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Showing posts with label Elecronics. Show all posts
Showing posts with label Elecronics. Show all posts

Wednesday, July 11, 2007

Giant Kinetic Robot sculpture from recycled and found materials

An article From Intructlables.com

This Instructable will take you through some of the steps involved in building the Robot sculpture titled "General Debris". He gets his name from the many salvaged and found objects that he is built from. The General is one of many sculptures that I have made in this fashion over the years. If you would like to see more of them please visit www.nemomatic.com

 

Click here for details and procedure Kinetic Robot

Make a wall avoiding Robot!

Objective: To create from scratch a working robot that is able to avoid walls and obstacles.
Ever wanted to make a robot that could actually do something, but never had the time or knowledge to do it? Fear no more, this instructable is just for you! I will show you step by step how to make all the necessary parts, and programs to get your very own robot up and running. I was first inspired to build a robot when I was ten, and saw Lost in Space, with that famous B-9 robot, I wanted one! Well six years later I finally built a working robot, its name- Walbot of course!
To find out more...Go to step one.

 

out:{ top: 0.10978520286396182, left: 0.11428571428571428, width: 0.7892857142857143, height: 0.7494033412887828, text:"Picture of my robot Walbot" }

Picture of my robot Walbot

Brandon121233

 

Click Here for more detail and procedure

Make a wall avoiding Robot!

How to Build a Robot - The BeetleBot

An Robo Prject From

Instructables.com

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I have been in robotics since I was a kid and I am very passionate by robotics. I learn BEAM robotics around 1997-98 and started building robots for a science faire project call "Insectroides" in 2001. http://robomaniac.solarbotics.net ( they change server and the website links does not work anymore it is on Linux and it is CASE SeNsiTIve! ) here is the old one
http://members.tripod.com/robomaniac_2001/index.htm
One of my many robots was the beetle robot, a VERY simple robot that can avoid obstacles on the floor without ANY silicon chip! ( the red ladybug, second picture, is my FIRST beetlerobot )
the red ladybug use a home made PCB carve with a dremel and two playstation motors with rubber wheel from a walkman!
- NO PROGRAMMING
- NO ELECTRONIC COMPONENT
It use
2 - motors
2 - SPDT switch
1 - AA battery holder
I has 16 years old when my uncle showed me the principal of the SPDT switch ( Simple Pole Double Throw). I then took this idea and incorporated the design into the (world famous) beetle robot :P
Now I am 22 and want to show you step by step instructions how YOU can make this simple robot!
here are some videos of my beetlerobot in action!
The beetlerobot in the video is made using a Printed Circuit Board ( PCB ).
This design will be use if I make a kit one day!
Check them all out here!
http://www.youtube.com/jeromedemers
This Instructable is divided into three parts
- You will learn how to build the robot
- I will explain how the robot works
- I will then teach you how to fix your robot if it does not work ( Debugging )
Don't forget to read the complete tutorial before starting! And remember to wear safety glasses at all time because eye injuries ain't worth the risk! It will happen in a blick of an eye.
Have a great time!
ps- Check out Gareth Branwyn book, I made a one motor walker and he made a complete chapter with my robot!! He send me the book call " Absolute beginner's guide to building robots" A very great book!
Maybe I should write a book...
Jerome Demers aka ROBOMANIAC!
Updated july 2007 - I have added some pictures of the inside of my first beetlerobot. Home made AAA battery holder! I have also added some videos on youtube! http://www.youtube.com/jeromedemers

 

 

Click Here for more Details and method to build The BeetleBot ..

Furby Hijack

The furby's in-built sensors and actuators:
light sensor,
IR sensor,
IR transmitter,
tongue touch sensor,
belly touch sensor,
microphone,
speaker.
The furby's main (and only) motor was dead, so I added other motors.

 

 

For more Details and procedure to build  plz click Here

Monday, July 9, 2007

#827 - Lian Li PC-A12 Case Video Review

Master Chief is an Alcoholic

Asahi Robocco: Beer-pouring robot

iPhone: 4 Days Early - Part 1 of 3

Friday, July 6, 2007

Robocup Team Osaka's VisiON


An Actroid

An Actroid is a humanoid robot with strong graphic human-likeness developed by Osaka University and manufactured by Kokoro Company Ltd. It was first unveiled at the 2003 International Robot Exposition in Tokyo, Japan. The Actroid is a pioneer example of a real machine similar to imagined machines called by the science fiction terms android or gynoid. It can mimic such lifelike functions as blinking, speaking, and breathing. The "Repliee" models are interactive robots with the ability to recognise and process speech and respond in kind.

Internal sensors allow Actroid models to react with a natural appearance by way of air actuators placed at many points of articulation in the upper body. So far, movement in the lower body is limited. The operation of the robot's sensory system in tandem with its air powered movements make it quick enough to react to or fend off intrusive motions, such as a slap or a poke. Artificial intelligence possessed by the android give it the ability to react differently to more gentle kinds of touch, such as a pat on the arm.

CosmoBot

CosmoBot is a child-friendly, interactive remote controlled telerehabilitation robot designed by AnthroTronix, Inc.. CosmoBot is part of an overall assistive technology system that includes the CosmoBot robot, Mission Control input device, and accompanying software. With the accompanying software, CosmoBot can be used as part of a play therapy program that promotes rehabilitation and development of disabled children. During therapy sessions, the CosmoBot system automatically collects data for therapist evaluation.

The most important goal of CosmoBot is to provide long-term motivation for children to actively participate in therapy and to help children achieve goals set by therapists and educators. Since CosmoBot will be used by children with varying levels of mobility, motor skills, and language, it needs to be easy to use and adaptable to different users. CosmoBot is designed for an inclusive classroom setting and must allow children to interact with their environment.

Thursday, July 5, 2007

Apollo DivX to DVD Creator 4.5.6







Apollo DivX to DVD Creator







Apollo DivX to DVD Creator transcodes and burns internet movie files into DVD disc. With DVD encoding and burning engine integrated you can easily Merge up to 4 hours of multiple movies or episodic files to standard MPEG2 Video and burn it into a DVD+R/RW and DVD-R/RW disc that playable on car or home DVD player.

Platforms: Win95 Win98 WinME WinXP Windows2000 Windows2003 Windows Vista Starter Windows Vista Home Basic Windows Vista Home Premium Windows Vista Business Windows Vista Enterprise Windows Vista Ultimate Windows Vista Home Basic x64 Windows Vista Home Premium x64


Download

Wednesday, July 4, 2007

Malawian teenage Windmill maker dominates TED Talks


Ory Okolloh refers to William Kamkwamba at TEDGlobal2007At TEDGlobal 2007, participants were privileged to listen to great speakers give their well prepared talks in Arusha, Tanzania. And indeed, you'll agree with me when the videos get uploaded on web that they were great talks.

The sessions included both 18 minute talks and short 3 minute presentations by a diverse group of speakers including business leaders, artists, activists, engineers, inventors and musicians.

Among these was a 3 minute Question and Answer session where the curator Chris Anderson asked William Kamkwamba questions regarding the Windmill he created for his home in Kasungu, Malawi at the age of 14. Through the Questions with photos on the slides, William told his story which made people shed tears and later, give him a big applause and a standing ovation.

In the sessions that followed, William's story became the most cited talk among the talks at this conference. Speakers like Ory Okolloh of Kenyan Pundit, journalist Dele Olojede and Noah A. Samara of WorldSpace referred to William Kamkwamba's tale of invention in their sessions.

The picture above shows Ory Okolloh who included the photo of William's QnA session with Chris Anderson from the previous day in her slides.

Look out for the TED Talk videos from TEDGlobal 2007 when they're uploaded on TED's website.

Are we ready for shockbots?

Last week, iRobot - maker of the Roomba robot vacuum cleaner - announced that it was working with stungun maker Taser to mount the latter’s controversial 'neuromuscular incapacitation' weapons on iRobot’s military droid: the PackBot.

The Packbot is already used in Iraq and Afghanistan to defuse roadside bombs and recently these robots have been fitted with lethal weapons like machine guns and shotguns. But, until now, weaponised robots have been for military use only. The iRobot/Taser collaboration changes this as it is geared towards making robots capable of shocking people available to law enforcement as well as the military.

Taser says the technology will let officers use a robot to 'engage, incapacitate, and control dangerous suspects without exposing those personnel, the suspect, or bystanders to unnecessary risks.'

But I spoke to Neil Davison, head of non-lethal weapons research in the peace studies department at Bradford University in the UK, and he sees some potential risks.

'The victim would have to receive shocks for longer, or repeatedly, to give police time to reach the scene and restrain them, which carries greater risk to their health,' he said. 'All you are really doing is further removing the process of human interaction,"

Then there’s the possibility that such robots could someday be autonomous, decided for themselves whether a target represents a threat. It might seem far fetched, but it's something iRobot has in mind, and its a possibility that has some researchers worried.

"If someone is severely punished by an autonomous robot, who are you going to take to the tribunal? The robot won't talk," says Steve Wright of Leeds Metropolitan University in the UK. "

I’m wondering what kind of smart anti-shockbot technologies the likes of G8 protestors might come up with? Any ideas?

Real-world transformers

The new Transformers movie is science fiction at its most fantastic, featuring fighting robots that shift shape to fight each other, for example, transforming from an aircraft to a ground vehicle.

Meanwhile, the Pentagon has set it sights on developing machines with similar capabilities, although they are clearly still a few decades away from matching Optimus Prime.

The military already has uncrewed air vehicles (UAVs) like the Predator, and
uncrewed ground vehicles (UGVs) such as Talon, both of which have been used extensively in Iraq. Now they'd like something that can combine the abilities of both.

This document describes a contract for "Transforming [aerial] vehicles that land, transforming into UGVs capable of inspecting caves and/or buildings to find people" awarded to Thorpe Seeop, Arizona, US, by the US Army (scroll down to "Small Scale Unmanned Air Vehicle").

The company's starting point was the company's Spinwing UAV, an unusual craft that transforms mid-flight from an airplane into a helicopter.

This idea was the taken further by Brian Yamauchi of iRobot (the company behind a widely-used ground vehicle called PackBot). Yamauchi came up with Griffon, a hybrid designed to "combine the speed and range of a UAV with the precise ground mobility of a UGV."

Griffon has a powered parafoil wing that attaches to the PackBot chassis. Software enhancements include, "semi-autonomous launch and landing software [that] will assist the operator in transitioning from ground to air modes and back."

The Griffon prototype took off with an 11-metre parafoil wing and, although it could hardly be described as graceful, the concept proved viable as this video shows. Things did not always go quite so smoothly, however, as another clip reveals. Oops.

Interestingly, the US Air Force Research Laboratory has its own plans. Fred Davis, of the Assessment and Demonstrations Division recently told me that they are looking at small UAVs that can morph or otherwise change their shape, and switch between different modes. These might include flying, perching and hopping or crawling. This would extend their endurance, as well as allowing them to go into buildings.

Morphing wings have been investigated for some time, but the new craft would be more capable, for example, with wings which converted to legs. "We call them Transformers," said Davis.