Friday, October 20, 2017

Electronic Circuits: 24-48V to 5V – 3A DC-DC Converter using BD9G341AEF

8051 Circuit. - This is one of implementation ofElectronic Circuits: 24-48V to 5V – 3A DC-DC Converter using BD9G341AEF to build converter DC to DC. It is only need small component completed to build converter in this time.

Beside we will show you electronic design circuit and component parts need, we also will give you global description about this circuit. So, please enjoy to continue reading this article until finish and get more useful.

Electronic Circuit Design

Component Parts
  • BD9G341AEFJ
  • Capacitors
  • Resistors
  • Diode
  • Inductor
Description

The electronic circuit design like in Figure 1 above show you DC to DC converter using BD9G341AEF. 

According Electronics-lab blog mentioned that 24-48V input voltage range 3A output current DC-DC Converter using BD9G341AEFJ IC from ROHM semiconductor. This IC is ideal for high voltage to low voltage converter with 3A output current. Pin configuration of the board with 3 Pin horizontal mounting of the regulator is similar to LM7805 LDO regulator and is suitable to use this IC as replacement which can provide more current and take high voltage input.

Different voltage output are possible by changing few components. Refer to datasheet for the same. Example circuit can provide 5.1V/3A with input supply range 24-48V DC and operating frequency 200 KHz.

The BD9G341AEFJ is a buck switching regulator with integrated 150mΩ power MOSFET. Current mode architecture provides fast transient response and a simple phase compensation setup. The operating frequency is programmable from 50kHz to 750kHz. Additional protection features are included such as Over Current Protection, Thermal shutdown and under voltage lockout. The under voltage lockout and hysteresis can be set by external resistor.

Monday, October 9, 2017

Electronic Design: RF based Home Automation Circuit using 8051

8051 Circuit. - This is one of implementation of 8051 microcontroller IC and RF transmitter and reciever to build RF home automationsystem. It is only need small component completed to build this electronic circuit that basically component like relay.

The electronic design circuit of RF based home automation circuit using 8051 is look like in Figure 1 and Figure 2 below. Other component used like LCD, relay, transistor, etc.

Beside we will show you electronic design circuit and component parts need, we also will give you global description about this circuit. So, please enjoy to continue reading this article until finish and get more useful.

Electronic Circuit Design

Component Parts
  • AT89C51 Microcontroller
  • 8051 programming board
  • Electrolytic capacitor – 10µF, 16V
  • 10KΩ Resistor x 2
  • Push button
  • 11.0592 MHz crystal
  • 22pF capacitors x 2
  • 1KΩ x 8 Resistor Pack
  • Pot – 10KΩ
  • 434 MHz RF Receiver Module
  • HT-12D Decoder IC
  • 33KΩ Resistor
  • LED
  • Connecting wires
  • 1N4007 Diode
  • 2N2222 NPN Transistor
  • 1KΩ Resistor
  • 12V Relay
  • 434 MHz RF Transmitter Module
  • HT-12E Encoder IC
  • 750KΩ Resistor
  • Push Buttons x 4
Description

The electronic circuit design like in Figure 1 above show you RF based home automation circuit using 8051 IC. 

According Electronicshub blog mentioned that the main component of the RF based Home Automation is the RF Module. An RF Module is a small electronic circuit which is used to transmit or receive data wirelessly.

RF Modules are often used in consumer applications where you need to remotely control some machines or appliances without making any physical contact with them.

Some of the common applications are wireless alarm systems, garage door openers, industrial remote controls, wireless home automation systems and smart sensor applications.

RF modules do not require line-of-sight operation. Hence, they are often used instead of infrared remote controls.
Depending upon the type of application, the RF module is chosen.

For example, in case of short range wireless control applications, we can use ASK modulated RF Module of frequency 315 MHz or 433 MHz.

Monday, September 25, 2017

Electronic Design: IC 555 Inverter Circuit using Mosfet

Inverter Circuit. - This is one of implementation of 555 IC and Mosfet to build power inverter system. It is only need small component completed to build this electronic circuit that basically component.

The electronic design circuit of IC 555 Inverter using Mosfet is look like in Figure 1 below. Other component used like resistors, transformer, capacitors, and transistor.

Beside we will show you electronic design circuit and component parts need, we also will give you global description about this circuit. So, please enjoy to continue reading this article until finish and get more useful.

Electronic Circuit Design

Component Parts
  • IC1_______NE555 timer IC__________________________ = 1 pcs.
  • Q1________BC549___NPN 40V 0.5A transistors________ = 1 pcs.
  • Q2,Q3_____IRF540___N CHANNEL POWER MOSFET, 100V, 27A, TO-220______ = 2 pcs.
  • C1,C2_____0.1uF 100V mylar capacitors_____________________________ = 2 pcs.
  • R1________ 4.7K 0.5W resistor___________________________________ = 1 pcs.
  • R2________120K 0.5W resistor___________________________________ = 1 pcs.
  • R3,R4_______1K______”______”______________________________________ = 2 pcs.
  • R5________5.6K______”______”______________________________________ = 1 pcs.
  • T1________2A 12V__CT__12V transformer_____________________________ = 1 pcs.
Description

The electronic circuit design like in Figure 1 above show you power inverter circuit using IC 555 and Mosfet. 

According Eleccircuits blog mentioned that IC-NE555 timer is a square wave frequency generator output of 50Hz. The frequency is determined with R2-resistor and C1-capacitor which we set is 50Hz output. Then we use both N-type Mosfet IRF540 (Q2,Q3) as Driver a transformer coil (primary winding). The current of Pin 3 of IC1 will flow two ways, first through R3 to gate of Q2 and, second ways will flow to Q1-transistor BC549 as inverter logic form to reverse signal difference first ways. Next current flow to gate of Q3 to also dirver the transformer. Them cause have AC voltage of 220V to 250V as voltage of battery source 12V to 14.4V.

Saturday, September 16, 2017

Electronic Software: Proteus 8.6 Professional Full Crack for Windows

Proteus Software. - In this article we will continue to give you the next version of Proteus software after we posted the Proteus 8.6 Professional Full Crack for Windows system from this blog. Now we will give you the next version of Proteus 8.6 Professional Full Crack for Windows to complete your collection of this software.

Using ISIS and ARES as their main features, electronic student and hobbyist can do electronic design simulation and PCB layout easily. You can download Proteus 8.5 SP0 Professional Full with Patch for Electronic Software Design

Image Courtesy of Izofile

In this time, we will give you one of the oldest version of Proteus software that called with Proteus 8.6 Professional Full Crack for Windows system for electronic software design. Beside we will give you description we also will allow you to take free download Proteus 8.6 Professional Full Crack for Windows according the link given in this blog. So, please enjoy and read continue this article until finish.

Description

From Izofile describe that Proteus 8.6 Pro free download is a software which can be used to draw schematics, PCB layout, code and even simulate the schematic. It has a well organized interface which has almost all the necessary tools and the commands also in it which build circuit boards and test them. Proteus 8.6 crack is actually made for the advanced users and they must have a good grasp on it. The software has a simple method with which you can load one of the many sample that Proteus PCB Design comes with.

Download Proteus final version and get a helpful interactive simulations in it which can view and edit the properties of every element on the board. Also the customizations in it go to the depths for each of them. Overall this software demonstrates that it is one of the best softwares in this category. This software design Suite is wholly unique in offering the ability to co-simulate both high and low-level micro-controller code in the context of a mixed-mode SPICE circuit simulation.

Features of Proteus 8.6 Professional Full Crack

  1. Its a handy ciruit verifyign and also building software.
  2. It is specialize in the circuit boards.
  3. Well organized interface.
  4. It is made for the advanced users.
  5. It contains very helpful interactive simulations.
How to Install and Crack of Proteus 8.6
  1. First of all, Install Proteus SP0 8.4 (select the installation type “Custom”)
  2. Then, Specify the license file: “Grassington North Yorkshire.lxk”
  3. After that, Apply patch “Update Proteus 8.4 SP0 Demo to PRO ENG v1.0.exe”. Be sure to adjust the destination folder! Default Proteus install is under Program Files (x86)…
  4. Now, Install Proteus_8.6_SP2_Pro.exe over the existing installation @ C:\Program Files (x86)\Labcenter Electronics\Proteus 8 Professional
  5. Then, Delete the duplicated shortcut labeled “Proteus 8 Professional” located @ C:\ProgramData\Microsoft\Windows\Start Menu\Programs\Proteus 8 Professional\. Delete the one with an older time stamp.
  6. Finally, Enjoy!
System Requirement
  • Operating System: Windows XP/Vista/7/8/10
  • Memory (RAM): 3 GB of RAM
  • Hard Disk Space: 600 MB of free space required.
  • Processor: Intel 2 GHz or faster
Download

And now you can click the links below to download Proteus 8.6 Professional Full Crack for Windows freely and easily.

Thursday, September 7, 2017

Electronic Design: Inverter 12V to 220V 100W Circuit by Transistor

Radio Circuit. - This is one of implementation of transistor to build power inverter system. It is only need small component completed to build this electronic circuit that basically component.

The electronic design circuit of Inverter 12V to 220V 100W Circuit by Transistor is look like in Figure 1 below. Other component used like resistors, transformer, capacitors, and diode.

Beside we will show you electronic design circuit and component parts need, we also will give you global description about this circuit. So, please enjoy to continue reading this article until finish and get more useful.

Electronic Circuit Design

Component Parts
  • Q1-Q4______BC557___45V 100mA PNP Transistor
  • Q5,Q6______BD139___80V 1.5A NPN Transistor
  • Q7,Q8______2N3055___100V, 15A, 115W, >2,5MHz NPN transistor
  • D1,D2,D3,D4_____1N4148______75V 150mA Diodes
  • D5,D6_______1N4007 __1000V 1A Diodes
  • R1,R4,R6,R7_________10K___1/2W Resistors tolerance: 5%
  • R2,R3___________150K______1/2W Resistors tolerance: 5%
  • R5,R6___________ 47K______1/2W Resistors tolerance: 5%
  • R9,R12__________ 220 ohms 1/2W Resistors tolerance: 5%
  • R10,R13_________ 560 ohms 1/2W Resistors tolerance: 5%
  • R11, R14________ 100K ____1/2W Resistors tolerance: 5%
  • R15, R16________ 10 ohms__10W Resistors tolerance: 5%
  • R17, R18________ 150 ohms_1/2W Resistors tolerance: 5%
  • C1,C2___________0.047uF 50V_____Ceramic capacitors
  • C3,C4__________0.01uF 50V____Ceramic capacitors
  • C5______________1uF 50V_____ Ceramic capacitors
  • C6_____________0.1uF 250V____ Ceramic capacitors
  • C7_____________0.1uF 50V_____ Ceramic capacitors
  • C8____________220uF 25V_______ Electrolytic capacitors
  • T1___230V AC primary to 12V-0-12V,2-8A secondary transformer.
Description

The electronic circuit design like in Figure 1 above show you power inverter circuit using transistor. Other component need also that can supply with low voltage DC +12V and ground source to charge this transistors and all system component from power supply built. With this electronic design circuit you can produce 220V from 12V that useful now.

According Eleccircuits blog mentioned thathis circuit is 100 watt power inverter using power transistor 2N3055. It is designed for you that need to use appliances at outdoor or no electrical places. Someone use it in car or the high mountain etc.

The maximum output power of this circuit about 100 watts, it is suitable for a normal lighting (all home lamps), also used for radio, mini TV, stereo or someone use it for.

Let’s look at to both transistors Q1,Q2 will be connected together as the astable multivibrator form. It will generate the output frequency about 100 Hz at the collector lead of Q2. Then this signal will sent to the two frequency divider makes the frequency is reduced down about 50Hz

Cause we don’t design the circuit to directly work at 50 Hz. Because the generating the steady low frequency is very hard.

The output from divider circuit is sent to base of Q5,Q6. To increase current up to drive the output transistors Q7,Q8, then drive the transformer, finally to supply load.

Sunday, August 27, 2017

Electronic Design: Adjustable Power Supply Circuit using XL4015 IC

Radio Circuit. - This is one of implementation of XL4015 IC to build adjustable power supply system. It is only need small component completed to build this electronic circuit that basically component.

The electronic design circuit of adjustable power supply using XL4015 IC is look like in Figure 1 below. Other component used like resistors, capacitors, transistor, inductor, etc.

Beside we will show you electronic design circuit and component parts need, we also will give you global description about this circuit. So, please enjoy to continue reading this article until finish and get more useful.

Electronic Circuit Design

Component Parts
  • XL4015: DC/ DC 180-KHz Buck Converter, 5 A/36 V
  • M7: SMD version of 1N400x Diode (used here for circuit protection)
  • HSN3631AS: Numeric Three-Digit LED Display, Red
  • LM317: Adjustable Voltage Regulator (used here as the dvm power supply)
  • SS54: Schottky Diode 40 V/5 A
  • 47 uH/5 A: Power Inductor
  • 50K MT: Multi-Turn Preset Potentiometer 50K
Description

The electronic circuit design like in Figure 1 above show you adjustable power supply using XL4015 IC. Other component need also that can supply with low voltage DC +4 - 36V and ground source to charge this IC and all system component from power supply built. With this electronic design circuit you can produce touch on/off switch that useful now.

According Electroschematics blog mentioned that power up the module with a stable and accurate dc power supply (such as a regulated 6-V power supply). Then short-press the button on the right side to select which one you need to adjust (input or output). Long-pressing the button on the right side (holding it for >2 s) makes the module enter calibration mode. After releasing the button, the related LED will blink to indicate which voltage is now calibrating, and the numeric display will blink with the present value.

Short-press the button to change the present value. For example, if your power supply is 6 V but the result of voltage meter is 5.8 V, you need to set the value to 6 V. Short-press the button on the right side to increase the voltage by one unit. Short-press the button on the left side to reduce the voltage by one unit.

Long-press button on the right side to store the redressed value. The preset pot sets the actual output voltage. Calibrate the output voltage reading on the digital voltmeter in the same way above. For example, if your actual output is 3 V but the result on the voltmeter is 4 V, you need to set the value to 3 V. The redressed value will be stored in the non-volatile memory of the module.

Monday, August 14, 2017

Electronic Design: Touch ON and OFF Switch Circuit using NE555 IC

Radio Circuit. - This is one of implementation of NE555 IC to build switching system. It is only need small component completed to build this electronic circuit that basically component.

The electronic design circuit of Touch ON and OFF Switch Circuit using NE555 IC is look like in Figure 1 below. Other component used like resistors, capacitors, transistor, sensor, etc.

Beside we will show you electronic design circuit and component parts need, we also will give you global description about this circuit. So, please enjoy to continue reading this article until finish and get more useful.

Electronic Circuit Design

Component Parts
  • 1 x 555 Timer IC
  • 1 x 3.3 MΩ Resistor (1/4 Watt)
  • 1 x 1 MΩ Resistor (1/4 Watt)
  • 1 x Bulb with holder (regular or CFL)
  • 1 x 5V Relay Module (if relay module is not available, then you need the following components)
  • 1 x 5V Relay
  • 1 x 2N2222 NPN Transistor
  • 1 x 1N4007 PN Junction Diode
  • 1 x 1 KΩ Resistor (1/4 Watt)
Description

The electronic circuit design like in Figure 1 above show you touch ON/OFF switch using 555 IC. Other component need also that can supply with low voltage DC +12V and ground source to charge this IC and all system component from power supply built. With this electronic design circuit you can produce touch on/off switch that useful now.

According Electronichub blog mentioned that the design of the Touch ON and OFF Switch circuit is very simple. First, the GND, VCC and RST pins of the 555 i.e. pins 1, 8 and 4 are connected to GND and 5V respectively. Pin 2 is pulled HIGH using a 3.3 MΩ Resistor and Pin 6 is pulled LOW using a 1 MΩ Resistor.

Two touch plates are connected to pins 2 and 6 as shown in the circuit diagram. In case of the touch to ON plate, one end is connected to pin 2 and other end is connected to GND. Similarly, one end of the touch to OFF plate is connected to +5V and the other end is connected to Pin 6.

The main principle behind the project lies in the basic functionality of the pins of 555 Timer. We know that 555 Timer has 8 pins namely GND (1), Trigger (2), Output (3), Reset (4), Control Voltage (5), Threshold (6), Discharge (7) and VCC (8).

In this, Pins 2 and 6 are used in this project. Now, we see the basic working of these pins. When Pin 6 i.e. the Threshold pin is held LOW, and if Pin 2 i.e. the Trigger Pin is made LOW, the output of the 555 Timer IC will be HIGH and it stays there. This condition can be used to turn ON the appliance.

Now consider Pin 2 is pulled HIGH and if Pin 6 is made HIGH, the output of the 555 Timer IC will be LOW and it stays there. This condition can be used in our project to turn OFF the load or device.

Wednesday, August 2, 2017

Electronic Projects: Remote AC Power Control by Android Application with LCD Display

Projects. - In this article we will give you one electronic projects categorized using 8051 microcontroller and Android application for remote AC power control. Beside 8051 microcontroller, in this project also using LCD, SCR or thyristor.

In here we will show you the Figure of electronic projects Remote AC Power Control by Android Application with LCD Display, global description, hardware and software requirement, and the last we will give you the link to continue your reading to official source.

Electronic Project

Figure 1. Remote AC Power Control by Android Application with LCD Display Projects (Source: www.edgefxkits.com)

Hardware and Software 
  • 8051 series Microcontroller
  • LM358
  • Opto isolators
  • SCRs
  • Push Button
  • Transformer
  • Diodes
  • Voltage Regulator
  • Resistors
  • Capacitors
  • Crystal
  • Lamp
  • Bluetooth Device
  • Keil compiler Languages:
  • Embedded C or Assembly
  • Android Application.
Description

The electronic projects like in Figure 1 above show you thyristor power control by IRemote AC Power Control by Android Application with LCD Display.

The project is designed to control AC power to a load by using firing angle control of thyristor. Efficiency of such power control is very high compared to any other method.

Remote operation is achieved by any smart-phone/Tablet etc., with Android OS, upon a GUI (Graphical User Interface) based touch screen operation. The project uses zero crossing point of the waveform which is detected by a comparator whose output is then fed to the microcontroller.

The microcontroller provides required delayed triggering control to a pair of SCRs through opto isolator interface.Finally the power is applied to the load through the SCRs in series.

And now you can continue your reading about the electronic projectsRemote AC Power Control by Android Application with LCD Display from original or official site using link HERE.