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Download "Souder les composants - EP02 Projet Dé Electronique"

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Video tags

heliox le labo d'heliox
le labo
bricoler
diy
tuto
tutoriel
tutorial
fr
fabriquer
imprimante 3D
impression 3D
arduino
attiny85
programmer attiny85
tutoriel attiny85
tuto attiny85
programmer microcontroler
microcontroler
dé électronique
electronic dice
attiny85 tuto
Subtitles
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Subtitles

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  • ruRussian
Download
00:00:01
second part out of 4 where you will
00:00:03
learn how to make the electronics
00:00:05
in the first part if you
00:00:07
have not seen it we made the
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printed circuit
00:00:09
if you have not followed it I
00:00:11
invite you to go to the description you
00:00:12
will find the link to the first
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video where you will learn how to do
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this today is in this video
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in the second video we will learn how to
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put all the electronic components
00:00:21
on the printed circuit and obviously
00:00:24
understand a little a little bit of the
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printed circuit diagram so that you can
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understand a little bit what it
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's about if you ask why I'm
00:00:31
dressed exactly the same as the
00:00:33
previous video it's quite simply because
00:00:34
I filmed everything I could in
00:00:36
a single day so that's why
00:00:37
I have the same t-shirt and for those who are
00:00:39
wondering it's a t-shirt that I
00:00:41
made myself using a
00:00:42
3d printer in fact the designs that
00:00:44
you see in blue it's quite simply
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a flexible filament so the printer
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printed directly on the t-shirt
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then printed so if
00:00:53
you're ever interested in having a little tutorial on
00:00:54
this don't hesitate to let me
00:00:56
know in the comments I'll make you a
00:00:58
little video on that, let's
00:00:59
talk enough, I'll leave you with the little
00:01:01
explanations and we'll meet
00:01:02
again right after, before we start,
00:01:06
let's look a little closer at how
00:01:07
one of the games works and
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obviously has all the sides of the game here. and
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we can see that the top
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left point here which we can find there we
00:01:16
can find there which we can find
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there and here is always connected to its
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opposite that is to say this one this one this
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one the sweat and this one therefore when
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it is lit and always has its weighing
00:01:30
which the teeth on train on all the
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faces we can also make the same
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observation with this point which is
00:01:36
connected with its opposite so this one with this one this
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one with this one each
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time we also have this one which is
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connected to that one and to finish we have
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our central point which is
00:01:50
independent we can therefore conclude
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that with this observation we will
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only need four outputs
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one output which will control those here an
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output which will control it is help
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there another for these two LEDs and in the
00:02:03
mountains and the central letter which is
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independent and therefore with our a tiny
00:02:07
85 which has five outputs for we
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see here on the diagram in blue it is
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possible to control the LEDs to
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make one of the voices if the circuit that I
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made I used the software which
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is free which is swallowed fresh thing which
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is very good and which is very very
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simple then we cannot not do everything we
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want to do on the other hand it is
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quite easy to learn with this
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software I was able to have but the help
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as on one of the as well as here you
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can see an inclination sensor a
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resistance of 10 kg home is here we have
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Latini 85 our micro controller which will
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allow us to turn on the OLEDs in the same
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way as one of the orange ones obviously
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you see all the tracks and in blue
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these are connections between the tracks
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since I couldn't pass
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through an already existing track like
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here I had to make a way to be able to
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put a bridge no that here we are going to replace
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the blue wire with a real wire
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metal conductor wire we are going to
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need a resistance of 10 kg own and
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not 120 as indicated by this
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blue LED of a hatimi 4.25 with its support
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of a very flexible wire toggle sensor
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and a little more rigid wire
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of an on off switch and a support
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for batteries 20 32 you will find all
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the material in the description game
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strips a film with no brain to create
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the connections between the tracks
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you will have to go and lift in this
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way I invite you to fake on
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the video if you need I
00:03:35
therefore position all the bridges and I
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flatten them as much as possible against the plate
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here is the result just do the
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soldering
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I cut the wires to avoid being
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bothered later here the first
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step is finished you should have
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something that looks like this we
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are going now positioned the LEDs
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pay close attention to the direction of the wool
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I have put a small diagram at the bottom
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left to make it clearer we
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solder everything and for that I have a small
00:04:16
technique soldering only a single
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leg of the led made then melt the
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dyes to better reposition the LED
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and once it is positioned you
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can make the second paste
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we then move on to the resistance and the
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direction has no importance
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[Music]
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we will then put the
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tilt sensor and here too the direction is
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not important if you use the same
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complainant
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we place the support of the i 85 team
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[Music]
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I then wanted two soup wires
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which will allow the power supply of the
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circuit the red is a little
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smaller so to be able to put
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the switch there and then I end up
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soldering the support for the 20 32 battery and
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here you now have a
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printed circuit with all the components which
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are already soldered everything is ready so all you
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will need to do is put the
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microcontroller it is a tiny 85
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which is very small like that and which
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will put everything and which will be placed on the
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small support you will
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obviously find in the description everything
00:05:57
we used in this video in
00:05:59
this step so if you are missing
00:06:01
something do not hesitate to look
00:06:03
in the description everything there and I
00:06:05
really hope that you like this little project
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I really spend a lot of time on
00:06:07
the explanations and also on all
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the manufacturing I haven't arrived to
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such a result in one go I did
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a lot of tests
00:06:15
so here I hope that you like all the time
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I spent experimenting with all this
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and if so do
00:06:20
n't hesitate to leave a little thumbs up and a
00:06:22
little comment that always makes me
00:06:24
happy in the next video you
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will learn to program this
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microcontroller so Latin and 85 you
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will need an arduino uno for
00:06:31
that and the advantage with the next
00:06:33
video is that if you do not follow the
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construction of the electronic dudh
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you can very well take this
00:06:39
microcontroller tutorial only
00:06:42
for your needs and your project
00:06:43
I will therefore explain everything from a to
00:06:45
z about this microcontroller and its
00:06:48
programming don't forget to subscribe to the
00:06:50
channel by activating the little bell so as
00:06:51
not to miss the next videos
00:06:53
you have been warned it's super practical
00:06:54
and we'll see you in the next
00:06:57
episode for the programming of tinée 85 and
00:07:01
so I'll see you very soon in the
00:07:03
next episode
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bye
00:07:06
[Music]
00:07:23
at

Description:

Je vous propose un dé électronique de A à Z en partant de la création d'un circuit imprimé à la modélisation 3D Vous apprendrez pas mal de choses différentes tout on long des tutoriels afin de vous aider dans la création de vos propres projets. Ceci est l'épisode 2, je vous invite à aller voir le premier : https://www.youtube.com/watch?v=8joLK039fjk Le tutoriel est articulé en 4 épisodes : 📺 1 - Fabrication d'un circuit imprimé avec transfert de toner : https://www.youtube.com/watch?v=8joLK039fjk 📺 2 - Explication rapide du circuit imprimé et comment placer les composants dessus. 📺 3 - Programmation du microcontrôleur Attiny85 pour faire fonctionner le dé : https://www.youtube.com/watch?v=S-oBujsoe-Q 📺 4 - Mes étapes de créations sur la modélisation de l'objet final : https://www.youtube.com/watch?v=o8AYCznNaCQ ⚙️ Ce que j'ai utilisé dans la vidéo ⚙️ ✔️ Résistances : Amazon : https://www.amazon.fr/gp/product/B01JU58C5A?ie=UTF8&creative=6746&creativeASIN=B01JU58C5A Banggood : https://www.banggood.com/fr/300Pcs-1-pencent-1-or-4W-Metal-Film-Resistor-Resistance-30-Values-Assortment-Kit-p-1091920.html?akmClientCountry=FI&p=IF091314081132201709 ✔️ LED : Amazon : https://www.amazon.fr/gp/product/B00UWBJM0Q?ie=UTF8&creative=6746&creativeASIN=B00UWBJM0Q Banggood : https://www.banggood.com/fr/200pcs-5MM-LED-Diode-Kit-Mixed-Color-Red-Green-Yellow-Blue-Orange-p-1009873.html?p=IF091314081132201709 ✔️ ATTINY85 : https://www.amazon.fr/gp/product/B00OXVFD1I?ie=UTF8&creative=6746&creativeASIN=B00OXVFD1I ✔️ Arduino (copie) : Amazon : https://www.amazon.fr/gp/product/B01N91PVIS?ie=UTF8&creative=6746&creativeASIN=B01N91PVIS Banggood : https://www.banggood.com/fr/Geekcreit-UNOR3-ATmega328P-Development-Board-No-Cable-Geekcreit-for-Arduino-products-that-work-with-official-Arduino-boards-p-964163.html?akmClientCountry=FI&p=IF091314081132201709 ✔️ Détecteur bascule mercure : Amazon : https://www.amazon.fr/gp/product/B075GPMBH4?ie=UTF8&creative=6746&creativeASIN=B075GPMBH4 Banggood : https://www.banggood.com/fr/10pcs-3mm-PZ-101-Mercury-Switches-Tilt-Sensor-20V-0_5A-Work-Angle-10-Degree-Endstop-Switch-p-987655.html?akmClientCountry=FI&p=IF091314081132201709 ✔️ Fils monobrins : https://www.amazon.fr/gp/product/B001IRVDV4?ie=UTF8&creative=6746&creativeASIN=B001IRVDV4 ✔️ switch on/off : https://www.amazon.fr/gp/product/B00X3KCA0M?ie=UTF8&creative=6746&creativeASIN=B00X3KCA0M ✔️ support pour pile : https://www.amazon.fr/gp/product/B00UH8YHMW?ie=UTF8&creative=6746&creativeASIN=B00UH8YHMW ✔️ pile 2032 : https://www.amazon.fr/gp/product/B00TYEL11K?ie=UTF8&creative=6746&creativeASIN=B00TYEL11K ✔️ Fil d'étain : https://www.amazon.fr/gp/product/B008LTIJJ6?ie=UTF8&creative=6746&creativeASIN=B008LTIJJ6 ✔️ Fer à souder température réglable : https://www.amazon.fr/gp/product/B004VDJ72E?ie=UTF8&creative=6746&creativeASIN=B004VDJ72E 💾 Le schéma pour câbler l'attiny85 à l'arduino : https://drive.google.com/open?id=1jsc85fCvD9mqH4DaDgXtVMGRgvTynq4_ 💾 Image du circuit à transférer : https://drive.google.com/file/d/1vhvZfw8ed4_vmGRZUUnpGpwWGKzQAe9t/view?usp=drive_open 💾 Logiciel pour la conception du circuit imprimé : http://fritzing.org/download/ ⭐️⭐️⭐️ Me soutenir et m'aider ⭐️⭐️⭐️ - en partageant mes vidéos (vous n'avez pas idée à quel point ça aide!) :) - sur Tipeee : https://en.tipeee.com/helioxlab ▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫ 💻 Mes Réseaux Sociaux 💻 Twitter : https://twitter.com/Heliox_Lab Facebook : https://www.facebook.com/unsupportedbrowser Instagram : https://www.facebook.com/unsupportedbrowser Thingiverse : https://www.thingiverse.com/HelioxLab/designs Tipeee : https://en.tipeee.com/helioxlab 🔌 Mes imprimantes 3D 🔌 CREALITY CR-10 : https://www.banggood.com/sitemap.html TEVO TORNADO : https://goo.gl/Zk3wNb Zortrax M200 : https://www.amazon.fr/gp/product/B00NVTQ9JS?ie=UTF8&camp=1642&creative=6746&creativeASIN=B00NVTQ9JS Anet E10 : https://www.banggood.com/fr/Anet-E10-DIY-3D-Printer-Kit-220+270+300mm-Printing-Size-Support-Off-Line-Print-1_75mm-0_4mm-Nozzle-p-1192129.html?akmClientCountry=FI&p=IF091314081132201709 Hephestos 2 : https://www.amazon.fr/gp/product/B0196V84UG?ie=UTF8&camp=1642&creative=6746&creativeASIN=B0196V84UG 📽 Mon matériel 📽 Mon trackball : https://www.amazon.fr/gp/product/B074W227RK?ie=UTF8&camp=1642&creative=6746&creativeASIN=B074W227RK Lumière : https://www.amazon.fr/gp/product/B0186TVB4A?ie=UTF8&camp=1642&creative=6746&creativeASIN=B0186TVB4A Batteries pour lumière : https://www.amazon.fr/gp/product/B0761L7YY5?ie=UTF8&camp=1642&creative=6746&creativeASIN=B0761L7YY5 Trepied : https://www.amazon.fr/gp/product/B005KP473Q?ie=UTF8&camp=1642&creative=6746&creativeASIN=B005KP473Q Adaptateur du trepied : https://www.amazon.fr/gp/product/B01MD10K6I?ie=UTF8&camp=1642&creative=6746&creativeASIN=B01MD10K6I Micro : https://www.amazon.fr/gp/product/B00EO4A7L0?ie=UTF8&camp=1642&creative=6746&creativeASIN=B00EO4A7L0 Caméra : Samsung S8+ https://www.amazon.fr/gp/product/B06XW81R9G?ie=UTF8&camp=1642&creative=6746&creativeASIN=B06XW81R9G Musique : DIZARD - Music Box Broke For Free - Summer Spliffs #heliox

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