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2006-12-16 Charge Coupled Devices Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu
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2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

Dec 20, 2015

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Page 1: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

2006-12-16

Charge Coupled Devices—

Digital Cameras

Instructor: Professor SobolewskiPrepared by: Huizi Diwu

Page 2: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

INDEX

History Operation of CCDs How Digital Cameras Work? CCD vs CMOS

Page 3: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

History

Although CCD was originally invented in 1969 by Willard Boyle and George Smith at AT&T Bell Labs as a “semiconductor bubble” memory device, it is more intended to be used as an image sensor, which is the result of its advantage of light sensitivity.

Page 4: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

Operation of CCDs

Different Types of CCDs

Page 5: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

Surface Channel CCD (SCCD)

Grounding the substrate and applying a significantly more positive voltage at one electrode than its neighbors form a pixel-----picture element.

Charge is stored and transferred at the semiconductor surface in SCCD

Some problem of interface-state trapping exist in SCCD.

Has better charge-carrying capacity

Page 6: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

Buried Channel CCD (BCCD)

A thin n-type region is formed on the surface of substrate

Avoid the interface-state trapping

Higher Speed but smaller charge carrying capacity

Page 7: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

Operation of CCDs

Charge Transfer Process

Page 8: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

Charge Transfer Process

Page 9: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

Charge Transfer Process

Page 10: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

Charge Transfer Process

Page 11: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

How Digital Cameras Work?

Page 12: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

How Digital Cameras Work Bayer filter Look at the nearby

information of a pixel to make very accurate guesses about the true color at a certain position

The true color of a pixel can be determined by averaging the values of the vicinity pixels

Page 13: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

How Digital Cameras Work

Page 14: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

How Digital Cameras Work

Charge Packet

Charge TransferReadoutADC( Analog-Digital

Converter)

Readable by Computer

FilterLenses

Page 15: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

How Digital Cameras Work

Page 16: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

CCD vs CMOS

Feature CCD CMOS

Signal Out of Pixel

Charge Packet Voltage

Light Sensitivity

Higher Lower

System Noise Low Moderate

Power Consumption

Higher Lower

Speed Moderate to High

Higher

Page 17: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.

Reference

[1] Furumiya, M.; Hatano, K.; Murakami, I.; Kawasaki, T.; Ogawa, C.; Nakashiba,Y.: “A 1/3-in 1.3 M-pixel single-layer electrode CCD with a high-frame-rate skip mode”, IEEE Transactions on Electron Devices, Volume 48 Issue 9, pp 1915-1921, September 2001

[2] Philip Felber , “Charge-Coupled Devices” , Illinois Institute of Technology, May 2, 2002

Robert D. LaBelle and Sean D. Garvey, “Introduction to High Performance CCD Cameras” IEEE 1995.

[3] Xiao-Wei TU and Bernard DUBUISSON “CCD Camera Model and its Physical Characteristics [6] Consideration” in Calibration Task for Robotics IEEE International Workshop on. Robot and Human Communication, 1992. pp. 75-77.

[4] Guoqing Zhou, Xiaofang Tang and Baozong Yuan. “Distortion Model Selecting and Accuracy Evaluation for CCD Camera Calibration”. Proceedings of ICSP ' 9

[5] KO Sung-Yuan, “The Embedded Bluetooth CCD Camera” ZEEE Catalogue No. 01 CH37239 81- 0-7803-7101-1/01, 2001 ZEEE.

Page 18: 2006-12-16 Charge Coupled Devices — Digital Cameras Instructor: Professor Sobolewski Prepared by: Huizi Diwu.