac2014/papers/mopro069.pdf ER -