1461155067-0098bd90-30b1-4321-aba7-ca6454882aa3

1. An image processing apparatus comprising:
a communication unit for communicating with an external communication apparatus that communicates with a base station by a first communication method and which communicates with a communication terminal different from the base station by a second communication method, wherein said communication unit communicates with the external communication apparatus by the second communication method; and
a changing unit for changing a size of an image file transmitted to the external communication apparatus by the second communication method, in accordance with information which is informed from the external communication apparatus by the second communication method and which is related to communication of the external communication apparatus with the base station by the first communication method.
2. An image processing apparatus according to claim 1, wherein the information indicates a received signal strength of a signal for the communication of the external communication apparatus with the base station by the first communication method.
3. An image processing apparatus according to claim 1, wherein the information indicates an error rate of a signal for the communication of the external communication apparatus with the base station by the first communication method.
4. An image processing apparatus according to claim 1, wherein the information indicates a data transfer capacity for the communication of the external communication apparatus with the base station by the first communication method.
5. An image processing apparatus according to claim 4, wherein the data transfer capacity is a data capacity in a service which is provided by a communication carrier.
6. An image processing apparatus according to claim 1, wherein said changing unit changes the size of the image file in response to instructions from the external communication apparatus.
7. A communication apparatus comprising:
a first communication unit for communicating with a base station by a first communication method;
a second communication unit for communicating with an external image processing apparatus different from the base station by a second communication method; and
a control unit for informing said external image processing apparatus of information which is related to the communication of said first communication unit with the base station by the first communication method, wherein said control unit informs said external image processing apparatus of the information by the second communication method so as to change a size of an image file transmitted to said communication apparatus by the external image processing apparatus.
8. A communication apparatus according to claim 7, wherein the information indicates a received signal strength of a signal for the communication of the first communication unit with the base station by the first communication method.
9. A communication apparatus according to claim 7, wherein the information indicates an error rate of a signal for the communication of the first communication unit with the base station by the first communication method.
10. A communication apparatus according to claim 7, wherein the information indicates a data transfer capacity for the communication of the first communication unit with the base station by the first communication method.
11. A communication apparatus according to claim 10, wherein the data transfer capacity is a data capacity in a service which is provided by a communication carrier.
12. A control method of an image processing apparatus, comprising:
a communication step of communicating with an external communication apparatus that communicates with a base station by a first communication method and which communicates with a communication terminal different from the base station by a second communication method, wherein said communication step comprises receipt of information from the external communication apparatus by the second communication method, wherein the information is related to communication of the external communication apparatus with the base station by the first communication method; and
a changing step of changing a size of an image file transmitted to the external communication apparatus by the second communication method, in accordance with the information that is received from the external communication apparatus.
13. A control method of a communication apparatus, comprising:
a first communication step of communicating with a base station by a first communication method;
a second communication step of communicating with an external image processing apparatus different from the base station by a second communication method; and
a control step of informing said external image processing apparatus of information which is related to communication with the base station by the first communication method at said first communication step, wherein said control step informs said external image processing apparatus of the information by the second communication method so as to change a size of an image file transmitted to said communication apparatus by the external image processing apparatus.
14. A storage medium for storing a program to control an image processing apparatus, wherein said program comprises:
a communication step of communicating with an external communication apparatus that communicates with a base station by a first communication method and which communication with a communication terminal different from the base station by a second communication method, wherein said communication step comprises receipt of information from the external communication apparatus by the second communication method, wherein the information is related to communication of the external communication apparatus with the base station by the first communication method; and
a changing step of changing a size of an image file transmitted to the external communication apparatus by the second communication method, in accordance with the information that is received from the external communication apparatus.
15. A storage medium for storing a program to control a communication, wherein said program comprises:
a first communication step of communicating with a base station by a first communication method;
a second communication step of communicating with an external image processing apparatus different from the base station by a second communication method; and
a control step of informing said external image processing apparatus of information which is related to the communication with the base station by the first communication method at said first communication step, wherein said control step informs said external image processing apparatus of the information by the second communication method so as to change a size of an image file transmitted to the communication apparatus by the external image processing apparatus.

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. An organic light emitting diode display device, comprising:
a substrate including a display region and a non-display region at a periphery of the display region with red, green, blue and white pixel regions as one pixel group being formed in the display region, and the display region being divided into a first region and a second region;
an organic emitting diode in each of the red, green, blue and white pixel regions;
a power line including first to third power lines respectively disposed at an end of the first region, at an opposite end of the second region and a boundary of the first and second regions and connected to the organic emitting diode;
a first drive integrated circuit connected to the first and third power lines; and
a second drive integrated circuit connected to the second and third power lines,
wherein the first and second regions are symmetric with respect to the third power line.
2. The organic light emitting diode display device according to claim 1, wherein the first and second drive integrated circuits share the third power line to have the same pad arrangement.
3. The organic light emitting diode display device according to claim 2, further comprising first and second link lines at the non-display region and in the first region; and third and fourth link lines at the non-display region and in the second region, wherein the first and third link lines respectively connect the first and second power lines with the first and second drive integrated circuits, and the second and fourth link lines respectively connect the third power line with the first and second drive integrated circuits.
4. The organic light emitting diode display device according to claim 1, further comprising first and second auxiliary power lines oppositely extending from third power line, wherein one power line is formed in one pixel group, and wherein the first auxiliary power line extends into the red and white pixel regions, and the second auxiliary power line extends into the green and blue pixel regions.
5. A method of fabricating an organic light emitting diode display device including a substrate, which includes a display region and a non-display region at a periphery of the display region, wherein red, green, blue and white pixel regions as one pixel group are formed in the display region, and the display region is divided into a first shot region and a second shot region; an organic emitting diode in each of the red, green, blue and white pixel regions; first to third power lines respectively disposed at an end of the first shot region, at an opposite end of the second shot region and a boundary of the first and second shot regions and connected to the organic emitting diode; a first drive integrated circuit connected to the first and third power lines;
and a second drive integrated circuit connected to the second and third power lines, comprising:
forming a metal layer on the substrate;
forming a photoresist layer on the metal layer;
disposing a first exposing mask over the photoresist layer in the first shot region;
performing a first shot to the photoresist layer using the first exposing mask in the first shot region;
disposing a second exposing mask over the photoresist layer in the second shot region and a first blade over the photoresist layer in the boundary of the first and second shot regions;
performing a second shot to the photoresist layer using the second exposing mask in the second shot region and the first blade;
developing the photoresist layer to form a photoresist pattern; and
etching the metal layer to form the first to third power lines.
6. The method according to claim 5, wherein the first and second exposing mask are same such that the first and second shot regions are symmetric with respect to the third power line.
7. The method according to claim 5, wherein the step of disposing the first exposing mask includes a step of disposing a second blade at the second shot region and the non-display region.
8. The method according to claim 5, wherein the first blade is further disposed at the first shot region and the non-display region.