Description: This circuit has been designed to provide a clearly visible light, formed by 13 high efficiency flashing LEDs arranged in a pseudo-rotating order. Due to low voltage, low drain battery operation and small size, the device is suitable for mounting on bicycles as a back light, or to put on by jogger/walkers.
The circuit utilizes a microcontroller to manage the operation of the 13 high-efficiency LEDs, which are arranged in a circular or linear pattern to create a visually appealing pseudo-rotating light effect. Each LED can be individually controlled to flash in a sequence that simulates rotation, enhancing visibility in low-light conditions.
Power is supplied by a low-voltage battery, which is ideal for portable applications. The circuit design incorporates power management features to ensure minimal current draw, extending battery life significantly. This is particularly important for devices intended for outdoor use, such as bicycle lights or jogger indicators, where battery replacement may not be convenient.
The microcontroller can be programmed to adjust the flashing frequency and pattern, allowing customization based on user preference or specific environmental conditions. Additional components may include resistors to limit current to the LEDs, capacitors for smoothing power supply fluctuations, and possibly a switch to turn the device on and off.
For mounting, the circuit can be housed in a compact, weather-resistant enclosure that can be easily attached to a bicycle frame or worn by joggers and walkers. This ensures durability and functionality in various weather conditions. The overall design emphasizes safety and visibility, making it an effective solution for enhancing awareness in low-light environments.This circuit has been designed to provide a clearly visible light, formed by 13 high efficiency flashing LEDs arranged in a pseudo-rotating order. Due to low voltage, low drain battery operation and small size, the device is suitable for mounting on bicycles as a back light, or to put on by jogger/walkers.
This is a one-transistor LED flasher circuit designed to flash a super bright LED. The circuit employs a single transistor as a driver, which receives the flash rate from LED 2, a self-flashing LED. The flash rate can be adjusted...
This colorful backlit aquarium light provides a natural appearance to the aquarium tank. The aquarium LED lighting circuit automatically turns on at sunset.
The aquarium LED lighting system enhances the aesthetic appeal of the aquarium by simulating natural lighting conditions. The...
The circuit illustrated below activates a small relay (J) when there is an imbalance in any one phase of a three-phase circuit. This relay triggers an external control contact, which immediately disconnects the power supply to the main circuit AC...
The microcontroller unit (MCU) will read images from the DataFlash memory via the SPI bus based on the known velocity. It will then send these images to the LED drivers using the SPI bus, controlling the on and off states...
This is an AC-powered LED flasher that can drive two high-bright LEDs directly from the power obtained from the AC lines. The high-bright LED flasher can be...
The AC-powered LED flasher circuit is designed to illuminate two high-bright LEDs using the...
The issue with this monitor is that the power supply for the vacuum tube backlighting fails. The initial step involves completely disassembling the monitor into smaller components, followed by the careful removal of the gold-colored trays that hold the vacuum...
This is a simplified version of a white LED lamp that can be powered directly from the mains. It provides sufficient illumination for reading purposes. Capacitor Cx along...
The circuit for the white LED lamp consists of several key components designed...
An automatic brightness adjustment is a closed-loop system that has the capability to assess ambient light and adjust the brightness of the display accordingly.
The automatic brightness adjustment circuit operates by utilizing a light sensor, typically a photoresistor (LDR) or photodiode,...
The electronic components designed by conventional electronic bonsai create a sparkling and brilliant atmosphere in the living room, enhancing the joys and pleasures of life. The selection of components includes IC1 to IC4, which consist of two pairs of D...
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