ccd相機

Hattori, T.; Dasai, F.; Sato, H.; Kato, R.; Sawada, K. CCD Multi-Ion Image Sensor with Four 128 × 128 Pixels Array. Sensors 2019, 19, 1582. https://doi.org/10.3390/s19071582

CCDvs CMOS

Hattori, T.; Dasai, F.; Sato, H.; Kato, R.; Sawada, K. CCD Multi-Ion Image Sensor with Four 128 × 128 Pixels Array. Sensors 2019, 19, 1582. https://doi.org/10.3390/s19071582

Hattori T, Dasai F, Sato H, Kato R, Sawada K. CCD Multi-Ion Image Sensor with Four 128 × 128 Pixels Array. Sensors. 2019; 19(7):1582. https://doi.org/10.3390/s19071582

CCDCMOS

Feature papers are submitted upon individual invitation or recommendation by the scientific editors and must receive positive feedback from the reviewers.

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CCD sensor

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CCDdetector spectroscopy

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Hattori T, Dasai F, Sato H, Kato R, Sawada K. CCD Multi-Ion Image Sensor with Four 128 × 128 Pixels Array. Sensors. 2019; 19(7):1582. https://doi.org/10.3390/s19071582

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ccd是什么

Hattori, Toshiaki, Fumihiro Dasai, Hikaru Sato, Ryo Kato, and Kazuaki Sawada. 2019. "CCD Multi-Ion Image Sensor with Four 128 × 128 Pixels Array" Sensors 19, no. 7: 1582. https://doi.org/10.3390/s19071582

Sensor types : CCD and CMOS ... CMOS and CCD are the two most important and common technologies for the image sensor market. The CCDs (Charged-coupled device) are ...

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Charge-coupled device

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Feature papers represent the most advanced research with significant potential for high impact in the field. A Feature Paper should be a substantial original Article that involves several techniques or approaches, provides an outlook for future research directions and describes possible research applications.

Hattori, Toshiaki, Fumihiro Dasai, Hikaru Sato, Ryo Kato, and Kazuaki Sawada. 2019. "CCD Multi-Ion Image Sensor with Four 128 × 128 Pixels Array" Sensors 19, no. 7: 1582. https://doi.org/10.3390/s19071582

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Abstract: A semiconductor array pH image sensor consisting of four separated blocks was fabricated using charged coupled device (CCD) and complementary metal oxide semiconductor (CMOS) technologies. The sensing surface of one of the four blocks was Si3N4 and this block responded to H+. The surfaces of the other three blocks were respectively covered with cation sensitive membranes, which were separately printed with plasticized poly (vinyl chloride) solutions including Na+, K+, and Ca2+ ionophores by using an ink-jet printing method. In addition, each block of the image sensor with 128 × 128 pixels could have a calibration curve generated in each independent measurement condition. The present sensor could measure the concentration image of four kinds of ions (H+, K+, Na +, Ca2+) simultaneously at 8.3 frames per second (fps) in separated regions on a chip. Keywords: CCD ion sensor; multi-ion image; CMOS technology; ink-jet printing; bioactive cations

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