1460733238-cb639394-e703-4c84-9356-c368ee82a8df

1. An information input apparatus comprising:
a projection unit having a laser emitting part in order to project an input image;
a projection position changing unit which changes the projection position of said input image by moving said projection unit;
a unit for emitting infrared radiation:
a detection sensor which detects depth of data by using said infrared radiation and color data; and
an information detection unit which causes said projection position changing unit to change the projection position of said input image by moving said projection unit so as to track a position of a palm region detected by said detection sensor based on said depth data and said color data supplied from said detection sensor,
wherein said information detection unit which obtains first depth data of a reference region and second depth data detected by said detection sensor, and which compares the first depth data and the second depth data each other, and which recognizes a region where a difference between the first depth data and the second depth data lies within a predetermined range as said palm region, and
wherein said information detection unit detects the information input to said input image by identifying a position of a fingertip on said input image based on said second depth data and said color data supplied from said detection sensor.
2. The information input apparatus according to claim 1, wherein said information detection unit performs control so that the input image is projected on said palm region by controlling said projection position changing unit.
3. The information input apparatus according to claim 1, wherein said projection unit emits a beam by using said laser emitting part and a Micro Electro Mechanical System (MEMS) mirror.
4. The information input apparatus according to claim 1, wherein said laser emitting part emits a beam by using a micro-display.
5. The information input apparatus according to claim 1, wherein said projection position changing unit includes a first rotation axis for panning said projection unit and a second rotation axis for tilting said projection unit.

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 solar battery module comprising:
a solar battery;
a first plate-like member having translucency and serving as a light receiving face;
a second plate-like member having translucency; and
a translucent sealing resin portion for sealing the solar battery provided between the first plate-like member and the second plate-like member,
wherein the second plate-like member is provided with a lead-wire lead-out hole through which a lead wire connected to the solar battery is led out, and the translucent sealing resin portion is formed extending between the lead wire and the lead-wire lead-out hole.
2. The solar battery module according to claim 1, wherein the first plate-like member and the second plate-like member are made of glass.
3. The solar battery module according to claim 1, wherein the lead-wire lead-out hole has a chamfered portion or a countersunk portion formed in an edge portion.
4. The solar battery module according to claim 3, wherein the chamfered portion or the countersunk portion is formed on both sides of the second plate-like member.
5. The solar battery module according to claim 1, wherein the translucent sealing resin portion formed in the lead-wire lead-out hole is in the same plane as or projects from a surface of the second plate-like member.
6. The solar battery module according to claim 1, comprising a terminal box having a bottom face with an opening formed corresponding to the lead-wire lead-out hole, the bottom face adhering to the second plate-like member.
7. The solar battery module according to claim 6, wherein the opening has a projecting portion that is aligned with the lead-wire lead-out hole.
8. The solar battery module according to claim 6, wherein the opening has a slit shape corresponding to the lead wire.
9. The solar battery module according to claim 1, wherein the lead wire is bent at a portion where the lead wire is led out of the lead-wire lead-out hole.
10. A method for manufacturing a solar battery module that comprises a solar battery, a first plate-like member having translucency and serving as a light receiving face, a second plate-like member having translucency, and a translucent sealing resin portion provided for sealing the solar battery between the first plate-like member and the second plate-like member,
the method comprising:
a lead-out-hole forming step of connecting a lead wire to the solar battery and forming a lead-wire lead-out hole in the second plate-like member;
a lead-out step of leading the lead wire to an outer face of the second plate-like member through the lead-wire lead-out hole; and
a sealing step of forming the translucent sealing resin portion between the first plate-like member and the second plate-like member and sealing the solar battery.
11. The method for manufacturing a solar battery module according to claim 10, wherein after the lead-out step, an outflow-resin molding member having air permeability and heat resistance is arranged on the second plate-like member so as to block the lead-wire lead-out hole through which the lead wire is led out.
12. The method for manufacturing a solar battery module according to claim 11, wherein the outflow-resin molding member is removed from the second plate-like member after the sealing step.
13. The method for manufacturing a solar battery module according to claim 10, comprising:
a step of bending the lead-out lead wire after the lead-out step so that the lead wire is arranged along the outer face of the second plate-like member; and
a step of arranging an adhesion prevention member between the lead wire and the outer face of the second plate-like member, the adhesion prevention member preventing adhesion between the bent lead wire and the second plate-like member.
14. The method for manufacturing a solar battery module according to claim 13, wherein the adhesion prevention member is removed from the second plate-like member after the sealing step.