Difference between revisions of "Lecture Notes"
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*[[media:CSE_462M_COURSE_INTRODUCTION.pdf|Course Introduction]] | *[[media:CSE_462M_COURSE_INTRODUCTION.pdf|Course Introduction]] | ||
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*[[media:0714IFD1.pdf|Use Advanced PCB Technology to Produce 50% Smaller Product Designs]] | *[[media:0714IFD1.pdf|Use Advanced PCB Technology to Produce 50% Smaller Product Designs]] | ||
*[[media:Reflection_Lecture.pdf|Reflection Lecture]] | *[[media:Reflection_Lecture.pdf|Reflection Lecture]] | ||
*[[media:Maximum_ExpressPCB_Trace_Impedance.pdf|Maximum ExpressPCB Trace Impedance]] | *[[media:Maximum_ExpressPCB_Trace_Impedance.pdf|Maximum ExpressPCB Trace Impedance]] | ||
+ | *[[media:Oscillators_and_Clock_Distribution.pdf|Oscillators and Clock Distribution]] | ||
+ | *[[media:Lumped_Lecture.pdf|Lumped Lecture]] | ||
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*[[media:NTSC_Video.pdf|NTSC Video]] | *[[media:NTSC_Video.pdf|NTSC Video]] | ||
*[[media:HP_Mini_10_VGA_HS_and_VS.pdf|HP Mini 10 VGA HS and VS Signals]] | *[[media:HP_Mini_10_VGA_HS_and_VS.pdf|HP Mini 10 VGA HS and VS Signals]] | ||
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*[[media:EVERYTHING_YOU_ALWAYS_WANTED.pdf|VHDL Lecture]] | *[[media:EVERYTHING_YOU_ALWAYS_WANTED.pdf|VHDL Lecture]] | ||
*[[media:ISE_VGA_Tutorial.pdf|Xilinx ISE 14.7 VGA Tutorial]] | *[[media:ISE_VGA_Tutorial.pdf|Xilinx ISE 14.7 VGA Tutorial]] | ||
*[[media:Simulation_Tutorial.pdf|Xilinx ISE Simulation Tutorial]] | *[[media:Simulation_Tutorial.pdf|Xilinx ISE Simulation Tutorial]] | ||
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*[[media:State_Equal_Output_Moore_Example_Fixed.pdf|State Equal Output Moore Machine Example]] | *[[media:State_Equal_Output_Moore_Example_Fixed.pdf|State Equal Output Moore Machine Example]] | ||
*[[media:Metastability 1.pdf|Anomalous Behavior of Synchronizer and Arbiter Circuits]] | *[[media:Metastability 1.pdf|Anomalous Behavior of Synchronizer and Arbiter Circuits]] | ||
*[[media:Metastability 2.pdf|Measured Flip-Flop Responses to Marginal Triggering]] | *[[media:Metastability 2.pdf|Measured Flip-Flop Responses to Marginal Triggering]] | ||
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*[[media:ieee_codeofethics.pdf|IEEE Code of Ethics]] | *[[media:ieee_codeofethics.pdf|IEEE Code of Ethics]] | ||
*[[media:Employment Contract - Clean.pdf|Employment Contract]] | *[[media:Employment Contract - Clean.pdf|Employment Contract]] |
Revision as of 18:00, 4 February 2016
- Use Advanced PCB Technology to Produce 50% Smaller Product Designs
- Reflection Lecture
- Maximum ExpressPCB Trace Impedance
- Oscillators and Clock Distribution
- Lumped Lecture
- State Equal Output Moore Machine Example
- Anomalous Behavior of Synchronizer and Arbiter Circuits
- Measured Flip-Flop Responses to Marginal Triggering
Links:
PCB Trace Impedance Calculator