1. A cellular phone, comprising:
a connector for physically connecting the cellular phone to an external electronic apparatus;
a first memory module for storing phone data;
a second memory module for storing application data; and
a controller determining whether the connector is connected to the external electronic apparatus, and if not, granting access right of both the first and second memory modules exclusively to the cellular phone, otherwise granting access right of the first memory module exclusively to the cellular phone and access right of the second memory module exclusively to the external device.
2. The cellular phone of claim 1, wherein the external electronic apparatus is a computer.
3. The cellular phone of claim 1, wherein the first memory module comprises a nonvolatile memory and a driver.
4. The cellular phone of claim 3, wherein the first memory module comprises a flash memory and a flash driver.
5. The cellular phone of claim 1, wherein the second memory module comprises a nonvolatile memory and a driver.
6. The cellular phone of claim 5, wherein the second memory module comprises a flash memory and a flash driver.
7. The cellular phone of claim 1, wherein the phone data comprises at least one of: phone book data, default ring tone data, and calibration data.
8. The cellular phone of claim 1, wherein the application data is multi-media data, comprising at least one of music file, movie file, and picture file.
9. The cellular phone of claim 1, further comprising a phone file system, wherein the phone file system accesses the first and second memory modules when the cellular phone not connected to the external device, accesses the first memory module but not the second memory module when the cellular phone connected to the external device.
10. The cellular phone of claim 9, wherein the controller, when detecting the connector is connected to the external device, further directs the phone file system to close an access session to the second memory module.
11. The cellular phone of claim 10, wherein the controller further directs the phone file system to flush a cache corresponding to the second memory module.
12. The cellular phone of claim 10, wherein the controller further directs the phone file system to finish a write operation to the second memory module.
13. The cellular phone of claim 9, wherein the phone file system, when the connector connected to the external device, further blocks a request made from the cellular phone to access the second memory module.
14. The cellular phone of claim 1, wherein the controller, when detecting the connector connected to the external device, further performs a device enumeration process, and starts data transmission between the second memory module and the external device in a mass storage class.
15. The cellular phone of claim 1, wherein the second memory module is accessed by a device file system of the external device when the cellular phone connected to the external device.
16. The cellular phone of claim 1, wherein the controller, when the cellular phone not connected to the external device, receives an incoming call and triggers a ring tone to be emitted using the application data stored in the second memory module.
17. The cellular phone of claim 16, wherein the controller, when the cellular phone connected to the external device, triggers a ring tone to be emitted using a default setting specified by the phone data stored in the first memory module.
18. The cellular phone of claim 1, wherein the controller, after the cellular phone is disconnected from the external device, returns the access right of the second memory module to the cellular phone.
19. The cellular phone of claim 1, wherein the first memory module comprises a flash memory, and the second memory comprises another flash memory.
20. The cellular phone of claim 1, wherein the first memory module and the second memory module are included in a flash memory, and the first memory module comprises a first portion of banks of the flash memory, the second memory module comprises a second portion of banks of the flash memory.
21. The cellular phone of claim 1, wherein the first memory module further stores codes for performing operations on the cellular phone, when the cellular phone is powered on, the codes stored in the first memory module is copied to a DRAM (Dynamic Random Access Memory) or a SRAM (Static Random Access Memory) for execution.
22. The cellular phone of claim 1, wherein the connector comprises one of the followings: a USB connector, a UART connector, an IEEE 1394 connector, a Bluetooth connector, an IrDA connector, a NFC connector, a WIFI, and a ZigBee connector.
23. A method of manipulating a cellular phone, wherein the cellular phone comprises a connector, a first memory module, a second memory module, and a phone file system, the method comprising:
detecting the connector connected to an external device, wherein the external device has a device file system; and
granting access right of the first memory exclusively to the phone file system and access right of the second memory module exclusively to the external device.
24. The method of claim 23, further storing phone data in the first memory via the phone file system, wherein the phone data comprises at least one of: phone book data, default ring tone data, and calibration data.
25. The method of claim 23, when detecting the connector connected to the external device, further closing an access session to the second memory module via the phone file system.
26. The method of claim 25, further comprising flushing a cache corresponding to the second memory module via the phone file system.
27. The method of claim 25, further finishing a write operation to the second memory module via the phone file system.
28. The method of claim 23, further blocking a request made from the cellular phone to access the second memory module.
29. The method of claim 23, further performing a device enumeration process, and starts data transmission between the second memory module and the external device in a mass storage class.
30. The method of claim 24, further receiving an incoming call and triggering a ring tone to be emitted using a default setting specified by the phone data stored in the first memory module.
31. The method of claim 23, further receiving application data from the external device and storing the application data to the second memory module via the external device file system
32. The method of claim 31, wherein the application data is multi-media data, comprising at least one of music file, movie file, and picture file.
33. The method of claim 31, further detecting the USB connector disconnected from the external device and granting access right of both the first and second memory modules to the phone file system.
34. The method of claim 33, receives an incoming call and triggers a signal to be emitted using the application data stored in the second memory module.
35. The method of claim 23, wherein the first memory module comprises a flash memory, and the second memory comprises another flash memory.
36. The method of claim 23, wherein the first memory module and the second memory module are included in a flash memory, and the first memory module comprises a first portion of banks of the flash memory, the second memory module comprises a second portion of banks of the flash memory.
37. The method of claim 23, wherein the first memory module further stores codes for performing operations on the cellular phone, when the cellular phone is powered on, the codes stored in the first memory module is copied to a DRAM (Dynamic Random Access Memory) or a SRAM (Static Random Access Memory) for execution.
38. The method of claim 23, wherein the connector comprises one of the followings: a USB connector, a UART connector, an IEEE 1394 connector, a Bluetooth connector, an IrDA connector, a NFC connector, a WIFI, and a ZigBee connector.
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 liquid crystal panel, comprising:
a first substrate;
a second substrate, disposed opposite to the first substrate;
a sealant layer, disposed between the first substrate and the second substrate for combining the first substrate and the second substrate, wherein a plurality of openings is defined by the first substrate, the second substrate, and the sealant layer; and
a liquid crystal layer, disposed between the first substrate and the second substrate, wherein the openings are configured to inject a liquid crystal material into a space between the first substrate and the second substrate to form the liquid crystal layer by capillarity.
2. The liquid crystal panel according to claim 1, further comprising a first apex and a second apex disposed diagonally to the first apex, wherein the openings include a first opening and a second opening, the first opening is disposed at the first apex and the second opening is disposed at the second apex.
3. A method for injecting liquid crystal of a liquid crystal panel, comprising:
providing a semi-finished liquid crystal panel, the semi-finished liquid crystal panel comprising:
a first substrate;
a second substrate, disposed opposite to the first substrate; and
a sealant layer, disposed between the first substrate and the second substrate for combining the first substrate and the second substrate, wherein a plurality of openings are defined by the first substrate, the second substrate, and the sealant layer;
immersing at least one of the openings of the semi-finished liquid crystal panel into a liquid crystal material so as to have the liquid crystal material pass through the opening immersed in the liquid crystal material and be injected into a space between the first substrate and the second substrate to form a liquid crystal layer by capillarity; and
sealing the openings by a sealing material.
4. The method for injecting the liquid crystal of the liquid crystal panel according to claim 3, wherein the liquid crystal panel further comprises a first apex and a second apex disposed diagonally to the first apex, wherein the openings include a first opening and a second opening, the first opening is disposed at the first apex, and the second opening is disposed at the second apex.
5. The method for injecting the liquid crystal of the liquid crystal panel according to claim 4, wherein the first opening is immersed in the liquid crystal material and the second opening is a vent opening.
6. The method for injecting the liquid crystal of the liquid crystal panel according to claim 5, further comprising forming a negative pressure state near the second opening.
7. The method for injecting the liquid crystal of the liquid crystal panel according to claim 6, wherein a way used to form the negative pressure state includes exhaling a gas over the second opening.
8. An apparatus for injecting liquid crystal, comprising:
a liquid crystal container for containing a liquid crystal material;
a holder, disposed above the liquid crystal container and configured to sustain a semi-finished liquid crystal panel, wherein the semi-finished liquid crystal panel comprises:
a first substrate;
a second substrate, disposed opposite to the first substrate; and
a sealant layer disposed between the first substrate and the second substrate for combining the first substrate and the second substrate, wherein a plurality of openings is defined by the first substrate, the second substrate, and the sealant layer; and
an adjustment component disposed above the holder and configured to adjust a position of the semi-finished liquid crystal panel sustained by the holder so that at least one of the openings of the semi-finished liquid crystal panel is immersed into a liquid crystal material, wherein the liquid crystal material passes through the opening immersed in the liquid crystal material and is injected into a space between the first substrate and the second substrate to form a liquid crystal layer by capillarity.
9. The apparatus for injecting the liquid crystal according to claim 8, wherein the semi-finished liquid crystal panel further comprises a first apex and a second apex disposed diagonally to the first apex, wherein the openings include a first opening and a second opening, the first opening is disposed at the first apex, and the second opening is disposed at the second apex.
10. An apparatus for injecting liquid crystal, comprising:
a liquid crystal container for containing a liquid crystal material;
a first adjustment component, disposed above the liquid crystal container and configued to sustain a semi-finished liquid crystal panel and to adjust a position of the semi-finished liquid crystal panel, the semi-finished liquid crystal panel including:
a first substrate;
a second substrate, disposed opposite to the first substrate; and
a sealant layer, disposed between the first substrate and the second substrate for combining the first substrate and the second substrate, wherein a plurality of openings is defined by the first substrate, the second substrate, and the sealant layer; and
a second adjustment component, disposed above the first adjustment component and configured to adjust the position of the semi-finished liquid crystal panel so that at least one of the openings of the semi-finished liquid crystal panel is immersed into the liquid crystal material, wherein the liquid crystal material passes through the opening immersed in the liquid crystal material and is injected into a space between the first substrate and the second substrate to form a liquid crystal layer by capillarity.
11. The apparatus for injecting the liquid crystal according to claim 10, wherein the semi-finished liquid crystal panel further comprises a first apex and a second apex disposed diagonally to the first apex, wherein the openings include a first opening and a second opening, the first opening is disposed at the first apex and the second opening is disposed at the second apex.
12. The apparatus for injecting the liquid crystal according to claim 10, wherein the first adjustment component comprises at least one first adjustment roller, the second adjustment component comprises at least one second adjustment roller, the first adjustment component and the second adjustment component are respectively configured to adjust the position of the semi-finished liquid crystal panel by approaching and slightly vibrating the semi-finished liquid crystal panel.