DC to DC converter的問題,透過圖書和論文來找解法和答案更準確安心。 我們找到下列包括價格和評價等資訊懶人包

DC to DC converter的問題,我們搜遍了碩博士論文和台灣出版的書籍,推薦Li,Nejabatkhah, Farzam,Tian, Hao寫的 Smart Hybrid AC/DC Microgrids: Power Management, Energy Management, and Power Quality Control 和Kazimierczuk, Marian K.,Saini, Dalvir K.,Ayachit, Agasthya的 Average Current-Mode Control of DC-DC Power Converters都 可以從中找到所需的評價。

另外網站SiC Power for On-Board DC/DC Converter | Wolfspeed也說明:The on-board DC/DC converter is responsible for taking the DC power from the battery and converting and regulating the voltage to meet the needs of this varying ...

這兩本書分別來自 和所出版 。

明新科技大學 電機工程系碩士班 蘇信銘所指導 黃禎岳的 無橋式功因修正轉換器研製 (2021),提出DC to DC converter關鍵因素是什麼,來自於功率因數修正器、平均電流控制法、圖騰柱型功率因數修正器。

而第二篇論文國立陽明交通大學 電機工程學系 廖育德所指導 郭浩毅的 應用於移動式 UHF 射頻充電的高效率且寬輸入範圍之電源管理晶片採用自適應負載/輸入功率匹配技術 (2021),提出因為有 無線充電、寬輸入範圍整流器、自適應負載、輸入功率匹配、MPPT的重點而找出了 DC to DC converter的解答。

最後網站Discover our range of industrial DC/DC converters - Premium ...則補充:Select power range value, output and input voltage, application and cooling and find your Premium industrial DC/DC converter.

接下來讓我們看這些論文和書籍都說些什麼吧:

除了DC to DC converter,大家也想知道這些:

Smart Hybrid AC/DC Microgrids: Power Management, Energy Management, and Power Quality Control

為了解決DC to DC converter的問題,作者Li,Nejabatkhah, Farzam,Tian, Hao 這樣論述:

SMART HYBRID AC/DC MICROGRIDSAddresses the technical aspects and implementation challenges of smart hybrid AC/DC microgridsHybrid AC/DC Microgrids: Power Management, Energy Management, and Power Quality Control provides comprehensive coverage of interconnected smart hybrid microgrids, their diffe

rent structures, and the technical issues associated with their control and implementation in the next generation of smart grids. This authoritative single-volume resource addresses smart hybrid microgrids power management, energy management, communications, power converter control, power quality, r

enewable generation integration, energy storage, and more.The book contains both basic and advanced technical information about smart hybrid AC/DC microgrids, featuring a detailed discussion of microgrid structures, communication technologies, and various configurations of interfacing power converte

rs and control strategies. Numerous case studies highlight effective solutions for critical issues in hybrid microgrid operation, control and power quality compensation throughout the text. Topics include control strategies of renewable energy and energy storage interfacing converters in hybrid micr

ogrids, supervisory control strategies of interfacing power converters for microgrid power management and energy microgrid, and smart interfacing power converters for power quality control. This volume: Includes a thorough overview of hybrid AC/DC microgrid concepts, structures, and applicationsDisc

usses communication and security enhancement techniques for guarding against cyberattacksProvides detailed controls of smart interfacing power electronics converters from distributed generations and energy storage systems in hybrid AC/DC microgridsProvides details on transient and steady-state power

management systems in microgridsDiscusses energy management systems, hierarchical control, multi-agent control, and advanced distribution management control of smart microgridsIdentifies opportunities to control power quality with smart interfacing power electronic convertersAddresses power quality

issues in the context of real-world applications in data centers, electric railway systems, and electric vehicle charging stationsSmart Hybrid AC/DC Microgrids: Power Management, Energy Management, and Power Quality Control is a valuable source of up-to-date information for senior undergraduate and

graduate students as well as academic researchers and industry engineers in the areas of renewable energy, smart grids, microgrids, and power electronics.

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無橋式功因修正轉換器研製

為了解決DC to DC converter的問題,作者黃禎岳 這樣論述:

本論文目的在研製一無橋式功因修正轉換器,硬體電路以圖騰柱型功率因數修正電路為核心,利用外迴路電壓感測電路與內迴路電流感測電路完成本控制。本研究採用平均電流控制法來實現功率因數修正功能。平均電流控制法以雙迴圈PI控制器來實現,由輸入電壓極性與波形角度傳給雙迴圈PI控制系統運算,外迴圈PI控制器控制電壓,內迴圈PI控制器控制電流,軟體是以瑞薩電子公司生產的R5F562TAADFP數位訊號處理器實現,經實測結果顯示功率因數可達0.98以上,總諧波失真率最大為11.644%。證明本控制器可達功率因數修正的效果。

Average Current-Mode Control of DC-DC Power Converters

為了解決DC to DC converter的問題,作者Kazimierczuk, Marian K.,Saini, Dalvir K.,Ayachit, Agasthya 這樣論述:

AVERAGE CURRENT-MODE CONTROL OF DC-DC POWER CONVERTERSAn authoritative one-stop guide to the analysis, design, development, and control of a variety of power converter systemsAverage Current-Mode Control of DC-DC Power Converters provides comprehensive and up-to-date information about average cur

rent-mode control (ACMC) of pulse-width modulated (PWM) dc-dc converters. This invaluable one-stop resource covers both fundamental and state-of-the-art techniques in average current-mode control of power electronic converters featuring novel small-signal models of non-isolated and isolated converte

r topologies with joint and disjoint switching elements and coverage of frequency and time domain analysis of controlled circuits. The authors employ a systematic theoretical framework supported by step-by-step derivations, design procedures for measuring transfer functions, challenging end-of-chapt

er problems, easy-to-follow diagrams and illustrations, numerous examples for different power supply specifications, and practical tips for developing power-stage small-signal models using circuit-averaging techniques. The text addresses all essential aspects of modeling, design, analysis, and simul

ation of average current-mode control of power converter topologies, such as buck, boost, buck-boost, and flyback converters in operating continuous-conduction mode (CCM). Bridging the gap between fundamental modeling methods and their application in a variety of switched-mode power supplies, this b

ook: Discusses the development of small-signal models and transfer functions related to the inner current and outer voltage loopsAnalyzes inner current loops with average current-mode control and describes their dynamic characteristicsPresents dynamic properties of the poles and zeros, time-domain r

esponses of the control circuits, and comparison of relevant modeling techniquesContains a detailed chapter on the analysis and design of control circuits in time-domain and frequency-domainProvides techniques required to produce professional MATLAB plots and schematics for circuit simulations, incl

uding example MATLAB codes for the complete design of PWM buck, boost, buck-boost, and flyback DC-DC convertersIncludes appendices with design equations for steady-state operation in CCM for power converters, parameters of commonly used power MOSFETs and diodes, SPICE models of selected MOSFETs and

diodes, simulation tools including introductions to SPICE, MATLAB, and SABER, and MATLAB codes for transfer functions and transient responsesAverage Current-Mode Control of DC-DC Power Converters is a must-have reference and guide for researchers, advanced graduate students, and instructors in the a

rea of power electronics, and for practicing engineers and scientists specializing in advanced circuit modeling methods for various converters at different operating conditions.

應用於移動式 UHF 射頻充電的高效率且寬輸入範圍之電源管理晶片採用自適應負載/輸入功率匹配技術

為了解決DC to DC converter的問題,作者郭浩毅 這樣論述:

近年來由於物聯網的興起,使得環境中佈建的無線感測器之需求快速上升。傳統的無線感測器之能量來源主要藉由化學電池提供,因此要具有較長的生命週期與較小的體積是相當困難的。無線能量擷取技術為透過環境中的能量來驅動電子電路的相關技術,提供無線感測節點所需的能量並且延長電池壽命。RF功率擷取方法是目前最常使用於短距離(數十公尺內)能量傳遞的方法之一,但由於目前的RF能量管理電路的高效率受限於窄小的輸入功率範圍,因此相關的應用依舊十分受限。本論文以應用於物聯網之無線能量擷取系統為出發點,除了使用可重構式技術來改善傳統交直流轉換架構之窄小輸入範圍的能量轉換曲線達成具有大動態輸入範圍之交直流轉換電路外,更藉由

後端包含負載調變電路的MPPT技術與低壓降穩壓器穩定輸出電壓值來提高高輸入功率時整體系統之效率。整體系統以CMOS 0.18μm製程製作,為一個全整合式之積體電路,其寬輸入動態範圍之交直流轉換電路具有54.2%之最佳轉換效率、-19.6dBm之靈敏度與20dB大輸入範圍且高轉換效率(Efficiency > 20%)。高轉換效率的能量擷取與高整合晶片將可以有效地解決過去RF能量擷取的效率不佳及能量浪費等問題,並且可以應用於更多功率以及體積限制的植入式生物感測器系統、智慧感測系統、自動電子收費系統貼片及無線充電等需要無線能量傳輸及穩定輸出電壓值的電路中。