Download Green Electronics/Green Bottom Line. Environmentally by Lee H. Goldberg and Wendy Middleton (Eds.) PDF

By Lee H. Goldberg and Wendy Middleton (Eds.)

  • 'The ebook offers a concise account of the newest strategies and advancements within the rising self-discipline of layout for surroundings. The editor will be counseled at the sort of the ebook. it's a hugely readable account of the topic with each one bankruptcy being a good provided contribution to the literature. members contain working towards engineers from well-know businesses and lecturers from prime universities in North the US and Europe. Even during this fast-paced period, i'm yes that this ebook may be spoke of for a very long time. each engineer occupied with the perform of electronics production and/or layout may still locate this publication very beneficial.' - magazine of Electronics production, Vol. nine, No.1 . . .an first-class creation to environmentally liable engineering. -EDN journal ED This ebook offers you beneficial info for you to use now, case experiences that labored, and ideas approximately destiny developments. -EDN journal ED . . .it provides good engineering details and recommendation. -Test & dimension international i have by no means noticeable this kind of whole selection of useful information regarding designing with the earth's surroundings in brain. -Test & size global The ebook is definitely well worth the small expense, in truth the booklet expense might have been greater . . . -Newton advertising

Content:
Acknowledgments

, Pages xi-xii
Preface

, Pages xv-xviii
- advent: in case you imagine schooling is pricey, try out ignorance!: An interview with Dr. Amory lovins on know-how, the surroundings, and the existential pleasures of whole-system engineering

, Pages 3-12, Lee H. Goldberg
Chapter 1 - Designing energy-efficient desktops utilizing built-in strength management

, Pages 15-28, Gary Smerdon
Chapter 2 - power effective three-phase AC motor drives for equipment and business applications

, Pages 29-42, Radim Visinka
Chapter three - A high-voltage energy issue controller is helping increase strength quality

, Pages 43-56, Ondrej Pauk, Petr Lidik
Chapter four - Designing high-efficiency DSP-based motor controls for buyer goods

, Pages 57-65, Aengus Murray
Chapter five - layout for Disassembly, Reuse, and Recycling

, Pages 69-82, Pitipong Veerakamolmal, Surendra Gupta
Chapter 6 - Defining Electronics Recycling

, Pages 83-90, Craig Boswell
Chapter 7 - Sensor-based information recording for recycling: A inexpensive expertise for embedded product self-identification and standing reporting

, Pages 91-101, Markus Klausner, Wolfgang M. Grimm, Arpad Horvath
Chapter eight - A Survey of DfE software

, Pages 105-112, Joan Williams
Chapter nine - layout for surroundings: a published circuit board meeting example

, Pages 113-122, Sudarshan Siddhaye, Paul Sheng
Chapter 10 - towards built-in product life-cycle layout tools

, Pages 123-130, Brian Glazebrook
Introduction: digital production methods and the environment

, Pages 133-134, Christopher Rhodes
Chapter eleven - number of plastics utilizing price, structural, and environmental factors

, Pages 137-142, William Trumble
Chapter 12 - Battery choice and application—environmental considerations

, Pages 143-150, George L. Yender
Chapter thirteen - imposing eco-friendly published wiring board manufacturing

, Pages 153-160, Holly Evans, John W. Lott
Chapter 14 - No-lead solder assembly

, Pages 161-170, William Trumble
Chapter 15 - Chemical conversion coatings on digital equipment

, Pages 171-175, William Trumble
Introduction: Musings prior to a brand new dawn

, Pages 179-181, Ted D. Polakowski
Chapter sixteen - DfE for engineering managers: Making it count-DfE and the ground line

, Pages 185-192, Jill Matzke
Chapter 17 - Making it happen—DfE implementation

, Pages 193-199, Jill Matzke
Chapter 18 - Getting the maths correct: actual costing via product lifestyles cycles

, Pages 201-214, Kelly Weinschenk
Chapter 19 - layout for environment—A ecu logistics perspective

, Pages 215-224, Carsten Nagel
Chapter 20 - assembly the letter and spirit of environmental administration utilizing the ISO 14001 standard

, Pages 227-243, James Lamprecht
Chapter 21 - ISO 14001 for the surroundings and your backside line

, Pages 245-252, Jim Hart
Chapter 22 - past ISO 14000: ST microelectronics as a case learn in environmental leadership

, Pages 253-256, Carol Brown
Introduction

, Pages 259-263, Lee H. Goldberg
Chapter 23 - Designing a greater the following day this present day with self-disassembling electronics

, Pages 267-280, Joseph Chiodo, Eric H. Billett
Chapter 24 - Ultralight hybrid vehicles—principles and design

, Pages 281-296, Timothy C. Moore
Chapter 25 - the surroundings and nanotechnology

, Pages 297-301, Di Rodi Vincent F.
Appendix A - A case study

, Pages 305-310, William Trumble
Appendix B - Case study

, Pages 311-314, William Trumble, Pat Lawless
Appendix C - Case study

, Pages 315-321, William Trumble
Appendix D - Resources

, Pages 323-324
Appendix E - writer touch Information

, Pages 325-329
Index

, Pages 331-340

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Many systems today require an uninterruptable power supply (UPS) backup. The UPS usually is a battery-powered DC-to-AC converter that supplies the system when the AC line fails. These UPS systems normally are designed with a peak current limitation. If that peak represents a very narrow pulse, the rms power is substantially reduced. That is, with a poor power factor, the user must buy a UPS unit three to five times larger than otherwise would be needed. Consequently, the cost of UPS equipment also is a strong motivating factor in PFC implementation.

First, the lower peak line currents allow some downsizing of the chokes used in the EMI filter. Second, the peak current in the AC input rectifiers and line filter capacitor is reduced. Furthermore, an active power factor correction system can be configured to preregulate the bulk DC voltage, which offers several significant advantages. Foremost among these is the ability to operate from worldwide line voltages without range switching. Even within one voltage range, it is challenging to design a cascaded power supply which operates at peak efficiency across the entire range of potential variations in line voltage.

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