Toward 1Gfps Evolution Of Ultrahighspeed Image Sensors Isis Bsi
Multicollection Gates And 3Dstacking
- doi: 10.1109/IEDM.2014.7047023
-
title: Toward 1Gfps: Evolution of ultra-high-speed
image sensors -ISIS, BSI, multi-collection gates, and 3D-stacking-
- publisher: IEEE
- isbn: 978-1-4799-8001-7
- issn: 0163-1918
- rank: 3874
- access_type: LOCKED
- content_type: Conferences
-
abstract: Evolution of ultra-high-speed image sensors
is reviewed. Currently, the highest frame rate achieved by a solid-state
image sensor is 16.7 Mfps, while the target of this project is 1 Gfps.
To achieve this target, we propose an image sensing unit consisting of
CCD pixels and a CMOS driver circuit, whereas the pixel has multiple
collection gates, and the driver comprises a ring oscillator with XNOR
circuits. The sensor and the driver are mounted on different IC chips by
3D stacking. Simulations confirm that the proposed technology achieves
the target. In ultra-high-speed imaging, sensitivity is crucial. A
technique to achieve very high sensitivity is also proposed.
- article_number: 7047023
-
pdf_url:
https://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=7047023
-
html_url:
https://ieeexplore.ieee.org/document/7047023/
-
abstract_url:
https://ieeexplore.ieee.org/document/7047023/
-
publication_title: 2014 IEEE International Electron
Devices Meeting
- conference_location: San Francisco, CA, USA
- conference_dates: 15-17 Dec. 2014
- publication_number: 7038718
- is_number: 7046955
- publication_year: 2014
- publication_date: 15-17 Dec. 2014
- start_page: 10.3.1
- end_page: 10.3.4
- citing_paper_count: 6
- citing_patent_count: 0
- download_count: 612
- insert_date: 20150223
-
index_terms:
-
ieee_terms:
- Image sensors
- Logic gates
- Charge coupled devices
- Sensitivity
- Electric potential
- Noise
- Photodiodes
-
dynamic_index_terms:
- Frame Rate
- Image Sensor
- Camera Sensor
- Projection Targets
- 3D Stacks
- Driver Circuit
- Photodiode
- Travel Time
- Video Camera
- Image Capture
- Image Signal
- Front Side
- Potential Profile
- Dark Current
- Epitaxial Layer
- Epilayer
- Ultrahigh Sensitivity
- Boundary Pixels
- Frame Interval
- Readout Noise
- Ultra-high Speed
-
isbn_formats:
-
format: Electronic ISBN,
value: 978-1-4799-8001-7,
isbnType: New-2005
-
authors:
-
Author Name: T. G. Etoh
Affiliation: Ritsumeikan University, Kusatsu,
Japan
Author URL:
https://ieeexplore.ieee.org/author/37321146000
ID: 37321146000
Order: 1
Author Affiliations:
- Ritsumeikan University, Kusatsu, Japan
-
Author Name: V. T. S. Dao
Affiliation: Ritsumeikan University, Kusatsu,
Japan
Author URL:
https://ieeexplore.ieee.org/author/38110974400
ID: 38110974400
Order: 2
Author Affiliations:
- Ritsumeikan University, Kusatsu, Japan
-
Author Name: K. Shimonomura
Affiliation: Ritsumeikan University, Kusatsu,
Japan
Author URL:
https://ieeexplore.ieee.org/author/37296093100
ID: 37296093100
Order: 3
Author Affiliations:
- Ritsumeikan University, Kusatsu, Japan
-
Author Name: E. Charbon
Affiliation:
Author URL:
https://ieeexplore.ieee.org/author/37271353200
ID: 37271353200
Order: 4
-
Author Name: C. Zhang
Affiliation: T U Delft, Delft, The Netherlands
Author URL:
https://ieeexplore.ieee.org/author/37085574758
ID: 37085574758
Order: 5
Author Affiliations:
- T U Delft, Delft, The Netherlands
-
Author Name: Y. Kamakura
Affiliation: Osaka University, Suita, Osaka,
Japan
Author URL:
https://ieeexplore.ieee.org/author/37284031200
ID: 37284031200
Order: 6
Author Affiliations:
- Osaka University, Suita, Osaka, Japan
-
Author Name: T. Matsuoka
Affiliation: Osaka University, Suita, Osaka,
Japan
Author URL:
https://ieeexplore.ieee.org/author/37085574721
ID: 37085574721
Order: 7
Author Affiliations:
- Osaka University, Suita, Osaka, Japan
Image Sensor
- sensor_type: CCD
- resolution: 260x312
- dynamic_range: Not specified
- pixel_size: Not specified
- dark_current: Not specified
Optical Data
- focal_length: Not specified
- aperture: Not specified
- field_of_view: Not specified
- distortion: Not specified
Performance Metrics
Applications & Benefits
- cell_imaging: Not specified
-
benefits: Capture ultra-high-speed images for
scientific measurements and imaging applications.
Supporting Organizations
-
supported_by: Ritsumeikan University, TU Delft, Osaka
University
Manuscript Details
- publication_date: 15-17 Dec. 2014
Relevancy Score
- score: 10
-
missing_fields:
- fill factor
- quantum efficiency
- readout speed
- noise sources
- analog-to-digital conversion techniques
- microlenses
- on-chip colour filters
- global or rolling shutters
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