Foro Wanako1
¿Quieres reaccionar a este mensaje? Regístrate en el foro con unos pocos clics o inicia sesión para continuar.

Foro Wanako1

Programas Gratuitos, Desatendidos y Mucho más!!!
 
PortalPortal  ÍndiceÍndice  BuscarBuscar  Últimas imágenesÚltimas imágenes  ConectarseConectarse  RegistrarseRegistrarse  
Buscar
 
 

Resultados por:
 
Rechercher Búsqueda avanzada
Los posteadores más activos del mes
tano1221
Robotic Drives & Physics Robotics, learn by building  III Vote_lcapRobotic Drives & Physics Robotics, learn by building  III Voting_barRobotic Drives & Physics Robotics, learn by building  III Vote_rcap 
ПΣӨƧӨFƬ
Robotic Drives & Physics Robotics, learn by building  III Vote_lcapRobotic Drives & Physics Robotics, learn by building  III Voting_barRobotic Drives & Physics Robotics, learn by building  III Vote_rcap 
ℛeℙ@¢ᴋ€r
Robotic Drives & Physics Robotics, learn by building  III Vote_lcapRobotic Drives & Physics Robotics, learn by building  III Voting_barRobotic Drives & Physics Robotics, learn by building  III Vote_rcap 
missyou123
Robotic Drives & Physics Robotics, learn by building  III Vote_lcapRobotic Drives & Physics Robotics, learn by building  III Voting_barRobotic Drives & Physics Robotics, learn by building  III Vote_rcap 
大†Shinegumi†大
Robotic Drives & Physics Robotics, learn by building  III Vote_lcapRobotic Drives & Physics Robotics, learn by building  III Voting_barRobotic Drives & Physics Robotics, learn by building  III Vote_rcap 
Engh3
Robotic Drives & Physics Robotics, learn by building  III Vote_lcapRobotic Drives & Physics Robotics, learn by building  III Voting_barRobotic Drives & Physics Robotics, learn by building  III Vote_rcap 
ronaldinho424
Robotic Drives & Physics Robotics, learn by building  III Vote_lcapRobotic Drives & Physics Robotics, learn by building  III Voting_barRobotic Drives & Physics Robotics, learn by building  III Vote_rcap 
Julio 2024
LunMarMiérJueVieSábDom
1234567
891011121314
15161718192021
22232425262728
293031    
CalendarioCalendario
Últimos temas
» Chaos Vantage 2.5.0 (x64)
Robotic Drives & Physics Robotics, learn by building  III EmptyAyer a las 10:34 pm por ℛeℙ@¢ᴋ€r

» R-Wipe & Clean 20.0.24634 (x86/x64)
Robotic Drives & Physics Robotics, learn by building  III EmptyAyer a las 10:21 pm por ℛeℙ@¢ᴋ€r

» n-Track Studio Suite 10.1.0.8705 (x64) Multilingual
Robotic Drives & Physics Robotics, learn by building  III EmptyAyer a las 10:17 pm por ℛeℙ@¢ᴋ€r

» UniFab 2.0.2.7 (x64) Multilingual
Robotic Drives & Physics Robotics, learn by building  III EmptyAyer a las 10:16 pm por ℛeℙ@¢ᴋ€r

» Readiris PDF Corporate / Business v23.1.179 (x64) Multilingual
Robotic Drives & Physics Robotics, learn by building  III EmptyAyer a las 10:10 pm por ℛeℙ@¢ᴋ€r

» EdrawMax 13.1.0.1152 Ultimate Multilingual
Robotic Drives & Physics Robotics, learn by building  III EmptyAyer a las 10:08 pm por ℛeℙ@¢ᴋ€r

» StreamFab 6.1.8.6 (x64) Multilingual
Robotic Drives & Physics Robotics, learn by building  III EmptyAyer a las 10:04 pm por ℛeℙ@¢ᴋ€r

» Social Media Downloader 7.1.1
Robotic Drives & Physics Robotics, learn by building  III EmptyAyer a las 10:03 pm por ℛeℙ@¢ᴋ€r

» MediaHuman YouTube Downloader 3.9.9.92 (0704) (x64)
Robotic Drives & Physics Robotics, learn by building  III EmptyAyer a las 10:00 pm por ℛeℙ@¢ᴋ€r

Sondeo
Visita de Paises
free counters
Free counters

Comparte | 
 

 Robotic Drives & Physics Robotics, learn by building III

Ver el tema anterior Ver el tema siguiente Ir abajo 
AutorMensaje
Invitado
Invitado



Robotic Drives & Physics Robotics, learn by building  III Empty
MensajeTema: Robotic Drives & Physics Robotics, learn by building III   Robotic Drives & Physics Robotics, learn by building  III EmptyJue Mayo 28, 2020 1:41 am

Robotic Drives & Physics Robotics, learn by building  III Ec2e90e532812c0f551ec39939e1aabe
h264, yuv420p, 1280x720 |ENGLISH, aac, 48000 Hz, 2channels | 6h 00mn | 6.67 GB
Created by: Ian Juby

New, 3rd course with over 21,000 enrolled in the first two courses, and over a 4.5 star rating!

What you'll learn

How do we make a robot move? What kind of ways are there to power our robots and how can we use even tiny motors to move a substantial load? How can we make things like robotic, bionic arms? These are the things we'll explore with first hand application and practical experiments that you can perform at home to get you one step closer to designing and building robots and robotic systems.

Requirements

Fulfillment of courses 1 & 2 in the series, or a good knowledge of electricity, analog and digital electronics.

Description

Please note: Content is being uploaded through November/December. This is a new course. Thanks for your patience!

Building on the knowledge you gained in the Analog Electronics and Digital Electronics modules, you'll open even more doors to diverse careers and hobbies by learning how to physically move robots and mechatronics. Robotic drives and physics are intimately intertwined - almost the same topic in fact. And think about all the things around you that are moved or operated automatically: from the furnace and air handlers in your office building, to so many functions in your car, and then the booming robotics field in industry, mass production, even entertainment! People are needed who understand how those robots work in order to design, install, program and maintain those robots. Maybe you're interested in building a submarine robot to dive to shipwrecks or places normally unreachable by humans. We'll actually look at a real-world case study and use our new-found knowledge of physics to design a submarine robot to operate at depths of 600 meters or more. Or perhaps you are just interested in competition robotics like the gladiator-style battle robots which go head-to-head to destroy each other. 3D printers (of which we design and build one in course 4) are essentially robots! All of these topics involve a good understanding of robotic drive systems and physics which you will learn in this course.

With over 21,000 students enrolled in the first two courses in the "Robotics: Learn by building" series, more than 4,000 five star ratings in the first course alone, students aged 8 to 60+ have enjoyed the course series and its projects.

No prior knowledge of mechanics, physics or robotics is needed. You will need a good understanding of electricity & electronics and digital control and some basic math. If you have completed course 1 "Electricity and Electronics" and course 2 "Digital Electronics" you have the background you need as we will be using those skills in this course to drive different kinds of electric motors. All courses have captions for the hearing impaired.

Course materials:

You will need the analog electronic parts and a breadboard, which you can purchase as an accompanying kit (i.e., the Analog Electronics Kit from module I) or provide your own, as well as the parts from the digital electronics kit (i.e., the Digital Electronics Kit from module II) or provide your own Arduino controller board and some logic-level, high power MOSFET's.

You will also need the Robotic Drives & Physics Experimenter's kit which again you can purchase as an accompanying kit or provide your own parts. The first lesson is a walk-through of what is in the kit and acts as a parts list for this module.

This series of "Robotics: Learn by building" modules has an end-goal focus on the diverse field of robotics. In module I we learned the basics of electricity and electronics. In this module II you further developed your knowledge and skills to include digital electronics and practice your skills on real-life digital components. In this third course you will learn physics principles (from simple to very complex) with a specific goal of understanding and even designing your own drive systems for robots. You will learn details about different robotic drive systems you will see in commercial, industrial robots like how timing belt drives work and why they are so important in robotics, as well as the more esoteric drives like the harmonic drive - what it is an how that amazing system works.

We will even look at a real-life case study as we design a submarine robot, remotely operated and able to withstand the bone-crushing operating depths of over 600 meters minimum. The unique challenges we will face will build up your knowledge so that you too can design sea-floor robots facing harsh environments to perform inspection, welding or maintenance on submarine pipes or cables.

This course is the prerequisite for the module IV course where you'll learn prototyping skills, and gain a wide variety of knowledge and skills so you can actually build your own robots and manufacture your own parts. In module IV, you'll culminate all you've learned so far as you build a 3D printer from scratch, hook it up to a desktop computer and make your own plastic parts. The 3D printer is, in effect, a robot which you can then use to make parts for your other robot designs. In module V you can take your robot design and construction skills to the next level with a hands-on approach to autonomous robotic systems: learning about various sensors to know where you are and what your robot is doing, GPS navigation, basic artificial intelligence, powerful microchips known as FPGA's where you literally design a custom circuit on the chip, vision systems and more.

Lesson overview:

In this course we'll be covering:

Simple machines (which all come into play in surprising ways you probably haven't seen before)

Designing an arm robot

The toggle mechanism (again, comes into play in a ridiculous number of surprising ways you probably haven't seen before)

harmonic drives, cycloidal drives, epicyclic drives, traction drives

strength of materials & construction challenge

case study: design challenges of a deep-submarine, remotely operated vehicle

hydraulics & pneumatics (including building your own)

air & hydraulic muscles, muscle wire

servos (speed, pressure, force, position, etc...)

DC motors, BLDC motors, BLDC servo motors, stepper motors, AC motors, AC servo motors, single and three phase power, electrical generation

frequency drives, PWM AC signal generation

regenerative / rheostatic / dynamic braking, looking at electric vehicle design and locomotive design

counter-force systems you will encounter in industrial robots

safety around robot systems, in industry and hobby

robot designs: articulated arm, gantry, spine, collaborative

case study: combat robots

and more!

Who this course is for:

Those interested in robotics, electronics and electro-mechanical devices such as 3D printers (which really is a type of robot).

Screenshots

Robotic Drives & Physics Robotics, learn by building  III De3cc5efc3c57d559facdfd7735716ef
Download link:
Citación :
rapidgator_net:
https://rapidgator.net/file/3e05a27c2cbfe0babd0c523554101246/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part1.rar.html
https://rapidgator.net/file/93b7a73d9a3fcc98d5cdb8b6b842d9d6/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part2.rar.html
https://rapidgator.net/file/bbce1bbe18bfedda7a6e2b26814175da/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part3.rar.html
https://rapidgator.net/file/04eb6dbfa0eb8a0920d3e76c38f72da5/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part4.rar.html
https://rapidgator.net/file/f75c34559e995eef63ecf84a3355e51b/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part5.rar.html
https://rapidgator.net/file/49895b142afc595f28d6b5ff4e7cdd63/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part6.rar.html
https://rapidgator.net/file/2f85dccdc5f0eb788b84b2c145b28d38/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part7.rar.html

nitroflare_com:
https://nitroflare.com/view/A74AFC76D23F15A/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part1.rar
https://nitroflare.com/view/319079EBBBBC71D/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part2.rar
https://nitroflare.com/view/1750D8396CB52CC/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part3.rar
https://nitroflare.com/view/C228C07908A59BA/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part4.rar
https://nitroflare.com/view/CDD41424C7D7356/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part5.rar
https://nitroflare.com/view/A3BA448D1A4F45A/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part6.rar
https://nitroflare.com/view/9093DA48141DF81/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part7.rar

uploadgig_com:
http://uploadgig.com/file/download/e8482bd4e3573753/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part1.rar
http://uploadgig.com/file/download/7351331AbE1e80cd/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part2.rar
http://uploadgig.com/file/download/5a65c8A2F39620AA/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part3.rar
http://uploadgig.com/file/download/C905724ca96d6b38/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part4.rar
http://uploadgig.com/file/download/44879884a8e3889e/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part5.rar
http://uploadgig.com/file/download/e9d0f19c8749d74E/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part6.rar
http://uploadgig.com/file/download/12b996f8C64BbE5e/lpxca.Robotic.Drives..Physics.Robotics.learn.by.building.III.part7.rar

Links are Interchangeable - No Password - Single Extraction
Volver arriba Ir abajo
 

Robotic Drives & Physics Robotics, learn by building III

Ver el tema anterior Ver el tema siguiente Volver arriba 
Página 1 de 1.

 Temas similares

-
» Learn Variable Frequency Drives: wire & program a VFD
» Data Recovery, Hard Drives, USB Drives, etc
» Physics - Modern Physics - High School and AP Physics
» Learn Blender 3D - Getting Started With Fluid Physics
» Learn ARcore,make your Room interact with Unity 3D physics.

Permisos de este foro:No puedes responder a temas en este foro.
Foro Wanako1 :: Programas o Aplicaciónes :: Ayuda, Tutoriales-