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Achmad Suntoro; Rony Djokorayono; Ferry Sujatno; Utaja
Center for Nuclear Instrumentation Engineering, National Nuclear Energy Agency, Serpong (Indonesia)2010
Center for Nuclear Instrumentation Engineering, National Nuclear Energy Agency, Serpong (Indonesia)2010
AbstractAbstract
[en] The Proceeding of the Scientific Meeting in Nuclear Instrumentation Engineering held on Nov, 30, 2010 by the Centre for Nuclear Instrumentation Engineering - National Nuclear Energy Agency. The Proceedings of the Scientific Contains 40 papers Consist of Nuclear Instrumentation Engineering for Industry, Environment, and Nuclear Facilities. (PPIKSN)
Original Title
Prosiding Pertemuan Ilmiah Rekayasa Perangkat Nuklir
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Nov 2010; 298 p; National Nuclear Energy Agency; Serpong (Indonesia); Scientific Meeting in Nuclear Instrumentation Engineering; Pertemuan Ilmiah Rekayasa Perangkat Nuklir; Serpong (Indonesia); 30 Nov 2010; ISSN 1693-3346; ; Also available from Center for Utilization of Informatics and Region Strategic Nuclear, National Nuclear Energy Agency, Puspiptek Area, Fax. 62-21-7560895, Serpong, Tangerang Selatan 15314 (ID)
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Wiranto Budi Santoso; Bambang Galung Susanto; Ari Satmoko
Center for Nuclear Device Engineering, National Nuclear Energy Agency, Serpong (Indonesia)2013
Center for Nuclear Device Engineering, National Nuclear Energy Agency, Serpong (Indonesia)2013
AbstractAbstract
[en] The Proceedings of the Scientific Meeting in Nuclear Instrumentation Engineering was held on 14 November 2013 by the Centre for Nuclear Instrumentation Engineering (PRPN) - National Nuclear Energy Agency. Scientific Meeting of 2013 Nuclear Equipment Engineering with the theme Enhancing the Capability of Nuclear Equipment Engineering in the Context of Bureaucratic Reformation. The purpose of the Scientific Meeting is to exchange information and knowledge about the development of nuclear device engineering in PRPN. With this exchange of knowledge, it is hoped that better and more professional collaboration will be established as well as increasing the ability of functional officials (peneliti, perekayasa dan pranata nuklir) in the PRPN in order to meet the demands of bureaucratic reform that have been, and will keep going. The Scientific Meeting was attended by 29 speakers with 30 papers. (MPN)
Original Title
Prosiding Pertemuan Ilmiah Perekayasaan Perangkat Nuklir
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Nov 2013; 419 p; Center for Nuclear Device Engineering, National Nuclear Energy Agency; Serpong (Indonesia); Scientific Meeting of Nuclear Devices Engineering; Pertemuan Ilmiah Perekayasaan Perangkat Nuklir; Serpong (Indonesia); 14 Nov 2013; ISSN 1693-3346; ; Also available from Center for Utilization of Informatics and Region Strategic Nuclear, National Nuclear Energy Agency, Puspiptek Area, Fax. 62-21-7560895, Serpong, Tangerang Selatan 15314 (ID)
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Utaja; Setyanto; Suryanto; Martono, Herlan; Kristejo; Pribadi, Rukmono
Centre for Development of Nuclear Instrumentation, National Nuclear Energy Agency, Serpong (Indonesia)2003
Centre for Development of Nuclear Instrumentation, National Nuclear Energy Agency, Serpong (Indonesia)2003
AbstractAbstract
[en] Proceedings of the Seminar on the Development of Nuclear Instrumentation Technology Engineering,all aspects of result research activity report that have been presented in Seminar of Development and Engineering on Medicine Industry and Environment was held on May 20, 2003. The Seminar encompass Instrumentation : Reactor Control, Industry, Medicine and based on Nuclear Instrumentation and Application, software relevant to Nuclear Engineering . The purpose of this seminar be able to information exchange among research walkers in National Nuclear Energy Agency. There are 20 papers which have separated Index
Original Title
Proseding Seminar Pengembangan Teknologi dan Perekayasaan Instrumentasi Nuklir
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2003; 138 p; Centre for Development of Nuclear Instrumentation, National Nuclear Energy Agency; Serpong (Indonesia); Seminar on the Development of Nuclear Instrumentation Technology and Engineering; Seminar Pengembangan Teknologi dan Perekayasaan Instrumentasi Nuklir; Serpong (Indonesia); 20 May 2003; ISSN 1693-3346; ; Available from Center for Development of Informatics and Computation Technology, National Nuclear Energy Agency, Puspiptek Area, Fax. 62-21-7560923, PO BOX 4274, Jakarta (ID)
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Achmad Suntoro; Ari Satmoko; Wiranto Budi Santoso; Puji Santosa
Center for Nuclear Facilities Engineering, National Nuclear Energy Agency, Tangerang Selatan (Indonesia)2015
Center for Nuclear Facilities Engineering, National Nuclear Energy Agency, Tangerang Selatan (Indonesia)2015
AbstractAbstract
[en] Proceedings of the Nuclear Equipment Engineering Scientific Meeting with the theme Increasing the Capacity of Functional Officials in Nuclear Equipment Engineering Activities, held on November 25, 2015. This Scientific Meeting is an annual agenda of the Nuclear Equipment Engineering Center (PRPN) BATAN as a medium of communication, information, and a form of accountability for the results of research, development, and engineering. In addition, it is also a forum for interaction and discussion of the exchange of information among functional researchers, functional engineers, and functional nuclear institutions within the PRPN environment. This scientific meeting was attended by 23 speakers who had gone through the Editor's selection. A total of 7 titles have been published in journals so 16 titles have been input from these proceedings. (RMPI)
Original Title
Prosiding Pertemuan Ilmiah Perekayasaan Fasilitas Nuklir 2015
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Nov 2015; 265 p; Center for Nuclear Facilities Engineering, National Nuclear Energy Agency; Tangerang Selatan (Indonesia); Nuclear Facility Engineering Scientific Meeting 2015; Pertemuan Ilmiah Perekayasaan Fasilitas Nuklir 2015; Tangerang Selatan (Indonesia); 25 Nov 2015; ISSN 1693-3346; ; Also available from Directorate of Repository, Multimedia and Scientific Publishing, National Research and Innovation Agency, Kawasan Sains dan Teknologi - BRIN, KST B. J. Habibie, Gedung 120 TMC, Jl. Raya Puspiptek Serpong, Phone (+62 21) 7560009, Tangerang Selatan 15314 (ID)
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AbstractAbstract
[en] The avian influenza virus detection equipment in a patient's body has been made. Currently, detection of avian influenza virus carried out by expensive laboratory equipment's, so only certain hospitals can perform this detection. This developing equipment is expected to be cheaper than existing equipment and the diagnosis can be known immediately. The sensing device is made using the principle of nuclear radiation detection. Radiation comes from a drunk labelled tamiflu (oseltamivir) which is drunk to the patient. Tamiflu is a drug to catch, H5N1 viruses in a patient's body. A labelled tamiflu is tamiflu which is labelled by I-131 radioisotopes. The presence of virus in the body is proportional to the amount of radiation captured by the detector. The equipment is composed of a Geiger-Mueller (GM) pancake detector type, a signal processor, a counter, and a data processor (computer). The GM detector converts the radiation that comes into electrical signals. Electrical signal is then converted into TTL level pulses by the signal processor. Pulse counting results are processed by data processor. The total count is proportional to the amount of virus captured by labelled tamiflu. The measurement threshold can be set by medical officer through software. At a certain threshold can be inferred identified patients infected with avian influenza virus. If the measurement below the threshold means that the patient is still within safe limits. This equipment is expected to create avian influenza virus detection system that cheaply and quickly so that more and more hospitals are using to detect the avian influenza virus. (author)
Original Title
Perekayasaan system deteksi virus flu burung dalam tubuh pasien
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Achmad Suntoro; Rony Djokorayono; Ferry Sujatno; Utaja (Centre for Nuclear Instrumentation Engineering, National Nuclear Energy Agency, Serpong (Indonesia)) (eds.); Center for Nuclear Instrumentation Engineering, National Nuclear Energy Agency, Serpong (Indonesia); 298 p; ISSN 1693-3346; ; Nov 2010; p. 139-145; Scientific Meeting in Nuclear Instrumentation Engineering; Pertemuan Ilmiah Rekayasa Perangkat Nuklir; Serpong (Indonesia); 30 Nov 2010; Also available from Center for Utilization of Informatics and Region Strategic Nuclear, National Nuclear Energy Agency, Puspiptek Area, Fax. 62-21-7560895, Serpong, Tangerang Selatan 15314 (ID); 7 refs.; 9 figs.
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Gunarwan Prayitno; Ahmad Rifai
Proceedings of the Scientific Meeting in Nuclear Instrumentation Engineering2010
Proceedings of the Scientific Meeting in Nuclear Instrumentation Engineering2010
AbstractAbstract
[en] Much has been charged particle detector radiation detector made by the industry, especially those engaged in the development of detection equipment and components. The development and further research will be made solid state detector with silicon material. To be able to detect charged particles (radiation), required the processing of silicon material into the detector material. The method used to make silicon detector material is a lithium evaporations. Having formed an intrinsic region contactor installation process, and with testing. (author)
Original Title
Rancang bangun detektor solid state
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Achmad Suntoro; Rony Djokorayono; Ferry Sujatno; Utaja (Centre for Nuclear Instrumentation Engineering, National Nuclear Energy Agency, Serpong (Indonesia)) (eds.); Center for Nuclear Instrumentation Engineering, National Nuclear Energy Agency, Serpong (Indonesia); 298 p; ISSN 1693-3346; ; Nov 2010; p. 272-279; Scientific Meeting in Nuclear Instrumentation Engineering; Pertemuan Ilmiah Rekayasa Perangkat Nuklir; Serpong (Indonesia); 30 Nov 2010; Also available from Center for Utilization of Informatics and Region Strategic Nuclear, National Nuclear Energy Agency, Puspiptek Area, Fax. 62-21-7560895, Serpong, Tangerang Selatan 15314 (ID); 4 refs.; 13 figs.
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AbstractAbstract
[en] Currently, an engineering team of Nuclear Equipment Engineering Center PRPN has been beening technology innovation detail design of Irradiator ISG 500, then enter continuing to a construction phase. A schedule detail design still being not finish yet. The installation of Irradiator ISG 500 will be used to preservative the result of agricultural product in Indonesia. It is known as an export commodity and row material for food. However, its quality need some improvements in order to meet internal and foreign consumer standard. To enhance a quality system in detail design phase has already used ISO 9001: 2008 on clausul-7: Product Realization-design. It also needs a radioactive regulation Bapeten-Indonesian Nuclear Energy Surveillance Agency compliance with IAEA GS-R 3: 2006 as well. Scope of activity design is Instrumentation and Control system; Mechanical- Electrical; Radiation and Safety and Dosimetry; Civil Structured; Quality Assurance and Technoeconomic. Technology Innovating be applied to achieved economics through Costumer and Market Focused. Gamma irradiation of Irradiator ISG 500 can be used to improve hygienic quality in terms of technological as well as economical aspects. Technology innovation fit with the state of the arts right now. Assessment should be done base not only internal audit but also monitoring and surveillance as well. By application of a Quality System on detail design activity hopefully to enhance quality on detail design, construction, more over irradiator operation. (author)
Original Title
Sasaran penerapan sistem mutu pada kegiatan disain rinci iradiator ISG 500
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Achmad Suntoro; Rony Djokorayono; Ferry Sujatno; Utaja (Centre for Nuclear Instrumentation Engineering, National Nuclear Energy Agency, Serpong (Indonesia)) (eds.); Center for Nuclear Instrumentation Engineering, National Nuclear Energy Agency, Serpong (Indonesia); 298 p; ISSN 1693-3346; ; Nov 2010; p. 280-284; Scientific Meeting in Nuclear Instrumentation Engineering; Pertemuan Ilmiah Rekayasa Perangkat Nuklir; Serpong (Indonesia); 30 Nov 2010; Also available from Center for Utilization of Informatics and Region Strategic Nuclear, National Nuclear Energy Agency, Puspiptek Area, Fax. 62-21-7560895, Serpong, Tangerang Selatan 15314 (ID); 5 refs.; 1 fig.
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Harno Garnito; Enggar; Harjani; Ari Satmoko; Sutomo Budihaharjo
Proceedings of the Scientific Meeting in Nuclear Instrumentation Engineering2010
Proceedings of the Scientific Meeting in Nuclear Instrumentation Engineering2010
AbstractAbstract
[en] Reliability of electrical power system in Irradiator system is absolutely necessary during the life cycle. Electrical energy is used as the main supporting element for both Irradiator operation of mechanical system, lighting, as well as for instrumentation and control systems. The reliability of electrical power system in the system can be achieved by paying attention Irradiator safety, simplicity of operation, ease of maintenance and possible future development. Distribution network of the most commonly used is the Radial network system, for the simple and in accordance with the criteria demanded by a distribution system. In addition to the network system, to get the reliability of electric power supply system is the selection of equipment/materials that meet the standards, and the installation of which provide facilities for maintenance and repairs. (author)
Original Title
Rancangan sistem catu daya listrik untuk iradiator gamma ISG 500
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Achmad Suntoro; Rony Djokorayono; Ferry Sujatno; Utaja (Centre for Nuclear Instrumentation Engineering, National Nuclear Energy Agency, Serpong (Indonesia)) (eds.); Center for Nuclear Instrumentation Engineering, National Nuclear Energy Agency, Serpong (Indonesia); 298 p; ISSN 1693-3346; ; Nov 2010; p. 222-227; Scientific Meeting in Nuclear Instrumentation Engineering; Pertemuan Ilmiah Rekayasa Perangkat Nuklir; Serpong (Indonesia); 30 Nov 2010; Also available from Center for Utilization of Informatics and Region Strategic Nuclear, National Nuclear Energy Agency, Puspiptek Area, Fax. 62-21-7560895, Serpong, Tangerang Selatan 15314 (ID); 6 refs.; 2 figs.
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Syamsurrijal Ramdja; Ari Satmoko; Sutomo Budihardjo
Proceedings of the Scientific Meeting in Nuclear Instrumentation Engineering2010
Proceedings of the Scientific Meeting in Nuclear Instrumentation Engineering2010
AbstractAbstract
[en] It has been verified the calculation of drum and pulleys on cranes as facility the gamma irradiator ISG-500. Drum is a device for rolling steel ropes while the pulley is a circular pieces called disks, and both of which are made from metal or non-metal to transmit motion and force. It has been verified the calculation of forces on the drum, drum diameter and length, and pressuring force occurred on the drums. Likewise to the pulley, the pulley diameter calculations verification, size of disc and shaft power pulleys. From the verification results, it will be obtained whether the data drums and pulley device are safe or not safe to be used. (author)
Original Title
Verifikasi perhitungan drum dan pulley overhead travelling crane pada iradiator gamma ISG 500
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Achmad Suntoro; Rony Djokorayono; Ferry Sujatno; Utaja (Centre for Nuclear Instrumentation Engineering, National Nuclear Energy Agency, Serpong (Indonesia)) (eds.); Center for Nuclear Instrumentation Engineering, National Nuclear Energy Agency, Serpong (Indonesia); 298 p; ISSN 1693-3346; ; Nov 2010; p. 236-242; Scientific Meeting in Nuclear Instrumentation Engineering; Pertemuan Ilmiah Rekayasa Perangkat Nuklir; Serpong (Indonesia); 30 Nov 2010; Also available from Center for Utilization of Informatics and Region Strategic Nuclear, National Nuclear Energy Agency, Puspiptek Area, Fax. 62-21-7560895, Serpong, Tangerang Selatan 15314 (ID); 6 refs.; 2 tabs.
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Karsono; Suprapto, Heru; Harjanto, Tri; Sanda; Tukidi
Proceedings of the Seminar on the Development of Nuclear Instrumentation Technology and Engineering2003
Proceedings of the Seminar on the Development of Nuclear Instrumentation Technology and Engineering2003
AbstractAbstract
[en] Manufacturing moulding machine of block molasses. Moulding machine of block molasses that to be moved by diesel engine. Urea molasses multi nutrient block (UMMB) is high nutrient food supplement for ruminant. This moulding machine that to be made, is development result that to be done by nuclear equipment development centre (P2PN BATAN). The equipment made practically, easy and its prise can be reached by public. This equipment able to make block molasses of amount 500 kg in 8 hours. Block molasses that to be produced are cylindrical form with 7 cm in diameter and weight 500 gram
Original Title
Pembuatan mesin pencetak molase blok
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Utaja; Setyanto; Suryanto; Martono, Herlan; Kristejo; Pribadi, Rukmono (National Nuclear Energy Agency, Jakarta (Indonesia)) (eds.); Centre for Development of Nuclear Instrumentation, National Nuclear Energy Agency, Serpong (Indonesia); 138 p; ISSN 1693-3346; ; 2003; p. 101-103; Seminar on the Development of Nuclear Instrumentation Technology and Engineering; Seminar Pengembangan Teknologi dan Perekayasaan Instrumentasi Nuklir; Serpong (Indonesia); 20 May 2003; Available from Center for Development of Informatics and Computation Technology, National Nuclear Energy Agency, Puspiptek Area, Fax. 62-21-7560923, PO BOX 4274, Jakarta (ID); 4 refs; tabs; figs
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