FIPMS223
Back-gated OFET Interdigitated Substrate
Au source/drain, 90 nm SiO2 gate-insulator, varied W/L from 500 to 4000, 16 transistors per chip, chips (diced)
About This Item
Productos recomendados
form
chips (diced)
packaging
pack of 1 (wafer of 60 diced chips)
storage temp.
15-25°C
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General description
Layer structure:
- Gate: n-doped silicon (doping at wafer surface: n~3x1017/ cm3)
- Gate oxide: 90 nm ± 10 nm SiO2 (thermal oxidation)
- Drain/source: 30 nm Au with 10 nm high work function adhesion layer (ITO), by lift-off technique
- Protection: resist AR PC 5000/3.1 (soluble in AZ-Thinner or acetone)
- Layout: see images
- Test chip size: 15 x 15 mm2
- No. of chips: 60 per wafer
- Contact pads: 0.5 x 0.5 mm2
- No. of transistors: 16 per chip
4 x transistors L= 2.5 μm W= 10 mm
4 x transistors L= 5 μm W= 10 mm
4 x transistors L= 10 μm W= 10 mm
4 x transistors L= 20 μm W= 10 mm
Application
Packaging
Preparation Note
To guarantee a complete cleaning of the wafer / chip surface from resist residuals, please rinse by acetone and then dry the material immediately by nitrogen (compressed air).
Recommendation for material characterization:
If gate currents appear during the characterization of the field effect transistors, considerable variations could occur at the extraction of the carrier mobility. Therefore it is necessary to check the leakage currents over the reverse side (over the chip edges) of the OFET-substrates.
Storage and Stability
Resist layer was applied to prevent damage from scratches.
Expiration date is the recommended period for resist removal only. After resist removal, the substrate remains functional and does not expire.
Legal Information
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Professors Tokito and Takeda share design principles and optimization protocols for organic electronic devices, focusing on flexibility and low cost.
Professors Tokito and Takeda share design principles and optimization protocols for organic electronic devices, focusing on flexibility and low cost.
Professors Tokito and Takeda share design principles and optimization protocols for organic electronic devices, focusing on flexibility and low cost.
Professors Tokito and Takeda share design principles and optimization protocols for organic electronic devices, focusing on flexibility and low cost.
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