Digital day time measurement in the sun light
Patent Information
- Application Number
- PCT/IB2025/051970
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2025-07-03
AI Technical Summary
Existing methods for digital daytime measurement in sunlight lack accuracy and reliability, particularly in ensuring that measuring objects are kept equally parallel to the baseline.
The method involves placing a bottle without a cap in sunlight, with a digital scale drawn on it, and a cup of water positioned below to ensure the water level is parallel to the baseline, allowing sunlight to fall directly on the bottle's top and reflecting inside as a curve line, with the center of this curve considered the point of time measurement.
This approach enables accurate and real-time digital measurement of daytime duration, ensuring that the measuring objects are kept parallel to the baseline, thus providing reliable and precise results.
Smart Images

Figure IB2025051970_03072025_PF_FP_ABST
Abstract
Description
[0001] Description Digital day time measurement in the sun light. Technical Field: Digital day time measurement in the sun light. Background Art: Digital day time measurement in the sun light. By using empty bottle, cup of water and digital scale. Summary of Invention: Digital day time measurement in the sun light. Place a bottle in the sunlight on the equal surface without cap so that sunlight falls on the bottle top and the reflects inside and visible outside the bottle which is measured on the digital scale drawn on the bottle. Place a cup of water below the bottle to measure the level of the surface so as to be equal to the water level so that sunlight falls directly on the top of the bottle. The sun reflects in the form of curve line inside the bottle and visible outside, the centre of the curve line is considered as the point of time measurement. Time measurements changes as per the sun moments in the day time. Technical Problem: Measuring objects must be kept equally parallel to the basement. Solution to Problem: By observing the level of water in the cup must be parallel to the basement. Advantageous Effects of Invention: To ascertain accurate digital real time .
[0002] Brief Description of Drawings Digital day time measurement in the sun light. Place a bottle in the sunlight on the equal surface without cap so that sunlight falls on the bottle top and the reflects inside and visible outside the bottle which is measured on the digital scale drawn on the bottle. Place a cup of water below the bottle to measure the level of the surface so as to be equal to the water level so that sunlight falls directly on the top of the bottle. The sun reflects in the form of curve line inside the bottle and visible outside, the centre of the curve line is considered as the point of time measurement. Time measurements changes as per the sun moments in the day time.
[0003] Fig.1 a bottle placed in the sun light on the equal surface without cap so that sunlight falls on the bottle top and refectIects inside and visible out side the bottle which is measured on the digital scale curve line showing: the Image of sunlight, centre of the bottom considered as point of time measurement curve line sho wing the Image of sunlight, centre of the bottom considered as point of time measurement place a cup of water below the bottle to measure the equal level of the surface.
[0004] [Fig. 1]
[0005] Description of Embodiments Examples Industrial Applicability : To ascertain accurate digital real time in the areas of academic education, signal systems, time management, to ascertain universality with time and related objectives concerning to global warming, radiation, health and utility.
Claims
Claims
1. Digital day time measurement in the sun light.
Citation Information
Patent Citations
Bottle type mean solar time sundial with orientation and locatation function
CN201166784Y
A system that measures time by utilizing the displacement movement that occurs due to differences in the density of liquids.
TR202016372A2
TR2022003575A1