美国Motorola李缉熙博士的讲座录音和课件,光盘700M,要的人联系我qq94299879,去年五月在深圳办的讲座,自己用录音笔录的,课件和讲座均为中文,目录如下Part 1 Design Technologies and Schemes
Lecture 1 Different Methodology between RF and Digital
Circuit Design 1 hour
(0.17 days)
1.1 Controversy
1.1.1 Impedance Matching
1.1.2 Key Parameter
1.1.3 Circuit Testing and Main Test Equipments
1.2 Differences of Digital and RF Blocks in a Communication System
1.2.1 Impedance
1.2.2 Current drain
1.2.3 Location
1.3 Conclusion
1.4 Notes for High Speed Digital Circuit Design
Lectue 2 Voltage and Power Transportation 2 hours
(0.33 days)
2.1 Voltage Delivered from a Source to a Load
2.1.1 General Expression of Voltage Delivered from a Source to a Load
2.1.2 Additional Jitter or Distortion in a Digital Circuit Block
2.2 Power Delivered from a Source to a Load
2.2.1 General Expression of Power Delivered from a Source to a Load
2.2.2 Power Instability
2.2.3 Additional Power Loss
2.2.4 Additional Distortion
2.2.5 Additional Interference
2.3 Impedance Conjugate Matching
2.3.1 Maximization of Power Transportation
2.3.2 Power Transportation without Phase Shift
2.3.3 Impedance Matching Network
2.3.4 Necessity of Impedance Matching
2.4 Additional Effects of Impedance Matching
2.4.1 Voltage Pumped Up by Means of Impedance Matching
2.4.2 Power Measurement
Appendixes
2A.1 VSWR and Other Reflection and Transmission Coefficients
2A.2 Relationships between Power (dBm), Voltage (V), and Power (Watt)
Lecture 3 Impedance Matching in Narrow Band Case 4 hours
(0.67 days)
3.1 Introduction
3.2 Impedance Matching by Means of Return Loss Adjustment
3.2.1 Return Loss Circles on Smith Chart
3.2.2 Relationship between Return Loss and Impedance Matching
3.2.3 Implementation of an Impedance Matching Network
3.3 Impedance Matching Network Built by One Part
3.3.2 One Part Inserted into Impedance Matching Network in Series
3.3.3 One Part Inserted into Impedance Matching Network in Parallel
3.4 Impedance Matching Network Built by Two Parts
3.4.1 Regions in the Smith Chart
3.4.2 Value of Parts
3.4.3 Selection of Topology
3.5 Impedance Matching Network Built by Three Parts
3.5.1 “Π” and “T” Types
3.5.2 Recommended Topologies
3.6 Impedance Matching when ZS or ZL is not 50 Ω
3.7 Parts in an Impedance Matching Network
Appendixes
3A.1 Fundamentals of the Smith Chart
3A.2 Formula for a Two Parts Impedance Matching Network
3A.3 Topology Restrictions of the Two Parts Impedance Matching Network
3A.4 Topology Restrictions of the Three Parts Impedance Matching Network
3A.5 Conversion between “Π” and “T” type Matching Networks
3A.6 Possible “Π” and “T” Impedance Matching Networks
Lecture 4 Impedance Matching in Wide Band Case 3 hours
(0.5 days)
4.1 Appearance of Nar