Design Constraint Analysis Team KANG Group 1. Sentry Gun Design and build a turret and armature structure with the ability to detect, track and fire upon.

Slides:



Advertisements
Similar presentations
ECE 477 Design Review Team 16 Neil Kumar, Scott Stack, Jon Roose, John Hubberts.
Advertisements

Goal-line technology Team INTERNATIONAL Marko Bundalo Ponphet Homchanh
Greg Beau SerajAnanya. Outline  Project overview  Project-specific success criteria  Block diagram  Component selection rationale  Packaging design.
Slide 1 Freescale Semiconductor. Freescale™ and the Freescale logo are trademarks of Freescale Semiconductor, Inc. All other product or service names are.
FLIGHT READINESS REVIEW TEAM HAWAII. LEO HANO FULL SCALE LOW POWER March 13, 2011 Motor = K780R.
Prof. Kristofer S.J. Pister’s team Berkeley Sensor and Actuator Center University of California, Berkeley.
Design Constraints. Abstract  Design and build a compact robot to traverse a maze.  Use the robot to generate an ASCII representation of the entire.
You’ve Got SARS!! Group 6 Brent Anderson Lauren Cutsinger Martin Gilpatric Michael Oberg Matthew Taylor Capstone Spring 2006.
1 Color Discriminating Tracking System Lloyd Rochester Sam Duncan Ben Schulz Fernando Valentiner.
Robotically Actuated Prevention/Intervention Device Full of Innovative and Responsible Engineering Critical Design Review February 25, 2010 Riley Pack.
Capstone Design Project Plan Team SAUSAGES Ryan Campbell Anne Carrier Gonzalo Gonzalez Bryan Grider Steve Kerkmaz Ziad Mohieddin EE 401 – EE Design I Instructor.
Laser Tracking System (LTS) Team Lazer: Son Nguyen Jassim Alshamali Aja ArmstrongMatt Aamold.
Twitch Plays ECE477 ECE 477 Design Review Team 1 − Spring 2015 Hannan Harlan Root Tornquist.
Capstone PDR Fall 2005 Paintball Gun IR Sensing and Tracking Team Doki Doki: Matt Freeman (EE) James Kirby (ECE) Juan Rivera (EE)
Camera specifications -3 channels for streaming -FullHD capability (1980x1080 resolution) -MP4, H.264 or MJPEG encoding -Motion detection sensors -IR.
Engineering 1040: Mechanisms & Electric Circuits Fall 2011 Introduction to Embedded Systems.
Tejas D Kulkarni Abhisheyk Gaur Himanshu Raghav Ankur Mishra.
TCSP – Design Constraint Analysis. Design Constraints Primary Constraints - Weight - Component Size - Power Consumption Secondary Constraints - Navigational.
Digital Camera Chad Hantak COMP December 12, 2003.
Little arduino microcontrollers Meghan Jimenez 12 February 2014.
Background   Who does this project addresses to?   Handicapped.   Amputated limbs.   Paralyzed.   Motivation Statistics.
Long Range Vehicle Control (Super Tank) Jason Holmes Matt Wickesberg Matt Guenette Michael Piercy.
ECE 477 Design Review Team 2  Spring 2010 Digi-Brush Josh LongCaleb Ayew-ewKatie Schremser.
o Portable low-cost aerial drone that can be used for reconnaissance o Relay real-time video and data, like location, heading, battery life o Take high-resolution.
Matt Waldersen T.J. Strzelecki Rick Schuman Krishna Jharjaria.
Wall-E Prototype I Team 1 Xin Jin
Group 14: Brian Crone Matt Finn Samuel Oshin Yonatan Feleke.
RoboNova 1.
FLAC Audio Player An ability to decode files stored in the FLAC format. An ability to select files stored on the device. An ability to display visualization.
Team Scribacious Rabble Design Constraint Analysis Paul Rosswurm Mitch Erdbruegger Ben Kobin William Hess.
ECE 477 Design Review Team 1  Spring 2008 Alan BernsteinIan AlsmanIlya VeygmanDarshan Shah.
AT91 Products Overview. 2 The Atmel AT91 Series of microcontrollers are based upon the powerful ARM7TDMI processor. Atmel has taken these cores, added.
Jason Holmes Matt Wickesberg Michael Piercy Matt Guenette Team 12 – Super Tank February 15, 2012.
Grant Thomas Anthony Fennell Justin Pancake Chris McCord TABLEGAMES UNLIMITED.
Eric Tarun Craig Dave ECE 477 Design Review Team 9  Spring 2006 Galamback Chawla Noble Kristof.
ECE 477 Design Review Team 5  Spring 2010 Fred Grandlienard Andrew Gregor Kevin Mohr Ryan DeFord.
Adam Hendrickson Our project is to design and build an electronic monopoly game console. The console will output the board and sound to a monitor and player.
Alex Wanamaker.  2 astable 555 timer circuits  Blinking rate: ~1.1 seconds  Q1 and Q2 used to provide additional current for the circuit beyond.
Our Project Next generation communication system for vehicles ▫Simple, real-time visual communication Multi-touch input ▫Driver’s gestures produce an.
The “Drink Mixer” Design Constraints. Project Success Criteria An ability to digitally mix audio and adjust individual levels An ability to digitally.
Team 8 Real-Time Capture Display (RCD) Laser System Presented by Danny Barjum Team Members: Corey Lane, Ryan Scott & Danny Barjum.
Team 3 Ashwin Shankar Upsham Dawra Samit Sura Joe Katz.
Eric Glover Steve Andre Shaun Greene Russell Willmot.
Μ [sic] design constraints wesley :: chris :: dave :: josh.
Team 9 OmniGlove Jacob Wiles. Hardware Design Major Parts: 32-Bit Microcontroller - PIC32MX664F128H – 64 Pin TQFP – 12x12x1 9-Axis Accelerometer - MPU-9150.
Team01: Zelun Tie The design project Wall-E Prototype I is an intelligent automated trash collecting robot with obstacle detection capability. The robot.
Team 6. Guitar Audio Amplifier Audio Codec DSP Wireless Adapter Motor Array PC LCD Display LED Arrays Pushbutton or RPG Input Device
Team 4: The Beancounters Kyle Haver Ethan Price Wesley Tso Shicheng Guo SOFTWARE DESIGN NARRATIVE.
THE MOST SUCCESSFUL C2000 MCU
ECE 477 Design Review Team 13  Spring 2007
DSC - fundamente MPU MCU DSP DSC Alternative Freescale
Software Design Team KANG Group 1.
Tracking Camera Platform
Marble Maze Jordan Wagner
Introduction to Microprocessors and Microcontrollers
ECE 477 Senior Design Group 3  Fall 2007
ECE 477 Team 18 - Timothy Brown
Camera Component Selection Rationale:
ECE 477 Digital Systems Senior Design Project  Spring 2008
Design Constraint Andrew Kasha
Team KANG Ilya Veygman Alan Bernstein Ian Alsman Darshan Shah
ECE 477 Design Review Team 6 - Spring 2012
Presented by Yuntian Lu
Patent Liability Team KANG Group 1.
ECE 477 Senior Design Group 1  Spring 2008
Team 3 Humphrey's Treasure Chest Design Constraint Analysis
ECE 477 Final Presentation Team 1  Spring 2008
ECE 477 Digital Systems Senior Design Project  Spring 2006
ECE 477 Senior Design Group 3  Spring 2011
TCSP – Design Constraint Analysis
Presentation transcript:

Design Constraint Analysis Team KANG Group 1

Sentry Gun Design and build a turret and armature structure with the ability to detect, track and fire upon targets using a camera, motion sensors and a mounted weapon.

Constraints Overview Camera Requirements Camera Requirements DSP Requirements DSP Requirements Microcontroller Requirements Microcontroller Requirements

Camera Requirements Digital Output Video Camera Digital Output Video Camera QVGA (320 X 240 Resolution) QVGA (320 X 240 Resolution) Frame Rate: ~15 frames/second Frame Rate: ~15 frames/second

Part Choices Camera: Camera: C3088 camera module with OV6620 sensor chipC3088 camera module with OV6620 sensor chip 356x292 at 50Hz frame rate 356x292 at 50Hz frame rate Analog and digital parallel output (YCrCb 4:2:2) Analog and digital parallel output (YCrCb 4:2:2) I2C interface for settings I2C interface for settings Well-documented Well-documented

DSP Requirements External memory expansion capabilities (for image storage) Processing speed min. at 15MHz to run video algorithm SPI channel (microcontroller communication) GPIO pins to interface with camera (12-15)

Part Choices DSP: DSP: Freescale DSPB56374AEFreescale DSPB56374AE 150 MIPS 150 MIPS 80-pin TQFP 80-pin TQFP I2C, SPI I2C, SPI “Up to 47” GPIO pins (from data sheet) “Up to 47” GPIO pins (from data sheet)

μC Requirements SCI ports for user interface and IR sensors (min. 2) SCI ports for user interface and IR sensors (min. 2) SPI port to interface with DSP SPI port to interface with DSP GPIO pins to interface with motion sensors, motors and fire control GPIO pins to interface with motion sensors, motors and fire control PWM capable of 16-bit output on at least two ports PWM capable of 16-bit output on at least two ports

Part Choices μC: μC: Freescale MC9S12A512Freescale MC9S12A512 2 SCI, 3 SPI ports 2 SCI, 3 SPI ports 29 GPIO 29 GPIO 16-bit PWM capability 16-bit PWM capability 112-LQFP 112-LQFP