1460740954-574c49a2-874d-45fd-a525-9ee113eac53b

1. A method of routing contacts within an automatic contact distribution system having a plurality of automatic contact distributors, the method comprising:
receiving a request for contact from a human client through a public communication system; and
a processor tendering the contact request to some subset of less than all of the plurality of automatic contact distributors with a skewed probability of receipt of the contact request in favor of at least some of the subset of the plurality of automatic contact distributors.
2. The method of routing contacts as in claim 1 further comprising skewing the probability of receipt of the contact request in favor of at least some of the plurality of automatic contact distributors having more signed-in agents.
3. The method of routing contacts as in claim 1 further comprising skewing the probability of receipt of the contact request in favor of at least some of the plurality of automatic contact distributors with more signed-in agents having at least one predetermined skill type.
4. The method of routing contacts as in claim 1 further comprising skewing the probability of receipt of the contact request in favor of at least some of the plurality of automatic contact distributors based upon run-time statistics of the system.
5. The method of handling contact requests as in claim 3 further comprising including a set of required skills for handling the contact request within the tendered contact request.
6. The method of handling contact requests as in claim 5 further comprising including a set of desired skills for handling the contact request within the tendered contact request.
7. The method of handling contact requests as in claim 6 further comprising a contact broker receiving the contact from a public communication network along with contact associated information.
8. The method of handling contact requests as in claim 7 further comprising the contact broker identifying a set of required skills for handling the contact from the contact associated information.
9. The method of handling contact requests as in claim 8 further comprising the contact broker identifying a set of desired skills for handling the contact from the contact associated information.
10. The method of handling contact requests as in claim 9 further comprising the contact broker composing the contact request and forwarding the composed contact request to a system router for forwarding to the subset.
11. The method of handling contact requests as in claim 10 further comprising each automatic contact distributors of the subset preparing and sending a response to the contact broker including an indication of relative ability to handle the contact.
12. The method of handling contact requests as in claim 11 further comprising the contact broker determining whether any automatic contact distributor has an agent with both the required and desired skills and, if not, then assigning the contact to a contact center with an agent having the required skills.
13. An apparatus for routing contacts within an automatic contact distribution system having a plurality of automatic contact distributors, the apparatus comprising:
means for receiving requests for contacts from a human client through a public communication system; and
means for tendering contact requests to some subset of less than all of the plurality of automatic contact distributors with a skewed probability of receipt of the tendered contact request in favor of some of the subset of the plurality of automatic contact distributors.
14. The apparatus for routing contacts as in claim 13 further comprising means for skewing the probability of receipt of the tendered contact request in favor of at least some of the plurality of automatic contact distributors having more signed-in agents.
15. The apparatus for routing contacts as in claim 13 further comprising means for skewing the probability of receipt of the tendered contact request in favor of at least some of the plurality of automatic contact distributors with more signed-in agents having at least one predetermined skill type.
16. The apparatus for routing contacts as in claim 13 further comprising means for skewing the probability of receipt of the contact request in favor of at least some of the plurality of automatic contact distributors based upon run-time statistics of the system.
17. The apparatus for handling contact requests as in claim 15 further comprising means for including a set of desired skills for handling the contact request in the randomly tendered contact request.
18. The apparatus for handling contact requests as in claim 17 further comprising means within each of the plurality of automatic contact distributors for determining whether an agent with the required skills is available.
19. The apparatus for handling contact requests as in claim 18 further comprising means for determining whether any contact center of the plurality of automatic contact distributors has an agent with both the required and desired skills and, if not, then assigning the contact to a automatic contact distributors with an agent having the required skills.
20. The apparatus for handling contact requests as in claim 13 further comprising a contact broker that receives the contact from a public communication network.
21. The apparatus for handling contact requests as in claim 20 further comprising means for retrieving contact associated information received by the contact broker along with the received contact.
22. The apparatus for handling contact requests as in claim 21 further comprising means for determining a set of required skills for handling the contact from the contact associated information.
23. The apparatus for handling contact requests as in claim 22 further comprising means for determining a set of desired skills for handling the contact from the contact associated information.
24. The apparatus for handling contact requests as in claim 22 further comprising means within the broker for composing the tendered request including the required and desired skills.
25. An apparatus for routing contacts within an automatic contact handling system having a plurality of contact centers, the apparatus comprising:
a contact broker that receives a request for contact from a human client through a public communication system; and
a router that receives the contact request from the contact broker and that tenders the contact request to some subset of less than all of the plurality of automatic contact centers with a skewed probability of receipt of the tendered contact request in favor of at least some of the subset of the plurality of contact centers.
26. The apparatus for routing contacts as in claim 25 wherein the router further comprises a random number generator that randomizes identifiers of the plurality of automatic contact distributors.
27. The apparatus for routing contacts as in claim 25 further comprising a list of signed-in agents within the router that is used to skew the probability of receipt of the tendered contact request in favor of at least some of the plurality of contact centers having more signed-in agents.
28. The apparatus for routing contacts as in claim 25 further comprising an agents skills list within the router that is used to skew the probability of receipt of the tendered contact request in favor of at least some of the plurality of contact centers with more signed-in agents having at least one desired skill type.
29. The apparatus for routing contacts as in claim 25 further comprising a system monitoring processor that skews the probability of receipt of the contact request in favor of at least some of the plurality of automatic contact distributors based upon run-time statistics of the system.
30. The apparatus for handling contact requests as in claim 25 wherein the tendered contact request further comprises a tender offer packet sent by the router to each automatic contact distributor of the subset that includes a set of required skills for handling the contact request.
31. The apparatus for handling contact requests as in claim 30 further comprising an agent selection processor within each of the plurality of automatic contact distributors that receives the tender offer packet, determines whether an agent with the required skills is available and that sends a tender offer response back to the contact broker.
32. The apparatus for handling contact requests as in claim 31 further comprising a comparator within the contact broker that determines whether any contact center of the plurality of contact centers has an agent with both the required and desired skills and, if not, then selecting an automatic contact distributor of the subset with an agent having the required skills for assignment of the contact.
33. The apparatus for handling contact requests as in claim 25 further comprising a communication processor that transfers the contact to the selected automatic contact distributor.

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 projection system comprising:
a modulator to modulate light in accordance with a plurality of sub-frames of a frame of image data; and,
an Offner relay to differently aim, in accordance with each sub-frame, the light as modulated.
2. The projection system of claim 1, further comprising an aperture through which the Offner relay is to differently aim, in accordance with each sub-frame, the light as modulated.
3. The projection system of claim 2, wherein the aperture and the modulator are at least substantially coplanar to one another.
4. The projection system of claim 2, wherein the aperture is a variable aperture such that the light transmitted through the aperture is dynamically controllable.
5. The projection system of claim 4, wherein the variable aperture functions to crop the light transmitted therethrough in accordance with one or more parameters.
6. The projection system of claim 2, further comprising a projection lens mechanism to outwardly project the light differently aimed through the aperture.
7. The projection system of claim 1, wherein the Offner relay comprises:
a first reflective surface; and,
a second reflective surface to be physically adjusted to differently aim; in accordance with each sub-frame, the light as modulated.
8. The projection system of claim 7, wherein the light modulated by the modulator is reflected by the first reflective surface onto the second reflective surface, and then is reflected by the second reflective surface back onto the first reflective surface.
9. The projection system of claim 7, wherein the first reflective surface is an aspherical reflective surface.
10. The projection system of claim 7, wherein the second reflective surface is a conical reflective surface.
11. A projection system comprising:
a modulator to modulate light in accordance with a plurality of sub-frames of a frame of image data; and,
an optical relay mechanism to differently aim, in accordance with each sub-frame, the light as modulated, prior to zoom-related actions being performed on the light.
12. The projection system of claim 11, further comprising a zooming mechanism to perform zoom-related actions on the light after the optical relay mechanism has differently aimed, in accordance with each sub-frame, the light as modulated.
13. The projection system of claim 11, wherein the optical relay mechanism comprises an Offner relay.
14. The projection system of claim 11, wherein a portion of the optical relay mechanism is physically adjusted to differently aim, in accordance with each sub-frame, the light as modulated.
15. The projection system of claim 11, further comprising a variable aperture through which the optical relay mechanism is to differently aim, in accordance with each sub-frame, the light as modulated,
wherein the variable aperture is dynamically controllable to crop the light transmitted therethrough in accordance with one or more parameters.
16. The projection system of claim 15, wherein the variable aperture and the modulator are at least substantially coplanar to one another.
17. The projection system of claim 11, further comprising a projection lens mechanism to outwardly project the light.
18. A projection system comprising:
means for modulating light in accordance with a plurality of sub-frames of a frame of image data; and,
means for differently aiming, in accordance with each sub-frame, the light as modulated, prior to performing zoom-related actions on the light.
19. The projection system of claim 18, further comprising means for performing zoom-related actions on the light after the light has been differently aimed, in accordance with each sub-frame.
20. An optical relay mechanism for a projection system comprising:
a first reflective surface to receive light modulated in accordance with a plurality of sub-frames of a frame of image data; and,
a second reflective surface to receive the light as reflected by the first reflective surface, to differently aim, in accordance with each sub-frame, the light as modulated and to reflect the light back onto the first reflective surface.
21. The optical relay mechanism of claim 20, wherein the first reflective surface is further to reflect the light, as reflected back thereon by the second reflective surface, outward from the optical relay mechanism.
22. The optical relay mechanism of claim 20, wherein the second reflective surface is to differently aim, in accordance with each sub-frame, the light as modulated by being physically adjusted in accordance with each sub-frame.
23. The optical relay mechanism of claim 20, wherein the first reflective surface is an aspherical reflective surface and the second reflective surface is a conical reflective surface.
24. A method comprising:
modulating light in accordance with a plurality of sub-frames of each of a plurality of frames of image data;
reflecting the light as modulated by a first reflective surface onto a second reflective surface;
differently aiming, in accordance with each sub-frame, the light by the second reflective surface, via physical adjustment of the second reflective surface;
reflecting the light as differently aimed by the second reflective surface back onto the first reflective surface; and,
reflecting the light by the first reflective surface through an aperture.
25. The method of claim 24, further comprising dynamically cropping the light by the aperture as transmitted therethrough.
26. The method of claim 25, wherein dynamically cropping the light by the aperture as transmitted therethrough comprises physically adjusting the aperture.
27. The method of claim 25, wherein dynamically cropping the light by the aperture as transmitted therethrough comprises monitoring at least two sides of the frames of the image data for dark content, such that the dark contents of the frames of the image data are cropped from the light transmitted through the aperture.
28. The method of claim 27, wherein monitoring at least two sides of the frames of the image data for dark content is accomplished on a frame-by-frame basis or a group of frames-by-group of frames basis.
29. The method of claim 27, wherein monitoring at least two sides of the frames of the image data for dark content is accomplished for a predetermined length of time after a change in video synchronization of the frames of the image data.
30. The method of claim 29, wherein dynamically cropping the light by the aperture as transmitted therethrough further comprises monitoring at least sides of the frames of the image data for dark content where a portion of the frames of the image data contains non-dark content that is being masked, resulting from cropping of the light by the aperture.