1461157526-6e02424b-e477-40d4-bcb7-a7b64954f126

1. A method for manufacturing sharp spine-shaped projections on ceramic comprising elutriating, kneading, forming a ceramic and decorating the ceramic, wherein the decorating step includes:
forming projections by applying a first soil water on the outside of the half-dried ceramic using a rough brush and forming a plurality of projection roots; and
growing projections by applying a second soil water on a plurality of the projection roots fifty to one hundred times using the brush and letting the projections dry at 15\u02dc20\xb0 C., and 60\u02dc70% of relative humidity for 15\u02dc25 minutes in the shade each time after the application;
wherein the first soil water comprises 79\u02dc84.9% porcelain soil, 15\u02dc20% water and 0.1\u02dc1% sodium silicate, and
the second soil water comprises 69\u02dc79.9% porcelain soil, 20\u02dc30% water and 0.1\u02dc1% sodium silicate.
2. The method of claim 1, wherein water content of the first soil water is controlled in consideration of the number of the projection roots to be formed on the outside of the ceramic, when the number of the projection roots to be formed on the outside of the ceramic is fifty to sixty per 5 cm\xd75 cm, the water content is 15%, and when the number of the projection roots to be formed on the outside of the ceramic is twenty to thirty per 5 cm\xd75 cm, the water content is 20%.
3. The method of claim 1, wherein the step of growing projections is further including a step of controlling water content by applying the second soil water on the projection roots twenty five to fifty times, letting them dry each time after the application, sealing the ceramic with a vinyl cloth wrapper for about 12 hours and conforming water content of the projections to water content of the ceramic body.
4. The method of claim 3, after the step of controlling water content, the second soil water is being applied repeatedly without direction or with a specific direction with controlling its water content, wherein the water content of the second soil water is controlled by starting from 20% by increasing water at a rate of 0.2\u02dc0.4% per application or 2\u02dc4% per 10 applications to 30%, and the specific direction is one selected from directions of upward, downward, right, left, from right upside to left downside, from left downside to right upside, from left upside to right downside, and from right downside to left upside.
5. The method of claim 1, wherein a coloring step is further being included, the coloring step is applying a third soil water onto the top of a plurality of the projections grown by the step of growing projections with the brush and making the projections colored with desired colors, and the third soil water comprises 56\u02dc78.9% porcelain soil, 20\u02dc30% water, 1\u02dc13% pigment and 0.1\u02dc1% sodium silicate.
6. The method of claim 2, wherein a coloring step is further being included, the coloring step is applying a third soil water onto the top of a plurality of the projections grown by the step of growing projections with the brush and making the projections colored with desired colors, and the third soil water comprises 56\u02dc78.9% porcelain soil, 20\u02dc30% water, 1\u02dc13% pigment and 0.1\u02dc1% sodium silicate.
7. The method of claim 3, wherein a coloring step is further being included, the coloring step is applying a third soil water onto the top of a plurality of the projections grown by the step of growing projections with the brush and making the projections colored with desired colors, and the third soil water comprises 56\u02dc78.9% porcelain soil, 20\u02dc30% water, 1\u02dc13% pigment and 0.1\u02dc1% sodium silicate.
8. The method of claim 4, wherein a coloring step is further being included, the coloring step is applying a third soil water onto the top of a plurality of the projections grown by the step of growing projections with the brush and making the projections colored with desired colors, and the third soil water comprises 56\u02dc78.9% porcelain soil, 20\u02dc30% water, 1\u02dc13% pigment and 0.1\u02dc1% sodium silicate.
9. The method of claim 5, wherein the porcelain soil in one of the selected soil water from the first to the third soil water is low ferrous porcelain soil for casting.
10. The method of claim 6, wherein the porcelain soil in one of the selected soil water from the first to the third soil water is low ferrous porcelain soil for casting.
11. The method of claim 7, wherein the porcelain soil in one of the selected soil water from the first to the third soil water is low ferrous porcelain soil for casting.
12. The method of claim 8, wherein the porcelain soil in one of the selected soil water from the first to the third soil water is low ferrous porcelain soil for casting.
13. A method for manufacturing sharp spine-shaped projections on ceramic comprising elutriating, kneading, forming a ceramic and decorating the ceramic, wherein the decorating step includes:
forming projections by applying a first soil water on the outside of the half-dried ceramic using a rough brush and forming a plurality of projection roots; and growing projections by applying a second soil water on a plurality of the projection roots fifty to one hundred times using the brush and letting the projections dry at 15\u02dc20\xb0 C., and 60\u02dc70% of relative humidity for 15\u02dc25 minutes in the shade each time after the application; wherein the first soil water comprises 66\u02dc83.9% porcelain soil, 15\u02dc20% water, 1\u02dc13% pigment and 0.1\u02dc1% sodium silicate, and
the second soil water comprises 56\u02dc78.9% porcelain soil, 20\u02dc30% water, 1\u02dc13% pigment and 0.1\u02dc1% sodium silicate.
14. The method of claim 13, wherein water content of the first soil water is controlled in consideration of the number of the projection roots to be formed on the outside of the ceramic, when the number of the projection roots to be formed on the outside of the ceramic is fifty to sixty per 5 cm\xd75 cm, the water content is 15%, and when the number of the projection roots to be formed on the outside of the ceramic is twenty to thirty per 5 cm\xd75 cm, the water content is 20%.
15. The method of claim 13, wherein the step of growing projections is further including a step of controlling water content by applying the second soil water on the projection roots twenty five to fifty times, letting them dry each time after the application, sealing the ceramic with a vinyl cloth wrapper for about 12 hours and conforming water content of the projections to water content of the ceramic body.
16. The method of claim 15, after the step of controlling water content, the second soil water is being applied repeatedly without direction or with a specific direction with controlling its water content, wherein the water content of the second soil water is controlled by starting from 20% by increasing water at a rate of 0.2\u02dc0.4% per application or 2\u02dc4% per 10 applications to 30%, and the specific direction is one selected from directions of upward, downward, right, left, from right upside to left downside, from left downside to right upside, from left upside to right downside, and from right downside to left upside.
17. The method of claim 13, wherein the projections have two or more colors by using different color pigments in the second soil water at regular intervals.
18. The method of claim 14, wherein the projections have two or more colors by using different color pigments in the second soil water at regular intervals.
19. The method of claim 15, wherein the projections have two or more colors by using different color pigments in the second soil water at regular intervals.
20. The method of claim 16, wherein the projections have two or more colors by using different color pigments in the second soil water at regular intervals.

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 wireless communication system for providing communication between a vehicle having a plurality of vehicle systems and a plurality of wireless devices operating via a plurality of communication standards, the system comprising:
a receiver configured to receive wireless signals from the plurality of wireless devices, wherein the wireless signals are provided in accordance with the plurality of wireless communication standards and comprise first data; and
a wireless data transfer module coupled to the receiver, the wireless data transfer module configured to support the plurality of wireless communication standards, to decode the wireless signals according to their respective wireless communication standards and to direct the first data of the wireless signals to at least one of the vehicle systems.
2. A system according to claim 1, further comprising:
a transmitter coupled to the wireless data transfer module, the transmitter configured to transmit wireless signals from the vehicle to at least one of the plurality of wireless devices,
wherein the wireless data transfer module receives second data from at least one of the vehicle systems and is further configured to provide the second data in accordance with a wireless communication standard from the plurality of wireless communication standards to the transmitter.
3. A system according to claim 2, wherein the wireless data transfer module is configured to determine a transmission path for the second data received from the vehicle system.
4. A system according to claim 3, wherein the wireless data transfer module determines the transmission path for the data received from the vehicle system based on a type associated with the data and an availability status of the plurality of wireless devices.
5. A system according to claim 2, further comprising a memory coupled to the vehicle systems and the wireless data transfer module and configured to store data from the vehicle systems.
6. A system according to claim 2, wherein the wireless communication standards for the first and second data are different wireless communication standards.
7. A system according to claim 1, wherein the wireless data transfer module comprises a single circuit board.
8. A system according to claim 1, wherein the wireless data transfer module directs data to a corresponding vehicle system via a communication bus.
9. A system according to claim 8, wherein the communication bus is a vehicle bus.
10. A system according to claim 1, wherein the wireless data transfer module is further configured to transfer first or second data between vehicle systems.
11. A system according to claim 1, further comprising a memory device coupled to the wireless data transfer module and configured to store data from the wireless signals.
12. A system according to claim 11, wherein the memory device is one of a hard drive or flash memory.
13. A wireless data transfer module comprising:
an input configured to receive wireless signals from at least one of a plurality of wireless devices, the plurality of wireless devices operating via a plurality of wireless communication standards, wherein the wireless signals are provided in accordance with the plurality of wireless communication standards and comprise data;
a control circuit coupled to the input and configured to support the plurality of wireless communication standards, to decode the wireless signals according to their respective wireless communication standards and to direct the data from the wireless signals to a vehicle system of a plurality of vehicle systems based on the data; and
an output coupled to the control circuit and configured to send the data to the vehicle system.
14. A wireless data transfer module according to claim 13, wherein the control circuit is configured to determine a transmission path for the data based on the vehicle systems in the vehicle.
15. A wireless data transfer module according to claim 13, where the control circuit is configured to determine a transmission path for the data based on a request for data provided by at least one vehicle system.
16. A wireless data transfer module according to claim 13, wherein the control circuit directs data to a corresponding vehicle system via a communication bus.
17. A wireless data transfer module comprising:
an input configured to receive data from at least one vehicle system;
a control circuit coupled to the input and configured to support a plurality of wireless communication standards, to process the data from the plurality of vehicle systems so as to provide the data in accordance with a wireless communication standard from the plurality of wireless communication standards to at least one wireless device; and
an output coupled to the control circuit and configured to communicate the data to the at least one wireless device in accordance with the wireless communication standard.
18. A wireless data transfer module according to claim 17, wherein the control circuit is configured to determine a transmission path for the data from the vehicle system based on at least a type associated with the data and the wireless devices in communication with the vehicle.
19. A method for providing wireless communication in a vehicle, the method comprising:
receiving a first wireless signal from a first wireless device, the first wireless signal provided in accordance with a first wireless communication standard and having data;
receiving a second wireless signal from a second wireless device, the second wireless signal provided in accordance with a second wireless communication standard and having data;
decoding the first and second wireless signals based on the first and second wireless communication standards, respectively, using a wireless data transfer module configured to support at least the first and second wireless communication standards; and
distributing the data from the first and second wireless signals to a first and second vehicle systems, respectively.
20. A method according to claim 19 further comprising:
processing data from the first and second vehicle systems based on the first and second wireless communication standards using the wireless data transfer module configured to support at least the first and second wireless communication standards; and
transmitting the data to the first and second wireless devices in accordance with the first and second wireless communication standards, respectively.
21. A method according to claim 19 further comprising:
storing the decoded data prior to distributing the data to the first and second vehicle systems.