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Deshang Sha
"Written by experts, this book is based on recent research findings in high-frequency isolated bidirectional DC-DC converters with wide voltage range. It presents advanced power control methods and new isolated bidirectional DC-DC topologies to improve the performance of isolated bidirectional converters. Providing valuable insights, advanced methods and practical design guides on the DC-DC conversion that can be considered in applications such as microgrid, bidirectional EV chargers, and solid state transformers, it is a valuable resource for researchers, scientists, and engineers in the field of isolated bidirectional DC-DC converters."
Singapore: Springer Singapore, 2019
e20511017
eBooks  Universitas Indonesia Library
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Chen, Yanfeng
"This book focuses on the applications of Equivalent-Small-Parameter Method (ESPM) in solving the steady-state periodic solutions, as well as stability analysis, of kinds of open-loop or closed-loop operated DC/DC converters, such as PWM, quasi-resonant and resonant ones. The analytical expressions of DC components and harmonics of state variables (inductor current and capacitor voltage) with DC/DC converters can be obtained by ESPM, which can be helpful to understand the nonlinear operating mechanism of switched-mode converters. It can also be useful for stability analysis and design for practical converters. Modeling and analysis on all kinds of DC/DC converters are introduced in detail in this book, along with a large amount of simulation or experimental waveforms to verify the correctness of the theoretical analysis based on ESPM."
Singapore: Springer Singapore, 2019
e20502829
eBooks  Universitas Indonesia Library
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Casaleiro, João Carlos Ferreira de Almeida
"This book presents a tutorial review of van der Pol model, a universal oscillator model for the analysis of modern RC−oscillators in weak and strong nonlinear regimes. A detailed analysis of the injection locking in van der Pol oscillators is also presented. The relation between the van der Pol parameters and several circuit implementations in CMOS nanotechnology is given, showing that this theory is very useful in the optimization of oscillator key parameters, such as: frequency, amplitude and phase relationship. The authors discuss three different examples: active coupling RC−oscillators, capacitive coupling RC−oscillators, and two-integrator oscillator working in the sinusoidal regime.
· Provides a detailed tutorial on the van der Pol oscillator model, which can be the basis for the analysis of modern RC−oscillators in weak and strong nonlinear regimes;
· Demonstrations the relationship between the van der Pol parameters and several circuit implementations in CMOS nanotechnology, showing that this theory is a powerful tool in the optimization of key oscillator parameters;
· Provides three circuit prototypes implemented in modern CMOS nanotechnology in the GHz range, with applications in low area, low power, low cost, wireless sensor network (WSN) applications (e.g. IoT, BLE)."
Switzerland: Springer Cham, 2019
e20502871
eBooks  Universitas Indonesia Library
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Bera, Subhash Chandra
"The book discusses active devices and circuits for microwave communications. It begins with the basics of device physics and then explores the design of microwave communication systems including analysis and the implementation of different circuits. In addition to classic topics in microwave active devices, such as p-i-n diodes, Schottky diodes, step recovery diodes, BJT, HBT, MESFET, HFET, and various microwave circuits like switch, phase shifter, attenuator, detector, amplifier, multiplier and mixer, the book also covers modern areas such as Class-F power amplifiers, direct frequency modulators, linearizers, and equalizers. Most of the examples are based on practical devices available in commercial markets and the circuits presented are operational. The book uses analytical methods to derive values of circuit components without the need for any circuit design tools, in order to explain the theory of the circuits. All the given analytical expressions are also cross verified using commercially available microwave circuit design tools, and each chapter includes relevant diagrams and solved problems. It is intended for scholars in the field of electronics and communication engineering."
Singapore: Springer Nature, 2019
e20509252
eBooks  Universitas Indonesia Library
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Riko Afdhillah
"Skripsi ini membahas mengenai rancang bangun dan analisa Rangkaian Wide Range Voltage To Frequency Converter. Perancangan dilakukan dengan menggunakan software Multisim 11.0 dan Altium Designer Summer 2009, yang diterapkan pada papan PCB (printed circuit board). Rangkaian ini dibutuhkan dalam dunia komunikasi dan keperluan laboratorium, terutama rangkaian yang menghasilkan sinyal yang stabil dengan rentang frekuensi yang sangat lebar.
Berdasarkan rancangan desain rangkaian yang telah dilakukan oleh Jim Williams [3], dilakukan penyesuaian konfigurasi pada bagian frequency divider, yaitu pada IC74S74 yang berfungsi sebagai toggle dan hold dimana rangkaian ini akan membagi frekuensi feedback menjadi frekuensi yang lebih kecil. Selanjutnya dilakukan pemberian variasi terhadap nilai kapasitor kompensasi pada penguat operational amplifier yang akan mempengaruhi loop sistem.
Hasil yang diperoleh merupakan grafik uji linieritas dan grafik uji kestabilan alat. Untuk uji linieritas, didapatkan hasil koefisien korelasi R yang lebih besar pada kapasitor 0,1μF yaitu 0,999796 dimana nilai koefisien korelasi yang lebih mendekati nilai satu akan menunjukkan hasil linieritas yang lebih tinggi. Untuk uji kestabilan alat, didapatkan hasil koefisien korelasi R yang lebih kecil pada kapasitor 0,1μF yaitu 0,042569 dimana nilai koefisien korelasi yang lebih mendekati nilai nol akan menunjukkan hasil kestabilan yang lebih tinggi. Linieritas alat yang dihasilkan memiliki rentang dari 0 Hz hingga 21,5 MHz.

This final project discusses the design and analysis of circuit Wide Range Voltage To Frequency Converter. The design is done using Multisim 11.0 and Altium Designer Summer 2009 software, which applied to the board PCB (printed circuit board). The circuit is needed in the world of communication and to obtain a stable signal with a very wide frequency range.
Based on the design of the circuit design was done by Jim Williams [3], made adjustments to the configuration of the frequency divider, which is the IC74S74 that serves as a toggle and hold circuit which divides the frequency of feedback into smaller frequency. Then performed giving the variation of the operational amplifier compensation capacitor on the amplifier that will affect the loop system.
The results obtained is the graph of linearity test and stability test tool. For the linearity test, showed a correlation coefficient R was greater in 0.1 μF capacitor is 0.999796 which the correlation coefficient value which is closer to the value of one would indicate a higher linearity results. To test the stability of the instrument, showed a correlation coefficient R is smaller at 0.1 μF capacitor is 0.042569 which the correlation coefficient values closer to zero value would indicate a higher stability results. Linearity of the resulting instrument has a range of 0 Hz to 21.5 MHz.
"
Depok: Fakultas Teknik Universitas Indonesia, 2012
S43069
UI - Skripsi Open  Universitas Indonesia Library
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"Mengikuti tren global dari mengadopsi energi terbarukan ke dalam sistem tenaga listrik, banyak arus langsung (DC) rumah konsep yang diusulkan, karena sebagian besar energi terbarukan sumber tegangan DC. Penulisan ilmiah ini membahas pengembangan pengisian baterai yang ringan, rendah profil, dan terpasang di dalam sepeda motor listrik yang dapat menghemat ruang dan kompatibel untuk rumah sistem DC. Oleh karena itu, inverter yang umum digunakan dapat dihilangkan karena menghasilkan kerugian konversi daya yang lebih rendah. Desain topologi Dual Active Bridge (DAB) dalam frekuensi switching tinggi sebesar 1 MHz dan menggunakan magnetis planar ini dilakukan untuk mendesain dan menentukan sistem kontrol dari DC-DC konverter yang paling sesuai. Untuk mencapai efisiensi tinggi dalam frekuensi switching tinggi dan untuk mengurangi ukuran charger, perangkat divais elektronika wide band gap (wbg) yang digunakan. Langkah-langkah metodologi desain diusulkan dan divalidasi melalui simulasi pada rangkaian yang mengonversi 120 V dari input ke tegangan output 55 V di 550 W. Hasil dari penelitian ini menunjukkan semua metode phase shift modulation (PSM) berhasil didesain untuk mencapai ZVS. Single Phase Shift merupakan PSM yang terbaik untuk penerapan kasus ini karena memiliki Irms yang paling rendah. Penelitian ini berhasil membuktikan bahwa DAB dapat beroperasional secara dua arah. Desain dibuat hingga tahap pembuatan footprint dengan komponen magnetis menggunakan 84,7% dari total ukuran komponen.

Following the global trend of adopting renewable energy into electric power system, many direct current (DC) House concepts are proposed, because most of the renewable energy sources are DC voltage. This Scientific writing discusses the development of lightweight, low profile, and the built-in electric bike charger that does not take up excessive space and are compatible for home DC systems. Therefore, commonly used inverters can be eliminated as it generates lower power conversion losses. The topology design for the Dual Active Bridge (DAB) topology in a high switching frequency of 1 MHz and using a magnetic planar is performed to design and determine the control system of the most suitable DC-DC converter. To achieve high efficiency in high switching frequencies and to reduce the size of the charger, wide band gap (WBG) devices are used. Step-by-step in design methodology is proposed and validated through simulation on the circuit convert 120 V from input to output voltage of 55 V at 550 W. The result of this research is the Phase shift modulation (PSM) was successfully designed to achieve ZVS. Single Phase Shift is the best PSM for the application of this case because it has the lowest Irms. This research proved that DAB can operate bidirectional. The design is made to the stage of footprint design with the magnetics component use 84,7% of total size of the components."
Switzerland: Springer Nature, 2019
eBooks  Universitas Indonesia Library
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Muhammad Irfan Alfath
"Mengikuti tren global dari mengadopsi energi terbarukan ke dalam sistem tenaga listrik, banyak arus langsung (DC) rumah konsep yang diusulkan, karena sebagian besar energi terbarukan sumber tegangan DC. Penulisan ilmiah ini membahas pengembangan pengisian baterai yang ringan, rendah profil, dan terpasang di dalam sepeda motor listrik yang dapat menghemat ruang dan kompatibel untuk rumah sistem DC. Oleh karena itu, inverter yang umum digunakan dapat dihilangkan karena menghasilkan kerugian konversi daya yang lebih rendah. Desain topologi Dual Active Bridge (DAB) dalam frekuensi switching tinggi sebesar 1 MHz dan menggunakan magnetis planar ini dilakukan untuk mendesain dan menentukan sistem kontrol dari DC-DC konverter yang paling sesuai. Untuk mencapai efisiensi tinggi dalam frekuensi switching tinggi dan untuk mengurangi ukuran charger, perangkat divais elektronika wide band gap (wbg) yang digunakan. Langkah-langkah metodologi desain diusulkan dan divalidasi melalui simulasi pada rangkaian yang mengonversi 120 V dari input ke tegangan output 55 V di 550 W. Hasil dari penelitian ini menunjukkan semua metode phase shift modulation (PSM) berhasil didesain untuk mencapai ZVS. Single Phase Shift merupakan PSM yang terbaik untuk penerapan kasus ini karena memiliki Irms yang paling rendah. Penelitian ini berhasil membuktikan bahwa DAB dapat beroperasional secara dua arah. Desain dibuat hingga tahap pembuatan footprint dengan komponen magnetis menggunakan 84,7% dari total ukuran komponen.

Following the global trend of adopting renewable energy into electric power system, many direct current (DC) House concepts are proposed, because most of the renewable energy sources are DC voltage. This Scientific writing discusses the development of lightweight, low profile, and the built-in electric bike charger that does not take up excessive space and are compatible for home DC systems. Therefore, commonly used inverters can be eliminated as it generates lower power conversion losses. The topology design for the Dual Active Bridge (DAB) topology in a high switching frequency of 1 MHz and using a magnetic planar is performed to design and determine the control system of the most suitable DC-DC converter. To achieve high efficiency in high switching frequencies and to reduce the size of the charger, wide band gap (WBG) devices are used. Step-by-step in design methodology is proposed and validated through simulation on the circuit convert 120 V from input to output voltage of 55 V at 550 W. The result of this research is the Phase shift modulation (PSM) was successfully designed to achieve ZVS. Single Phase Shift is the best PSM for the application of this case because it has the lowest Irms. This research proved that DAB can operate bidirectional. The design is made to the stage of footprint design with the magnetics component use 84,7% of total size of the components."
Depok: Fakultas Teknik Universitas Indonesia, 2020
S-pdf
UI - Skripsi Membership  Universitas Indonesia Library
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Safari, Leila
"This book describes a new way to design and utilize Instrumentation Amplifiers (IAs) by taking advantages of the current-mode (CM) approach. For the first time, all different topologies of CMIAs are discussed and compared, providing a single-source reference for instrumentation and measurement experts who want to choose a topology for a specific application. The authors also explain major challenges in designing CMIAs, so the book can be useful for anyone studying instrumentation amplifiers, and even other analog circuits. Coverage also includes various CM signal processing techniques employed in CMIAs, and applications of the CMIAs in biomedical and data acquisition are demonstrated. "
Switzerland: Springer Cham, 2019
e20502880
eBooks  Universitas Indonesia Library
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Hekal, Sherif
"This book addresses the design challenges in near-field wireless power transfer (WPT) systems, such as high efficiency, compact size, and long transmission range. It presents new low-profile designs for the TX/RX structures using different shapes of defected ground structures (DGS) like (H, semi-H, and spiral-strips DGS). Most near-field WPT systems depend on magnetic resonant coupling (MRC) using 3-D wire loops or helical antennas, which are often bulky. This, in turn, poses technical difficulties in their application in small electronic devices and biomedical implants. To obtain compact structures, printed spiral coils (PSCs) have recently emerged as a candidate for low-profile WPT systems. However, most of the MRC WPT systems that use PSCs have limitations in the maximum achievable efficiency due to the feeding method. Inductive feeding constrains the geometric dimensions of the main transmitting (TX)/receiving (RX) resonators, which do not achieve the maximum achievable unloaded quality factor. This book will be of interest to researchers and professionals working on WPT-related problems."
Singapore: Springer Singapore, 2019
e20503034
eBooks  Universitas Indonesia Library
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Schuermans, Stefan
"This book describes a flexible and largely automated methodology for adding the estimation of power consumption to high level simulations at the electronic system level (ESL). This method enables the inclusion of power consumption considerations from the very start of a design. This ability can help designers of electronic systems to create devices with low power consumption. The authors also demonstrate the implementation of the method, using the popular ESL language “SystemC”. This implementation enables most existing SystemC ESL simulations for power estimation with very little manual work. Extensive case-studies of a Network on Chip communication architecture and a dual-core application processor “ARM Cortex-A9” showcase the applicability and accuracy of the method to different types of electronic devices. The evaluation compares various trade-offs regarding amount of manual work, types of ESL models, achieved estimation accuracy and impact on the simulation speed.
- Describes a flexible and largely automated ESL power estimation method;
- Shows implementation of power estimation methodology in SystemC;
- Uses two extensive case studies to demonstrate method introduced."
Switzerland: Springer Cham, 2019
e20502998
eBooks  Universitas Indonesia Library
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