JNTUH Research Engineering Matrix

System Technical Specifications

Comprehensive data on the photon-to-DC conversion system. Designed for academic verification and laboratory replication under JNTUH guidance.

High-intensity photon emitter array for artificial light conversion
JNTUH LABISO 9001:2015
SPEC-OPT-01 // WAVELENGTH: 600NM
Photon Emitter Array
Engineered to simulate solar irradiance in controlled environments, providing consistent photon flux for photovoltaic absorption.

High-efficiency photovoltaic cell module for energy capture
JNTUH LABISO 14001
SPEC-PV-02 // EFF: 22.5%
Photovoltaic Absorption
Optimized silicon substrate designed to maximize electron excitation from artificial photon sources in low-light conditions.

Step-up boost converter and voltage regulation circuit
JNTUH LABISO 26262
SPEC-PWR-03 // OUT: 5V DC
Voltage Stabilization
Regulates fluctuating input from PV cells to provide a steady 5V DC output for mobile device charging requirements.

Lithium-ion energy storage buffer for mobile charging
JNTUH LABISO 16750
SPEC-BAT-04 // CAP: 5000MAH
Energy Storage Buffer
Integrated lithium-ion buffer ensures continuous power delivery to mobile devices even during transient photon flux drops.

Submitted by Pailla Aishwarya (23011p0226)

Under the estimated guidance of Sushama, Jawaharlal Nehru Technological University Hyderabad.

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Performance Matrix

Charging Efficiency Optimized for Indoor Use

Compare our photon emitter charging system against traditional solar methods to see the clear advantages in reliability and speed.

Metric
Solar Charging
Photon Emitter
Energy Conversion Rate
Verified
12% to 25% (Ambient Solar)

Highly dependent on external light intensity and weather conditions.

88% Stable Conversion
3.5x Efficiency Gain

Optimized photon absorption via controlled emitter wavelength.

Operational Consistency
Verified
Intermittent Power Flow

Charging stops during cloud cover or low-light periods.

Continuous 24/7 Output
100% Uptime

Artificial light ensures steady voltage regardless of time.

Charge Duration
Verified
8+ Hours (Variable)

Slow charging speeds due to low solar flux density.

2.5 Hours Constant
70% Faster Charge

High-intensity photon flux accelerates electron flow.

Reliability
100% Uptime

Independent of weather or sunlight availability.

Efficiency
88% Conversion

Optimized photon absorption for maximum power.

Speed
2.5h Full Charge

Consistent power delivery for rapid charging.

Interested in our research findings?

Review the full technical specifications and experimental data.