1460739575-a51bb80c-d98a-4415-b72a-0ae984c0e4bb

What is claimed is:

1. A disposable protection device for a portion of an individual’s body comprising:
a cover layer for partially encompassing said body portion;
an elastic portion coupled to a first portion of said cover layer; and
an adhesive portion coupled to a second portion of said cover layer.
2. The disposable protection device of claim 1 wherein said cover layer is constructed of a water-repellant material.
3. The disposable protection device of claim 2 wherein said water-repellant material is selected from the group consisting of polymers and fabrics.
4. The disposable protection device of claim 1 wherein said elastic portion contains an elastic material.
5. The disposable protection device of claim 4 wherein said elastic material is selected from the group consisting of nylon, cotton, lycra, and elastic polymers.
6. The disposable protection device of claim 1 wherein said elastic material is coupled to said first portion by an adhesive.
7. The disposable protection device of claim 1 wherein said elastic material is coupled to said first portion by a heat weld.
8. The disposable protection device of claim 1 wherein said elastic material is coupled to said first portion by a radio frequency weld.
9. The disposable protection device of claim 1 wherein said adhesive portion contains an adhesive material.
10. The disposable protection device of claim 1 wherein said adhesive material is coupled to said second portion by an adhesive.
11. The disposable protection device of claim 1 wherein said adhesive material is coupled to said second portion by a heat weld.
12. The disposable protection device of claim 1 wherein said adhesive material is coupled to said second portion by a radio frequency weld.
13. A method for protecting a portion of an individual’s body from exposure to environmental media, said method comprising the steps of:
providing a cover layer for partially encompassing a body portion;
coupling an elastic portion to a first portion of said cover layer; and
coupling an adhesive portion to a second portion of said cover layer.
14. The method according to claim 13 further comprising the steps of:
positioning said cover layer over said body portion;
securing said elastic portion adjacent to said body portion; and
adhering said adhesive portion to said individual.

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 spray coating device, comprising:
a spray gun comprising a spray head, a handle, a base enclosure coupled to the handle, and an air passage extending through the handle from the base enclosure to the spray head, wherein the handle is disposed between the spray head and the base enclosure; and
an air flow generator disposed in the base enclosure, wherein the air flow generator comprises a battery, a motor driven by the battery, and a plurality of blades rotatable by the motor, wherein the plurality of blades is configured to force an air flow through the air passage.
2. The system of claim 1, comprising a liquid passage extending through the spray gun, wherein the liquid passage is configured to route a liquid flow to the spray head, the air passage is configured to route the air flow to the spray head, and the spray head comprises at least one air atomization port coupled to the air passage.
3. The system of claim 2, wherein the liquid passage and the air passage are separate from one another.
4. The system of claim 1, wherein the air flow generator comprises a blower having a plurality of blades configured to intake air in a first direction and to output air in a second direction, wherein the first and second directions are generally crosswise to one another.
5. The system of claim 1, wherein the air flow generator is configured to flow air directly through the spray gun without an air storage tank.
6. The system of claim 1, comprising a docking station configured to support the base enclosure of the spray gun, wherein the docking station comprises a battery charger configured to charge the battery disposed within the base enclosure, and the battery is a rechargeable battery.
7. The system of claim 1, comprising a gravity feed spray fluid tank directly coupled to the spray gun, wherein the spray head is configured to receive a gravity fed fluid flow from the gravity feed spray fluid tank.
8. The system of claim 1, wherein the spray coating device is cordless, hoseless, tankless, battery powered, and completely self-contained.
9. The system of claim 1, comprising a trigger coupled to the handle, an air valve coupled to the trigger, and a liquid valve coupled to the trigger.
10. A system, comprising:
a spray gun, comprising:
a body;
a spray head coupled to the body, wherein the spray head comprises a liquid port and an air port;
a handle coupled to the body, wherein the body is disposed between the spray head and the handle;
a trigger coupled to the handle;
a liquid valve coupled to the trigger, wherein the liquid valve is disposed along a liquid passage extending to the spray head; and
a base enclosure coupled to the handle, wherein the handle is disposed between the body and the base enclosure, wherein the base enclosure comprises a battery, a motor driven by the battery, and a plurality of blades rotatable by the motor, wherein an air flow path extends from the base enclosure, through the handle, through the body, and into the spray head to the air port, wherein the plurality of blades is configured to force an air flow through the air flow path, wherein the trigger is coupled to a switch configured to enable and disable the motor.
11. The system of claim 10, comprising a blower having the plurality of blades configured to turn the air flow approximately 90 degrees.
12. The system of claim 10, wherein the air port comprises an air atomization port.
13. The system of claim 10, wherein the motor and battery are not disposed in the air flow path.
14. The system of claim 10, wherein the plurality of blades is rotatable about an axis of rotation, and the plurality of blades is configured to turn an air flow between one direction generally perpendicular to the axis of rotation and another direction generally parallel to the axis of rotation.
15. A system, comprising:
a spray gun, comprising:
a body;
a spray head coupled to the body, wherein the spray head comprises a liquid port and an air port, and the air port is configured to atomize or shape a liquid spray ejected from the liquid port;
a liquid passage extending to the liquid port;
an air passage extending to the air port;
a handle coupled to the body, wherein the body is disposed between the spray head and the handle;
a base enclosure coupled to the handle, wherein the handle is disposed between the body and the base enclosure, wherein the base enclosure comprises an air flow generator coupled to the air passage, wherein the air flow generator comprises a battery, a motor driven by the battery, and a plurality of blades rotatable by the motor, wherein the plurality of blades is configured to force an air flow through the air passage.
16. The system of claim 15, comprising a liquid valve disposed along the liquid passage, a switch coupled to the motor, and a trigger coupled to both the liquid valve and the switch.
17. The system of claim 15, wherein the air passage extends from the base enclosure, through the handle, through the body, and into the spray head to the air port.
18. The system of claim 17, wherein the motor is not disposed in the air passage.
19. The system of claim 15, wherein the plurality of blades is rotatable about an axis of rotation, and the plurality of blades is configured to turn the air flow between one direction generally perpendicular to the axis of rotation and another direction generally parallel to the axis of rotation.
20. A system, comprising:
a spray gun, comprising:
a body;
a spray head coupled to the body, wherein the spray head comprises a liquid port and an air port, and the air port is configured to atomize or shape a liquid spray ejected from the liquid port;
a liquid passage extending to the liquid port;
an air passage extending to the air port;
a handle coupled to the body, wherein the body is disposed between the spray head and the handle; and
a base enclosure coupled to the handle, wherein the handle is disposed between the body and the base enclosure, wherein the base enclosure comprises an air flow generator coupled to the air passage, wherein the air flow generator comprises a motor coupled to a blower having a plurality of blades rotatable about an axis of rotation, the plurality of blades is configured to turn an air flow between one direction generally perpendicular to the axis of rotation and another direction generally parallel to the axis of rotation.

1460739568-6a14c43d-f7f5-46c2-b89b-358fb79eac78

What is claimed is:

1. A method of inputoutput (IO) within a data processing system, said method comprising:
receiving an IO command from a processor core at an IO communication adapter, said IO command referencing an effective address within an effective address space of said processor core that identifies a storage location;
in response to receipt of the IO command, said IO communication adapter translating the effective address into a real address by reference to a translation data structure; and
said IO communication adapter accessing said storage location utilizing said real address to perform an IO data transfer specified by said IO command.
2. The method of claim 1, wherein said translation data structure comprises a translation lookaside buffer that caches copies of page table entries from an operating system page table, wherein said translating step comprises accessing a cached copy of a page table entry within the translation lookaside buffer.
3. The method of claim 2, and further comprising:
in response to a miss in said translation lookaside buffer, accessing a page table entry containing a translation for said effective address from a page table in system memory.
4. The method of claim 3, and further comprising:
while accessing said page table entry within said page table in system memory, said IO communication adapter buffering incoming IO read data.
5. The method of claim 1, wherein said step of accessing said storage location utilizing a real address comprises accessing a control block specifying parameters for said IO data transfer utilizing said real address.
6. The method of claim 1, and further comprising:
said IO communication adapter obtaining said effective address directly from the processor core without performing a memory access.
7. The method of claim 1, wherein said IO command indirectly references said effective address by specifying a storage location of a control block containing said effective address, said method further comprising:
said IO communication adapter obtaining said effective address from the control block.
8. An inputoutput (IO) communication adapter, comprising:
means for receiving an IO command from a processor core, said IO command referencing an effective address within an effective address space of said processor core that identifies a storage location;
means, responsive to receipt of the IO command, for translating the effective address into a real address by reference to a translation data structure; and
means for accessing said storage location utilizing said real address to perform an IO data transfer specified by said IO command.
9. The IO communication adapter of claim 8, wherein said translation data structure comprises a translation lookaside buffer that caches copies of page table entries from an operating system page table, wherein said means for translating step comprises means for accessing a cached copy of a page table entry within the translation lookaside buffer.
10. The IO communication adapter of claim 9, and further comprising:
means, responsive to a miss in said translation lookaside buffer, for accessing a page table entry containing a translation for said effective address from a page table in system memory.
11. The IO communication adapter of claim 10, and further comprising:
means for buffering incoming IO read data while accessing said page table entry within said page table in system memory.
12. The IO communication adapter of claim 8, wherein said means for accessing said storage location utilizing a real address comprises accessing a control block specifying parameters for said IO data transfer utilizing said real address.
13. The IO communication adapter of claim 8, and further comprising:
means for obtaining said effective address directly from the processor core without performing a memory access.
14. The IO communication adapter of claim 8, wherein said IO command indirectly references said effective address by specifying a storage location of a control block containing said effective address, said IO communication adapter further comprising:
means for obtaining said effective address from the control block.
15. A data processing system, comprising:
the IO communication adapter of claim 8;
a processor core coupled to the IO communication adapter; and
a lower level memory coupled to the processor core.
16. The data processing system of claim 15, wherein at least a portion of the IO communication adapter and processor core are integrated within the same integrated circuit chip.

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 method for checking the degree of soiling of bank notes, comprising:
transporting the bank notes along a transport path,
illuminating the bank notes with visible light in the blue spectral range,
detecting the light reflected andor emitted by the bank notes andor the light passing through the bank notes by reason of transmission, and
evaluating the light detected.
2. The method according to claim 1, wherein the bank notes are illuminated with light in a wavelength between 420 nm and 480 nm.
3. The method according to claim 1, wherein the optical density is determined during the evaluation of the detected light.
4. The method according to claim 1, wherein the bank notes are illuminated using pulsed light.
5. The method according to claim 1, wherein the bank notes are additionally illuminated using pulsed light from other wavelength ranges, wherein the light pulses are emitted from different light sources timed to be offset to each other in a chronological sequence.
6. The method according to claim 4, wherein the sequence of light pulses is irregular in its order.
7. The method according to claim 1, wherein only the light reflected andor emitted from unprinted areas of a bank note andor the light passing through unprinted areas of a bank note by reason of transmission is evaluated following detection.
8. A device for checking banknotes for their degree of soiling comprising, according to claim 1, wherein at least one light source that illuminates the bank notes with light in the blue spectral range, at least one sensor that detects the light reflected andor transmitted andor emitted by the bank note, and an evaluation apparatus that evaluates the light detected by the sensor.
9. The device according to claim 8, Device from claim 8, wherein the light source has at least one light-emitting diode.
10. The device according to claim 8, or 9, wherein the light from the light source has a wavelength between 380 and 460 nm.
11. The device according to claim 10, wherein the light from the light source has a wavelength between 420 and 460 nm.
12. The device according to claim 8, wherein the sensor is a transmitted light sensor.
13. The device according to claim 8, wherein the sensor is an incident light sensor.
14. The device according to claim 8, wherein the sensor is a trace sensor.
15. The device according to claim 8, wherein the sensor is a line sensor.