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Circuit Design on Plastic Foils 2015 ed. [Kõva köide]

  • Formaat: Hardback, 130 pages, kõrgus x laius: 235x155 mm, kaal: 3376 g, 53 Illustrations, color; 50 Illustrations, black and white; X, 130 p. 103 illus., 53 illus. in color., 1 Hardback
  • Sari: Analog Circuits and Signal Processing
  • Ilmumisaeg: 15-Dec-2014
  • Kirjastus: Springer International Publishing AG
  • ISBN-10: 3319114263
  • ISBN-13: 9783319114262
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  • Kõva köide
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  • Formaat: Hardback, 130 pages, kõrgus x laius: 235x155 mm, kaal: 3376 g, 53 Illustrations, color; 50 Illustrations, black and white; X, 130 p. 103 illus., 53 illus. in color., 1 Hardback
  • Sari: Analog Circuits and Signal Processing
  • Ilmumisaeg: 15-Dec-2014
  • Kirjastus: Springer International Publishing AG
  • ISBN-10: 3319114263
  • ISBN-13: 9783319114262
Teised raamatud teemal:

This book illustrates a variety of circuit designs on plastic foils and provides all the information needed to undertake successful designs in large-area electronics. The authors demonstrate architectural, circuit, layout, and device solutions and explain the reasons and the creative process behind each. Readers will learn how to keep under control large-area technologies and achieve robust, reliable circuit designs that can face the challenges imposed by low-cost low-temperature high-throughput manufacturing.

1 Introduction
1(8)
1.1 Silicon and Plastic
1(2)
1.2 Challenges in Electronics on Flexible Substrates
3(2)
1.3 Book Aims and Overview
5(4)
References
6(3)
2 Applications of Large-area Electronics on Foil
9(6)
2.1 From Miniaturization to Flexible Substrates
9(1)
2.2 Applications
10(5)
2.2.1 Large-area Applications
10(1)
2.2.2 Low-Cost Applications
11(2)
References
13(2)
3 State of the Art in Circuit Design
15(10)
3.1 Introduction
15(4)
3.2 Design-Environment Setup
19(1)
3.3 Circuit Design
20(5)
References
22(3)
4 Device Modeling and Characterization
25(18)
4.1 Transistor Model
25(6)
4.2 Measurements and Characterization
31(12)
4.2.1 Parameters Extraction
33(7)
4.2.2 Dynamic Behavior
40(2)
References
42(1)
5 Sensor Frontend Architecture
43(10)
5.1 Analog Signal Conditioning
43(2)
5.2 Data Conversion
45(3)
5.3 Robust Digital Blocks
48(5)
References
52(1)
6 Circuit Design for Analog Signal Conditioning
53(28)
6.1 A Filter Based on a Tunable Transconductor
53(12)
6.1.1 The Proposed GmC Filter
53(2)
6.1.2 Transconductor Analysis
55(2)
6.1.3 Transconductor Design
57(3)
6.1.4 Transconductor Realization
60(1)
6.1.5 Transconductor Measurements and Simulations
61(2)
6.1.6 Tunable Filter
63(2)
6.2 Amplifiers
65(14)
6.2.1 A Continuous-time Amplifier
65(5)
6.2.2 A Discrete-Time Amplifier
70(9)
6.3 Conclusions
79(2)
References
80(1)
7 Circuit Design for Data Conversion
81(30)
7.1 A Synchronous Latched Comparator
81(11)
7.1.1 Comparator Topology and Analysis
81(3)
7.1.2 The Proposed Latched Comparator
84(2)
7.1.3 Latch Design and Simulation
86(3)
7.1.4 Latch Realization
89(1)
7.1.5 Latch Measurements
89(3)
7.2 A Digital to Analog Converter Based on a Metal-Oxide Technology
92(8)
7.2.1 GIZO Technology
92(2)
7.2.2 The Proposed Current-Steering DAC
94(6)
7.3 VCO-Based Analog to Digital Converter
100(8)
7.3.1 The Proposed VCO-Based ADC
100(8)
7.4 Conclusions
108(3)
References
109(2)
8 Circuit Design for Digital Processing
111(18)
8.1 The Proposed Positive-Feedback Level Shifter Logic
111(16)
8.1.1 PLS Logic Analysis
112(3)
8.1.2 PLS Inverter Design
115(1)
8.1.3 Test Foil Design
115(2)
8.1.4 Test Foil Measurements
117(10)
8.2 Conclusions
127(2)
References
128(1)
9 Conclusions
129