IP Library Granted Patent US 11,348,954
Granted Patent B2
US 11,348,954 · App. 16/409,767 · Granted May 31, 2022

Time-resolving sensor for range measurement and 2D greyscale imaging

Inventors: Yibing Michelle Wang (Temple City, CA); Lilong Shi (Austin, TX); Kwang Oh Kim (Cerritos, CA); Chunji Wang (Los Angeles, CA)
H01L27/14609G01S7/4863G01S7/4865G01S17/10G01S17/894H01L27/14643
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Quick Facts
Patent No.
US 11,348,954
App. No.
16/409,767
Granted
May 31, 2022
Kind
B2
Abstract

A pixel of an image sensor includes a pinned photodiode (PPD), a switching device and an output circuit. A first terminal of the switching device is coupled to the PPD. A second terminal of the switching device is coupled to a floating diffusion (FD). A third terminal of the switching device is coupled to a first enable signal and a second enable signal. The switching device is responsive to the first enable signal to transfer a first charge on the PPD to the FD, and responsive to the second enable signal to transfer a second charge on the PPD to the FD. The output circuit outputs a first voltage based on the first charge and outputs a second voltage based on the second charge in which the first voltage corresponds to a time of flight of one or more detected photons and the second voltage corresponds to a greyscale image.

Claims (48)

1. A pixel of an image sensor, comprising:

a pinned photodiode (PPD) having a first terminal and a second terminal, the second terminal being coupled to a ground voltage;

a switching device having first, second and third terminals, the first terminal of the switching device being coupled to the first terminal of the PPD, the second terminal of the switching device being coupled to a floating diffusion, and the third terminal of the switching device being coupled to a first enable signal and a second enable signal, the switching device being responsive to the first enable signal to transfer a first charge on the PPD to the floating diffusion, and responsive to the second enable signal to transfer a second charge on the PPD to the floating diffusion, the second enable signal being subsequent to the first enable signal; and

an output circuit that outputs a first voltage that is based on the first charge on the floating diffusion and that outputs a second voltage that is based on the second charge on the floating diffusion, the first voltage corresponding to a time of flight of one or more detected photons and the second voltage corresponding to a greyscale image.

2. The pixel of claim 1 , further comprising:

at least one single-photon avalanche diode (SPAD), each SPAD being responsive to during an active shutter signal to generate an output signal based on detecting the one or more photons that are incident on the SPAD, the one or more photons being reflected from an object; and

a logic circuit coupled to the output signal of the at least one SPAD, the logic circuit to generate the first enable signal, the first enable signal being active in response to a beginning of the active shutter signal and being inactive in response to the output signal of the at least one SPAD.

3. The pixel of claim 1 , wherein the output circuit outputs the first voltage and the second voltage through a same signal path.

4. The pixel of claim 3 , wherein the floating diffusion comprises a first floating diffusion,

the pixel further comprising a storage floating diffusion between the second terminal of the PPD and the first floating diffusion.

5. The pixel of claim 1 , wherein the output circuit comprises a first signal path to output the first voltage and a second signal path to output the second voltage.

6. The pixel of claim 5 , wherein the switching device comprises a first transistor and a second transistor, and the floating diffusion comprises a first floating diffusion and a second floating diffusion, and

wherein the first transistor is responsive to the first enable signal to transfer the first charge on the PPD to the first floating diffusion, and

wherein the second transistor comprises first, second and third terminals, the first terminal of the second transistor being coupled to the first terminal of the PPD, the second terminal of the second transistor being coupled to the second floating diffusion, and the third terminal of the second transistor being coupled to the second enable signal, the second transistor being responsive to the second enable signal to transfer the second charge on the PPD to the second floating diffusion.

7. An image sensor, comprising:

an array of a plurality of pixels, at least one pixel comprising:

a pinned photodiode (PPD);

a switching device that is responsive to a first enable signal to transfer a first charge on the PPD to a floating diffusion, and responsive to a second enable signal to transfer a second charge on the PPD to the floating diffusion, the second enable signal being subsequent to the first enable signal; and

an output circuit that outputs a first voltage that is based on the first charge on the floating diffusion and that outputs a second voltage that is based on the second charge on the floating diffusion, the first voltage corresponding to a time of flight of one or more detected photons and the second voltage corresponding to a greyscale image.

8. The image sensor of claim 7 , wherein the PPD comprises a first terminal and a second terminal, the second terminal being coupled to a ground voltage, and

wherein the switching device comprises first, second and third terminals, the first terminal of the switching device being coupled to the first terminal of the PPD, the second terminal of the switching device being coupled to the floating diffusion, and the third terminal of the switching device being coupled to the first enable signal and the second enable signal, the switching device being responsive to the first enable signal to transfer the first charge on the PPD to the floating diffusion, and responsive to the second enable signal to transfer the second charge on the PPD to the floating diffusion.

9. The image sensor of claim 8 , further comprising:

at least one single-photon avalanche diode (SPAD), each SPAD being responsive to during an active shutter signal to generate an output signal based on detecting the one or more photons that are incident on the SPAD, the one or more photons being reflected from an object; and

a logic circuit coupled to the output signal of the at least one SPAD, the logic circuit to generate the first enable signal, the first enable signal being active in response to a beginning of the active shutter signal and being inactive in response to the output signal of the at least one SPAD.

10. The image sensor of claim 8 , wherein the output circuit outputs the first voltage and the second voltage through a same signal path.

11. The image sensor of claim 10 , wherein the floating diffusion comprises a first floating diffusion,

the at least one pixel further comprising a storage floating diffusion between the second terminal of the PPD and the first floating diffusion.

12. The image sensor of claim 7 , wherein the output circuit comprises a first signal path to output the first voltage and a second signal path to output the second voltage.

13. The image sensor of claim 12 , wherein the switching device comprises a first transistor and a second transistor, and the floating diffusion comprises a first floating diffusion and a second floating diffusion, and

wherein the first transistor is responsive to the first enable signal to transfer the first charge on the PPD to the first floating diffusion, and

wherein the second transistor comprises first, second and third terminals, the first terminal of the second transistor being coupled to the first terminal of the PPD, the second terminal of the second transistor being coupled to the second floating diffusion, and the third terminal of the second transistor being coupled to the second enable signal, the second transistor being responsive to the second enable signal to transfer the second charge on the PPD to the second floating diffusion.

14. An image sensor, comprising:

an array of a plurality of pixels, at least one pixel comprising:

a capacitive device;

a switching device that is responsive to a first enable signal to transfer a first charge on the capacitive device to a floating diffusion, and responsive to a second enable signal to transfer a second charge on the capacitive device to the floating diffusion, the second enable signal being subsequent to the first enable signal; and

an output circuit that outputs a first voltage that is based on the first charge on the floating diffusion and that outputs a second voltage that is based on the second charge on the floating diffusion, the first voltage corresponding to a time of flight of one or more detected photons and the second voltage corresponding to a greyscale image.

15. The image sensor of claim 14 , wherein the capacitive device comprises a first terminal and a second terminal, the second terminal being coupled to a ground voltage, and

wherein the switching device comprises first, second and third terminals, the first terminal of the switching device being coupled to the first terminal of the capacitive device, the second terminal of the switching device being coupled to the floating diffusion, and the third terminal of the switching device being coupled to the first enable signal and the second enable signal, the switching device being responsive to the first enable signal to transfer the first charge on the capacitive device to the floating diffusion, and responsive to the second enable signal to transfer the second charge on the capacitive device to the floating diffusion.

16. The image sensor of claim 15 , further comprising:

at least one single-photon avalanche diode (SPAD), each SPAD being responsive to during an active shutter signal to generate an output signal based on detecting the one or more photons that are incident on the SPAD, the one or more photons being reflected from an object; and

a logic circuit coupled to the output signal of the at least one SPAD, the logic circuit to generate the first enable signal, the first enable signal being active in response to a beginning of the active shutter signal and being inactive in response to the output signal of the at least one SPAD.

17. The image sensor of claim 15 , wherein the output circuit outputs the first voltage and the second voltage through a same signal path.

18. The image sensor of claim 17 , wherein the floating diffusion comprises a first floating diffusion,

the at least one pixel further comprising a storage floating diffusion between the second terminal of the capacitive device and the first floating diffusion.

19. The image sensor of claim 14 , wherein the output circuit comprises a first signal path to output the first voltage and a second signal path to output the second voltage.

20. The image sensor of claim 19 , wherein the switching device comprises a first transistor and a second transistor, the floating diffusion comprises a first floating diffusion and a second floating diffusion, and the capacitive device comprises a first pinned photodiode (PPD) and a second PPD, and

wherein the first transistor is responsive to the first enable signal to transfer the first charge on the first PPD to the first floating diffusion, and

wherein the second transistor comprises first, second and third terminals, the first terminal of the second transistor being coupled to the first terminal of the second PPD, the second terminal of the second transistor being coupled to the second floating diffusion, and the third terminal of the second transistor being coupled to the second enable signal, the second transistor being responsive to the second enable signal to transfer the second charge on the capacitive device to the second floating diffusion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2023
From: WANG, YIBING MICHELLE; SHI, LILONG; KIM, KWANG OH; WANG, CHUNJI
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 063224/0296 →
Continuity (2)
Provisional Application 62820833 · Mar 19, 2019
Related Publication 20200303437A1 · Sep 24, 2020
Cited By (1)
US 12,587,764