Showing posts with label inverter. Show all posts
Showing posts with label inverter. Show all posts

Friday, December 12, 2014

Mosfet 1000W Power Inverter schematic

circuit-schematic-power
This power inverter circuit will provide a very stable “Square Wave” Output Voltage. Frequency of operation is determined by a pot and is normally set to 60 Hz. Various “off the shelf” transformers can be used. Or Custom wind your own for best results.
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Friday, October 17, 2014

230 Volt AC To Inverter Switching Circuit Diagram

Description

                  Before three weeks i am introduced  inverter circuit diagram but the circuit not included ac to inverter switching part so today i introducing a 230 Volt Ac to inverer switching circuit diagram .

Circuit showing a inverter switching  . Here i have used  bc 558 ,BC 548 and a relay for making this circuit . 230 volt connected to the base of the transistor Q1.When the power is ON positive volt coming to the base of the transistor so the relay circuit is open and load working in 230 V AC .When the power is OFF ground voltage coming to the base of the transistor so the Base of the Q2 is positive there for the   relay circuit closed and load working in inverter input .Part list and applications are showing below.


Part List



Component No: Value  Usage
R1 100KΩ Emitter Load
R2 10K Ω Base Biasing 
R3180KΩ  Current Limiting 
Q1BC558  Switching  
Q2BC548   Switching 
D1 IN4007   Relay Balancing 
RL112 V  Inverter Switching 



Applications

Inverter Switching 
* AC Switching
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Wednesday, September 3, 2014

6 to 12 Volt Power Supply Inverter

This inverter circuit can provide up to 800mA of 12V power from a 6V supply. For example, you could run 12V car accessories in a 6V (British?) car.
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Wednesday, August 27, 2014

12V Flourescent Lamp Inverter

12V Fluorescent Lamp Inverter Circuit Diagram. Fluorescent tubes use far less energy than incandescent lamps and fluorescent tubes last a great deal longer as well. Other advantages are diffuse, glare-free lighting and low heat output. For these reasons, fluorescent lighting is the natural choice in commercial and retail buildings, workshops and factories. For battery-powered lighting, fluorescent lights are also the first choice because of their high efficiency. The main drawback with running fluorescent lights from battery power is that an inverter is required to drive the tubes.

12V Fluorescent Lamp Inverter Circuit Diagram

12-volt-flourescent-lamp-Inverter-schema
12V Fluorescent Lamp Inverter Circuit Diagram
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Fig.1: two switch-mode diagram are involved here: the DC-DC inverter involving IC1, Q1 & Q2 and the fluoro tube driver which converts high voltage DC to AC via IC3 and Q3 & Q4 in a totem-pole schema.
Inverter efficiency then becomes the major issue. There are many commercial 12V-operated fluorescent lamps available which use 15W and 20W tubes. However, it is rare to see one which drives them to full brilliance. For example, a typical commercial dual 20W fluorescent lamp operating from 12V draws 980mA or 11.8W. Ignoring losses in the fluorescent tube driver itself, it means that each tube is only supplied with 5.9W of power which is considerably less than their 20W rating. So while the lamps do use 20W tubes, the light output is well below par.

Warning:

This schema generates in excess of 300V DC which could be lethal. Construction should only be attempted by those experienced with mains-level voltages and safety procedures.
 
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Friday, August 15, 2014

schema INVERTER 12 VOLT UNTUK SOLDER

RANGKAIAN INVERTER 12 VOLT UNTUK SOLDER

Here is a simple 12 V inverter for application a baby soldering adamant (25W, 35W, etc) in the absence of mains supply. It uses eight transistors and a few resistors and capacitors. Transistors T1 and T2 (each BC547) anatomy an astable multivibrator that produces 50Hz signal. The commutual outputs from the collectors of transistors T1 and T2 are fed to pnp Darlington disciplinarian stages formed by transistor pairs T3-T5 and T4-T6 (utilising BC558 and BD140). The outputs from the drivers are fed to transistors T7 and T8 (each 2N3055) affiliated for push-pull operation. Use acceptable heat-sinks for transistors T5 through T8.

230V AC primary to 12V-0-12V, 4.5A accessory agent (X1) is used. The centre-tapped terminal of the accessory of the agent is affiliated to the array (12V, 7Ah), while the added two terminals of the accessory are affiliated to the collectors of ability transistors T7 and T8, respectively.

When you ability the ambit application about-face S1, agent X1 produces 230V AC at its primary terminal. This voltage can be acclimated to calefaction your soldering iron. Assemble the ambit on a accepted purpose PCB and abode in a acceptable cabinet. Connect the array and agent with acceptable current-carrying wires. On the advanced console of the box, fit ability about-face S1 and a 3-pin atrium for abutting the soldering iron.
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