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Download "Урок №1 Базовые элементы программы Flprog Блоки OR, AND, Bounce, XOR"

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ардуино без написания кода
flprog
в flprog
ардуино
аrduino
ключ к arduino
ключ к ардуино
ардуино для всех
arduino для всех
Урок 1
Базовые элементы
программы Flprog
Блоки
OR
AND
Bounce
XOR
как работеют блоки Flprog
часть 1
уроки ардуино
уроки для начинающих ардуино
Сайт программы Flprog
flprog.ru
ардуино это просто
Таблица состояний
arduino
модуль ардуино
купить ардуино на алиэкспресс
уроки программы Flprog
уроки flprog
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Subtitles

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  • ruRussian
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00:00:01
arduino with this video I am starting a series of
00:00:04
simple visually understandable
00:00:06
video cheat sheets on blocks with the fal program
00:00:09
rights and connecting the module to arduino
00:00:12
I do this for several reasons from the
00:00:14
very beginning I should have started my
00:00:17
channel with lessons for beginners on
00:00:20
connecting modules and the work of the
00:00:22
fal pro program blocks, I didn’t do this and
00:00:25
now I’m getting a lot of messages
00:00:27
asking for help in basic things,
00:00:30
how certain modules are connected and
00:00:32
how the program blocks and fay pro work,
00:00:35
so I have the key to arduino on my channel,
00:00:37
I’m going to fill this gap but the
00:00:40
second reason, even for me,
00:00:43
my cheat sheets can also be useful
00:00:45
because when you don’t use
00:00:47
some modules and blocks for a long time, you begin to
00:00:50
forget their connections and
00:00:52
functionality. This mainly applies to
00:00:54
modules that have more than three
00:00:57
connection wires and more functional and
00:00:59
complex program blocks and functions. about, for
00:01:01
example, the same Petri block gula tarot
00:01:04
video tutorials cheat sheets let's start with studying
00:01:07
the blocks of the fal prok program let's start
00:01:09
analyzing the branch of blocks from top to bottom
00:01:12
while we plan to release videos with
00:01:14
video tutorials more often than videos with projects,
00:01:17
all of course depends on the availability of
00:01:18
free time viewers of subscribers and
00:01:21
also more advanced users
00:01:23
programs and fal pros that no longer
00:01:26
need cheat sheets, please treat them with
00:01:28
understanding and be patient,
00:01:30
although I am sure that the majority of
00:01:33
users of the for broke program
00:01:35
from time to time have to refresh their memory
00:01:37
and resort to various types of help, and it would be
00:01:40
impossible to remember everything unless you are, of course, a
00:01:43
child prodigy
00:01:47
in this video we will analyze the most
00:01:50
used blocks in projects,
00:01:52
almost no project can do
00:01:55
without one of these blocks so that in the
00:01:57
falpro program we can see the block tree itself
00:02:00
and the work area,
00:02:02
we need to create a new project on the panel,
00:02:05
click on a blank sheet of paper, select a new
00:02:08
project for the controller me controller
00:02:10
arduino nano 328 project and vbd and we are looking for a
00:02:16
controller on on arduino atmega328
00:02:21
arduino nano 328
00:02:25
we select now a work area appears in front of us
00:02:28
on the right side we see a
00:02:32
tree of the blocks themselves from which
00:02:34
we compose our projects the topmost
00:02:37
are the design blocks the inscription and
00:02:39
image that is projects you can
00:02:42
insert any inscriptions, I usually sign
00:02:45
some important points in the project so as
00:02:48
not to get confused and we can insert an image,
00:02:51
thereby somehow highlighting a group of
00:02:54
blocks with the design, everything is clear,
00:02:56
go to the basic element and start
00:03:00
disassembling from top to bottom, drag it to the
00:03:02
work area blog or if you are a beginner,
00:03:07
then many blocks are unknown to you
00:03:09
and I strongly recommend looking at the
00:03:12
help for each block. The help is
00:03:15
called up by double-clicking on the block in the
00:03:17
block tree, for example blog or here is a
00:03:22
table of how this block works, that
00:03:25
is, if we have 0 on the first and second
00:03:27
inputs, then the output is the same it will be 0 if
00:03:32
at the second step there is one at the output there will be
00:03:35
one if at the first input there is one at the
00:03:39
output there will also be one and if at
00:03:42
both inputs there will be one at the output
00:03:45
we will also have one now let’s
00:03:47
clearly show how this block works,
00:03:49
first we need to create two input
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we will hang two buttons on them and will not give
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button 1,
00:03:59
select digital, select pin 3 and
00:04:04
turn on anti-bounce protection
00:04:07
since we have physical contacts on the buttons
00:04:11
keep pull-up resistor protection from
00:04:14
various types of interference,
00:04:16
but when turning on the pull-up
00:04:18
resistor there is a nuance when we
00:04:20
pull out the button on the work area,
00:04:22
we need to put inversion on it,
00:04:25
otherwise our button will work the
00:04:26
other way around. Ready to add a second input,
00:04:30
let's call it button 2 digital
00:04:36
pin 2. We also put anti-bounce protection and a
00:04:40
pull-up resistor ready and create
00:04:43
one output at once, this will be
00:04:46
an LED, so sign the LED
00:04:51
type digital and select 4 pins ready
00:04:56
now we drag ours at the input and output
00:04:58
to the work area on the buttons as
00:05:04
I just said, set the inversion and
00:05:08
connect it to the input of the block,
00:05:12
connect the LED to the output, here is such a
00:05:17
simple circuit, we have
00:05:19
flashed the arduino and now we can clearly
00:05:24
see how it works blog or for a better
00:05:27
perception of the material, I made this
00:05:30
small stand that we have
00:05:32
simulates a program block and fal useful at
00:05:34
the moment this is an
00:05:37
or block that has two inputs in the form of buttons
00:05:39
and one output in the form of an LED inside
00:05:43
the box hidden arduino with wires
00:05:45
so as not distracted us from perceiving
00:05:47
the material, we
00:05:48
apply one to the first input of the thief block, we
00:05:51
see we get one at the output, we apply
00:05:54
one to the second input, we also see
00:05:56
ones at the output, we apply one to both
00:05:59
inputs, we also see one at the output, that
00:06:02
is, when we apply one to any of
00:06:04
the inputs or to all at once at the output we
00:06:07
will get the
00:06:08
person with this block I think it’s clear here
00:06:10
everything is elementary with the block or we
00:06:12
figured it out, delete it and go to the block
00:06:16
and first let’s call the help and
00:06:20
look at the table how blog
00:06:23
and blog works for us and it works for us
00:06:26
as follows if the inputs are 0 and at
00:06:29
the output 0 if on the second move there is one at
00:06:32
the output also 0 if at the first input there is
00:06:35
one at the output also 0 if there are ones at
00:06:38
both inputs then at the output we already
00:06:40
get one
00:06:42
now let's connect the block and now
00:06:46
flash and see visually how
00:06:48
this block works we supply one
00:06:52
nothing happens to one input, nothing happens to the second input,
00:06:56
we apply one to each of the inputs and
00:06:59
only then we get one at the output,
00:07:02
that is, blog and
00:07:03
produces one at the output only when there are
00:07:06
ones with a block in all of its moves
00:07:09
and I think it’s clear we remove,
00:07:12
then we have the bones block, I
00:07:15
apologize for my French if
00:07:17
I spell the name of the block incorrectly, I took into account,
00:07:20
unfortunately, the German one, look at the help,
00:07:23
contact debounce protection block, that
00:07:26
is, this is the same moment that we
00:07:28
did when we made up the inputs for the buttons,
00:07:31
there we checked the debounce protection box
00:07:33
and the two-line description serves
00:07:36
to protect against false impulses when
00:07:38
switching contacts; the
00:07:40
response delay is 40 milliseconds, that is, a
00:07:43
unit at the output appears 40
00:07:45
milliseconds after a
00:07:47
unit is applied to the input. 40 milliseconds
00:07:50
is very short and is practically invisible to the eye,
00:07:52
so it is visually clear that the
00:07:55
block just passes through itself and
00:07:57
its unit will not be visually
00:07:59
shown by this block because
00:08:01
showing nothing here is enough
00:08:04
just to know how it works,
00:08:05
then we have an xor block, drag
00:08:10
it to the work area and connect it to
00:08:13
our buttons and to the LED, let's
00:08:16
look at the help on the xor block if at
00:08:19
both inputs there is 0 and
00:08:20
then at the output too, but
00:08:22
if at the first input there is one, the output is
00:08:25
one on the second move, the ones at the output are
00:08:28
also ones, if at both inputs there are
00:08:30
units and at the output we get 0, in
00:08:33
principle, everything is clear, let’s see
00:08:36
how it works visually, let’s visually show
00:08:38
one on one of the moves of the xor block we see a
00:08:41
unit appears at the output, let's apply
00:08:44
one to the second input of the xor block, we see
00:08:47
at the output we also get connect, let's
00:08:49
apply one to both inputs of the xor block, we
00:08:55
see with two units at the inputs,
00:08:59
we get 0 at the output, that is, the xor block
00:09:02
gives one to in its output only if
00:09:05
there is 1 unit at the input,
00:09:07
if there are two units at the input, the
00:09:10
output is set to 0 with the xor block, I
00:09:13
think everything is also clear, we can delete
00:09:16
blocks by the way, you can click on the dalit button,
00:09:18
select them and delete them, then we have a
00:09:22
state table block, that is, in this block
00:09:25
we can use our own combinations
00:09:27
to create analogues of the app and export blocks,
00:09:31
just customize it for yourself, that is,
00:09:36
we can independently compose state table blocks like this.
00:09:39
This block differs
00:09:43
from the blocks of the above in that
00:09:46
we can set any number of
00:09:49
inputs and any number of outputs in it,
00:09:52
that is let's take a look at its settings and
00:09:55
I'll show you how it's done. We see that
00:09:57
now we have two inputs and
00:10:00
one output on the block. This is the tab
00:10:03
inside this tab, two inputs, and here we're
00:10:06
already adding zeros and ones;
00:10:12
this is as follows: click the
00:10:14
add button,
00:10:15
this window opens and here we
00:10:18
can click the mouse to change the value, either
00:10:21
zero or one, after that we click
00:10:23
ready and we have two ones in the table,
00:10:27
click more add ready, add
00:10:31
two 0 click more add
00:10:35
they are ready and we have
00:10:38
our selected result is added in this way,
00:10:41
we independently compose a table of the
00:10:43
output state, also in the
00:10:45
block settings we can add the number of inputs and
00:10:49
add the number of outputs, we
00:10:51
add tabs about each tab,
00:10:54
we can compile our own table of the
00:10:56
state, I also recommend going and
00:10:59
reading the help, I think that for this
00:11:01
the lesson will suffice for now in the
00:11:03
next video we will analyze the remaining
00:11:06
four blocks and I almost forgot about the
00:11:09
app and blocks
00:11:11
you can add inputs right click
00:11:13
on the block and on the inscription add
00:11:16
input inputs you can add as many
00:11:19
as you need but the operation of the block will
00:11:22
not change in the block xor
00:11:24
adding no additional inputs are
00:11:26
provided, all useful links
00:11:29
will be found in the description if suddenly someone
00:11:31
needs a sketch, write also I
00:11:34
will add it in the description under the video
00:11:35
and I’m done with this everyone who liked the video like the video
00:11:37
subscribe to the channel don’t
00:11:39
forget to click on the bell everyone
00:11:41
bye

Description:

Файлы на Яндекс диске, искать по названию https://yadi.sk/showcaptcha?cc=1&mt=05228E219732AD3231BEEDF61EE459CCE2B229AB37AF3CDEB762BE8831F52B06DDCA4061E4BD3EC891E16C7EB93D584EF72D3DF72B5A0F69157F6621AB0F529C6D452F949B5C35E84A9D08FF8036E10C3FAC13756A96EF53B743EB379EC726AF4DE0D02AF1C1419FE1014EC315A5BA057DA47043455805A0483A3806E5A069BACE8B21EA4C6285CDC5EEA3D2BAABCFE0003CD233EDAEF8601FC426A03C211AFFB74806AF8271D62C02C793C6D840D0F66AA092EF679E1BBFD881FDD70E476418499700B5CF3AC090D55FC6D785B6395E1DE681FF7888885668801530C5&retpath=aHR0cHM6Ly95YWRpLnNrL2QvYUtwdVJEbUJTTlFtOGc__bc9fbd260847000443a88e41d75c53dd&t=2/1717937891/e48cd03bdd4d451059bdbc0e543e81e6&u=b5b2cb53-a5300d0c-c2859e0a-aa0aa840&s=d531179d298cbb302d86f90a9863b679 Сайт программы Flprog flprog.ru 📎Прошу в комментариях сообщить если какая то ссылка не работает!!! Arduino NANO http://shp.pub/63lexf Arduino Pro Mini http://shp.pub/63lf1i Arduino sensor shield v5.0 http://ali.pub/1bfevy DFPlayer Mini http://shp.pub/63lhvs GSM модуль SIM800L http://shp.pub/63lm4m HC-12 Дальнобойное радиоуправление http://shp.pub/63lgkx MOSFET 5A http://shp.pub/63ln22 MOSFET на 15А http://shp.pub/63ln6c MOSFET на 220V http://ali.pub/1raw3q RGB Светодиоды http://shp.pub/63lgat SD модуль Arduino http://shp.pub/63lcyn USB UART/TTL (конвертер прошивальщик) http://shp.pub/63lf3u АЦП ADS1115 http://shp.pub/63lcem Дальномер HC-SR04 http://shp.pub/63lna8 Дальномер HY-SRF05 http://shp.pub/63lnpz Датчик BMP180 (Барометр) http://shp.pub/63lo4r Датчик BMP280 (Барометр) http://shp.pub/63lo7h Датчик газа и дыма MQ-2 http://shp.pub/63lh6w Датчик индуктивности http://shp.pub/63lofu Датчик освещённости (Фоторезистор) http://shp.pub/63lmgv Датчик препятствий http://ali.pub/1dl0rn Датчик препятствий E18-D80NK http://shp.pub/63lgp7 Датчик температуры DS18B20 http://shp.pub/63lgto Датчик температуры и влажности DHT11 (DHT21 DHT22) http://shp.pub/63ldnj Двухстрочный дисплей(синий, зелёный) http://ali.pub/19iccq Десяти сегментный индикатор http://shp.pub/63lhid Дисплеи Ардуино с разными подсветками http://shp.pub/63lelk Драйвер А4988 http://got.by/5jb4p0 Драйвер двигателей на ШИМ http://shp.pub/63loxx ИК Управление http://shp.pub/63ldyf Клещи для зачистки изоляции http://shp.pub/63j0dn Кнопки Ардуино http://shp.pub/63lg2n Колёса для Ардуино http://ali.pub/1a23dz Контактные реле http://shp.pub/63lpij Кран Электромагнитный клапан http://shp.pub/63lkyt Кримпер Клещи для обжима клемм http://shp.pub/63izbx Люксметр http://shp.pub/63lsoh Макетные платы http://shp.pub/63lpnz Матричная Клавиатура http://got.by/5bb6tg Микро SD карты (флешки) http://shp.pub/63ld61 Микроконтроллер NODE MCU http://shp.pub/63lfvg Модуль EEPROM AT24C256 http://ali.pub/1qsaa3 Модуль Вольт-Амперметра INA-219 http://shp.pub/63lhr4 Модуль расширителя ШИМ выходов PCA9685 http://shp.pub/63lcja Мотор с редуктором http://shp.pub/63lsgi Погружной водяной насос http://shp.pub/63lm7x Понижающий преобразователь на 3А http://shp.pub/63lma9 Расширитель входов - выходов MCP23017 http://shp.pub/63lcbb Сдвиговый регистр 74HC595 http://shp.pub/63lcpw Сенсорные выключатели http://shp.pub/62u3ns Серводвигатели сила 20кг http://shp.pub/63lpz9 Серводвигатели сила 25кг http://shp.pub/63lr3w Серводвигатели сила 60кг http://shp.pub/63lrnc Стартовый набор Ардуино http://shp.pub/63ls06 Твердотельные реле http://shp.pub/63ls60 Тихие Драйверы шаговых двигателей http://shp.pub/63lp7n Тумблера со светодиодами http://shp.pub/63lldl Цифро-аналоговый преобразователь ЦАП MCP4725 http://shp.pub/63lcm7 Часы реального времени Ардуино http://shp.pub/63le5t Четырёхстрочный дисплей http://ali.pub/19ide2 Шаговый двигатель Nema17 http://got.by/5jb4rc Энкодер http://shp.pub/63lh28

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