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Ditemukan 6741 dokumen yang sesuai dengan query
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Sen, P.C.
New York: John Wiley & Sons, 1981
621.462 SEN t
Buku Teks SO  Universitas Indonesia Library
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Krishnan, R. (Ramu)
Upper Saddle River, N.J. : Prentice-Hall, 2001.
621.46 KRI e
Buku Teks  Universitas Indonesia Library
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Dewan, S.B.
New York: John Wiley & Sons, 1984
621.317 DEW p
Buku Teks SO  Universitas Indonesia Library
cover
"Electric motors and drives : fundamentals, types and applications provides information regarding the inner workings of motor and drive system. The book is comprised of nine chapters that cover several aspects and types of motor and drive systems. Chapter 1 discusses electric motors, and Chapter 2 deals with power electronic converters for motor drives. Chapter 3 covers the conventional d.c. motors, while Chapter 4 tackles inductions motors – rotating field, slip, and torque. The book also talks about the operating characteristics of induction motors, and then deals with the inverter-fed induction motor drives. The stepping motor systems; the synchronous, switched reluctance, and brushless d.c. drives; and the motor/drive selection are also covered. The text will be of great use to individuals who wish to familiarize themselves with motor and drive systems."
Oxford, UK: Newnes, 2013
e20426971
eBooks  Universitas Indonesia Library
cover
Drury, Bill
"Variable speed drives and the associated electrical motors play a central role in industry as well as the buildings in which we live, work and are entertained. They are arguably the most potent tool we have in the quest to save energy and thereby reduce our carbon footprint. Their rate of development has been rapid and today?s product is in many ways unrecognisable for its ancestors of even twenty years ago. Development continues apace in the components used in the products, the products themselves and the ways in which the products are used."
London: Institution of Engineering and Technology, 2001
e20452689
eBooks  Universitas Indonesia Library
cover
Drury, Bill
"Variable speed drives and the associated electrical motors play a central role in industry as well as the buildings in which we live, work and are entertained. They are arguably the most potent tool we have in the quest to save energy and thereby reduce our carbon footprint. Their rate of development has been rapid and today?s product is in many ways unrecognisable for its ancestors of even twenty years ago. Development continues apace in the components used in the products, the products themselves and the ways in which the products are used.
This book contains a great deal of practical information for drives and industrial engineers who use motors and drives. It is a comprehensive guide to the technology underlying drives and motors. It contains sufficient theory to give both user and student an insight into the design of these components and thereby the constraints and opportunities that exist. It has been radically revised and expanded from the previous edition to contain much new information."
London: Institution of Engineering and Technology, 2009
e20452789
eBooks  Universitas Indonesia Library
cover
Wildi, Theodore
Englewood Cliffs, NJ : Prentice-Hall, 1997
621.319 1 WIL e
Buku Teks SO  Universitas Indonesia Library
cover
cover
Patria Mauluddin
"DC House merupakan suatu gagasan sistem kelistrikan rumah yang seluruhnya menggunakan beban DC. Sistem ini sangat baik untuk digunakan di daerah-daerah terpencil yang memiliki kendala untuk mendapatkan akses listrik. Sistem DC House biasanya diklasifikasikan pada tiga komponen utama yaitu pembangkit listrik, baterai, dan beban DC. Penulisan ini menggunakan sistem DC House yang terpisah dari pembangkit listrik, sehingga baterai beralih fungsi menjadi penyuplai daya utama. Oleh karena itu dilakukan analisis performa baterai atau Tabung Listrik TALIS yang akan digunakan pada rancangan sistem DC House dengan melihat karakteristik kurva discharge. Metodologi yang digunakan pada penelitian ini adalah metode pengosongan resistansi konstan untuk melihat performa sebenarnya ketika dipakai oleh pengguna. Didapatkan hasil pengujian Tabung Listrik 33 Ah dengan waktu pengosongan selama 23,6125 jam untuk skenario beban lampu dan 12,055 jam untuk skenario beban total. Energi yang dibutuhkan DC House adalah sebesar 0,234 kWh selama 24 jam untuk skenario beban lampu dan 0,2 kWh selama 12 jam atau 0,4 kWh selama jam 24 untuk skenario beban total.

DC House is an idea of a house electrical system that entirely uses DC loads. This system is good for use in remote areas that have constraints to gain access to electricity DC House systems are usually classified on three main components power plants, batteries, and DC loads. This writing uses a DC House system that is separate from the power plant, so the battery switch function becomes the main power supplier. Therefore, a battery or Electric Tubes TALIS performance analysis will be used in the planned DC House system by looking at the characteristics of the discharge curve. The methodology used in this study is the method of discharge of constant resistance to see the user 39 s real performance. The obtained test results for 33 Ah Power Tubes are discharge time of 23.6125 hours for the lamp load scenario and 12.055 hours for the total load scenario. The required energy for DC House system are 0.234 kWh in 24 hours for lamp load scenario and 0.2 kWh in 12 hours or 0.4 kWh in 24 hours for the total load scenario."
Depok: Universitas Indonesia, 2018
S-Pdf
UI - Skripsi Membership  Universitas Indonesia Library
cover
New York: IEEE Press, c1981
621.462 ADJ
Buku Teks  Universitas Indonesia Library
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