printed circuit board (PCB) assembly for an electric mosquito killer racket

৳  200.00৳  250.00 (-20%)

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⚔ Product Summary: CY-BP227 High-Voltage Mosquito Swatter PCBA

The CY-BP227 (V18-2101) is a compact high-voltage step-up inverter circuit board designed for rechargeable electric mosquito killer rackets and DIY insect-zapping projects. Operating on a DC 3.6V–5V input, it converts low-voltage battery power into a high-intensity 5,000V–10,000V output pulse to eliminate flying pests instantly upon grid contact.

🌟 Key Features

  • High-Efficiency Boost: Integrates an onboard oscillator and step-up transformer to deliver reliable, instant high-voltage arcs.
  • Modern Charging: Includes a tethered Micro-USB sub-board for safe 5V recharging, eliminating dangerous direct-AC mains plugs.
  • Complete Controls: Features a tactile zapping button, multi-position sliding power switch, and visual LED status indicators.
  • Safety Bleeders: Built-in discharge resistors help bleed residual capacitor energy when the power is switched off.


If you are setting up this module, let me know:
  • Do you need a wiring diagram breakdown for the battery and mesh grid connections?
  • Are you troubleshooting an issue where the board charges but doesn’t zap?

šŸ“– Detailed Product Description: CY-BP227 Mosquito Swatter Inverter PCB Module

The CY-BP227 High-Voltage Step-Up Inverter PCBA serves as the core electronic driver module for rechargeable electric mosquito killer rackets and custom pest control DIY projects. Engineered on a rigid, space-optimized rectangular substrate, this circuit board acts as a specialized DC-to-DC voltage multiplier. It efficiently transforms a low-voltage battery supply into a continuous, multi-kilovolt output capable of neutralizing flying insects instantly upon contact. [1, 2, 3, 4, 5, 6]

 printed circuit board (PCB) assembly for an electric mosquito killer racket

printed circuit board (PCB) assembly for an electric mosquito killer racket

šŸ“Š Comprehensive Functional Architecture

1. DC-to-AC Inverter Stage (Oscillator)
Batteries natively supply steady Direct Current (DC), which cannot be amplified by regular transformers. To bypass this limitation, the board integrates a built-in oscillation network featuring a high-current transistor (such as the D882). This network chops the stable DC power source into high-frequency pulsating Alternating Current (AC) signals, prepping the voltage for step-up translation. [1, 2, 3]
2. Induction Transformer Network
The generated pulse flows straight into a central step-up induction transformer (the yellow-and-black magnetic core module). This component converts the low-voltage oscillating waveform into an intermediate high-voltage AC current spanning several hundred volts. [1, 2]
3. Voltage Multiplier & Energy Storage
Once stepped up, the current passes through a high-voltage rectification system consisting of fast-switching diodes and a robust, reddish-brown film capacitor. Acting as a solid-state voltage multiplier reservoir, it boosts and levels the output to a staggering 5,000V–10,000V terminal discharge pulse, instantly dumping its current when an insect bridges the outer protective layers of the racket grid. [1, 2, 3]
 printed circuit board (PCB) assembly for an electric mosquito killer racket

printed circuit board (PCB) assembly for an electric mosquito killer racket

4. Integrated Control & Sub-System Interface

  • Tactile Spring Activation Switch: A safety press-and-hold push button that activates the high-voltage generation path only during deliberate manual operation.
  • Dual-Stage Slider Interface: A mechanical switch selecting overall operation profiles (System Off, Power Active with Status Illumination, or Full Discharging Mode).
  • Tethered Micro-USB Breakout: Features an independent micro-USB sub-board link. This design allows convenient, stable frame installations while supporting modern 5V recharging interfaces rather than older, risky direct-AC wall plugs.
  • System Status Telemetry: Integrated multi-LED lanes provide visual cues, immediately warning users when the active zap grid is energized or when the charging cycle is active. [1, 2, 3, 4]
  • āš™ļø Technical Specifications Baseline

    Specification Metric Parameter Values
    Model Code CY-BP227 (V18-2101 Architecture)
    Input Voltage Range DC 3.6V to 5.0V (Supports SLA & Li-ion Chemistry)
    Output Grid Voltage ~5,000V to 10,000V Peak Pulsated Output
    Input Current Sink ~500mA operational load
    Main Port Standard Micro-USB Integrated Input Path
    Onboard Safety Logic Instant Multiplier Bleed Resistor Network

     

  •  printed circuit board (PCB) assembly for an electric mosquito killer racket

    printed circuit board (PCB) assembly for an electric mosquito killer racket

    āš ļø Critical Safety & Operational Guidelines

      • Residual Terminal Charge: The capacitor stores dangerous high voltages long after input power is cut off. Never touch exposed solder contacts, terminal pins, or discharge pads without safely discharging the circuit first.
      • Insulation Requirements: When installing this board into custom enclosures or repair casings, ensure the high-voltage traces maintain a safe physical clearance from low-voltage lines and metal buttons to prevent accidental arcing or damage. [1, 2]


    If you are looking to integrate or repair this board, let me know:
      • Do you need help identifying the exact input/output solder pad locations (e.g., battery leads vs. net lines)?
      • Are you planning to swap the micro-USB connector out for a USB-C alternative?

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