IP Library Granted Patent US 7,061,529
Granted Patent B2
US 7,061,529 · App. 09/903,521 · Granted Jun 13, 2006

Solid-state image sensing apparatus

Assignee: Minolta Co., Ltd.
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Quick Facts
Patent No.
US 7,061,529
App. No.
09/903,521
Granted
Jun 13, 2006
Kind
B2
Abstract

A solid-state image sensing apparatus in which a first signal converted linearly to the intensity of incident light, and a second signal converted logarithmically to the intensity of light, can be processed by a common circuit after undergoing a predetermined signal processing.

Claims (27)

1. A solid-state image sensing apparatus having a solid-state image sensing device that outputs an electrical signal proportional to an intensity of incident light, the solid-state image sensing device configured for outputting a first signal converted linearly to the intensity of the incident light and a second signal converted natural-logarithmically to the intensity of the incident light, comprising:

a plurality of color filters provided in the solid-state image sensing device, wherein the first signal and the second signal output from the solid-state image sensing apparatus comprise a plurality of color signals;

a first signal processing circuit supplied with the first signal from the solid-state image sensing device and performing white balance adjustment of the first signal to produce a linear signal;

a second signal processing circuit supplied with the second signal from the solid-state image sensing device and performing white balance adjustment of the second signal, wherein a dynamic range of the second signal is adjusted at the second signal processing circuit thereby a contrast of the second signal is improved, the adjustment of the dynamic range increasing a compressed range of a luminance distribution of the imaged subject by natural-logarithmically conversion;

a logarithmic/linear conversion circuit converting a signal output from the second signal processing circuit to a signal linearly proportional to the intensity of the incident light; and

a third signal processing circuit supplied with a signal from the first signal processing circuit and a signal converted linearly from the logarithmic/linear conversion circuit, the third signal processing circuit performing at least one of matrix conversion, edge enhancement color adjustment and inverse matrix conversion to produce the linear signal.

2. The solid-state image sensing apparatus as claimed in claim 1 wherein the first signal processing circuit performs gamma correction of the first signal, and the second signal processing circuit performs gamma correction of the second signal.

3. The image sensing apparatus of claim 1 wherein the adjustment of the dynamic range is performed in accordance with a luminance distribution of the subject.

4. A solid-state image sensing apparatus having a solid-state image sensing device that outputs an electrical signal proportional to an intensity of incident light, the solid-state image sensing device configured for outputting a first signal converted linearly to the intensity of the incident light and a second signal converted natural-logarithmically to the intensity of the incident light, comprising:

a plurality of color filters provided in the solid-state image sensing device, wherein the first signal and the second signal output from the solid-state image sensing apparatus comprise a plurality of color signals;

a first signal processing circuit supplied with the first signal from the solid-state image sensing device and performing white balance adjustment of the first signal as a linear signal;

a second signal processing circuit supplied with the second signal from the solid-state image sensing device and performing white balance adjustment to the signal as a logarithmic signal;

a logarithmic/linear conversion circuit converting a signal output from the second signal processing circuit to a signal linearly proportional to the intensity of the incident light; and

a third signal processing circuit supplied with a signal from the first signal processing circuit and a signal from the logarithmic/linear conversion circuit, the third signal processing circuit performing at least one of matrix conversion, edge enhancement, color adjustment and inverse matrix conversion to produce a linear signal.

5. The image sensing apparatus of claim 4 where a dynamic range of the second signal is adjusted at the second signal processing circuit thereby a contrast of the signal is improved.

6. The image sensing apparatus of claim 5 wherein the adjustment of the dynamic range increasing a compressed range of a luminance distribution of the imaged subject by natural-logarithmic conversion.

7. The image sensing apparatus of claim 6 wherein the adjustment of the dynamic range is performed in accordance with a luminance distribution of the subject.

8. The image sensing apparatus of claim 4 wherein the first signal processing circuit performs gamma correction of the first signal, and the second signal processing circuit performs gamma correction of the second signal.

9. A signal processing method performed by a solid-state image sensing apparatus having a solid-state image sensing device that outputs an electrical signal proportional to an intensity of incident light, the solid-state image sensing device configured for outputting a first signal converted linearly to the intensity of the incident light and a second signal converted natural-logarithmically to the intensity of the incident light, the solid-state image sensing device comprising a plurality of color filters provided in the solid-state image sensing device, wherein the first signal and the second signal output from the solid-state image sensing apparatus comprising a plurality of color signal, the method comprising:

performing white balance adjustment of the first signal to produce a linear signal by a first signal processing circuit;

performing white balance adjustment of the second signal as a logarithmic signal by a second signal processing circuit;

converting the signal output from the second signal processing circuit to a signal linearly proportional to the intensity of the incident light by a logarithmic/linear conversion circuit; and

performing at least one of matrix conversation, edge enhancement, color adjustment and inverse matrix conversion on both the signal output from the first signal processing circuit and the logarithmic/linear conversation circuit to produce the linear signal by a third signal processing circuit.

10. The signal processing method of claim 9 where in a dynamic range of the second signal is adjusted at the second signal processing circuit thereby a contrast of the second signal is improved.

11. The signal processing method of claim 10 wherein the adjustment of the dynamic range increasing a compressed range of a luminance distribution of the imaged subject by natural-logarithmic conversion.

12. The signal processing method of claim 11 wherein the adjustment of the dynamic range is performed in accordance with a luminance distribution of the subject.

13. The signal processing method of claim 9 wherein the first signal processing circuit performs gamma correction of the first signal, and the second signal processing circuit performs gamma correction of the second signal.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 1, 2016
From: KONICA MINOLTA, INC.
To: SONY SEMICONDUCTOR SOLUTIONS CORPORATION
Reel/Frame 040182/0404 →
MERGER Recorded Aug 18, 2016
From: MINOLTA CO., LTD.
To: KONICA MINOLTA HOLDINGS, INC.
Reel/Frame 039725/0299 →
MERGER AND CHANGE OF NAME Recorded Aug 18, 2016
From: KONICA MINOLTA ADVANCED LAYERS, INC.; KONICA MINOLTA HOLDINGS, INC.; KONICA MINOLTA HOLDINGS, INC.
To: KONICA MINOLTA, INC.
Reel/Frame 039785/0733 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2001
From: NAKAMURA, SATOSHI
To: MINOLTA CO., LTD.
Reel/Frame 012019/0413 →
Priority Claims (1)
JP 2000-218634 · Jul 19, 2000 · national
Continuity (1)
Related Publication 20020021121A1 · Feb 21, 2002