Diptrace Tutorial: Making a schematic

Diptrace Tutorial: Making a schematic


Find out how to make schematics in Diptrace with this video tutorial.
Closed Caption:

so what is a schematic
it's a symbolic representation have an
electrical circuit
and use it to define how the parts
or component in your circuit are
connected to each other
oftentimes people will do it first of
his paper man in a converted
to their computer other times they'll do
it straight
from your computer so the it vanish in
getting it on your computers and you can
then test the circuit
with a simulation program like spice and
it's very easy to convert it to a
printed circuit board
as well so I've downloaded and installed
dipped race
and get race comes with their couple
different programs tailored help you
along the way
program we're going to use to build
maddox is called schematic
and add the way you do that he said just
downloaded
install it double click on schematic and
it'll start running
on the top here you see a
list have libraries and each of these
libraries contain
several components at that are related
to each other
for instance the diode library contains
much different I oats
and the Alterra library contains mushers
Alterra components
I'm just gonna show you how to build a
really simple circuit just an LED that
stays on all the time
and it consists of a voltage regulator a
Capac couple capacitors and LED any
resistor
and that's it so let's start
and will grab the vault regulator first
into Tracy voltage regulators are
organized by the manufacturer
and we'll grab in st. voltage regulator
so we scroll to the right to refine st
this is the st. library on left and the
one where years
is and I'll 7805 and you can just use
the search bar
to find it and you'll notice on the
bottom left here
this is said the footprint so
hey if or when you convert this to a
printed circuit board
this is the her shapes this shapes in
the pens that wall
going on that the circuit for so to put
the 7805
on my I schematic I click on it here
I move over to this big black hairy this
offer will drop schematic and click
again
funny the place now the full strength
that I reckon just left click
or from done I can exit the ap Park
placement mode
by right-clicking so that's my voltage
regulator
PC can one is voltage input connector to
a battery
had this is 10:03 is connected to ground
and pension who is the full time job but
will connect that
to resistor an end to our LED second I
let's grab the battery
and the battery is in the
discrete schematic library right here
with a couple other things
and there it is battery now
in dept race some components have a
related footprint but not all of them do
and the battery does not have a related
footprint because they're couple
different ways you could connect the
battery
so drop it down we click on it drop it
here and every right click
on the battery we just sat down we can
go to properties
and we can attach that the footprint for
the pattern
everyone use for this battery versus can
use a jumper I will use a little battery
box to
to connect so this jumper she's going to
be two pens
at that will connect a battery box
japan won the battery click right here
the negative go to the square
and the positives from the batter's box
will go to this
can write their right click OK and click
OK
so now our battery is
all connections and has a related
patterns
you space bar to rotate their their
pattern
and the park I on your schematic into
like that now on one side the battery is
at the the negative in with that
connects to the ground right here
and the other side is deposited from
that connects
right here San our batteries connected
to the most regulator
it is a requirement but it's nice had to
make this
easy to read at their computer
understands
a how everything is connected whether it
looks nice or not but it helps you in
trouble shooting
if you have any problems if things are
fairly easy to read
another thing I'm most voltage
regulators here the data sheets
require a at input bypass cap an output
bypass cap so let's grab those and set
them down right now
the at caps are in the discrete
library and there's their basic
capacitor you can see the footprints a
just two holes and their space that a
hundred
Mills or one tenth of an inch
making retain my cap this month
there's two and i'm dumb place in those
caps so I right click
I'm done so this Capital Connect right
here
and the other side of the Capitol
connected graph right here
same thing here just go over here
miscalculation
so we have our voltage regulator power
source and some bypass caps
for the people to drink later the next
thing we want is
and other component in the discrete
library it is a resistor
me just scroll down to be fun resistor
what
there a couple resistors you see these
1200 1300
at that just defines the Anna Mills
worked for 11 hundreds financial between
each other tens
the basic resistor the one that you
usually uses a quarter what
and its pasted 300 miles so it's are yes
writer
drop that im and then the last thing we
need is our LED
unrepentant so then the
the negative and the cathode as the
LED connects to ground which is right
here
and positive and you know first go
through the resistor
to limit the amount a current that flows
through that LED
and resistor will be connected to the
for two Japanese
multiple to trigger
chamber space at make love match
crafters to like that
and there you go that's a very basic
circuit
hold on for the apart to and I'll show
you how to convert this to a printed
circuit board
and then we'll go from there

Video Length: 06:53
Uploaded By: nmcclana
View Count: 12,377

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Description:
DipTrace is an advanced PCB design software application that consists of 4 modules: PCB Layout with shape-based autorouter, high-speed/differential signal routing tools, and 3D PCB Preview/Export, Schematic Capture, and Component/Pattern Editors that allow you to design custom component/footprint libraries. Besides being very simple to learn, this software provides wide engineering capabilities with intuitive user interface. Schematic capture works with hierarchical and multi-sheet schematics. ...


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