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About Droid Tesla Pro

DroidTesla is a simple and powerful circuit simulator.

Perfect for students new to electronics circuit design and construction,
hobbyist and tinkerers and even seasoned professionals who want a quick,
handy tool to perform electronics circuit design calculations.

That's interactivity and innovation you can't find in best SPICE tools for PC like Multisim, LTspice, OrCad or PSpice (trademarks belong to their respective owners).

DroidTesla simulator solves basic resistive circuits using Kirchoff’s Current Law (KCL)
in much the same way a student in a circuits class would,the simulator systematically forms a matrix in accordance
with KCL and then proceeds to solve for the unknown quantities using various algebraic
techniques such as Gaussian elimination and sparse matrix techniques.

For non-linear components, such as the diode and BJT ,DroidTesla engine searching for the approximate solution by making an initial guess at an answer
and then improving the solution with successive calculations built upon this guess.
This is called an iterative process.DroidTesla simulation uses the Newton-Raphson iterative algorithm
to solve circuits with non-linear I/V relationships.

For reactive elements(capacitors and inductors),the DroidTesla uses numeric integration methods to approximate the state of the reactive elements as a function of time.
DroidTesla offers the Trapezoidal(I'll add a GEAR method later) integration methods to approximate the state of the reactive elements.
Although for most circuits, both methods will provide almost identical results,
it is generally regarded that the Gear method is more stable, but trapezoidal method is faster and more accurate.

DroidTesla for now can simulate:
-Resistor
-Capacitor
-Inductor
-Potentiometer
-Light Bulb
-Ideal operational amplifier
-Bipolar junction transistor (NPN PNP)
-MOSFET N-channel depletion
-MOSFET N-channel enhancement
-MOSFET P-channel depletion
-MOSFET P-channel enhancement
-JFET N and P
-PN Diode
-PN Led diode
-PN Zener diode
-AC current source
-DC current source
-AC voltage source
-DC voltage(battery) source
-CCVS - current controlled voltage source
-CCCS - current controlled current source
-VCVS - voltage controlled voltage source
-VCCS - voltage controlled current source
-Square wave voltage source
-Triangle wave voltage source
-AC ampermeter
-DC ampermeter
-AC voltmeter
-DC voltmeter
-Two channe oscilloscope
-SPST Switch
-SPDT Switch
-Voltage controlled switch
-Current controlled switch
-AND
-NAND
-OR
-NOR
-NOT
-XOR
-XNOR
-JK flip-flop
-7 Segment Display
-D flip-flop
-Relay
-IC 555
-Transformer
-Graetz Circuit

If you are making an
oscillators you have to put a small initial value on some of the
reactive elements.(see the examples)

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Frequently Asked Questions(FAQ)

What is DroidTesla?

DroidTesla is a simple and powerful circuit simulator for electronics circuit design and construction.

Who can use DroidTesla?

DroidTesla is suitable for students new to electronics circuit design, hobbyists, tinkerers, and even seasoned professionals.

How does DroidTesla solve resistive circuits?

DroidTesla solves resistive circuits using Kirchoff's Current Law (KCL) and various algebraic techniques such as Gaussian elimination and sparse matrix techniques.

How does DroidTesla handle non-linear components?

DroidTesla uses an iterative process called the Newton-Raphson iterative algorithm to find an approximate solution for circuits with non-linear components.

How does DroidTesla handle reactive elements?

DroidTesla uses numeric integration methods, such as the Trapezoidal method, to approximate the state of reactive elements as a function of time.

Which methods does DroidTesla offer for integrating reactive elements?

DroidTesla offers the Trapezoidal integration method, and there is a plan to add the GEAR method in the future. Both methods provide almost identical results, but the Gear method is generally regarded as more stable while the Trapezoidal method is faster and more accurate.

What components can DroidTesla simulate?

DroidTesla can simulate a wide range of components including resistors, capacitors, inductors, operational amplifiers, transistors, diodes, various types of sources, switches, flip-flops, displays, relays, transformers, and more.

Are there any specific requirements for using DroidTesla to simulate oscillators?

Yes, if you are simulating oscillators, you need to provide a small initial value for some of the reactive elements. Examples can be found in the app.
author
Really nice simulator, could you please add component for motor?
Heru Setioko
author
A+
A Google user
author
Can't adjust potentiometer's value with button value up or down or keyboard after this update, plz fix it. Phone: Xiaomi MIX2 with android 9.
A Google user
author
Sweet!
First Last
author
Exactly what I was looking for. Using for digital elect college class and has everything I need for design, works great in my tab s3 with s-pen. Figured I owed this a review since it's been a long search for...
A Google user
author
Wonderful tool for playing around with circuit ideas. Would be nice to have different led forward voltages though. I'm substituting zeners for LEDs.
Don Hanslik