1460720393-fb3d8c75-3dc7-4d53-b78d-00d7c3592bcd

1. A multi-stack optical data storage medium for recording and reading using a focused radiation beam entering through an entrance face of the medium during recording and reading, comprising:
a first substrate with present on a side thereof:
a first recording stack named L0, comprising a recordable type L0 recording layer, and formed in a first L0 guide groove, and a first reflective layer present between the L0 recording layer and the first substrate,
a second substrate with present on a side thereof:
a second recording stack named L1 comprising a recordable type L1 recording layer, said second recording stack being present at a position closer to the entrance face than the L0 recording stack and formed in a second L1 guide groove,
a transparent spacer layer sandwiched between the recording stacks, said transparent spacer layer having a thickness substantially larger than the depth of focus of the focused radiation beam,
characterized in that the first L0 guide groove has a depth GL0<100 nm.
2. A multi-stack optical data storage medium according to claim 1, wherein GL0<80 nm and the first L0 guide groove has a full half maximum width WL0<350 nm.
3. A multi-stack optical data storage medium according to claim 1, wherein 25 nm<GL0<40 nm and the first reflective layer comprises a metal and has a thickness>50 nm.
4. A multi-stack optical data storage medium according to claim 1, wherein the recordable type L0 recording layer comprises a dye and has a thickness between 70 nm and 150 nm measured on the land portion of the guide groove.
5. A multi-stack optical data storage medium according to claim 1, wherein a dielectric layer is present at a side of the L0 recording layer opposite from the side where the first reflective layer is present.
6. A multi-stack optical data storage medium according to claim 5, wherein the dielectric layer has a thickness in the range of 5 nm-120 nm.
7. A multi-stack optical data storage medium according to claim 1, wherein a second reflective layer comprising a metal is present at a side of the L0 recording layer opposite from the side where the first reflective layer is present.
8. A multi-stack optical data storage medium according to claim 7, wherein the second reflective layer has a thickness in the range of 5 nm-15 nm.
9. A multi-stack optical data storage medium according to claim 7, wherein the second reflective layer mainly comprises a metal selected from the group of Ag, Au, Cu, Al.
10. A multi-stack optical data storage medium according to claim 1, wherein the effective reflection level of the stacks is at least 0.18 at a radiation beam wavelength of approximately 655 nm.
11. Use of an optical data storage medium as claimed in claim 1 for multi stack recording with a reflectivity level of the first recording stack L0 as such of at least 0.5 and modulation of recorded marks in the L0 recording layer of at least 0.6 at a radiation beam wavelength of approximately 655 nm.

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 system, comprising:
a parsing logic configured to:
receive an incoming fraud report based, at least in part, on a first fraud detection strategy; and
parse the incoming fraud report into fraud data;

a search logic configured to search a set of fraud reports to identify instances of the fraud data; and
an alert logic configured to generate an alert in response to an instance of the fraud data being identified in the set of fraud reports.
2. The system of claim 1, wherein the fraud data includes at least one of information about the assets, entities, individuals, or organizations associated with a potential fraud.
3. The system of claim 1, wherein the parse logic is further configured to filter the fraud data into categories.
4. The system of claim 3, wherein the categories are hierarchically arranged.
5. The system of claim 1, further comprising an aggregator logic configured to:
monitor a set of fraud detection strategies to identify the incoming fraud report;
retrieve the incoming fraud report; and
send the incoming fraud report to the parse logic.
6. The system of claim 1, wherein the alert logic is configured to generate the alert based, at least in part, on an alert trigger that defines a context of the fraud data.
7. The system of claim 6, wherein the context of the fraud data includes a number of instances of the fraud data occurring within a predetermined amount of time.
8. A method, comprising:
receiving a fraud report based, at least in part, on a first fraud detection strategy;
accessing previously parsed fraud data;
identifying an instance of the previously parsed fraud data in the fraud report; and
generating an alert in response to identifying the instance of the previously parsed fraud data the fraud report.
9. The method of claim 8, further comprising parsing information of the fraud report to generate new fraud data.
10. The method of claim 9, further comprising:
identifying at least one instance of the new fraud data in a subsequent fraud report; and
generating a new alert in response to identifying the instance of the new fraud data the subsequent fraud report.
11. The method of claim 8, further comprising determining whether the instance of previously parsed fraud data satisfies an alert trigger, and wherein generating the alert is based, at least in part, on satisfying the alert trigger.
12. The method of claim 11, wherein the alert trigger is a number of instances of the previously parsed fraud data occurring in the fraud report.
13. The method of claim 8, wherein the previously parsed fraud data is accessed from categories.
14. The system of claim 13, wherein the categories are hierarchically arranged.
15. A non-transitory computer-readable medium storing computer-executable instructions that when executed by a computer cause the computer to perform a method, the method comprising:
receiving a first fraud report as a result of a first fraud detection strategy;
receiving a second fraud report as the result of a second fraud detection strategy and a threshold value based, at least in part on the second fraud detection strategy;
modifying the threshold value based, at least in part, on the first fraud report; and
generating a fraud alert for the second fraud report in response to the modified threshold being met.
16. The non-transitory computer-readable medium of claim 15, further comprising parsing the first fraud report to generate fraud data, wherein the threshold value includes the fraud data.
17. The non-transitory computer-readable medium of claim 15, further comprising parsing the second fraud report to generate fraud data, wherein satisfying the threshold value is based, at least in part, on the fraud data.
18. The non-transitory computer-readable medium of claim 17, further comprising storing the fraud data in categories.
19. The non-transitory computer-readable medium of claim 18, wherein the categories are arranged hierarchically.
20. The non-transitory computer-readable medium of claim 17, wherein the fraud data includes at least one of information about the assets, entities, individuals, or organizations associated with a potential fraud.

1460720385-d05808cf-b285-4d2d-8846-f41d51436224

1. A method of managing changes in a bill of materials, the bill of materials organized in an expandable list format having parent parts and children parts
associated with the parent parts, the method comprising:
providing a first bill of materials;
linking a parent part in the first bill of materials with a first child part by a first relationship;
revising the first bill of materials by linking the parent part with a second child part by a second relationship, different than the first relationship; and,
providing a revised bill of materials listing the first child part, first relationship, second child part, and the second relationship.
2. The method of claim 1 further comprising:
prior to revising the first bill of materials, storing a first revision number with information relating to the first parent part; and,
storing a second revision number, subsequent linking the parent part with the second child part, the second revision number greater than the first revision number.
3. The method of claim 1 comprising linking the parent part with a plurality of children parts by the first relationship.
4. The method of claim 3, wherein the first relationship is a part part relationship.
5. The method of claim 1 wherein the second relationship includes identifying indicia associated with the second child part.
6. The method of claim 5 wherein the identifying indicia is an ID number.
7. The method of claim 5 further comprising determining a revision in the revised bill of materials by locating the second relationship and reading the identifying indicia.
8. The method of claim 1 wherein the second child part is a newly added part and the second relationship is an add relationship.
9. The method of claim 1 wherein the second child part is removed from the first bill of materials and the second relationship is a remove relationship.
10. The method of claim 9 wherein the second child part is listed in the revised bill of materials with the remove relationship.
11. The method of claim 1 wherein the second child part is replaced from the first bill of materials with a third child part, and the second relationship is a remove relationship.
12. The method of claim 11 further comprising providing a first replacement ID with the second child part.
13. The method of claim 12 wherein the third child part is linked to the parent part with an add relationship, and further comprising providing a second replacement ID with the third child part.
14. The method of claim 1 wherein a property of the second child is changed from the first bill of materials to the revised bill of materials, and wherein the second relationship is a change property relationship.
15. The method of claim 14 further comprising storing, within the revised bill of materials, the property of the second child from the first bill of materials and the property of the second child in the revised bill of materials with the change property relationship.
16. A storage medium encoded with machine-readable computer program code for managing changes in a bill of materials, the bill of materials organized in an expandable list format having parent parts and children parts associated with the parent parts, the storage medium including instructions for causing a computer to implement a method comprising:
providing a first bill of materials;
linking a parent part in the first bill of materials with a first child part by a first relationship;
revising the first bill of materials by linking the parent part with a second child part by a second relationship, different than the first relationship; and,
providing a revised bill of materials listing the first child part, first relationship, second child part, and the second relationship.
17. A system for managing changes in a bill of materials, the bill of materials organized in an expandable list format having parent parts and children parts associated with the parent parts, the system comprising:
a signal processor having memory for storing signals including program signals defining an executable program for:
providing a first bill of materials;
linking a parent part in the first bill of materials with a first child part by a first relationship;
revising the first bill of materials by linking the parent part with a second child part by a second relationship, different than the first relationship; and,
providing a revised bill of materials listing the first child part, first relationship, second child part, and the second relationship.
18. A computer data signal, said computer data signal comprising instructions for causing a computer to implement a method for managing changes in a bill of materials listing a plurality of parts, the method comprising:
providing a first bill of materials;
linking a parent part in the first bill of materials with a first child part by a first relationship;
revising the first bill of materials by linking the parent part with a second child part by a second relationship, different than the first relationship; and,
providing a revised bill of materials listing the first child part, first relationship, second child part, and the second relationship.
19. A method of determining a change from a first bill of materials to a revised bill of materials comprising:
reviewing a revised bill of materials;
reading relationships between a parent part and its children parts in the revised bill of materials;
taking note of any altering relationship associated with a child part which includes an add relationship, a remove relationship, a replace relationship, or a change property relationship; and,
determining the change in the child part in the revised bill of materials by reviewing the altering relationship;
wherein the change is determined absent a comparison of parts in the revised bill of materials to parts in the first bill of materials.
20. The method of claim 19 further comprising reading object ID numbers associated with each child part involved in a change for discerning a plurality of changes between a revised bill of materials and a first bill of materials.

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 inkjet recording apparatus comprising:
a carriage moving back and forth in a main scanning direction;
ink discharging means mounted on the carriage and comprising a plurality of ink nozzles arranged in a sub-scanning direction for discharging ultraviolet-curable ink on a recording medium; and
ultraviolet irradiating means mounted on the carriage for irradiating ultraviolet rays on the medium,
wherein the carriage or the medium moves in the sub-scanning direction which is perpendicular to the main scanning direction,
wherein the ultraviolet irradiating means comprises a plurality of light sources arranged in the sub-scanning direction for irradiating the ultraviolet rays, and a plurality of partition walls blocking ultraviolet irradiation of the light sources in the sub-scanning direction,
wherein the plurality of ink nozzles comprises a plurality of path areas to record a plurality of bands, the plurality of light sources irradiate the ultraviolet rays on the plurality of bands, respectively, and each partition wall blocks ultraviolet irradiation of a light source on a band other than a corresponding band.
2. The inkjet recording apparatus of claim 1, wherein the light sources comprise a plurality of ultraviolet light emitting diodes (UVLEDs) arranged in the sub-scanning direction, and the partition walls are provided to form a plurality of shielded portions extended in the main scanning direction.
3. The inkjet recording apparatus of claim 1, wherein a concave portion is provided on a side of the ultraviolet irradiating means facing the recording medium, the light sources are provided on a bottom surface of the concave portion, and the partition walls are provided such that the shielded portions extends from the bottom surface to an opening area of the concave portion.
4. The inkjet recording apparatus of claim 1, wherein the partition walls are removably insertable into the ultraviolet irradiating means.
5. The inkjet recording apparatus of claim 1, further comprising a light controller turning on and off the light sources.
6. The inkjet recording apparatus of claim 1, wherein the ultraviolet irradiating means is provided in at least one of front and rear regions of the ink nozzles in the main scanning direction.
7. An inkjet recording apparatus comprising:
a carriage moving back and forth in a main scanning direction;
ink discharging means mounted on the carriage and comprising a plurality of ink nozzles arranged in a sub-scanning direction for discharging ultraviolet-curable ink on a recording medium; and
ultraviolet irradiating means mounted on the carriage for irradiating ultraviolet rays on the medium,
wherein the carriage or the medium moves in the sub-scanning direction which is perpendicular to the main scanning direction,
wherein the ultraviolet irradiating means comprises a plurality of light sources arranged in the sub-scanning direction for irradiating the ultraviolet rays, and a plurality of partition walls blocking ultraviolet irradiation of the light sources in the sub-scanning direction,
wherein the partition walls are removably insertable into the ultraviolet irradiating means.
8. The inkjet recording apparatus of claim 7, wherein the light sources comprise a plurality of ultraviolet light emitting diodes (UVLEDs) arranged in the sub-scanning direction, and the partition walls are provided to form a plurality of shielded portions extended in the main scanning direction.
9. The inkjet recording apparatus of claim 7, wherein a concave portion is provided on a side of the ultraviolet irradiating means facing the recording medium, the light sources are provided on a bottom surface of the concave portion, and the partition walls are provided such that the shielded portions extends from the bottom surface to an opening area of the concave portion.
10. The inkjet recording apparatus of claim 7, further comprising a light controller turning on and off the light sources.
11. The inkjet recording apparatus of claim 7, wherein the ultraviolet irradiating means is provided in at least one of front and rear regions of the ink nozzles in the main scanning direction.