1460728029-2492b33c-38f9-47bc-bfad-ce96e3f6131a

1. A method, implemented at least in part via a processing unit, comprising:
automatically selecting a contextually relevant name pool from a database comprising a plurality of name pools based upon a characteristic of an online environment;
automatically assigning a contextually relevant name from the selected name pool to a member of the online environment based upon a developed characteristic of the member relative to the online environment, the developed characteristic of the member developed based upon a discussion associated with the member relative to the online environment; and
automatically assigning a second contextually relevant name from the selected name pool to a second member of the online environment based upon a second developed characteristic of the second member relative to the online environment, the second developed characteristic of the second member developed based upon a second discussion associated with the second member relative to the online environment.
2. The method of claim 1, the automatically assigning a second contextually relevant name comprising assigning the second contextually relevant name based upon a third developed characteristic of the second member relative to the online environment.
3. The method of claim 2, the third developed characteristic of the second member developed based upon a third discussion associated with the second member.
4. The method of claim 1, the automatically assigning a contextually relevant name comprising assigning the contextually relevant name to the member when the member is anonymous in the online environment.
5. The method of claim 1, the selected name pool comprising a plurality of names.
6. The method of claim 1, the automatically assigning a second contextually relevant name comprising assigning the second contextually relevant name to the second member when the second member is anonymous in the online environment.
7. The method of claim 1, the automatically assigning a contextually relevant name comprising assigning the contextually relevant name to the member based upon a rank of the contextually relevant name and an order of an entrance of the member to the online environment.
8. The method of claim 1, the online environment comprising a shared online environment.
9. A system, implemented at least in part via a processing unit, comprising:
a selection component configured to automatically select a contextually relevant name pool from a plurality of name pools based upon a characteristic of an online environment; and
an assignment component configured to:
automatically assign a contextually relevant name from the selected name pool to a member of the online environment based upon a developed characteristic of the member relative to the online environment, the developed characteristic of the member developed based upon a discussion associated with the member relative to the online environment; and
automatically assign a second contextually relevant name from the selected name pool to a second member of the online environment based upon a second developed characteristic of the second member relative to the online environment, the second developed characteristic of the second member developed based upon a second discussion associated with the second member relative to the online environment.
10. The system of claim 9, the assignment component configured to automatically assign the second contextually relevant name from the selected name pool to the second member of the online environment based upon a third developed characteristic of the second member relative to the online environment.
11. The system of claim 10, the third developed characteristic of the second member developed based upon a third discussion associated with the second member.
12. The system of claim 9, the assignment component configured to automatically assign the contextually relevant name to the member when the member is anonymous in the online environment.
13. The system of claim 9, the selected name pool comprising a plurality of names.
14. The system of claim 9, the assignment component configured to automatically assign the contextually relevant name to the member based upon a rank of the contextually relevant name and an order of an entrance of the member to the online environment.
15. The system of claim 9, the online environment comprising a shared online environment.
16. The system of claim 9, the online environment comprising a shared online collaboration environment.
17. A method, implemented at least in part via a processing unit, comprising:
selecting a contextually relevant name pool comprising a plurality of names from a plurality of name pools based upon a characteristic of an online environment;
assigning a contextually relevant name from the selected name pool to a member of the online environment based upon a developed characteristic of the member relative to the online environment, the developed characteristic of the member developed based upon a discussion associated with the member relative to the online environment; and
assigning a second contextually relevant name from the selected name pool to a second member of the online environment based upon a second developed characteristic of the second member relative to the online environment, the second developed characteristic of the second member developed based upon a second discussion associated with the second member relative to the online environment, the online environment comprising a shared online environment.
18. The method of claim 17, the assigning a second contextually relevant name comprising assigning the second contextually relevant name based upon a third developed characteristic of the second member relative to the online environment.
19. The method of claim 18, the third developed characteristic of the second member developed based upon a third discussion associated with the second member.
20. The method of claim 17, the assigning a contextually relevant name comprising assigning the contextually relevant name to the member automatically when the member is anonymous in the online environment.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A CMOS image sensor comprising:
a device isolation pattern formed in a substrate to define a diode region and an active region;
a photodiode formed in the diode region;
a transfer gate formed adjoining the photodiode on the active region;
a reset gate and a selection gate serially formed apart from each other on the active region separated from the transfer gate by a predetermined distance;
a floating diffusion layer formed of a lightly doped diffusion region in the active region between the transfer gate and the reset gate;
lightly doped diffusion layers formed in the active region between the reset gate and the selection gate and in the active region adjacent to the selection gate;
sidewall spacers formed on a sidewall of the reset gate facing the selection gate and on sidewalls of the selection gate; and
heavily doped diffusion layers, which are aligned to the sidewall spacers, formed in the lightly doped diffusion layers; and
a blocking layer formed on the diode region so as to protect the photodiode, wherein the blocking layer is extended to the active region to cover the transfer gate and the floating diffusion layer to block impurities from being implanted in the floating diffusion layer when said heavily doped diffusion layers are formed in said lightly doped diffusion layers.
2. The CMOS image sensor of claim 1, wherein the blocking layer is formed to cover at least a portion of the reset gate.
3. The CMOS image sensor of claim 1, further comprising:
a protection layer formed on the blocking layer and sidewall spacers, respectively; and
a salicide layer aligned to the protection layer formed on the heavily doped diffusion layers.
4. The CMOS image sensor of claim 1, wherein the photodiode further comprises:
an N type photodiode formed in the diode region; and
a P type photodiode formed at a surface of the diode region on the N type photodiode.
5. The CMOS image sensor of claim 4, further comprising an N type channel diffusion layer formed in an active region beneath the transfer gate, wherein the channel diffusion layer and the N type photodiode are in contact with each other.
6. The CMOS image sensor of claim 4, further comprising a P type well formed in the substrate adjacent to the diode region, wherein the P type photodiode is connected to the P type well.
7. The CMOS image sensor of claim 4, further comprising a deep P well formed in the substrate beneath the N type photodiode.
8. A CMOS image sensor comprising:
a device isolation pattern formed in a substrate to define a diode region and an active region;
a photodiode formed in the diode region;
a transfer gate formed adjoining the photodiode on the active region;
a reset gate and a selection gate serially formed apart from each other on the active region separated from the transfer gate by a predetermined distance;
a floating diffusion layer formed in the active region between the transfer gate and the reset gate; and
a patterned blocking layer that covers the photodiode, the transfer gate and the floating diffusion layer.
9. The CMOS image sensor of claim 8, wherein the patterned blocking layer covers at least a portion of the reset gate.
10. The CMOS image sensor of claim 8, further comprising:
lightly doped diffusion layers formed in the active region between the reset gate and the selection gate and in the active region adjacent to the selection gate;
sidewall spacers formed on a sidewall of the reset gate facing the selection gate and on sidewalls of the selection gate; and
heavily doped diffusion layers, which are aligned to the sidewall spacers, formed in the lightly doped diffusion layers.
11. The CMOS image sensor of claim 10, further comprising:
a protection layer formed on the patterned blocking layer and sidewall spacers, respectively; and
a salicide layer aligned to the protection layer formed on the heavily doped diffusion layers.
12. The CMOS image sensor of claim 8, wherein the photodiode further comprises:
an N type photodiode formed in the diode region; and
a P type photodiode formed at a surface of the diode region on the N type photodiode.
13. The CMOS image sensor of claim 12, further comprising an N type channel diffusion layer formed in an active region beneath the transfer gate, wherein the channel diffusion layer and the N type photodiode are in contact with each other.
14. The CMOS image sensor of claim 12, further comprising a P type well formed in the substrate adjacent to the diode region, wherein the P type photodiode is connected to the P type well.
15. The CMOS image sensor of claim 12, further comprising a deep P well formed in the substrate beneath the N type photodiode.