1460745459-6491625a-5ffa-4696-9bde-9b49062190e0

1. An adhesive film for semiconductor used in a semiconductor packaging, comprising an adhesive layer;
wherein the adhesive layer has surface tension of 19 to 52 ergcm2 at 60\xb0 C.
2. The adhesive film for semiconductor according to the claim 1, wherein the adhesive layer has tackiness of 50 to 400 gf\xd85.0 mm at 60\xb0 C.
3. The adhesive film for semiconductor according to the claim 1, wherein the adhesive layer has adhesive force of at least 5 gfcm2.
4. The adhesive film for semiconductor according to claim 1,
wherein the adhesive layer includes at least one material selected from the group consisting of an epoxy-based resin, an organic filler, an inorganic filler and a curing agent.
5. The adhesive film for semiconductor according to the claim 4, wherein the adhesive layer further includes at least one modifier selected from the group consisting of a amino-based compound, a silane-based compound, an acrylic compound, metal organic salt, silicon oxide and titanium oxide.
6. The adhesive film for semiconductor according to claim 2, wherein the adhesive layer includes at least one material selected from the group consisting of an epoxy-based resin, an organic filler, an inorganic filler and a curing agent.
7. The adhesive film for semiconductor according to claim 3, wherein the adhesive layer includes at least one material selected from the group consisting of an epoxy-based resin, an organic filler, an inorganic filler and a curing agent.
8. The adhesive film for semiconductor according to the claim 6, wherein the adhesive layer further includes at least one modifier selected from the group consisting of a amino-based compound, a silane-based compound, an acrylic compound, metal organic salt, silicon oxide and titanium oxide.
9. The adhesive film for semiconductor according to the claim 7, wherein the adhesive layer further includes at least one modifier selected from the group consisting of a amino-based compound, a silane-based compound, an acrylic compound, metal organic salt, silicon oxide and titanium oxide.

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 cover for an electrical receptacle comprising:
a faceplate;
a first transmission tab configured to be electrically connected to a first power line of the electrical receptacle;
a second transmission tab configured to be electrically connected to a second power line of the electrical receptacle; and
a device in communication with the first transmission tab and the second transmission tab;
wherein at least one of the first and the second transmission tabs is configured as an elongated, rigid or semi-flexible tab extending from a back side of the faceplate; and
wherein the at least one transmission tab comprises one or more conductive surface structures configured to face a conductive portion of the electrical receptacle.
2. The cover of claim 1, wherein the electrical receptacle is one of a power outlet or a switch receptacle.
3. The cover of claim 1, wherein the first transmission tab and the second transmission tab are removable from the faceplate.
4. The cover of claim 1, wherein the device is a light source.
5. The cover of claim 4, wherein the light source is a light emitting diode.
6. The cover of claim 1, further comprising a sensor in communication with the device.
7. The cover of claim 1, wherein the faceplate defines an connector aperture that exposes at least a portion of the electrical receptacle.
8. The cover of claim 1, wherein the device is a universal serial bus port.
9. A cover configured to be received around a portion of an electric receptacle, comprising:
a faceplate;
a set of transmission tabs extending, from a rear surface of the face plate;
a sensor in communication with the transmission tabs; and
a light source in communication with the sensor and the transmission tabs;
wherein at least one of the transmission tabs is configured as an elongated, rigid or semi-flexible tab extending from a back side of the faceplate; and
wherein the at least one transmission tab comprises one or more conductive surface structures configured to face a conductive portion of the electrical receptacle.
10. The cover of claim 9, wherein the sensor is a photodetector or a photosensor.
11. The cover of claim 9, wherein the light source is at least one light emitting diode.
12. A cover for an electrical receptacle comprising:
a faceplate;
a first transmission tab configured to be electrically connected to a first power line of the electrical receptacle;
a second transmission tab configured to be electrically connected to a second power line of the electrical receptacle; and
a device in communication with the first transmission tab and the second transmission tab;
wherein the faceplate is configured to be received between the electrical receptacle and a decorative receptacle plate.
13. The cover of claim 12, wherein at least one of the first and the second transmission tabs is configured as an elongated, rigid or semi-flexible tab extending from a back side of the faceplate.
14. The cover of claim 12, wherein the at least one transmission tab comprises one or more conductive surface structures configured to face a conductive portion of the electrical receptacle.
15. The cover of claim 12, wherein the device is a light source.
16. The cover of claim 15, wherein the light source is a light emitting diode.
17. The cover of claim 12, further comprising a sensor in communication with the device.
18. The cover of claim 12, wherein the faceplate defines an connector aperture that exposes at least a portion of the electrical receptacle.
19. The cover of claim 12, wherein the device is a universal serial bus port.
20. The cover of claim 12, wherein at least one of the transmission tabs is removable from the faceplate.

1460745449-af89395f-264a-4ce9-b474-dd5db893d0c6

1. An event data recorder for a vehicle comprising:
a plurality of electric controllers each having a separate memory device, the plurality of electric controllers each playing a respective role in the vehicle, and
a data assignment device connected to each of said plurality of electric controllers, wherein,
the data assignment device assigns a first distinct portion of drive record data which is less than all of the drive record data to be recorded on the memory device of a first one of the plurality of electric controllers to store the first distinct portion of the drive record data, and
the data assignment device assigns the rest of the drive record data to the memory devices of the rest of the plurality of electric controllers to store the rest of the drive record data,
wherein less than an entirety of the memory device of the first one of the plurality of electric controllers includes the first distinct portion of drive record data.
2. The event data recorder for a vehicle according to claim 1, wherein the drive record data are converted into mathematical data when stored in the electrical controllers.
3. The event data recorder for a vehicle according to claim 1, wherein the plurality of electric controllers are disposed in different positions in the vehicle.
4. The event data recorder for a vehicle according to claim 1, wherein the memory device of the plurality of electric controllers is a non-volatile memory.
5. An event data recording and loading system for a vehicle, comprising:
a plurality of electric controllers each having a separate memory device, the plurality of electric controllers each playing a respective role in the vehicle;
a data assignment device connected to each of said plurality of electric controllers, and
a data loading device enabled to communicate with the data assignment device, wherein:
the data assignment device assigns a first distinct portion of drive record data which is less than all of the drive record data to be recorded on the memory device of a first one of the plurality of electric controllers to store the first distinct portion of the drive record data,
the data assignment device assigns the rest of the drive record data to the memory devices of the rest of the plurality of electric controllers to store the rest of the drive record data, and
the data loading device collects fractions of the drive record data from the memory devices of the plurality of the electric controllers and combines said fractions to restore the drive record data,
wherein less than an entirety of the memory device of the first one of the plurality of electric controllers includes the first distinct portion of drive record data.
6. The event data recording and loading system for a vehicle according to claim 5, wherein:
the drive record data are converted into mathematical data when stored in the electrical controllers, and
the data loading device converts the mathematical data into available drive record data.
7. The event data recording and loading system for a vehicle according to claim 5, wherein:
the plurality of electric controllers are disposed in different positions in the vehicle, and
the data loading device is a portable device.
8. The event data recording and loading system for a vehicle according to claim 5, wherein:
the memory device of the plurality of electric controllers is a non-volatile memory.
9. An event data recording and loading system for a vehicle, comprising:
a plurality of electric controllers disposed in different positions in the vehicle, the plurality of electric controllers each having a separate non-volatile memory device, the plurality of electric controllers each playing a respective role in the vehicle;
a data assignment device connected to each of said plurality of electric controllers, and
a data loading device enabled to communicate with the data assignment device, wherein:
the data assignment device assigns a first distinct portion of drive record data which is less than all of the drive record data to be recorded on the memory device of a first one of the plurality of electric controllers to store the first distinct portion of the drive record data,
the data assignment device assigns the rest of the drive record data to the memory devices of the rest of the plurality of electric controllers to store the rest of the drive record data, and
the data loading device is a portable device and collects fractions of the drive record data from the memory devices of the plurality of the electric controllers and combines said fractions to restore the drive record data,
wherein less than an entirety of the memory device of the first one of the plurality of electric controllers includes the first distinct portion of drive record data.
10. The event data recording and loading system for a vehicle according to claim 9, wherein:
the drive record data are converted into mathematical data when stored in the electrical controllers, and
the data loading device converts the mathematical data into available drive record data.
11. The event data recorder for a vehicle according to claim 1, wherein the data assignment device assigns a second distinct portion of the drive record data, which is less than all of the drive record data, and which is different than the first distinct portion, to a second one of the plurality of electric controllers different than the first one of the plurality of electric controllers to store the second distinct portion of the drive record data.
12. The event data recording and loading system for a vehicle according to claim 5, wherein the data assignment device assigns a second distinct portion of the drive record data, which is less than all of the drive record data, and which is different than the first distinct portion, to a second one of the plurality of electric controllers different than the first one of the plurality of electric controllers to store the second distinct portion of the drive record data.
13. The event data recording and loading system for a vehicle according to claim 9, wherein the data assignment device assigns a second distinct portion of the drive record data, which is less than all of the drive record data, and which is different than the first distinct portion, to a second one of the plurality of electric controllers different than the first one of the plurality of electric controllers to store the second distinct portion of the drive record data.
14. The event data recorder for a vehicle according to claim 1, wherein the drive record data is related to a single event.
15. The event data recording and loading system for a vehicle according to claim 5, wherein the drive record data is related to a single event.
16. The event data recording and loading system for a vehicle according to claim 9, wherein the drive record data is related to a single event.
17. The event data recorder for a vehicle according to claim 1, wherein event data recorder records the drive record data of a first event and records drive record data of a second event different than the first event.
18. The event data recording and loading system for a vehicle according to claim 5, wherein event data recorder records the drive record data of a first event and records drive record data of a second event different than the first event.
19. The event data recording and loading system for a vehicle according to claim 9, wherein event data recorder records the drive record data of a first event and records drive record data of a second event different than the first event.

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

1-11. (canceled)
12. An imprint apparatus forms a replica which has a convex part pattern corresponding to a concave part pattern, comprising:
a substrate on which a transfer material is put;
an imprint mold which has said concave part pattern;
a forcing unit which generates forcing power to force said imprint mold against said transfer material on said substrate at effective pressure Mo Pa;
a pressure adjusting unit which performs pressure adjusting an atmosphere at pressure P pa in a space in which said imprint mold and said substrate exist; and
a control unit; wherein:
said control unit controls said forcing unit and said pressure adjusting unit based on depth K nm of said concave part pattern of said imprint mold, and height k nm of said convex part pattern of said replica.
13. The imprint apparatus according to claim 12, wherein:
said pressure adjusting unit is a decompression unit.
14. The imprint apparatus according to claim 12, wherein:
said control unit controls said forcing unit and said pressure adjusting unit with satisfying:
MoP\u2267k(K\u2212k).
15. The imprint apparatus according to claim 12, wherein:
said control unit controls said forcing unit and said pressure adjusting unit, using inside area minimum forcing pressure Mmin Pa of a contact area between said imprint mold and said transfer material as said effective pressure Mo, with satisfying:
MminP\u2267k(K\u2212k).
16. The imprint apparatus according to claim 12, wherein:
said control unit controls said forcing unit and said pressure adjusting unit with satisfying:
99\u2267MoP\u22679.
17. The imprint apparatus according to claim 12, further comprising:
an input unit which inputs depth K nm of said concave part pattern, height k nm of said convex part pattern.
18. The imprint apparatus according to claim 12, further comprising:
a gas replacing unit converts said space into dry environment.
19. The imprint apparatus according to claim 12, further comprising:
said control unit controls said forcing unit and said pressure adjusting unit in case height k nm of said convex part pattern is less than said depth K, with satisfying:
1.1k(K\u22121.1k)\u2267MoP\u22670.9k(K\u22120.9k).
20. The imprint apparatus according to claim 19, wherein:
said control unit controls said forcing unit and said pressure adjusting unit, using inside area minimum forcing pressure Mm in Pa of contact area between said imprint mold, and said transfer material as said effective pressure Mo, with satisfying:
1.1k(K\u22121.1k)\u2267MminP\u22670.9k(K\u22120.9k).
21. An imprint method for forming a replica which has a k nm height convex part pattern corresponding to a concave part pattern, by forcing an imprint mold which has a K nmdepth concave part pattern against, a liquid transfer material under atmosphere pressure P Pa, and releasing said imprint mold after said transfer material was hardened in this forced situation, wherein:
said forcing and said atmosphere pressure are performed to set with satisfying:
MoP\u2267k(K\u2212k).
22. An imprint method for forming a replica which has a k nm height convex part pattern corresponding to said concave part pattern, by forcing an imprint mold which has a K nm depth concave part pattern against a liquid transfer material under atmosphere pressure P Pa, and releasing said imprint mold after said transfer material was hardened in this forced situation, wherein:
said forcing and said atmosphere pressure are performed to set with satisfying:
1.1k(K\u22121.1k)\u2267MoP\u22670.9k(K\u22120.9k).