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| # | Company | Status |
|---|---|---|
| 1 | Admitted-Finance | Admitted-Finance |
Tender Value
Refer Docs
Closing Date
17 Mar 2021, 11:00 amClosed
HOD, Applied Science
NITTTR, Sector 26, Chandigarh
Setfos 5.1 Software or latest / Modelling and Simulation of Solar Cell based on organic semiconductor material, perovskites, Tandem for optical and electrical Modeling of semiconductor device
2021_NITTT_58399_1
AppliedScience/SetfosSoftware
Open Tender
Miscellaneous Goods
Turn-key
10 days
NITTTR, Sector 26
Please refer tender document (Terms and Conditions) and BOQ for the Specifications
5 documents required · 5 mandatory
₹0
Exempted
19 Mar 2021
23 Feb 2021
17 Mar 2021
23 Feb 2021
17 Mar 2021
23 Feb 2021
23 Feb 2021 - 16 Mar 2021
Amount
Setfos 5.1 Software or latest (Modelling & Simulation of Solar Cell based on organic semiconductor material, perovskites, Tandem for optical and electrical Modeling of semiconductor device)
SETFOS Software is for modelling & Simulation of Solar Cell based on organic semiconductors material, perovskites, Tandem for optical and electrical modeling of semiconductor device. SETFOS MODULE DETAILS. 1. Drift-Diffusion Module:- Electrical simulation of Solar Cells . Fitting of experimental data. (fluxim.com) This module calculate Electrical properties of Solar Cell drift-diffusion equations. This module calculates the current-voltage (IV) characteristics, charge • Charge transport & recombination • Exciton physics: decay, diffusion, interaction, TADF, transfer, • Advanced transport model: traps,doping • Mobility models: Poole Frenkel, EGDM/ECDM, constant mobility • Steady-state, transient, AC, DC modeling 2. ABSORPTION MODULE Simulating Light Absorption in Organic and Perovskite Solar Cells (fluxim.com) It can maximize light absorption in the device, optimize different layer thickness in stack, adjust and match short-circuit currents of solar cells. • Computing the absorbance of each layer • Reflectance, transmittance, absorbance spectra, polarization. • Spectral penetration of external light • Calculation of the maximum power point with a coupled optical and electrical (drift-diffusion) simulation. 3. EMISSION MODULE:- Setfos predict the light emission characteristic of an OLED by using the dipole emission model. Several properties can be modeled: • Electroluminescence emission pattern. • Micro-cavity effects by thin film optics. • Photophysical properties such as efficiency, angular color, and brightness changes. • Excitonic processes in OLEDs by combining optical & electricalsimulation • Waveguided and plasmonic modes, quenching, distribution, and orientation of the emitters. LICENSE CONFIGURATION:- • SINGLE USER LECENSE • ONE YEAR LICENSE • ONE YEAR UPGRADATION
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