Wireless Bicycle Pilot Lamp With Synchronized Warning Lighting

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Solution Overview

Problem

Existing bicycle lamps lack intelligent and interactive features, such as diverse light effects, riding safety warnings, team synchronization, and social interaction, and often fail to provide synchronous control among multiple lamps.

Innovation Solution

A multifunctional bicycle pilot lamp equipped with a shell, colorful lamp bead, intelligent control module, USB charging module, and mobile application, featuring wireless connectivity, customizable light modes, automatic safety warnings, and team synchronization capabilities, including a gyroscope sensor for brake detection, light sensor for brightness adjustment, and vibration sensor for reminding following members.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Adaptability or versatility

If basic LED lamp bead is used for illumination, then the structure is simple and cost is low, but the light effects are single and cannot meet diverse user requirements

Engineering Contradiction:
Improvelight effects diversityVSAvoidstructure complexity
Core Design Contradiction:
Adaptability or versatilityVSDevice complexity

Solution Approach 1:

The patent applies multi-functionality by using a colorful lamp bead that can display multiple light colors (red, green, blue, yellow, purple, cyan) and patterns (steady, flickering, breathing, rainbow) to replace multiple single-color lamps, achieving diverse light effects with a single integrated component that satisfies various user needs including safety warnings, aesthetic preferences, and team synchronization

Inventive Principle:
Principle #6Universality (Multi-functionality)

Solution Approach 2:

The patent changes the parameters of the light source by using an RGB colorful lamp bead that can dynamically adjust color composition ratios and emission patterns through PWM control, enabling transitions between different colors and light modes based on operational conditions such as braking detection, team synchronization modes, and user preferences

Inventive Principle:
Principle #35Parameter changes

2Extent of automation

If manual brightness adjustment is provided, then basic control functionality is achieved, but intelligent and interactive light control requirements cannot be met

Engineering Contradiction:
Improveautomatic light controlVSAvoidcontrol system complexity
Core Design Contradiction:
Extent of automationVSDevice complexity

Solution Approach 1:

The patent applies self-service by incorporating environmental light sensors and gyroscope sensors that automatically detect ambient conditions and braking actions, enabling the lamp to autonomously adjust its brightness and activate warning patterns without user intervention, making the system responsive to real-world conditions

Inventive Principle:
Principle #25Self-service

Solution Approach 2:

The patent implements feedback mechanisms where the gyroscope sensor detects braking motions and triggers automatic red flickering warning patterns, and the environmental light sensor continuously monitors ambient illumination levels to dynamically adjust brightness, creating a closed-loop control system that responds to external stimuli

Inventive Principle:
Principle #23Feedback

3Adaptability or versatility

If wireless communication function is added for team synchronization, then interactivity and entertainment are improved, but power consumption increases

Engineering Contradiction:
Improveteam synchronization capabilityVSAvoidpower consumption
Core Design Contradiction:
Adaptability or versatilityVSUse of energy by moving object

Solution Approach 1:

The patent applies periodic action by implementing synchronized light patterns that activate in rhythmic sequences during team modes, where multiple lamps coordinate their color changes and patterns in periodic cycles, creating visually coherent team effects while allowing the wireless communication to operate in controlled bursts rather than continuously

Inventive Principle:
Principle #19Periodic action

Solution Approach 2:

The patent uses the colorful lamp bead to serve dual purposes: providing safety warning functions through specific color patterns and enabling team synchronization through coordinated multi-color displays, allowing the same hardware to fulfill multiple functions without requiring separate dedicated components that would increase overall power consumption

Inventive Principle:
Principle #6Universality (Multi-functionality)

4Adaptability or versatility

If synchronous control of multiple bicycle lamps is implemented, then interactivity and entertainment value are enhanced, but device complexity and communication requirements increase

Engineering Contradiction:
Improveteam interaction capabilityVSAvoidsystem integration complexity
Core Design Contradiction:
Adaptability or versatilityVSDevice complexity

Solution Approach 1:

The patent applies copying by having each bicycle lamp contain the same sensor suite (gyroscope, light sensor, vibration sensor) and control logic, allowing lamps to independently detect local conditions and synchronize their responses through wireless communication, creating scalable team effects where each unit is a complete functional copy that can operate autonomously or in coordination

Inventive Principle:
Principle #26Copying

Applied Scientific Principles

This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.

Function Achieved in This Case

Enhances riding safety and enjoyment by providing customizable light effects, automatic warnings, and synchronized team interactions, improving visibility and cohesive team behavior, while ensuring power efficiency and timely charging reminders.

Implementation Method 1

automatically adjusting light brightness of the colorful lamp bead by using a light sensor to adapt to different illumination conditions

Methodology Applied
Scientific EffectPhotoelectric Effect: Photoelectric Effect

Implementation Method 2

internally providing a gyroscope sensor to detect a brake speed

Methodology Applied
Scientific EffectGyroscope: Gyroscope

Implementation Method 3

internally providing a vibration sensor to detect a vibration amplitude of a bicycle

Methodology Applied
Scientific EffectVibration: Vibration

Data Source

PatentEP4714810A1Multifunctional bicycle pilot lamp
Publication Date: 2026.03.25 SHENZHEN MANKA IOT ELECTRONICS CO LTD
  • EP4714810A1 patent drawingFigure 1
  • EP4714810A1 patent drawingFigure 2
  • EP4714810A1 patent drawingFigure 3

AI summary

The present invention discloses a multifunctional bicycle pilot lamp and relates to the technical field of bicycle lamps. The multifunctional bicycle pilot lamp includes a shell, a colorful lamp bead, an intelligent control module, a USB charging module, and a mobile application. The mobile application is wirelessly connected to the intelligent control module. The multifunctional bicycle pilot lamp provided by the present invention is intelligently controlled in a lower power consumption mode of wireless communication. Wireless control enables a user to operate various functions of lamp conveniently without complicated wired connections. Light for a plurality of group members can match with each other to flicker regularly, which is more eye-catching, thereby adding color and vitality to riding. A rider can select different colorful light modes according to his/her own preference to exhibit his/her personality and style. Moreover, the visibility is improved, so that the multifunctional bicycle pilot lamp further catches people's eyes to avoid a collision risk. Furthermore, the multifunctional bicycle pilot lamp has an obvious warning effect on a road with complex traffic. The cohesive force of a team is improved through the matching light, and the multifunctional bicycle pilot lamp can further help relax the mind, allowing the cyclist to enjoy the ride.