1. A non-transitory computer readable medium comprising executable instructions, which when executed by a processor perform a method for providing training media to a mobile device, the method comprising:
obtaining, by a content server, a first training media file for a first user, wherein the first training media file comprises training information associated with a job function of the user, and wherein the first training media file is selected from a plurality of training media files based on user metadata associated with the first user;
communicating, by the content server, the first training media file to the mobile device;
receiving, by the content server, a training completion signal associated with the first training media file, wherein the training completion signal is generated by the mobile device based on a complete viewing of the first training media file;
based on receiving the training completion signal:
determining, by the content server, a second user associated with a first user rating for the first training media file;
determining, by the content server, a second training media file from the plurality of training media files, wherein the second user is associated with a second user rating for the second training media file, and wherein the second user rating is at least as high as the first user rating; and
suggesting, by the content server, the second training media file to the first user.
2. The non-transitory computer readable medium of claim 1, wherein the first training media file comprises a programmatic marker configured to indicate to the mobile device that the first training media file has been completely viewed.
3. The non-transitory computer readable medium of claim 1, the method further comprising executable instructions for:
updating, by the content server, the user metadata, based on one selected from the group consisting of obtaining the first training media file and communicating the first training media file to the mobile device.
4. The non-transitory computer readable medium of claim 1, the method further comprising executable instructions for:
generating, by the content server, a training record associated with the first user and the first training media file;
obtaining, by the content server, a plurality of training records, wherein the plurality of training records comprises the training record; and
analyzing, by the content server, the plurality of training records to determine a training objective.
5. The non-transitory computer readable medium of claim 4, wherein the training objective comprises at least one selected from a group consisting of requiring mandatory viewing of the first training media file, requiring mandatory viewing of a second training media file, creating a second training media file directed to similar subject matter as the first training media file, eliminating the first training media file, and eliminating all training media files directed to similar subject matter as the first training media file.
6. The non-transitory computer readable medium of claim 1, wherein obtaining the first training media file is performed based on a training media subscription associated with the first user.
7. The non-transitory computer readable medium of claim 6, wherein the training media subscription comprises a really simple syndication (RSS) feed.
8. The non-transitory computer readable medium of claim 1, wherein obtaining the first training media file is further based on a selection, by the first user, of the first training media file.
9. The non-transitory computer readable medium of claim 1, wherein the first training media file is associated with a mandatory training for the first user.
10. The non-transitory computer readable medium of claim 1, wherein obtaining the first training media file is further based on a search query generated by the first user.
11. The non-transitory computer readable medium of claim 1, wherein the first training media file is interactive, and wherein the mobile device is configured to support user interaction with the first training media file.
12. The non-transitory computer readable medium of claim 1, wherein the user metadata comprises at least one selected from the group consisting of a job title, an industry, a security level, a sales organization, a product focus, a job level, a client name, and a geographical location.
13. The non-transitory computer readable medium of claim 1, wherein the first training media file comprises at least one selected from the group consisting of video data, audio data, and textual data.
14. A content server for providing training media to a mobile device, configured to:
obtain a first user metadata for a first user,
determine the first training media file from a plurality of training media files, based on the first user metadata associated,
communicate the first training media file to the mobile device,
receive a training completion signal associated with the first training media file, wherein the training completion signal is generated by the mobile device based on a complete viewing of the first training media file,
based on receiving the training completion signal:
obtain a second user metadata for a second user, wherein the second user is associated with a first user rating for the first training media file,
determine a second training media file from the plurality of training media files, wherein the second user is associated with a second user rating for the second training media file, and wherein the second user rating is at least as high as the first user rating, and
suggest the second training media file to the first user.
15. The content server of claim 14, further comprising:
a plurality of training records, wherein a training record selected from the plurality of training records is associated with the first user and the first training media file,
wherein the content server is further configured to:
generate the training record,
obtain the plurality of training records, and
analyze the plurality of training records to determine a training objective.
16. The content server of claim 14, wherein the user metadata associated with the first user, the user metadata associated with the second user, and the plurality of training media files are stored in a single data repository.
17. The content server of claim 14, wherein the mobile device comprises at least one selected from the group consisting of a mobile audio device, a mobile video device, and a mobile networking device.
18. The content server of claim 14, wherein the first training media file comprises a programmatic marker configured to indicate that the first training media file has been completely viewed.
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. An interconnect structure comprising:
a dielectric material of unitary composition and having at least one opening therein;
a dense dielectric spacer having a taper and located partially within the at least one opening and in direct contact with a first sidewall portion of the dielectric material of unitary composition;
a diffusion barrier located within the at least one opening, wherein a first surface of the diffusion barrier directly contacts a surface of the dense dielectric spacer and wherein a second surface of the diffusion barrier directly contacts a second sidewall portion of the dielectric material of unitary composition; and
a conductive material located on said diffusion barrier.
2. The interconnect structure of claim 1 wherein said dielectric material of unitary composition has a dielectric constant of about 4.0 or less.
3. The interconnect structure of claim 2 wherein said dielectric material of unitary composition is one of SiO2, a silsesquioxane, a C doped oxide that include atoms of Si, C, O and H, SiC(N,H) and a thermosetting polyarylene ether.
4. The interconnect structure of claim 2 wherein said dielectric material of unitary composition is porous.
5. The interconnect structure of claim 1 wherein said dense dielectric spacer is comprised of SiO2, Si3N4, SiC, a silsesquioxane, a C doped oxide that include atoms of Si, C, O and H, SiC(N,H), a thermosetting polyarylene ether or multilayers thereof.
6. The interconnect structure of claim 1 wherein said dense dielectric spacer has a composition that differs from said dielectric material of unitary composition.
7. The interconnect structure of claim 1 wherein said conductive material comprises polySi, a conductive metal, an alloy comprising at least one conductive metal, a conductive metal silicide or combinations thereof.
8. The interconnect structure of claim 1 wherein said conductive material is Cu, W, Al or a Cu alloy.
9. The interconnect structure of claim 1 wherein said diffusion barrier comprises Ta, TaN, Ti, TiN, Ru, Ir(Ta), Ir(TaN), Ru(Ta), Ru(TaN), W or WN.
10. The interconnect structure of claim 1 further comprising a dielectric capping layer located on an uppermost surfaces of the dielectric material of unitary composition, said conductive material, said dense dielectric spacer and said diffusion barrier.
11. The interconnect structure of claim 10 further comprising an air gap located beneath the dielectric capping layer and between an upper portion of the dense dielectric spacer and said dielectric material of unitary composition.
12. The interconnect structure of claim 1 wherein said dense dielectric spacer has a composition that differs from said dielectric material of unitary composition, and is composed of SiC.
13. The interconnect structure of claim 1 wherein said dense dielectric spacer has a composition that differs from said dielectric material of unitary composition, and is composed of a silsesquioxane.
14. The interconnect structure of claim 1 wherein said dense dielectric spacer has a composition that differs from said dielectric material of unitary composition, and is composed of a C doped oxide.
15. The interconnect structure of claim 1 wherein said dense dielectric spacer has a composition that differs from said dielectric material of unitary composition, and is composed of SiC(N,H).
16. The interconnect structure of claim 1 wherein said dense dielectric spacer has a top portion, a middle portion and a bottom portion, wherein said middle portion of said dense dielectric spacer has a width that is greater than a width at either the top or bottom portion of the dense dielectric spacer.
17. The interconnect structure of claim 1 further comprising another dielectric material located beneath said dielectric material of unitary composition, wherein said another dielectric material has another conductive material embedded therein, and wherein an topmost surface of the another conductive material is coplanar with a topmost surface of the another dielectric material.
18. The interconnect structure of claim 17 wherein no portion of the dense dielectric spacer is in direct physical contact with said another dielectric material.
19. The interconnect structure of claim 18 wherein a bottommost surface of one portion of the diffusion barrier is in direct physical contact with said topmost surface of the another conductive material.