1461150856-33f2e188-b3f7-4cc1-882b-529aa241a86c

1. A fuel injection valve comprising:
an electromagnetic solenoid assembly, and
a valve main body including a valve body operated by said electromagnetic solenoid assembly to be brought into and out of contact with a valve seat of a valve seat member for controlling the injection of fuel from an injection port having an axis inclined relative to an end face of said valve seat member; wherein
said injection port includes a first injection port disposed at a downstream side of said valve seat, and a second injection port disposed at a downstream side of said first injection port and having a diameter larger than that of said first injection port;
central axis of said first injection port and central axis of said second injection port being parallel to each other;
a bottom wall of said second injection port intersecting with the central axis of said first injection port; and wherein
the central axis of said second injection port is out of alignment with respect to the central axis of said first injection port so that W1>W2 is established when M1>M2,
where M1 is the largest length of a longer-side line along which a plane including the central axis of said valve seat member and the central axis of said second injection port intersects with an inner wall of said second injection port;
M2 is the smallest length of a shorter-side line along which said plane intersects with an inner wall of said second injection port;
W1 is the distance from the inner wall of said first injection port to said longer-side line of said second injection port as measured within said plane; and where
W2 is the distance from the inner wall of said first injection port to said shorter-side line of said second injection port as measured within said plane.
2. A fuel injection valve as claimed in claim 1, wherein said second injection port is eccentric relative to said first injection port by an amount of (W1\u2212W2)2 in the direction toward the longer-side line within said plane.
3. A fuel injection valve as claimed in claim 1, wherein a relationship W1M1=W1M2 is established.
4. A fuel injection valve as claimed in claim 1, wherein M2>0 is established.
5. A fuel injection valve as claimed in claim 1, wherein said second injection port is at least partially cylindrical.
6. A fuel injection valve as claimed in claim 1, wherein said second injection port is at least partially tapered spreading toward the injection end.

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

1-15. (canceled)
16. System for mounting a camera on a user, the system comprising
a base plate,
a holding rod attached to the base plate, and
an attachment device attached to the holding rod,
wherein the attachment device is configured in such a manner that the camera is attachable thereon and
wherein the base plate is configured in such a manner that this is attachable to a back device which is attachable to a user’s back.
17. The system according to claim 16,
wherein the base plate has at least one through opening andor at least one loop.
18. The system according to claim 16,
wherein the holding rod is attached pivotally to the base plate.
19. The system according to claim 18,
wherein the holding rod and the base plate configure a plug connection in such a manner that the holding rod is pivotable about the bolt.
20. The system according to claim 19,
wherein the base plate has a recess wherein the bolt is disposed in the recess.
21. The system according to claim 19,
wherein the base plate has a stop which is configured in such a manner that the holding rod impacts against the stop in a predetermined rotational position relative to the base plate.
22. The system according to claim 16,
wherein the attachment device is attached to the holding rod in such a manner that a relative position of the attachment device relative to the holding rod is adjustable.
23. The system according to claim 16, further comprising a universal coupling,
wherein the universal coupling attaches the attachment device to the holding rod in an articulated manner so that a relative position of the attachment device relative to the holding rod is adjustable.
24. The system according to claim 22, further comprising
a control device which is adapted in such a manner that the relative position is influencable by said device.
25. The system according to claim 24,
wherein the control device comprises an actuating device and coupling elements, wherein the coupling elements couple the actuating device to the attachment device andor the holding rod in such a manner that the relative position is adjustable by actuating the actuating elements.
26. The system according to claim 24,
wherein the control device is adapted to transmit control commands to the attachment device,
wherein the attachment device comprises at least one actuator and
wherein the actuator is adapted to receive control commands and set the relative position based on the control commands.
27. The system according to claim 16, further comprising
another holding rod which is attached to the base plate at a distance from the holding rod, wherein the attachment device is attached to the holding rod and to the further holding rod.
28. The system according to claim 27,
wherein the holding rod and the further holding rod have different lengths.
29. The system according to claim 27, further comprising
a coupling device which couples the holding rod and the further holding rod to a coupling region which is located at a distance from the base plate.
30. Method for imaging a user, the method comprising
recording an image of a user by a camera,
wherein the camera is attached to an attachment device,
wherein the attachment device is attached to a holding rod,
wherein the holding rod is attached to a base plate and wherein the base plate is attached to a back device attached to a user’s back.

1461150845-ae9753e2-a2d5-4e80-8e41-835ccc66412c

1. A cable positioning mechanism for fastening at least one cable, comprising:
a main body;
a first positioning member arranged on the main body, the first positioning member comprising a first surface and a second surface connecting with the first surface; and
a second positioning member arranged on the main body and spaced from the first positioning member, the second positioning member comprising a first end parallel to the second surface and a second end parallel to the first surface; the second end cooperating with the second surface to define a first holding space for allowing the at least one cable being placed thereinto, and the first end cooperating with the first surface to define a second holding space communicating with the first holding space;
wherein the second positioning member further comprises a hook, the hook extends into the second holding space and clamps the at least one cable to the main body when the at least one cable is rotated from the first holding space to the second holding space.
2. The cable positioning mechanism of claim 1, wherein the distance between the first surface and the first end is slightly greater than the diameter of the at least one cable.
3. The cable positioning mechanism of claim 1, wherein the distance between the hook and the main body is slightly greater than the diameter of the at least one cable.
4. The cable positioning mechanism of claim 1, wherein the distance between the second surface and the second end is greater than the diameter of the at least one cable.
5. The cable positioning mechanism of claim 1, wherein the second positioning member further comprises a supporting portion extending from the main body, the hook bents from an end of the supporting member away from the main body.
6. The cable positioning mechanism of claim 1, wherein the supporting portion and the first positioning member are arranged at opposite sides of a plane aligning with the first surface when viewed in a direction perpendicular to the second surface.
7. The cable positioning mechanism of claim 1, wherein the supporting portion and the first positioning member are arranged at opposite sides of a plane aligning with the second surface when viewed in a direction perpendicular to the first surface.
8. An electronic device, comprising:
a housing; and
at least one cable positioning mechanism accommodated in the housing, each cable positioning mechanism comprising a main body, a first and second positioning members arranged on the main body, the first positioning member comprising a first surface and a second surface connecting with the first surface, the second positioning member comprising a first end parallel to the second surface and a second end parallel to the first surface, the second end cooperating with the second surface to define a first holding space for allowing the at least one cable being placed thereinto, and the first end cooperating with the first surface to define a second holding space communicating with the first holding space;
wherein the second positioning member further comprises a hook, the hook extends into the second holding space and cooperates with the main body to clamp the at least one cable to the housing when the at least one cable is rotated from the first holding space to the second holding space.
9. The electronic device of claim 8, wherein the distance between the first surface and the first end is slightly greater than the diameter of the at least one cable.
10. The electronic device of claim 8, wherein the distance between the hook and the main body is slightly greater than the diameter of the at least one cable.
11. The electronic device of claim 8, wherein the distance between the second surface and the second end is greater than the diameter of the at least one cable.
12. The electronic device of claim 8, wherein the second positioning member further comprises a supporting portion extending from the main body, the hook bents from an end of the supporting member away from the main body.
13. The electronic device of claim 8, wherein the supporting portion and the first positioning member are arranged at opposite sides of a plane aligning with the first surface when viewed in a direction perpendicular to the second surface.
14. The electronic device of claim 8, wherein the supporting portion and the first positioning member are arranged at opposite sides of a plane aligning with the second surface when viewed in a direction perpendicular to the first surface.

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 printer comprising:
a roll supporting part configured to rotatably support a print-receiving tape roll, wherein the print-receiving tape roll includes a print-receiving tape in a rolled shape;
a feed roller configured to pull out and feed the print-receiving tape included in the print-receiving tape roll supported by the roll supporting part;
a printing head configured to print on the print-receiving tape that is pulled out and fed from the print-receiving tape roll by the feed roller; and
an urging device configured to slide to and contact an outer peripheral surface of the print-receiving tape in the rolled shape and to elastically press the print-receiving tape roll supported by the roll supporting part while the print-receiving tape is pulled out and fed from the print-receiving tape roll,
wherein the roll supporting part is a roll containing part configured to rotatably contain the print-receiving tape roll,
wherein the printer further comprises at least one support roller in the roll containing part, the at least one support roller being configured to, when the print-receiving tape is pulled out and fed from the print-receiving tape roll by the feed roller, rotate by contacting the outer peripheral surface of the print-receiving tape in the rolled shape and rotatably support the print-receiving tape roll,
wherein the roll containing part contains the print-receiving tape roll such that the print-receiving tape is pulled out and fed from an upper side of the print-receiving tape roll,
wherein the print-receiving tape is pulled out and fed from the print-receiving tape roll at a feeding out position,
wherein the feeding out position is located nearer to a position where the urging device contacts the outer peripheral surface of the print-receiving tape in the rolled shape than to a center of the print-receiving tape roll,
wherein the at least one support roller comprises three rollers,
wherein as the print-receiving tape is pulled out and fed from the print-receiving tape roll, the outer peripheral surface of the print-receiving tape in the rolled shape has a diameter in a range from a maximum diameter to a minimum diameter,
wherein at least two rollers of the three rollers are arranged such that the at least two rollers continuously contact the outer peripheral surface of the print-receiving tape in the rolled shape when the diameter is in the range from the maximum diameter to the minimum diameter,
wherein the three rollers are arranged in an order of a first roller, a second roller, and a third roller from the feeding out position in a direction extending from the feeding out position toward an opposite side of the print-receiving tape roll from the feeding out position,
wherein the second roller and the third roller are substantially horizontal to each other, and the first roller is located above the second roller and the third roller, and
wherein the feeding out position is located nearer to the position where the urging device contacts the outer peripheral surface of the print-receiving tape in the rolled shape than to the first roller.
2. The printer according to claim 1, further comprising
a pair of guide members disposed in the roll containing part such that the guide members are mutually approachable along a width direction of the print-receiving tape roll, and such that the guide members are configured to guide the print-receiving tape that is pulled out and fed from the print-receiving tape roll by contacting respective end surfaces, in the width direction, of the print-receiving tape roll, wherein
the urging device is disposed in the roll containing part such that the urging device is located between the guide members when the guide members are in a mutually closest state.
3. A printer comprising:
a roll supporting part configured to rotatably support a print-receiving tape roll comprising a print-receiving tape therein;
a feed roller configured to pull out and feed the print-receiving tape included in the print-receiving tape roll supported by the roll supporting part;
a printing head configured to print on the print-receiving tape that is pulled out and fed from the print receiving tape roll by the feed roller; and
an urging device configured to elastically press a surface of rolled print-receiving tape disposed in an outer peripheral part of the print-receiving tape roll supported by the roll supporting part while the print-receiving tape is pulled out and fed from the print-receiving tape roll,
wherein the roll supporting part is a roll containing part configured to rotatably contain the print-receiving tape roll,
wherein the printer further comprises at least one support roller in the roll containing part, the at least one support roller being configured to, when the print-receiving tape is pulled out and fed from the print-receiving tape roll by the feed roller, rotate by contacting the surface of the rolled print-receiving tape disposed in the outer peripheral part of the print-receiving tape roll supported by the roll supporting part,
wherein the roll containing part contains the print-receiving tape roll such that the print-receiving tape is pulled out and fed from an upper side of the print-receiving tape roll,
wherein the print-receiving tape is pulled out and fed from the print-receiving tape roll at a feeding out position,
wherein the feeding out position is located nearer to a position where the urging device presses the surface of the rolled print-receiving tape than to a center of the print-receiving tape roll, and
wherein:
the at least one support roller comprises three rollers,
as the print-receiving tape is pulled out and fed from the print-receiving tape roll, the surface of the rolled print-receiving tape has a diameter in a range from a maximum diameter to a minimum diameter,
at least two rollers of the three rollers are arranged such that the at least two rollers continuously contact the surface of the rolled print-receiving tape when the diameter is in the range from the maximum diameter to the minimum diameter,
the three rollers are arranged in an order of a first roller, a second roller, and a third roller from the feeding out position in a direction extending from the feeding out position toward an opposite side of the print-receiving tape roll from the feeding out position,
the second roller and the third roller are substantially horizontal to each other, and the first roller is located above the second roller and the third roller, and
the feeding out position is located nearer to the position where the urging device presses the surface of the rolled print-receiving tape than to the first roller.
4. The printer according to claim 3, further comprising
a pair of guide members disposed in the roll containing part such that the guide members are mutually approachable along a width direction of the print-receiving tape roll, and such that the guide members are configured to guide the print-receiving tape that is pulled out and fed from the print-receiving tape roll by contacting respective end surfaces, in the width direction, of the print-receiving tape roll, wherein
the urging device is disposed in the roll containing part such that the urging device is located between the guide members when the guide members are in a mutually closest state.
5. A printer comprising:
a roll supporting part configured to rotatably support a print-receiving tape roll, wherein the print-receiving tape roll includes a print-receiving tape in a rolled shape;
a feed roller configured to pull out and feed the print-receiving tape included in the print-receiving tape roll supported by the roll supporting part;
a printing head configured to print on the print-receiving tape that is pulled out and fed from the print-receiving tape roll by the feed roller; and
an urging device configured to slide to and contact an outer peripheral surface of the print-receiving tape in the rolled shape and to elastically press the print-receiving tape roll supported by the roll supporting part while the print-receiving tape is pulled out and fed from the print-receiving tape roll,
wherein the roll supporting part is a roll containing part configured to rotatably contain the print-receiving tape roll,
wherein the printer further comprises at least one support roller in the roll containing part, the at least one support roller being configured to, when the print-receiving tape is pulled out and fed from the print-receiving tape roll by the feed roller, rotate by contacting the outer peripheral surface of the print-receiving tape in the rolled shape and rotatably support the print-receiving tape roll, and
wherein:
said urging device includes:
a substantially plate-like base part;
a first bent part disposed on an end of the base part;
a rising part disposed so as to rise from the base part through the first bent part;
a second bent part disposed on an end of the rising part;
a folded part; and
a locking part, and
said urging device is displaced in a range from a state where an inverted V shape formed by said rising part, the second bent part, and said folded part is completely appeared in said roll containing part to a state where said folded part gets out to a downward side of said roll containing part.