1460720944-af26f344-5457-4f1a-84ef-33a1c94db6a5

1. A card connector comprising:
a housing; and
a card tray configured to be drawn out of the housing, the card tray includes
a first protrusion configured to define a movement path of the card tray and
a second protrusion configured to restrict a movement the card tray,

wherein the housing includes an inclined portion extending in a drawing direction of the card tray to guide the first protrusion.
2. The card connector according to claim 1, wherein the inclined portion is configured to displace the first protrusion from a bottom surface of the housing in a height direction.
3. The card connector according to claim 1, wherein the housing further includes a slit configured to engage the second protrusion to restrict a movement of the second protrusion.
4. The card connector according to claim 3, wherein the slit is a groove with one end open and the other end closed through which the second protrusion passes when the first protrusion moves on the inclined portion.
5. The card connector according to claim 1, wherein the inclined portion includes a surface on which the first protrusion slides.
6. The card connector according to claim 1, wherein the second protrusion is provided on a farther side of the card tray with respect to the first protrusion.
7. The card connector according to claim 1, wherein the first protrusion has a smaller height from a side surface of the card tray than the second protrusion.
8. The card connector according to claim 3, wherein the slit includes a pressing member configured to press the second protrusion engaged with the slit.
9. The card connector according to claim 8, wherein the pressing member is a flat plate spring having a C-shape configured to open toward the inclined portion.
10. A wiring board unit comprising:
a wiring board; and
a card connector mounted on the wiring board and electrically connected to the wiring board, the card connector including
a housing and
a card tray configured to be drawn out of the housing, wherein the card tray includes
a first protrusion configured to define a movement path of the card tray and
a second protrusion configured to restrict a movement the card tray, and

wherein the housing includes an inclined portion extending in a drawing direction of the card tray to guide the first protrusion.
11. The wiring board unit according to claim 10, wherein the inclined portion is configured to displace the first protrusion from a bottom surface of the housing in a height direction.
12. The wiring board unit according to claim 10, wherein the housing further includes a slit configured to engage the second protrusion to restrict a movement of the second protrusion.
13. The wiring board unit according to claim 12, wherein the housing further includes a slit configured to engage the second protrusion to restrict a movement of the second protrusion.
14. The wiring board unit according to claim 10, wherein the inclined portion includes a surface on which the first protrusion slides.
15. The wiring board unit according to claim 10, wherein the second protrusion is provided on a farther side of the card tray with respect to the first protrusion.
16. The wiring board unit according to claim 10, wherein the first protrusion has a smaller height from a side surface of the card tray than the second protrusion.
17. The wiring board unit according to claim 12, wherein the slit includes a pressing member configured to press the second protrusion engaged with the slit.
18. The wiring board unit according to claim 17, wherein the pressing member is a flat plate spring having a C-shape configured to open toward the inclined portion.
19. An electronic device comprising:
an enclosure;
a wiring board installed in the enclosure; and
a card connector mounted on the wiring board and electrically connected to the wiring board, the card connector including
a housing and
a card tray configured to be drawn out of the housing, wherein the card tray includes
a first protrusion configured to define a movement path of the card tray and
a second protrusion configured to restrict a movement the card tray, and

wherein the housing includes an inclined portion extending in a drawing direction of the card tray to guide the first protrusion.
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 fuel rail for delivering fuel to a first fuel injector for an internal combustion engine, comprising:
a first tubular body defining a fluid chamber and having an inlet through which fuel enters said fluid chamber and a fuel injector port in fluid communication with said fluid chamber, said port configured to receive said first fuel injector
wherein said first tubular body is a laminate having an inner metallic layer and an outer polymeric layer
further comprising a fuel system component bonded to said outer layer of said first tubular body.
2. The fuel rail of claim 1 wherein said inner layer comprises aluminum.
3. The fuel rail of claim 2 wherein said outer layer comprises nylon.
4. The fuel rail of claim 1 wherein said outer layer comprises a plastic.
5. The fuel rail of claim 4 wherein said outer layer comprises nylon.
6. The fuel rail of claim 1 wherein said inner layer comprises steel.
7. The fuel rail of claim 1 wherein said outer layer is directly adjacent said inner layer.
8. The fuel rail of claim 1 wherein said outer layer is extruded over said inner layer.
9. The fuel rail of claim 1, further comprising a second tubular body defining a fluid chamber and having an inlet through which fuel enters said fluid chamber of said second tubular body and a fuel injector port in fluid communication with said fluid chamber of said second tubular body, said port of said second tubular body configured to receive a second fuel injector.
10. The fuel rail of claim 1 wherein said first tubular body further includes another polymeric layer disposed inwardly of said inner metallic layer.
11. The fuel rail of claim 1 wherein said fuel system component is bonded to said outer layer of said first tubular body by generating heat transfer from said inner layer of said first tubular body to said outer layer of said first tubular body and deforming said outer layer of said first tubular body.
12. The fuel rail of claim 1 wherein said component comprises a pod configured to receive said first fuel injector.
13. The fuel rail of claim 1 wherein said component comprises a member with first and second pods, said first and second pods configured to receive said first fuel injector and a second fuel injector, respectively.
14. The fuel rail of claim 1 wherein said component comprises a bracket.
15. The fuel rail of claim 1 wherein said component comprises a cap disposed about an open end of said first tubular body.
16. The fuel rail of claim 1 further comprising a second tubular body defining a fluid chamber and having an inlet through which fuel enters said fluid chamber of said second tubular body and a fuel injector port in fluid communication with said fluid chamber of said second tubular body, said port of said second tubular body configured to receive a second fuel injector wherein said component comprises a cross-over tube in fluid communication with said fluid chamber of said first tubular body and said fluid chamber in said second tubular body.
17. The fuel rail of claim 1 further comprising a second tubular body defining a fluid chamber and having an inlet through which fuel enters said fluid chamber of said second tubular body and a fuel injector port in fluid communication with said fluid chamber of said second tubular body, said port of said second tubular body configured to receive a second fuel injector wherein said component comprises an inlet tube in fluid communication with said fluid chamber of said first tubular body and said fluid chamber of said second tubular body.
18. The fuel rail of claim 1 wherein said component comprises a bracket configured to secure said first tubular body to another fuel system component.