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SparkFun Electronics qwiic transparent graphical oled breakout
<t>Transparent</t> <t>OLED</t> used for evaluating the multifocal imaging performance. ( a ) Schematic structure of OLED. The OLED panel is protected by a glass substrate with a thickness of 550 μm above and below. The size of the OELD pixel is 254 μm, and the spacing between each OLED pixel is 20 μm. ( b ) Photo of the transparent graphical OLED. ( c ) The transparent OLED magnified and imaged with an objective lens with an NA of 0.13 and magnification of 4.
Qwiic Transparent Graphical Oled Breakout, supplied by SparkFun Electronics, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/qwiic+transparent+graphical+oled+breakout/pmc11281179-98-6-13?v=SparkFun+Electronics
Average 90 stars, based on 1 article reviews
qwiic transparent graphical oled breakout - by Bioz Stars, 2026-08
90/100 stars

Images

1) Product Images from "Simultaneous Multifocal Plane Fourier Ptychographic Microscopy Utilizing a Standard RGB Camera"

Article Title: Simultaneous Multifocal Plane Fourier Ptychographic Microscopy Utilizing a Standard RGB Camera

Journal: Sensors (Basel, Switzerland)

doi: 10.3390/s24144426

Transparent OLED used for evaluating the multifocal imaging performance. ( a ) Schematic structure of OLED. The OLED panel is protected by a glass substrate with a thickness of 550 μm above and below. The size of the OELD pixel is 254 μm, and the spacing between each OLED pixel is 20 μm. ( b ) Photo of the transparent graphical OLED. ( c ) The transparent OLED magnified and imaged with an objective lens with an NA of 0.13 and magnification of 4.
Figure Legend Snippet: Transparent OLED used for evaluating the multifocal imaging performance. ( a ) Schematic structure of OLED. The OLED panel is protected by a glass substrate with a thickness of 550 μm above and below. The size of the OELD pixel is 254 μm, and the spacing between each OLED pixel is 20 μm. ( b ) Photo of the transparent graphical OLED. ( c ) The transparent OLED magnified and imaged with an objective lens with an NA of 0.13 and magnification of 4.

Techniques Used: Imaging

( a ) Transparent OLED imaged using an objective lens with an NA of 0.13. ( b ) Reconstructed image using simultaneous multifocal plane FPM (R channel). ( c ) Reconstructed image using simultaneous multifocal plane FPM (G channel).
Figure Legend Snippet: ( a ) Transparent OLED imaged using an objective lens with an NA of 0.13. ( b ) Reconstructed image using simultaneous multifocal plane FPM (R channel). ( c ) Reconstructed image using simultaneous multifocal plane FPM (G channel).

Techniques Used:



Similar Products

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SparkFun Electronics qwiic transparent graphical oled breakout
<t>Transparent</t> <t>OLED</t> used for evaluating the multifocal imaging performance. ( a ) Schematic structure of OLED. The OLED panel is protected by a glass substrate with a thickness of 550 μm above and below. The size of the OELD pixel is 254 μm, and the spacing between each OLED pixel is 20 μm. ( b ) Photo of the transparent graphical OLED. ( c ) The transparent OLED magnified and imaged with an objective lens with an NA of 0.13 and magnification of 4.
Qwiic Transparent Graphical Oled Breakout, supplied by SparkFun Electronics, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/qwiic+transparent+graphical+oled+breakout/pmc11281179-98-6-13?v=SparkFun+Electronics
Average 90 stars, based on 1 article reviews
qwiic transparent graphical oled breakout - by Bioz Stars, 2026-08
90/100 stars
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Transparent OLED used for evaluating the multifocal imaging performance. ( a ) Schematic structure of OLED. The OLED panel is protected by a glass substrate with a thickness of 550 μm above and below. The size of the OELD pixel is 254 μm, and the spacing between each OLED pixel is 20 μm. ( b ) Photo of the transparent graphical OLED. ( c ) The transparent OLED magnified and imaged with an objective lens with an NA of 0.13 and magnification of 4.

Journal: Sensors (Basel, Switzerland)

Article Title: Simultaneous Multifocal Plane Fourier Ptychographic Microscopy Utilizing a Standard RGB Camera

doi: 10.3390/s24144426

Figure Lengend Snippet: Transparent OLED used for evaluating the multifocal imaging performance. ( a ) Schematic structure of OLED. The OLED panel is protected by a glass substrate with a thickness of 550 μm above and below. The size of the OELD pixel is 254 μm, and the spacing between each OLED pixel is 20 μm. ( b ) Photo of the transparent graphical OLED. ( c ) The transparent OLED magnified and imaged with an objective lens with an NA of 0.13 and magnification of 4.

Article Snippet: The structure and shape of the transparent OLED (Qwiic Transparent Graphical OLED Breakout, SparkFun) are shown in .

Techniques: Imaging

( a ) Transparent OLED imaged using an objective lens with an NA of 0.13. ( b ) Reconstructed image using simultaneous multifocal plane FPM (R channel). ( c ) Reconstructed image using simultaneous multifocal plane FPM (G channel).

Journal: Sensors (Basel, Switzerland)

Article Title: Simultaneous Multifocal Plane Fourier Ptychographic Microscopy Utilizing a Standard RGB Camera

doi: 10.3390/s24144426

Figure Lengend Snippet: ( a ) Transparent OLED imaged using an objective lens with an NA of 0.13. ( b ) Reconstructed image using simultaneous multifocal plane FPM (R channel). ( c ) Reconstructed image using simultaneous multifocal plane FPM (G channel).

Article Snippet: The structure and shape of the transparent OLED (Qwiic Transparent Graphical OLED Breakout, SparkFun) are shown in .

Techniques: