Hi, I am rapper Nada! I am back with Ground Zero.
I opened my FIRST
Please LIKE, SHARE, FOLLOW
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10 Sasha Blouse Facts You Didn't Know! Potato Girl Attack on Titan Sasha Braus Facts - Duration: 8:59.
Sasha Blouse or more commonly known as the potato girl. Sasha was originally from
a Southern village within Wall Rose. She chooses to speak very formally to
disguise her Kyushu accent. Sasha was in the top ten graduating Scouts coming in
at number nine. At that time the potato girl was five feet six inches or 168
centimeters and she weighed 121 pounds or 55 kilograms. Since that time Sasha
has actually been promoted to becoming a member of the Levi Squad. Sasha
actually it's pretty similar to Armin when it comes to killing Titans.
She's never directly killed one. Instead her first kill was another soldier, it
was was an arrow too! So far in the story Sasha hasn't gotten any Titan abilities
yet but a lot of people do want her to become the ultimate potato Titan!
You were able to meet Sasha all the way back in the first draft of the Attack on
Titan. In this version you'll quickly notice a difference. Sasha got the most
drastic change from the original top 10 scouts. Isayama ended up going with
the ponytail for her final design, but what was more interesting is what
happened behind the scenes. Before all of this Isayama has mentioned how Sasha
was one of the last characters created. Originally she never existed
instead. It was more like Ymir and Sasha were the same character. Isayama
later decided that he didn't want Ymir to remain in the top 10 scouts. An empty
slot was left so Sasha's character was created to fill a spot!
The infamous potato girl Sasha is voiced by Yuu Kobayashi. Here's a bit of her
work that you might know! The ninja Ayama from Gintama. The 69 dude from Bleach.
Satoshi from the When They Cry Series. Matabei from Samurai Girls. Yuu from Is
This a Zombie of the Dead? Kuroko from Monster Musume.
Setsuna from Negima.Sigui from the Queen's Blade series. That lovable
redhead Konatsu from Shouwa Genroku. Rio from Sound of the Sky. Here's a big
one! Ruka from Steins Gate, pretty nice! and Kathy from that new Yugioh series! As
for non anime roles, she's voiced Lucina from the Fire Emblem series. This
includes her from Super Smash Brothers Wii U!
You got teased at Mikasa and Annie going at it Attack on Titan season two. What you
didn't get to see what was going on behind the scenes.
Attack on Titan Wings of counter-attack expands on details about this. It
includes something involving your favorite potato girl Sasha. Mikasa and Annie's
fight was actually reschedule for the next day. Mikasa decided to fight at
an empty stomach so Sasha being who she is, ended up beating Mikasa's breakfast.
Later that day halfway through the match, Sasha collapsed after her stomach
started hurting. She was quickly taken to the doctor. Apparently someone had
tainted Mikasa's meal so she would lose the match. The potato girl
unknowingly saved her! It's pretty awesome and this wouldn't be the last
time that she saved Mikasa's booty!
The thing that Sasha's so famous for is her appetite. Food has been Sasha's main
motivating factor in her life. She's jokingly said in the past that she wants
to marry someone who could feed her well. She also wants to create a world where
everyone could eat all they want, hmm. Good things she's not a Titan! And
actually the only time that Sasha hasn't been hungry was after she killed someone
in the uprising arc. Perhaps food was one of her motivating factors for becoming a
soldier. She mentioned how she thought she could eat all she wanted once she
became a soldier. Well that's not entirely wrong, if only she was in the
military police.
How much do you love Sasha? Since you're watching this I bet that you just love
this potato girl! Sasha's huge popularity worldwide was super unexpected. In the
first popularity poll, Sasha managed to come in fourth place overall, which is
pretty damn good! It was just under Mikasa by the way. Isayama has
mentioned how he's been surprised as the amount of love for her. Her popularity
might be the reason that her role got expanded in Attack on Titan season 2,
more on this later. Sasha also got blessed was more
screentime in Attack on Titan Junior High series, both in the manga and anime
versions. I can't wait to see what extra little bit they had for her an Attack on
Titan season 3, oh and season 4 too!
Delving more into Sasha's creation Isayama recently revealed that
Sasha's name came from the actor comedian Sacha Baron Cohen. He mentioned
how he always thought of Sasha as a comedian character so Sasha started with
the basis of being funny. Isayama later added her appetite too.
Another origin for Sasha's name is actually from the Lotte chocolate called
"Sasha". Since this chocolate shares the same name as her he came up with the
idea that Sasha special trait would be a fool lover. It's really no surprise that
Sasha has often been used to promote Attack on Titan food tie-ins. Lastly Isayama
has talked about a certain food theory related to her origins. The theory
goes something like this, whenever good people eat food they look like they're
fully enjoying their meal. In other words, being the person that she is
Sasha fully embodies this.
The Sasha you know has always had that appetite but she did change a little
going from the manga to anime series. In the Attack on Titan anime Sasha has been
made to look more clumsy. A good example that's happened during the female Titan
arc. There was this extra scene added where she dropped that signal flare. The
anime version also interestingly cut down one of Sasha's scenes. You saw how
Historia and Ymir rescued her from starving. After the scene of Mikasa
teasing Sasha with that extra piece of bread, Ymir comes to get her, Ymir
make sure to remind Sasha about the debt she owes them.
Perhaps the most drastic changes for Sasha happened in attack on Titan season
2. At least part of this is very likely due to her insane popularity. Sasha was
given the additional role of being that messenger girl. You saw this twice. Once
when she was talking to Commander Pixis. The second time Sasha was delivering
that important message to Hange. This allowed you to see Sasha back at it with
the potatoes. The potato girl was also not present in the finale of this arc in
the manga. You get to see her on top of the Armored Titan. Along with everyone
else but in the manga version of the scene she's nowhere to be seen.
Originally Sasha's role in the second season arc only lasted up until episode
2. Sasha then doesn't appear again in the manga until the following arc, what would
be season 3. And she makes a fun return! She's right back at swiping and eating
some bread too!
You've been hearing about Sasha's popularity and all that extra screen
time that she's gotten, although this almost never happened!
Sasha was originally made to serve as a placeholder Scout in the top ten. You
know, since Ymir got bumped off. Isayama has mentioned how he creates
characters whose purpose in the story is to die. Sasha seems to fit that
description. Tn a past interview the Attack on Titan editor talked about how
Sasha was planned to die in volume 9. This would have been during the events
of season 2 episode 2. Sasha would have very likely saved that girl but instead
gotten crushed by that Titan that grabbed her. So what ended up saving her?
It turns out that it wasn't Titan blood but tears. The editor mentioned how
he felt like crying when he first looked at the storyboard for this chapter. He
was too embarrassed in front of Isayama so he went to the bathroom to cry. Keep
in mind this is him telling this story. I'm not sure how much of this is meant
jokingly but hey this little demonstration ended up saving Sasha! The
potato girl lived on to munch on another day! Hey guys thanks for watching! Please
be sure give this a colossal thumbs up and subscribe! Especially if you LOVE the
potato girl Sasha! Here's your question of the day, if Sasha was around in modern
times which food do you think Sasha will love the most? And also what do you think
her role will be in the future? By the way do leave your pick down below for a
character you want to see you next time! If you want more stuff to watch I
suggest looking at my past video on Annie and Mikasa and I'll see you guys later!
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DIY Phenacitoscope - Duration: 16:13.
Animation constructions.
Hi! I'm Vaggelis Karadimas from vktoons!
Either you like constructions in general,
or you're interested in animation and you look equipment or related constructions,
I'm your man!
So, today we'll build together a phenatioscope!
Phenacitoscope is a word with a Greek root.
It comes out of the words "phenaki" which roots lie in the word "phenax".
Phenax is the deceiver.
It also is based on the verb "skopeo" which means "I watch", "I observe".
So, "phenacitoscope" means; I observe something that is cheating me".
Mainly it is cheating my eyes.
But it does it in a very beautiful way!
So, let's go and build our very own phenacitoscope!
Let's see what materials we'll use to build our phenacitoscope.
In order to create the most simple phenacitoscope we can,
we'll need the following simple materials;
A simple size A4 paper.
A lath, wooden or plastic.
Cardboard big enough to cover just enough the disk we'll create with the A4 paper
and it would be ideal to have a dark side.
Also, we can paint it with water paint or with any other kind
in case we don't have a dark sided cardboard.
Scissors.
Pencil.
Thick cardboard to create the handle around which our disk will turn.
Glue or glue gun - they both will do just as good.
Compasses
Cutter.
Ruller or set square
and a protractor.
These are our materials needed.
The first thing we'll do is the circle in chich we'll draw.
We start by spreading the compasses that much, so the diameter of the circle
we'll create, to take full advantage or our A4 .
We don't close the compasses yet.
But we stress the centre of the circle, in order not to lose it later.
Right after that, we go to the cardboard
upon which later the plain and cut A4 will lie.
We create a same diameter circle.
Then, we place again the compasse at the center of our A4 paper
and we draw a cicrle of diameter smaller by 1cm than the first one.
We'll use that one as a guide.
Then, we create another circle smaller enough,
I would say, about half the first circle,
and this one too will serve as a guide.
Essentially, in this part we'll put our drawings.
Yet, we can draw in the small circle too,
but in order to have a "safe zone" and draw in there too perhaps,
we draw an even smaller circle.
And our basic shape is ready.
Next step. With a ruller and a pencil we draw within our first circle the perimeter.
That's all.
The next step needs a good scheduling.
First, we have to decide if there will be 8 or 12 frames on our phenacitoscope.
That means to decide if we'll create a phenacirtoscope with 8 drawings
or with 12 drawings.
Then, after we decide how mane frames our phenacitoscope will have,
in a plain paper we'll draw the animation we've decided to show in the phenacitoscope.
We won't yet put it on our disk.
We'll draw it in a simple way in a plain paper sheet, in order to foresee mistakes
and correct them in time and then to move to the disk.
Now, we'll create our drawing keeping in mind that, what will work better in the phenacitoscope
is a "loop", not an individual move.
We'll create something simple, in order to be easier for you to understand.
A bouncing ball in place.
So, we'll plan our bouncing ball.
I'll work with 12 frames, but it should be fine in 8 frames too.
Also, I'll work the same way I work on animation.
That is with inbetweens, keys and extremes but straight ahead will also work as good!
Well, let's go and see how we'll make our ball to bounce.
We star by mentioning frame 1. In order to close the circle in a right way
in frame 12, the ball will just touch the ground.
In frame 6, we'll place the ball to its' highest point.
We draw the inbetweens like this;
As the ball goes up and as it reaches the ground it moves faster.
When it is close to the top, it moves slower.
This is our plan.
We've already ydrawn the diameter of our disk.
Our next move is to divide it in 12 equal pieces
or in 8, if you've chosen to crate an animation of 8 frames.
To do that, we'll need the help of our protractor.
So, we'll create 12 equal parts. Each one will be of 30 degrees.
But if you do it in 8 frames, each part must be of 45 degreees.
So, lets make our drawing!
With the help of the protractor, we draw with the pencil point every 30 degrees
in the entire disk.
Then, we draw lines that connect the center with the ponts we've drawn
in order to create the 12 equal parts.
Our parts are ready!
Now, we'll draw the notches, from which we'll watch the animation
after the entire process is complete.
How are we going to do that?
We'll draw them upon the circle radii we just draw
with the protractor's help.
We'll start them from the second bigger circle, not from the external disk,
they will be around 3 cm in length and about 2 mm thick.
Let's go and draw them!
Before we start drawing the notches, with the compasses we draw another
internal circle in 3 cm distance from the second bigger circle
in order to have a guide upon which we'll draw the notches.
In the next stage, we draw in the disk clockwise our drawings
or counter clockwise, if you are left handed.
Also, if you want you can draw othe drawings in the inner circles.
Now, we'll take the scissors and cut all of our disks.
Beforw we glue our papers, we'll do a last little job.
The schemes that we want to watch them moving
that is the ball and that small line,
but also our snotches we'll draw them again with a marker.
After the marker becomes dry
with a rubber we'll wipe out all the pencil traces.
Now, we'll glue the disks.
It is time to cut! First, in the circle of the disk we cut a cross like scheme
because there will go the lath to spin the disk.
Then, we cut off the notches.
We move to the next part of the work, which is the making of the handle
which will keep the disk in place and allow the spinning.
After we take the thick cardboard and measure with our eye
where we are to bind the handle and the disk,
but at the same time to have a margin in order to be able to hold the handle,
then we are to cut to thick cardboard in two equal parts.
Our parts are ready.
In the next step, we'll take one od the thick cardboards
we'll put it about where we think the disk will spin,
and with a pencil, from behind and in the hole we have alreade created on the disk
we'll mark the point where we'll open the hole in the cardboard.
Then, we open the hole on that cardboard
in order to have it ready and as a guide in the end for the other cardboard part.
In the next part of the work, what we'll do is to calculate a gap that must
be it the basis of the handle, in order for the disk to ba able to spin
with ease.
Then, we'll cut another thick cardboard and upon that we'll glue
the two thick cardboards of our handle, to keep them in place.
We place the thick cardboard in which we've already openned a hole,
we notice how big should the gap be in order for the disk to spin with ease,
and then we cut a new thick cardboard that high.
I vut the front thick cardboard of the handle triangulare shaped.
Anyone can do it as it pleases him or even leave it as it is!
Now, what we'll do is to line the hole we openned in the back
with the hole of the phenacitoscope
- we'll wide a bit that hole -
and then we'll slightly press the pencil to open a small hole in front.
Just to see a trace there.
Then, we'll open a bit too.
Then we take a wooden lath.
We start little by little to pass it first to the bach cardboard,
then in the disk
and then we press to go though and pass in the front cardboard.
You can understand that it will take a while but playing with the disk
it will start to rotate too.
At some point, it will rotate quite satisfactorily.
Our phenacitoscope is ready.
Now, we'll go and test it before a mirror.
SO, that's a very simple construction of a phenacitoscope.
We wait for photos and videos with your builds.
You don't have to restrict yourselves with the materials we've used.
You can use plastic, wood or whatever is easier for you.
Even for the spin, you can use a small motor, a crank, gears, a lot of materials.
If you need a calrification on what we've shown you, we expect you questions in the comments.
Now, if you liked the episode, we expect you to "like" it as well as to share it,
especially if you have friends who are somehow related to constructions.
And we expect you to subscribe, if you want to learn more constructions
related to animation! See you soon!
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Amazing Energies Across The Globe Dancing To The Fandango - Duration: 6:32.
Amazing Energies Across The Globe: Dancing To The Fandango!
Amazing energies continue to sweep across the globe, despite what many are feeling or
saying to the contrary.
Reaching that place of balance really does allow us to feel the wafts of new from afar,
as well as the fading of the old.
Certainly, we are all trying to figure out what is happening or likely to happen, an
age old ego thing you know!
Human consciousness cannot help but think about all the outcomes, possibilities, scenarios�ah
stop stop stop!!
Let us remember that we all have incredible power bubbling away on the inside.
Whether it be the brain or heart they are at our disposal, yet so few can grasp its
true ability.
Mentioning what we are experiencing to the outside world would lead to a few labels being
applied to our state of mind.
But surely this is the clarity we have all been searching for throughout our lives.
Our inner desire and soul drive to share our truth, to become authentic and raw.
As we ascend, there are many who are struggling yet again, with facing their shadow self or
are reverting to old patterns.
This is an indication there is still some work to do on the inside or some things that
are best let go of.
We shall remember that the person we are today, is not the same as yesterday or ever before.
Our soul is finally beginning to take the lead forward, much to the distaste of the
ego-mind.
If you are at a point of having issues, or inner turmoil, this is the time to really
focus on self.
Despite our lives, as is often the case, time is precious; we tend to give most of it to
others, along with our energy too!
This is a cycle that is often the most difficult to break because of our living situation.
This cycle is contentious because of all the programming and templating, the expectations,
the obligations etc.
The most challenging aspect is to give the necessary time to ourselves, in all things
we do.
Whilst it may be relatively straight forward to say today, putting it into practice, for
many, takes a few attempts.
The Psyche!
Retraining the stubborn psyche is a tremendous task, and requires real help and an investment
of time, so how do we make time?
It is really quite straightforward indeed, stop scheduling and making plans.
Take each day as it comes, and turn off the gadgets!!
When we are putting everything and everyone before our self we are selling ourselves short.
And when we really begin to think about it, how many take advantage of, or get used to
us running around for them?
Dancing the Fandango is one great performance, but what happens when the music stops?
What prevents us from saying no, or claiming our own power?
In most cases, this is fear based, and a sticking point in our lives.
So, you see, in all of this, each and every one of us holds the key, the lock and the
door to our future.
When we see others moving forward with their lives we can become despondent or lose faith
� this is normal, but how we transcend that is crucial.
Let�s really make a decision to make a living plan for the next 7 days of our lives, putting
our self first.
If that means telling friends, family, and colleagues this in advance do so; make your
assertion and begin to claim back what is rightfully yours.
How can we expect to shift anything if we are stuck doing the same old things?
The moment we make a decision, we send a message and one that shifts, especially if it is the
opposite to our normal routine!
Let�s not make it so difficult, this is back to basics stuff � are you brave enough
to do that?
Your desires for change are all in your hands now, where and what you do is your responsibility.
There can be no blaming or assigning responsibility to others, it is yours.
What ever your hearts desire in the current mindset is, how much do you desire it?
This is always the challenge for the human mind, as it finds a reason not to do something.
We really wish to find all the reasons to do it.
Love Stories!
When we look at all the love stories that have ever been written, they always touch
our hearts in a big way.
In effect they are a fantasy, aren�t they?
But love is and always will be the most powerful energy we possess.
With possession of love within, we become in balance, as well as access to the power
of alchemy, and that is when our true inner abilities begin to show themselves.
The happily ever after, for ever and always, is what each of us seeks, so what do we do
to achieve it.
Follow a great love story script, and enact it in our day to day lives.
At the end of the story, one of the parties has to make a sacrifice, or overcome the biggest
hurdles � all of them is fear.
So you see, we can dance the fandango all our lives and be in these never ending circles.
Alternatively, we can stand on the dance floor and choose what ever dance we want to perform
on our own.
Be sure, someone else will want to join that performance one day, to dance with you.
Then you will create your own tango of love and live happily ever after!
So you see, you are the answer, and it is all in your hands from here on!
I certainly look forward to the tango of love one day, and I know the steps I need to make
to achieve that!
Watch this space, but don�t delay your own journey to love of self!
If you require a guide to assist you on your journey I offer programs and sessions on a
one-to-one basis.
Alternatively you can purchase my book, which is a useful guide to self love for only three
bucks!
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📃BEWERBUNGS GESPRÄCH VONG HEUTE📃 - Duration: 1:46.
For more infomation >> 📃BEWERBUNGS GESPRÄCH VONG HEUTE📃 - Duration: 1:46. -------------------------------------------
Jonna Fraser op de Vlucht - Jachtseizoen'17 #1 - Duration: 22:41.
For more infomation >> Jonna Fraser op de Vlucht - Jachtseizoen'17 #1 - Duration: 22:41. -------------------------------------------
Ahoy Mateys! | PIRATE Movie Set - Duration: 1:24.
Surrender your stolen treasure, BotBeard.
Never, you'll have to get through our multitude of deadly accessories!
Yarr!
We'll beat you without even dirtying our uniforms!
Today's revolutionary sticker technology are freely included with the Stikbot Pirate Movie Set!
Don't forget about the hand assembled palm trees!
Yes, they too are included in the...
Harr, harr, harr, harr, harr.
Fire the cannons, use the muzzle blast decals for extra coolness!
Kaboom!
Kaboom!
Oh no, we be doomed!
Ahoy captain, I brought the ship!
The interior be fully furnished,
The deck be vibrantly colored and exquisitely detailed,
and our prank be fully functional and ready to be walked.
Thank you Matey!
They'll never get the treasure now.
Aha, is that so?
How'd you get aboard?
I swam across the sparkling blue ocean baseboard.
With quality like...
Hey, that's mine!
Come back with that!
Curse those high-quality, lifelike sea devils!
Arrhaha...
Introducing the absolutely splendid Stikbot Pirate Movie Set, includes free sneaky sharks.
Stikbot, BRING YOUR ANIMATION TO LIFE!
-------------------------------------------
Arduino Tank Robot with the Devastator metal chassis! - Duration: 10:05.
Dear friends welcome to another video!
In this video, we are going to build an Arduino Robot; an enormous autonomous tank and we
are going to try it on the field!
Let's get started!
Hello, guys, I am Nick and welcome to educ8s.tv a channel that is all about DIY electronics
projects.
In this channel, I share everything about the projects I build to help you build similar
projects or inspire you to start making things because it is easy, fun and creative.
Subscribe to the channel now if you do not want to miss any future video.
Today we are going to build this; an autonomous tank robot using Arduino!
Let's watch it in action for a few seconds.
As you can see we are indoors now, and the robot is driving itself around.
It can detect the obstacles using the ultrasonic sensor.
When it detects an obstacle, it stops, it looks right and then left, and it turns to
the direction with the most space available.
If the obstacle is small in size, it has no problem to overcome it.
Let's now move outside and see how it performs on the ground.
…… As you can see the tank is performing great outside as well.
It looks very cool, and as you are going to find out, it is straightforward to build.
Let's see how to create it in detail.
So far, all the robots I have built use plastic parts.
You can watch the videos about the robots I built in the past by clicking on the card
here.
I wanted to build a more durable robot to test it outdoors.
After a lot of search, I decided to use the DFRobot Devastator tank platform as the chassis
of the robot.
The Devastator platform is designed by DFRobot, and it is made from a high strength aluminum
alloy which makes it robust and durable.
The kit also uses metal gear motors which are more durable than the plastic ones.
The tank kit costs 85$ and DFRobot were kind enough to send me a sample unit to build this
project with it.
DFRobot has also developed some very interesting Arduino compatible boards.
I decided to try the Romeo board which is an Arduino Uno with an embedded motor shield.
In other words, we can drive the powerful motors of the robot kit directly from this
board.
So this board makes thing much easier.
The board costs around 30$, and it was also sent to me free of charge.
You can also use a standard Arduino Uno with a motor shield if you wish.
Be sure that the motor shield you choose can handle the current that these motors require.
We are also going to need the following parts to complete our robot:
• An SG90 servo • An Ultrasonic distance sensor
• Some wires You can find links to all the parts I use
in the description of the video below.
The total cost of the project is around 120$.
Let's now start building it.
The Tank Platform comes in this beautiful looking box.
Everything inside is packed well, and it is labeled.
The kit comes with an assembly manual which is good but not great.
It took me around 4 hours to assemble the kit.
The chassis is made of metal, but the wheels, the suspensions, and the drive gear are plastic.
Have in mind the kit does not contain the tools you are going to need, an M3 Philips
Screwdriver and a small cross sleeve Wrench.
You are also going to need a soldering iron just to solder the wires to the motors.
After the chassis is complete, before putting the top cover on, we need to connect the electronics.
I place the Romeo board in its position, and I connect the motors like this.
The next step is to provide power to the board.
I am going to use this AA battery holder that comes with the kit, so I am going to connect
it according to this schematic diagram.
You can also use a LiPo battery if you wish but the package does not contain one.
Now using this switch, we turn the robot on or off quickly.
Now that we have connected the motors and the power we need to connect the servo motor
and the Ultrasonic distance sensor.
We are going to use digital pin 8 for the servo motor.
The Romeo board offers easy access to every digital pin, and it has power pins next to
each one.
So in order to connect the servo, we plug it in like this.
The Brown Pin is GND, the Red one is Vcc, and the orange one is the Signal.
Now let's connect the ultrasonic sensor.
We connect GND and then VCC like this.
Then we connect the Trigger pin to Analog Pin 4 and the ECHO pin to Analog Pin 5.
That's it the electronics are ready!
We then screw the servo on the top part of the chassis like this, and we also place the
switch in its position.
Now we can screw the top part of the frame.
We put the top part in its position, and after screwing six screws, the frame is complete.
In order to mount the Ultrasonic distance sensor to the SG90 servo, I 3D printed this
simple mount.
I glued the servo hand like this, and now we can attach it to the servo easily.
I designed this mount myself, and I have uploaded the file to Thingiverse.
You can find a link to it in the description below.
If you don't own a 3D printer, you can buy a similar part online or simply use a double
sided tape to attach the sensor to the servo.
Now the robot is almost ready, all we have to do is to load the code I developed for
it.
Using a USB cable, I program the board, and then I remove the cable, and I provide power
via this battery pack.
The Robot is ready, and it is huge.
Its dimensions are 25x23 cms; it is the biggest robot I have ever built.
Due to its big size and design, it can easily overcome small obstacles.
Cool, isn't it?
The robot looks great, and my little nephews love it.
Let's now take a quick look at the code of the robot.
The code of the project is similar to the code I used in the simple Arduino robot we
built some time ago.
I only made some minor changes because we are not using the motor shield this time.
So, in order the code to compile we need to download the NewPing library for the ultrasonic
sensor.
I will provide a link to the library in the description below.
The code works like this.
At first, we measure the distance from the distance sensor looking straight.
If the distance we read is more than 20cms, we are free to move forward.
We check the distance from the distance sensor every 40ms, that's 25 times per second.
If the distance we read from the sensor is larger than 20cms, we continue to move forward.
If the distance we read is less the 20 cms, we stop the robot, we move back a few Cms,
and then we measure the distance from the closest obstacle.
We measure the distance on the left side of the robot and the right side, and we turn
the robot on the side where we have more space available to drive.
The code is simple to follow and to modify.
You can quickly change the robot's behavior and add more features to it if you wish.
As always you can find a link to it in the description below.
Building a robot like this is a great experience.
One can learn a lot from a project like this.
It is an excellent introduction to robotics and Arduino since it is an easy project to
build and the result is impressive.
As a final thought, I think that the Devastator platform is a great robotics platform.
I like the fact that chassis is mostly made out of metal.
It is very well designed, and it provides a lot of room for more electronics and parts.
You can use Arduino, Raspberry Pi or any other microcontroller with this kit.
If you use big LiPo batteries, you can have this robot running for a long time and with
more speed.
Now that I have built a basic Arduino robot using this tank platform, I am going to add
a Bluetooth module to it to be able to control it via a smartphone app.
I am going to develop a new Android app from scratch, so it is going to take me some time
to complete it.
But I think it will be very cool!
I would love to hear your opinion about this robot.
Do you like how it looks and how it works so far?
What kind of features do you want the Smartphone app to offer?
Please, post your ideas below, I am going to read them all and implement the most interesting
ones!
I sincerely hope you enjoyed this video and if you have some spare time between building
the robot check out some of my previous robot videos.
If you haven't already do subscribe and follow me on facebook for exclusive sneak
picks of future things to come.
Thank you very for watching I will see you soon!
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