1460730947-756435f0-8e03-43d1-8335-192048b64022

1. A method for producing a laminated decorative plate, said method comprising a first production step of producing a semifinished product comprising the substeps of:
a) providing a plate made of a fiber or particle material;
b) coating the plate on at least one side with a layer of glue comprising a liquid glue curable by pressure andor heat;
c) pressing a decorative layer not impregnated with resin onto the layer of glue simultaneously with said coating the plate with the layer of glue in a single working step;
wherein the steps a) to c) are performed as a lamination process to produce the semifinished product;
d) applying a cover layer comprising a melamine resin to the semifinished product to form a laminated product; and
e) pressing and heating the laminated product while forming a surface structure of the cover layer;
wherein substeps d) and e) are performed in a short-cycle press or in a continuous double belt press.
2. The method of claim 1, wherein substeps d) and e) are performed in a short-cycle press or in a continuous double belt press using liquid melamine formaldehyde as a material for the cover layer.
3. The method of claim 1, further comprising substep f) applying a counteracting layer to the plate made of a fiber or particle material if the decorative layer and the cover layer are present on only one side of the plate.
4. The method of claim 1, further comprising substep f) applying a counteracting layer to the plate made of a fiber or particle material if the decorative layer is present on only one side of the plate.
5. The method of claim 3, wherein the substeps a), b), c), and f) are performed as part of the first production step to produce the semifished product.
6. The method of claim 4, wherein the substeps a), b), c), and f) are performed as part of the first production step to produce the semifinished product.
7. The method of claim 6, wherein substeps d) and e) are performed in a short-cycle press or in a continuous double belt press using liquid melamine formaldehyde as a material for the cover layer.
8. The method of claim 2, wherein the second production step including substeps d) and e) is performed as a separate step after the first production step including substeps a) to c) is complete.
9. The method of claim 1, wherein the semifinished product is a storable semifinished product.
10. The method of claim 1, wherein the semifinished product is stored before performing substeps d) and e).

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 manufacturing method of a semiconductor integrated circuit device comprising:
forming a gate insulating film on a semiconductor substrate,
forming a first film used as floating gates on the gate insulating film,
forming a mask member used when trenches are formed in the substrate on the first film used as the floating gates,
forming trenches in the substrate through the first film by using the mask member as a mask,
embedding insulating materials in the trenches,
removing the mask member and setting back the insulating materials at least in a plane direction,
forming spacers on side walls of the insulating materials,
forming second films used as floating gates between the spacers,
removing the spacers and forming spaces which expose the side walls of the insulating materials, and setting back the insulating materials from the spaces.
2. The method according to claim 1, wherein the second film is formed between the spacers with the upper surfaces of the spacers exposed.
3. The method according to claim 1, wherein the insulating material is set back in a depth direction and the space is formed to extend from a portion between the insulating material and the second film to a portion between the insulating material and the first film.
4. The method according to claim 2, wherein the insulating material is set back in a depth direction and the space is formed to extend from a portion between the insulating material and the second film to a portion between the insulating material and the first film.
5. A manufacturing method of a semiconductor integrated circuit device comprising:
forming a gate insulating film on a semiconductor substrate,
forming a first film used as floating gates on the gate insulating film,
forming trenches in the substrate through the first film,
embedding insulating materials in the trenches, setting back the insulating materials at least in a plane direction,
forming second films used as floating gates between side walls of the insulating materials without making directly contact with the side walls of the insulating materials, and
setting back the insulating materials from spaces formed between the insulating materials and the second films.
6. The method according to claim 5, wherein the insulating material is set back in a depth direction and the space is formed to extend from a portion between the insulating material and the second film to a portion between the insulating material and the first film.
7. The method according to claim 6, wherein the insulating material is set back in a depth direction and the space is formed to extend from a portion between the insulating material and the second film to a portion between the insulating material and the first film.

1460730939-c7c59703-9401-41b1-8459-912f116c5e0a

1. A method of transmitting at least one packet in a wireless mobile communication system, the method comprising transmitting at least one pilot symbol, at least one data symbol, and at least one null symbol, wherein the at least one null symbol is transmitted between transmission of the pilot symbol and the data symbol.
2. The method of claim 1, wherein the at least one pilot symbol, the at least one data symbol, and the at least one null symbol are provided in each packet.
3. The method of claim 1, wherein each packet comprises at least one subpacket.
4. The method of claim 3, wherein the at least one pilot symbol, the at least one data symbol, and the at least one null symbol are provided in each subpacket.
5. The method of claim 1, wherein the null symbol is zero-padded.
6. The method of claim 1, wherein the null symbol has a variable duration.
7. The method of claim 6, wherein the variable duration is set between 0 and a predetermined maximum value.
8. The method of claim 1, wherein the wireless mobile communication system implements any one of Orthogonal Frequency Division Multiplexing (OFDM), Code Division Multiplexing (CDM), Code Division Multiple Access (CDMA), Multi-Carrier Code Division Multiplexing (MC-CDM), or Multi-Carrier Code Division Multiple Access (MC-CDMA).
9. The method of claim 1, wherein the at least one packet is transmitted in a time-domain.
10. A method of transmitting at least one packet in a wireless mobile communication system, the method comprising transmitting at least one pilot symbol, at least one data symbol, and at least one null symbol, wherein the at least one null symbol is transmitted between transmission of the pilot symbol and the data symbol, wherein the at least one pilot symbol, the at least one data symbol, and the at least one null symbol are provided in each packet.
11. A method of receiving at least one packet in a wireless mobile communication system, the method comprising:
receiving at least one pilot symbol, at least one data symbol, and at least one null symbol, wherein the at least one null symbol is transmitted between transmission of the pilot symbol and the data symbol.
12. The method of claim 11, wherein the at least one pilot symbol, the at least one data symbol, and the at least one null symbol are provided in each packet.
13. The method of claim 11, wherein each packet comprises at least one subpacket.
14. The method of claim 13, wherein the at least one pilot symbol, the at least one data symbol, and the at least one null symbol are provided in each subpacket.
15. The method of claim 11, wherein the null symbol is zero-padded.
16. The method of claim 1 1, wherein the null symbol has a variable duration.
17. A packet configured to transmit data from a transmitting end to a receiving end in a wireless communication system, the packet comprising:
at least one pilot symbol, at least one data symbol, and at least one null symbol, wherein the at least one null symbol is placed between at least one pilot symbol and the at least one data symbol.
18. The method of claim 17, wherein the at least one pilot symbol, the at least one data symbol, and the at least one null symbol are provided in each packet.
19. The method of claim 17, wherein the at least one pilot symbol, the at least one data symbol, and the at least one null symbol are provided in each packet.
20. The method of claim 19, wherein the at least one pilot symbol, the at least one data symbol, and the at least one null symbol are provided in each subpacket.

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

That which is claimed is:

1. An aircraft system comprising:
at least one entertainment source;
at least one passenger display for displaying images from said at least one entertainment source;
a signal distribution network connecting said at least one entertainment source to said at least one passenger display;
at least one camera for providing aircraft surveillance; and
at least one pilot display for displaying images from said at least one camera;
said signal distribution network connecting said at least one camera to said at least one pilot display.
2. An aircraft system according to claim 1 wherein said at least one camera provides images of inside the aircraft.
3. An aircraft system according to claim 1 wherein said at least one camera comprises a plurality of cameras spaced throughout a cabin area of the aircraft.
4. An aircraft system according to claim 1 wherein said at least one camera provides images of outside the aircraft.
5. An aircraft system according to claim 1 further comprising at least one pilot control unit connected to said at least one pilot display.
6. An aircraft system according to claim 5 wherein said at least one camera comprises a plurality of cameras; and wherein said at least one pilot control unit has a camera select mode for selecting the images from a desired camera for viewing.
7. An aircraft system according to claim 6 wherein said at least one pilot control unit further has a scan mode for scanning the images from each camera.
8. An aircraft system according to claim 1 wherein said at least one camera comprises:
at least one passenger camera in a cabin area of the aircraft for providing images to said at least one pilot display; and
at least one pilot camera in a cockpit area of the aircraft for providing pilot images to said at least one passenger display.
9. An aircraft system according to claim 1 further comprising a recording device for recording the images from said at least one camera.
10. An aircraft system according to claim 1 further comprising a transmitter for transmitting the images to a location external the aircraft for remote viewing.
11. An aircraft system according to claim 1 wherein said at least one entertainment source comprises a satellite television (TV) receiver.
12. An aircraft system according to claim 11 wherein said satellite TV receiver comprises a direct broadcast satellite (DBS) receiver.
13. An aircraft system according to claim 1 wherein said at least one passenger display comprises a plurality of seatback displays.
14. An aircraft system according to claim 1 wherein said signal distribution network comprises a cable network and signal distribution devices.
15. An aircraft comprising:
a fuselage comprising a cockpit area and a cabin area; and
an aircraft system carried by said fuselage and comprising
at least one entertainment source,
at least one passenger display for displaying images from said at least one entertainment source,
a signal distribution network connecting said at least one entertainment source to said at least one passenger display,
at least one passenger camera in the cabin area for providing surveillance, and
at least one pilot display in the cockpit area for displaying images from said at least one passenger camera,
said signal distribution network also connecting said at least one passenger camera to said at least one pilot display.
16. An aircraft according to claim 15 further comprising at least one external camera connected to said at least one pilot display for providing images of outside the aircraft.
17. An aircraft according to claim 15 wherein said at least one passenger camera comprises a plurality of passenger cameras spaced throughout the cabin area of the aircraft.
18. An aircraft according to claim 15 wherein said aircraft system further comprises at least one pilot control unit connected to said at least one pilot display.
19. An aircraft according to claim 18 wherein said at least one passenger camera comprises a plurality of passenger cameras; and wherein said at least one pilot control unit has a camera select mode for selecting the images from a desired passenger camera for viewing.
20. An aircraft according to claim 19 wherein said at least one pilot control unit further has a scan mode for scanning the images from each passenger camera.
21. An aircraft according to claim 15 further comprising at least one pilot camera in the cockpit area for providing pilot images to said at least one passenger display.
22. An aircraft according to claim 15 wherein said aircraft system further comprises a recording device for recording the images from said at least one passenger camera.
23. An aircraft according to claim 15 wherein said aircraft system further comprises a transmitter for transmitting the images to a location external the aircraft for remote viewing.
24. An aircraft according to claim 15 wherein said at least one entertainment source comprises a satellite television (TV) receiver.
25. An aircraft according to claim 24 wherein said satellite TV receiver comprises a direct broadcast satellite (DBS) receiver.
26. An aircraft according to claim 15 wherein said at least one passenger display comprises a plurality of seatback displays.
27. An aircraft system according to claim 15 wherein said signal distribution network comprises a cable network and signal distribution devices.
28. An aircraft system comprising:
at least one entertainment source;
at least one passenger control unit;
a signal distribution network connecting said at least one entertainment source to said at least one passenger control unit;
at least one camera for providing aircraft surveillance; and
at least one pilot display for displaying images from said at least one camera;
said signal distribution network connecting said at least one camera to said at least one pilot display.
29. An aircraft system according to claim 28 wherein said signal distribution network comprises at least one of a cable network, a wireless network, and a combined cable and wireless network.
30. An aircraft system according to claim wherein said at least one passenger control unit comprises a headphone connection for interfacing with a passenger headphone.
31. An aircraft system according to claim 28 wherein said at least one passenger control unit comprises a selector for selecting a desired audio channel.
32. An aircraft system according to claim 28 wherein said at least one camera provides images of inside the aircraft.
33. An aircraft system according to claim 28 wherein said at least one camera comprises a plurality of cameras spaced throughout a cabin area of the aircraft.
34. An aircraft system according to claim 28 wherein said at least one camera provides images of outside the aircraft.
35. An aircraft system according to claim 28 further comprising at least one pilot control unit connected to said at least one pilot display.
36. An aircraft system according to claim 35 wherein said at least one camera comprises a plurality of cameras; and wherein said at least one pilot control unit has a camera select mode for selecting the images from a desired camera for viewing.
37. A method for operating an aircraft system comprising at least one entertainment source, at least one passenger display, a signal distribution network connecting the least one entertainment source to the at least one passenger display, at least one camera for providing aircraft surveillance, at least one pilot display, and the signal distribution network connecting the at least one camera to the at least one pilot display, the method comprising:
displaying images from the at least one entertainment source on the at least one passenger display; and
displaying images from the at least one camera on the at least one pilot display.
38. A method according to claim 37 wherein the at least one camera provides images of inside the aircraft.
39. A method according to claim 37 wherein the at least one camera comprises a plurality of cameras spaced throughout a cabin area of the aircraft.
40. A method according to claim 37 wherein the at least one camera provides images of outside the aircraft.
41. A method according to claim 37 wherein the aircraft system further comprises at least one pilot control unit connected to the at least one pilot display.
42. A method according to claim 41 wherein the at least one camera comprises a plurality of cameras; and wherein the at least one pilot control unit has a camera select mode for selecting the images from a desired camera for viewing.
43. A method according to claim 42 wherein the at least one pilot control unit further has a scan mode for scanning the images from each camera.
44. A method according to claim 37 wherein the at least one camera comprises at least one passenger camera in a cabin area of the aircraft, and at least one pilot camera in a cockpit area of the aircraft; and wherein displaying the images from the at least one camera comprises:
displaying images from the at least one passenger camera on the at least one pilot display; and
displaying images from the at least one pilot camera on the at least one passenger display.
45. A method according to claim 37 further comprising recording the images from the at least one camera.
46. A method according to claim 37 further comprising transmitting the images to a location external the aircraft for remote viewing.
47. A method according to claim 37 wherein the at least one entertainment source comprises a satellite television (TV) receiver.
48. A method according to claim 47 wherein the satellite TV receiver comprises a direct broadcast satellite (DBS) receiver.
49. A method according to claim 37 wherein the at least one passenger display comprises a plurality of seatback displays.