ME 333 Introduction to Mechatronics
Approximate Syllabus, Winter Quarter, 2002

Week 1
Tues What is mechatronics? Example systems and architecture. Basic circuits review: current and voltage sources, resistance, capacitance, inductance, constitutive laws, Kirchoff¹s current and voltage laws.
Thurs Basic nonlinear elements: diodes and transistors. Prep reading: H&A 2.1-2.5, 2.7, 3.1-3.4
Week 2
Tues Nonlinear circuit elements (cont.)
Wed Lab 1: The Furby (motor control).
Thurs Nonlinear circuit elements (cont.)
Week 3
Tues Review of C programming. Basic constructs, for and while loops, if/else, data types, arrays, constants, functions, passing arguments and pointers. Prep reading: Bolton, Chapter 17 (C Language); sample C program; Furby program.
Wed Lab 2: The Furby (encoder and home switch).
Thurs C programming continued. Number systems: binary, hexadecimal. Computer I/O cards and the Servo-to-Go (STG) card. Polling and interrupts.
Week 4
Tues Single-board computers, the Handyboard, creating and downloading a program in IC.
Wed Lab 3: The Handyboard single-board computer.
Thurs Op-amps and simple sensors. Signal conditioning, converting to TTL level, interfacing to the Handyboard. Prep reading: H&A Chapter 5.
Week 5
Tues Digital design and integrated circuits. Combinational and sequential. Interfacing to the Handyboard. A/D, D/A, counters, timers. Reading: H&A 5.13, 7.3-7.5.
Wed Lab 4: Sensors.
Thurs DC motor theory, controlling a DC motor, relays, pulse-width modulation, H- bridges. (Closed-loop control with an encoder or tachometer.) Reading: H&A 9.1-9.5, handout with Maxon motor data sheet, motor equations, L293D data sheet, and push-pull current amplification circuit to augment the Handy Board drivers.
Week 6
Tues Stepper motors. Prep reading: H&A 9.6-9.7, web page on stepper motors.
Wed Lab 5: Actuators.
Thurs Motor sizing. Power transmission: gears (rack and pinion, spur, planetary, worm, bevel, crown, harmonic) and belt drives; torque, speed, and power equations, efficiency, inertia, reflected inertia, inertia matching.
Week 7
Tues Power transmission continued.
Wed Lab time: Machine shop training.
Thurs Power transmission continued. Linkages, cams, and bearings.
Week 8
Tues Student project presentations.
Wed Lab time: Machine shop training.
Thurs Electrical noise, isolation, grounding, shielding. Reading: H&A 2.9, 2.10.
Week 9
Tues Digital circuit design. H&A Chapter 6.
Wed Lab time: Project consultation.
Thurs Special topic.
Week 10
Tues Special topic.
Wed Lab time: Project consultation.
Thurs Project review.