Wireless Binary Transmitter Using Capacitive Coupling

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Solution Overview

Problem

Existing technologies face challenges in transmitting binary code wirelessly without the use of wires between the transmitter and receiver.

Innovation Solution

A binary signal transmitter using machine binary language (binary sinewave) to transmit signals, which are decoded by a binary receiver without the need for physical wires, utilizing capacitors and AC power to facilitate the transmission.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Ease of operation

If wireless transmission is implemented without wires between transmitter and receiver, then ease of operation is improved, but reliability of signal transmission deteriorates

Engineering Contradiction:
Improvewireless operationVSAvoidsignal transmission
Core Design Contradiction:
Ease of operationVSReliability

Solution Approach 1:

The patent introduces capacitors as intermediary components to store and transfer binary signal energy wirelessly. The capacitors act as energy reservoirs that maintain signal integrity during transmission, enabling wireless operation while preserving transmission reliability through energy storage and release mechanisms.

Inventive Principle:
Principle #24Intermediary (Mediator)

Solution Approach 2:

The patent replaces physical wire connections with an electromagnetic field-based transmission system using capacitors. This substitution eliminates mechanical contact (wires) while maintaining signal transmission functionality through electrical energy storage and release in the capacitor fields.

Inventive Principle:
Principle #28Mechanics substitution (Replace mechanical system)

2Device complexity

If binary signal transmission is achieved without wires, then device complexity is reduced, but manufacturing precision requirements increase

Engineering Contradiction:
Improveconnection structureVSAvoidcapacitor configuration
Core Design Contradiction:
Device complexityVSManufacturing precision

Solution Approach 1:

The patent extracts the connection function from physical wires and concentrates it into capacitor components. This extraction simplifies the overall device structure by removing complex wiring while concentrating the transmission function into discrete, manufacturable capacitor elements with precise electrical characteristics.

Inventive Principle:
Principle #2Taking out (Extraction)

Solution Approach 2:

The patent transitions from mechanical connection parameters (wire gauge, length, routing) to electrical parameters (capacitor capacitance, voltage rating, charge/discharge characteristics). This parameter change enables wireless operation while allowing precision to be achieved through standardized electronic component manufacturing rather than mechanical assembly.

Inventive Principle:
Principle #35Parameter changes

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

Enables wireless transmission of binary code between the transmitter and receiver, eliminating the need for wires and allowing for a digital transfer effect through manual keypress on the transmitter controller keypad.

Implementation Method 1

AC to fall across the capacitors in FIG. 1, and across ground FIG. 3

Methodology Applied
Scientific EffectCapacitance: Capacitance

Data Source

PatentUS20250068389A1Electronic Wireless Binary Transmitter to a Electronic Receiver
Publication Date: 2025.02.27 SAPP REGINALD KEITH
  • US20250068389A1 patent drawing

AI summary

The Binary Transmitter and Receiver is a circuit for Binary information to travel through Air without wires from the end out FIG. 4 without wires.The transmitter circuit and Receiver is powered by FIG. 2 (volt, current, amp), FIG. 1 (capacitance), and resistance with its information of 0 or 1 in a series or parallel circuit or both.It was tested in wood (a box). To be housed in plastic (a polymer), tin, copper, metal or Metal alloy. To function with keys from 0-9 key punch, A-Z and special character's key punch, and other inputs and outputsThat uses switches, nor-gates, and-gate, diodes, resistors and capacitors FIGS. 1A and 1B for a functional transmitter and a functional receiver.Mini technology is required in models for mobile traveling with Lithium batteries or non-Lithium batteries for its power source.