Description: This circuit is powered by a 12-V DC power supply. The input to the circuit is amplified to generate a 10,000-V DC output. The output of the up-converter is subsequently directed into a 10-stage high-voltage multiplier to achieve a final output of 10,000 V DC.
The circuit operates by first utilizing a 12-V DC power supply as its primary energy source. The initial stage involves an up-converter, which is responsible for stepping up the voltage from 12 V to a significantly higher level, necessary for the subsequent high-voltage multiplier stages. The up-converter typically employs a combination of inductive and capacitive components, along with a switching mechanism, to efficiently convert the lower voltage into a higher voltage.
Following the up-converter, the high-voltage multiplier consists of a series of ten stages, each designed to further increase the voltage output. This multiplier configuration generally employs diodes and capacitors arranged in a ladder-like structure. Each stage adds to the voltage by charging and discharging capacitors through the diodes, effectively multiplying the input voltage with each step.
The output of the entire circuit is a stable 10,000 V DC, which can be utilized in various high-voltage applications, such as in electrostatic precipitators, particle accelerators, or other specialized electronic equipment requiring high voltage levels. Proper insulation, safety measures, and component ratings must be considered in the design to ensure safe operation and prevent breakdown or failure of the circuit components.This circuit is fed from a 12-V de power supply. The input to the circuit is then amplified to provide a 10,000-Vdc output. The output of the up-converter is then fed into a 10 stage, high-voltage multiplier to produce an output of 10,000 Vdc.
A 12V to 20000V inverter circuit diagram (stun gun) is presented. This circuit generates a very high voltage and must be used with caution to prevent electric shock. The transformer can produce over 1000V and amplify the voltage by eight...
This high voltage converter circuit begins with a 30-volt power supply and is capable of delivering output voltages ranging from 0 to 3 kV for version 1, or from 0 to 10 kV for version 2.
The high voltage converter circuit...
This is a High Voltage switching device for driving coils and which have big impedance when it is switched off. It can be used in Back-EMF energy recovery tests, Newman coils electronic commutator. This device is driven by an opto-coupler...
This regulator circuit stabilizes the output voltage at 200V directly (without a transformer). Although the output voltage is high, this circuit only suffers a.
The circuit in question is designed to maintain a stable output voltage of 200V without the use...
The amplifier feeding the final amplification stage operates with unstabilized voltage. The output stage, utilizing push-pull operation, exhibits significant rejection of the supply voltage. However, the earlier stages do not provide the same level of rejection, resulting in unwanted noise....
The electronic fly killer employs high voltage applied to a power line pulse to eliminate flies. Utilize the specified website to attract flies effectively. The electronic circuit operates using an integrated circuit (IC) ICL 555, along with resistors R1, R2,...
Occasionally, a small high-voltage power supply is required for various projects without the need for specialized transformers or specific chips. A simple circuit diagram for a classical step-up converter based on the widely used 555 timer was found online. The...
According to the datasheet, they will switch about 160 kW at up to 10 kV (7.2 kV typical). Unfortunately, this is insufficient for the quarter shrinker; however, a miniature ring flipper may be in development. A presentation will be held...
The hobby circuit described utilizes a unique method to generate approximately 12,000 volts with a current of about 5 microamperes. It employs two silicon-controlled rectifiers (SCRs) that form two pulse generator circuits. These SCRs discharge a 0.047 microfarad, 400-volt capacitor...
We use cookies to enhance your experience, analyze traffic, and (if you allow) serve personalized ads.
By clicking Accept All, you agree to our use of cookies.
Learn more