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GBluer(Slayer) Exiter

Not rated 12,804

#HV-transformer #high voltage #CFL #frequency #step up #ignition #spiral CFL #U-shaped tubes #experiment #electronics

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GBluer(Slayer) Exiter
GBluer(Slayer) Exiter

Description: The idea of removing the core of the high-voltage transformer enhances the frequency and maintains a satisfactory step-up ratio. It is noteworthy to inquire if any audible sounds, such as singing or screeching, are present when the circuit is operational. Spiral type compact fluorescent lamps (CFLs) appear to be particularly effective for such experiments, as they ignite more easily compared to U-shaped tubes. However, these spiral CFLs have become increasingly difficult to locate in stores, having been more readily available during the initial surge of CFL popularity a few years ago. Additionally, surplus flyback transformers have been ordered, indicating a strong interest in the circuit that allows for lighting a CFL using an AAA battery. The complexity of reconstructing the circuit from a video presentation has been noted, and a request for a simple hand-drawn schematic has been made.

The circuit design described involves a high-voltage transformer modified by removing its core, which serves to increase the operational frequency and step-up voltage efficiency. This modification is critical as it allows for the effective ignition of compact fluorescent lamps (CFLs), particularly the spiral type, which are noted for their ease of ignition compared to traditional U-shaped tubes. The circuit's ability to operate from a low-voltage source, such as an AAA battery, showcases its potential for practical applications and demonstrations, capturing the attention of observers.

In this setup, the flyback transformer plays a crucial role by converting the low input voltage into a high output voltage necessary for CFL operation. The flyback transformer operates by storing energy in a magnetic field and releasing it in a high-voltage pulse, which is ideal for lighting CFLs. The circuit may also incorporate additional components such as resistors, capacitors, and diodes to regulate current flow and protect the CFL from voltage spikes.

The request for a schematic drawing emphasizes the importance of clarity in circuit design, as visual representations aid in understanding the connections and components involved. A simple hand-drawn schematic would illustrate the arrangement of the flyback transformer, the battery connection, and the CFL, providing a clear guide for individuals interested in replicating the circuit. This detailed approach ensures that the circuit can be effectively reconstructed, allowing for experimentation and innovation in lighting technologies using compact fluorescent lamps.Great idea to remove the core of the HV-transformer, that increases the frequency and the step up rate still seems to be good enough. Do you hear any singing or screeching when your circuit is on I also saw that the spiral type CFLs are specially good for such experiments (they seem to ignite easier than the U-shaped tubes).

But they are difficult to find in the stores nowadays , they where more common when the CFL-area began a few years ago. I ordered some surplus fly back transformers, therefore I am very interested in your circuit. I like the idea to light a CFL from an AAA battery. It always catches the attention of onlookers. It is almost impossible to reconstruct your circuit from the video. I would like to ask you to post a photo of a simple hand drawing of your circuit (schematics). Great idea to remove the core of the HV-transformer, that increases the frequency and the step up rate still seems to be good enough. Do you hear any singing or screeching when your circuit is on I also saw that the spiral type CFLs are specially good for such experiments (they seem to ignite easier than the U-shaped tubes).

But they are difficult to find in the stores nowadays, they where more common when the CFL-area began a few years ago.

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