1461156717-375a64cf-caea-4c26-bab5-83474d4ad032

1. An anion electronic cigarette, comprising an atomizer (1) and a battery assembly (2) that are electrically connected with each other, characterized in that: the anion electronic cigarette further comprises an anion generation device that comprises an anion generator (14) and a control circuit, the generator (14) is arranged on an electronic smoke flow channel and is electrically connected with the control circuit arranged inside the battery assembly (2).
2. The anion electronic cigarette according to claim 1, characterized in that the atomizer (1) comprising:
an ergonomic holder (3), the holder (3) being internally provided with a hollow cavity, a smoke guide sleeve (4) being fixed in the hollow cavity in the holder (3), and the smoke guide sleeve (4) being provided with sealing cylinders (41) extending downwards;
an upper sealing ring (5), the upper sealing ring (5) being provided with an axial through hole (51), the upper plate surface of the upper sealing ring (5) being provided with an annular protrusion (52) which is coaxial with the through hole (51), the annular protrusion (52) being in coaxial airtight fit with the lower end of the through hole of the smoke guide sleeve (4), injection holes (53) being arranged on the outside plate surface of the annular protrusion (52), the injection holes (53) being in fluid-tight fit with the sealing cylinders (41); and the side surface of the sealing ring (5) being provided with a sealing gasket (54);
a smoke generation device (6), the smoke generation device (6) consisting of an atomizing cover (7), a tobacco tar guide rope (8), a heating wire (9) and an atomizing cup (10), an integrated smoke guide tube (71) being arranged on the upper end of the atomizing cover (7) and being internally communicated with the cover, the atomizing cover (7) being respectively provided with a groove (72) at the two sides in the diameter direction; an annular protrusion (101) being arranged on the middle-upper part of the atomizing cup (10), the wall of the atomizing cup (10) being respectively provided, in the diameter direction, with grooves (102) capable of holding the tobacco tar guide rope (8), the atomizing cup (10) being sleeved, above the annular protrusion (101), into the atomizing cover (7) to form an atomizing hollow cavity, the groove (72) being corresponding to the groove (102) in position, the tobacco tar guide rope (8) passing through the heating wire (9) and then being arranged in the groove (102) and the end tip of the rope extending out of the atomizing hollow cavity; and the heating wire (9) being electrically connected with the battery assembly (2);
a lower sealing ring (11), the sealing ring (11) being provided with a through hole (111) in fluid-tight fit with the lower end of the atomizing cup (10), a groove (112) in fit with the annular protrusion (101) of the atomizing cup (10) being arranged on the upper end face of the sealing ring, and a sealing gasket (113) being arranged at the outer side of the lower sealing ring (11);
a smoke guide tube (12), one end of the smoke guide tube (12) being connected with the lower end of the through hole (51) of the upper sealing ring (5) in an airtight fit manner, and the other end being connected with the smoke guide tube (71) on the upper end of the atomizing cover (7) in an airtight fit manner and supporting the upper sealing ring (5) and the atomizing cover (7);
an atomizer shell (13), the upper end of the straight barrel-shaped atomizer shell (13) being in fit connection with the holder (3); the upper sealing ring (5), the smoke guide tube (12), the smoke generation device (6) and the lower sealing ring (11) being accommodated in the hollow cavity inside the shell to form an electronic cigarette atomizer, the upper sealing ring (5) and the lower sealing ring (11) forming an electronic cigarette tobacco tar cavity together with the hollow cavity inside the shell, and smoke inlet holes (131) being arranged on the side surfaces of the lower end of the atomizer shell (13).
3. The anion electronic cigarette according to claim 2, characterized in that the anion generator (14) is arranged on a smoke channel on the bottom of the electronic cigarette atomizer, and a smoke flow passes through the anion generator (14) before entering the atomizer, so as to generate a large number of anions.
4. The anion electronic cigarette according to claim 2, characterized in that an annular protrusion (42) is arranged outwards on the lower end of the smoke guide sleeve (4), the two sealing cylinders (41) extending downwards are respectively arranged on a diameter line of the annular protrusion (42), and the upper sealing ring (5) is provided with the injection holes (53) that are corresponding to the two sealing cylinders (41) in position and are in fluid-tight fit with the two sealing cylinders (41).
5. The anion electronic cigarette according to claim 2, characterized in that a mounting portion (132) is arranged on the lower end of the atomizer shell (13) and is sleeved with a decorative ring (15), the decorative ring (15) is provided with smoke through holes (151) corresponding to the smoke inlet holes (131), and two mounting bayonets (133) are arranged on the two sides of the mounting portion and are used for the connection with the battery assembly (2).
6. The anion electronic cigarette according to claim 2, characterized in that the atomizing cup (10) is made of a ceramic material.
7. The anion electronic cigarette according to claim 2, characterized in that the heating wire (9) is connected with an electrode contact plate (16) via a lead wire, and the electrode contact plate is provided with electrode contacts (161).
8. The anion electronic cigarette according to claim 2, characterized in that the electronic cigarette has a flat section.
9. The anion electronic cigarette according to claim 2, characterized in that the electronic cigarette further comprises a holder cover in fit with the holder.

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 light emitting device capable of emitting white light, comprising:
an excitation light source for emitting blue excitation light;
a light emitting section for generating fluorescence by being irradiated with the blue excitation light and having an irradiated surface irradiated with the blue excitation light; and
a light-projecting section for projecting the fluorescence generated from the light emitting section, the light-projecting section being disposed on a side of the irradiated surface,
the irradiated surface including a first region containing a fluorescent material which emits light by being irradiated with the blue excitation light and a second region which does not contain the fluorescent material,
the first region being provided next to the second region on both sides of the second region in a cross section of the light emitting section.
2. The light emitting device as set forth in claim 1, wherein:
the light emitting section has a surface opposite to its irradiated surface, the surface being in contact with a metal.
3. The light emitting device as set forth in claim 1, wherein:
the light emitting section has a flat surface as its surface opposite to its irradiated surface.
4. The light emitting device as set forth in claim 1,
wherein:
the excitation light source is a laser diode.
5. The light emitting device as set forth in claim 1,
wherein:
the light emitting section includes an excitation light scatterer for scattering the blue excitation light with which the irradiated surface is irradiated.
6. The light emitting device as set forth in claim 1,
wherein:
surface roughness of the irradiated surface is such that arithmetic average roughness (Ra) is not less than a wavelength of the blue excitation light, and a maximum height (Ry) is not less than twice the arithmetic average roughness.
7. The light emitting device as set forth in claim 1,
wherein:
the blue excitation light is incident upon the irradiated surface at an incident angle of not less than 20\xb0.
8. The light emitting device as set forth in claim 5,
wherein:
the excitation light scatterer is a fluorescent material which emits light by being irradiated with the blue excitation light.
9. The light emitting device as set forth in claim 5, wherein:
the excitation light scatterer is at least one selected from the group consisting of Al2O3, SiO2, CaF2, Na2CO3, TiO2, SiN, and AlN.
10. The light emitting device as set forth in claim 9, wherein:
the second region contains the excitation light scatterer.
11. The light emitting device as set forth in claim 1, wherein:
a surface of the second region has surface roughness greater than the wavelength of the blue excitation light.
12. The light emitting device as set forth in claim 1, wherein:
a ratio between how much of the blue excitation light is scattered on the irradiated surface and how much amount of light is emitted from the fluorescent material contained in the first region is controlled by the first region and the second region.
13. The light emitting device as set forth in claim 1, wherein:
the light-projecting section includes a reflection mirror having a curved surface formed by rotating a pattern around a rotation axis; and
the light emitting section is disposed so that its surface opposite to its irradiated surface faces away from the curved surface but toward the rotation axis.
14. The light emitting device as set forth in claim 1,
wherein:
the light-projecting section is a parabolic mirror.
15. The light emitting device as set forth in claim 1,
wherein:
the light-projecting section has a shape which has a plurality of focal points on the light emitting section.
16. The light emitting device as set forth in claim 15,
wherein:
the excitation light source is adjustable as to a position at which the excitation light source emits the blue excitation light to the irradiated surface, in accordance with a shape of the light-projecting section.
17. The light emitting device as set forth in claim 16, wherein:
a plurality of different kinds of fluorescent material is contained in a plurality of positions of the light emitting section, the plurality of positions corresponding to the plurality of focal points, respectively.
18. An illumination device comprising:
a light emitting device recited in claim 1.
19. A vehicle headlamp comprising:
a light emitting device recited in claim 1.
20. The light emitting device as set forth in claim 1,
wherein:
the first region and the second region are arranged alternately.

1461156708-1e310710-76b8-4ffc-a320-c6e28720ac9b

1. An intelligent network for use with an ATM network to set up an ATM switched virtual circuit to provide VToA services and private address translation, the intelligent network comprising:
a multi-service control point operable to receive an input extracted from an input ATM setup message that includes a called party phone number value and a VToA designator, analyze the input to determine if the VToA designator is present, designate an ATM address of a called party CPE to be stored in a first instance of a called party subaddress parameter of an output ATM setup message, determine if private address translation is needed, designate an ATM address of an egress ATM edge switch to be stored in a called party number parameter of the output ATM setup message, and generate an output in response for use in generating the output ATM setup message;
an ATM signaling intercept processor operable to intercept the input ATM setup message from an ingress ATM edge switch of the ATM network, extract the input from the input ATM setup message, communicate the input to the multi-service control point, receive the output generated by the multi-service control point, generate the output ATM setup message using the output that includes the ATM address of the egress ATM edge switch stored in the called party number parameter, the ATM address of the called party CPE stored in the first instance of the called party subaddress parameter, and the called party phone number value stored in a second instance of the called party subaddress, and communicate the output ATM setup message to the ingress ATM edge switch of the ATM network;
a second multi-service control point operable to receive an egress input extracted from the output ATM setup message that includes the called party phone number value and the ATM address of the called party CPE, designate the ATM address of the called party CPE that was stored in the first instance of the called party subaddress parameter of the output ATM setup switch to be stored in the called party number parameter of a destination ATM setup message, and generate an egress output in response;
a second ATM signaling intercept processor operable to intercept the output ATM setup message from an egress ATM edge switch of the ATM network, extract the egress input from the output ATM setup message, communicate the egress input to the second multi-service control point, receive the egress output generated by the multi-service control point, generate the destination ATM setup message using the egress output that includes the ATM address of the called party CPE stored in the called party parameter, and the called party phone number value stored in the called party subaddress parameter and communicate the destination ATM setup message to the egress ATM edge switch of the ATM network; and
a service administration operable to provision the multi-service control point, the ATM signaling intercept processor, the second multi-service control point and the second ATM signaling intercept processor.
2. The intelligent network of claim 1, wherein the second multi-service control point and the multi-service control point are implemented as one multi-service control point.
3. The intelligent network of claim 2, wherein the multi-service control point includes various applications operable to provide VToA services through the analyzed input to generate the output.
4. The intelligent network of claim 3, wherein the multi-service control point is operable to process the input to provide desired services before designating the ATM address of an egress ATM edge switch to be stored in the called party number parameter of the output ATM setup message.
5. The intelligent network of claim 4, wherein the second multi-service control point is operable to process the egress input to provide desired services after designating the ATM address of the called party CPE that was stored in the first instance of the called party subaddress parameter of the output ATM setup switch to be stored in the called party number parameter of the destination ATM setup message.
6. The intelligent network of claim 1, wherein the multi-service control point determines if private address translation is needed by identifying a port of the ingress ATM edge switch that received the input ATM setup message.
7. A method for providing VToA and private address translation using an intelligent network and a switched virtual circuit over an ATM network, the method comprising:
receiving a request at a calling party CPE to make a VToA call that includes a called party phone number value;
generating an input ATM setup message at the calling party CPE that includes a VToA designator stored in a first parameter of the input ATM setup message, and the called party phone number value stored in a second parameter of the input ATM setup message;
receiving the input ATM setup message at a device side of an ingress ATM edge switch of the ATM network;
intercepting the input ATM setup message from the device side of the ingress ATM edge switch of the ATM network;
extracting information from the input ATM setup message that includes the VToA designator and the called party phone number value;
analyzing the information to determine if the VToA designator is present;
designating an ATM address of a called party CPE to be stored in the first parameter of an output ATM setup message;
determining if private address translation is needed;
designating the ATM address of the called party CPE to be stored in a first instance of the second parameter of the output ATM setup message;
designating an ATM address of an egress ATM edge switch to be stored in the first parameter of the output ATM setup message;
generating an output ATM setup message that includes the ATM address of the egress ATM edge switch stored in the first parameter, the ATM address of the called party CPE stored in the first instance of the second parameter, and the called party phone number value stored in a second instance of the second parameter;
communicating the output ATM setup message to a network side of the ingress ATM edge switch of the ATM network;
receiving the output ATM setup message at a network side of the egress ATM edge switch;
intercepting the output ATM setup message from the network side of the egress ATM edge switch of the ATM network;
extracting egress information from the output ATM setup message that includes the ATM address of the called party CPE;
designating the ATM address of the called party CPE that was stored in the first instance of the second parameter of the output ATM setup message to be stored in the first parameter of a destination ATM setup message;
generating a destination ATM setup message that includes the ATM address of the called party CPE stored in the first parameter and the called party phone number value stored in the second parameter;
communicating the destination ATM setup message to a device side of the egress ATM edge switch; and
communicating the destination ATM setup message to the called party CPE.
8. The method of claim 7, wherein the first parameter of the output ATM setup message is the called party number parameter and the second parameter of the output ATM setup message is the called party subaddress parameter.
9. The method of claim 8, wherein the first parameter of the destination ATM setup message is the called party number.
10. The method of claim 7, further comprising: processing the information to provide desired services before designating the ATM address of the called party CPE to be stored in a second parameter of the output ATM setup message.
11. The method of claim 10, further comprising:
processing the information to provide desired services before designating the ATM address of the called party CPE that was stored in the first instance of the second parameter of the output ATM setup message to be stored in the first parameter of a destination ATM setup message.
12. The method of claim 7, wherein the ATM address of the called party CPE is determined using the called party phone number value and a database.
13. The method of claim 7, wherein private address translation is performed on ATM addresses of the calling party.
14. The method of claim 7, wherein intercepting the input ATM setup message at the device side of the ingress ATM edge switch includes determining a port of the ingress ATM edge switch that received the input ATM setup message, and wherein the port is used in determining if private address translation is needed.
15. The method of claim 7, wherein generating an input ATM setup message at the calling party CPE includes storing the VToA designator in the called party address parameter and storing the called party phone number value in the called party subaddress parameter.
16. A method for providing an ATM data call with private address translation using an intelligent network and a switched virtual circuit over an ATM network, the method comprising:
receiving a request at a calling party CPE to make an ATM data call that includes an ATM address of a called party;
generating an input ATM setup message at the calling party CPE that includes the ATM address of the called party stored in a first parameter of the input ATM setup message;
receiving the input ATM setup message at a device side of an ingress ATM edge switch of the ATM network;
intercepting the input ATM setup message from the device side of the ingress ATM edge switch of the ATM network;
extracting information from the input ATM setup message that includes the ATM address of the called party;
determining if private address translation is needed;
designating the ATM address of the called party to be stored in a second parameter of the output ATM setup message;
designating an ATM address of an egress ATM edge switch to be stored in the first parameter of the output ATM setup message;
generating an output ATM setup message that includes the ATM address of the egress ATM edge switch stored in the first parameter, and the ATM address of the called party stored in the second parameter;
communicating the output ATM setup message to a network side of the ingress ATM edge switch of the ATM network;
receiving the output ATM setup message at a network side of the egress ATM edge switch;
intercepting the output ATM setup message from the network side of the egress ATM edge switch of the ATM network;
extracting egress information from the output ATM setup message that includes the ATM address of the called party;
designating the ATM address of the called party that was stored in the second parameter of the output ATM setup message to be stored in the first parameter of a
destination ATM setup message;
generating a destination ATM setup message that includes the ATM address of the called party stored in the first parameter;
communicating the destination ATM setup message to a device side of the egress ATM edge switch; and
communicating the destination ATM setup message to the called party CPE.
17. The method of claim 16, wherein the first parameter of the output ATM setup message is the called party number parameter and the second parameter of the output ATM setup message is the called party subaddress parameter.
18. The method of claim 17, wherein the first parameter of the destination ATM setup message is the called party number.
19. The method of claim 16, further comprising: processing the information to provide desired services before designating the ATM address of the called party to be stored in a second parameter of the output ATM setup message.
20. The method of claim 16, wherein private address translation is performed on ATM addresses of the calling party.
21. The method of claim 16, wherein intercepting the input ATM setup message at the device side of the ingress ATM edge switch includes determining a port of the ingress ATM edge switch that received the input ATM setup message, and wherein the port is used in determining if private address translation is needed.
22. The method of claim 16, wherein generating an input ATM setup message at the calling party CPE includes storing the ATM address of the called party value in the called party number parameter.

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 drilling tool with a basic body (32) having a central axis of rotation (24) and with a drill bit (34) connected releasably to the basic body (32), the drill bit (34) having a coupling part (96) which is couplable to an end-face coupling receptacle (94) of the basic body (32) and which has at least two convexly curved centering portions (40) which are arranged so as to be distributed over the circumference and which engage with an exact fit into concavely curved centering portions (42), complementary to said convexly curved centering portions, of the coupling receptacle (94), and the coupling part (96) having at least one complementary driver stop (46) meshing with a rotary driver (44) of the coupling receptacle (94), and the centering portions (40, 42) of the coupling part (96) andor of the coupling receptacle (94) having, up to the mutual abutment of the driver stop (46) and of the rotary driver (44), tension faces (48, 50) running toward one another in the manner of a rotary wedge opposite to a predetermined working direction of rotation, characterized in that the tension faces (48, 50) of the coupling part (96) form circle segments (40\u2032, 40\u2033) which lie diametrically opposite one another and are eccentric with respect to the axis of rotation (24) and with respect to one another, the concave centering portions (42) of the coupling receptacle (94) form in cross section part circles concentric with respect to the axis of rotation and having a predetermined radius (R1), and the convex centering portions (40) of the coupling part (96) have a part-circular guide portion (40\u2032) concentric with respect to the axis of rotation, with a radius (R1) corresponding to the receptacle-side radius (R1), and a part-circular tension portion (40\u2033) tangentially adjoining said guide portion and eccentric with respect to the axis of rotation, with a radius (R2\u2032, R2\u2033) larger than the receptacle-side radius (R1), the eccentric tension portions (40\u2033) of the coupling part (96) and the part-circular centering portions (42) of the coupling receptacle (94) bearing non-positively one against the other in their tension position.
2. The drilling tool as claimed in claim 1, characterized in that at least one of the centering portions (40, 42) facing one another is at least partially elastically deformable or bendable so as to form a non-positive connection.
3. The drilling tool as claimed in claim 1, characterized in that the coupling part (96) and the coupling receptacle (94) are rotatable with respect to one another in the manner of a bayonet fastening at their separation point (30).
4. The drilling tool as claimed in claim 1, characterized in that the tension faces (48, 50) form conical faces which face one another in pairs and form a cone with a cone axis concentric with respect to the axis of rotation (24).
5. The drilling tool as claimed in claim 4, characterized in that the coupling part (96) and the coupling receptacle (94) have planar face portions (52, 54) which face one another and, in a coupling position, are pressed one against the other under the action of the conical tension faces (48, 50) and are oriented essentially perpendicularly with respect to the axis of rotation.
6. The drilling tool as claimed in claim 5, characterized in that the conical tension faces (48, 50) form, in the tension position, a positive connection between the coupling receptacle (94) and the coupling part (96).
7. The drilling tool as claimed in claim 5, characterized in that the cone has an angle of 1\xb0 to 8\xb0.
8. The drilling tool as claimed in claim 5, characterized in that a coupling-part-side cone angle is steeper than a coupling-receptacle-side cone angle.
9. The drilling tool as claimed in claim 1, characterized in that the driver stops (46) and the rotary drivers (44) have in pairs an abutment slope (60) which in the coupling state forms a positive connection between the basic body and the drill bit.
10. The drilling tool as claimed in claim 9, characterized in that the angle of incidence of the abutment slope is 8\xb0 to 15\xb0.
11. The drilling tool as claimed in claim 9, characterized in that the abutment slope of the driver stop (46) of the drill bit (44) forms a planar or crowned face part (60\u2032) delimited by two marginal parts (60\u2033, 60\u2033\u2032) which lie opposite one another and of which one is concavely curved and the other is convexly curved, and which, forming an acute angle, merge directly or indirectly via a relief (62), in each case into a planar face portion (52, 53) perpendicular with respect to the axis of rotation (24) of the drill bit (34).
12. The drilling tool as claimed in claim 11, characterized in that the acute angles of the marginal parts (60\u2033, 60\u2033\u2032) are substantially identical and correspond to a right angle reduced by the angle of incidence of the abutment slope (60).
13. The drilling tool as claimed in claim 1, characterized in that the coupling part (96) and the coupling receptacle (94) have a preferably cylindrical, conical or crowned centering tenon (56) and a centering recess (58), complementary to this, as a precentering means.
14. The drilling tool as claimed in claim 1, characterized in that the drill bit (34) has two end-face cutting edges (16) arranged so as to be offset with respect to one another by about 180\xb0.
15. The drilling tool as claimed in claim 1, characterized in that the drill bit (34) and the basic body (32) have at least two chip-conveying grooves (22) which merge one into the other over the separation point (30).
16. The drilling tool as claimed in claim 15, characterized in that the chip-conveying grooves (22) are at least partially coiled along the basic body (32).
17. The drilling tool as claimed in claim 1, characterized in that the drill bit (34) consists of a harder material than the basic body (32).
18. The drilling tool as claimed in claim 17, characterized in that the drill bit (34) is formed as a pressing or casting from hard metal or ceramic material.
19. The drilling tool as claimed in claim 1, characterized in that the basic body (32) is hardened at least in the region of its functional faces designed as bearing or tension faces for the drill bit (34).
20. The drilling tool as claimed in claim 1, characterized in that at least two marginally open key engagement points (64) which are at an angular distance from one another in the circumferential direction are arranged in the region of the flanks or minor flanks (20\u2032, 20\u2033) of the drill bit (34).
21. The drilling tool as claimed in claim 20, characterized in that the key engagement points (64) are at an angular distance from one another of about 180\xb0.
22. The drilling tool as claimed in claim 20, characterized in that the key engagement points (64) have an axial marginal orifice.
23. The drilling tool as claimed in claim 20, characterized in that the key engagement points (64) have a radial marginal orifice.
24. The drilling tool as claimed in claim 20, characterized in that the key engagement points (64) have key abutment faces (68) which are oriented essentially parallel to the axis of rotation (24) and are delimited by an engagement bottom (66).
25. The drilling tool as claimed in claim 1, characterized in that the basic body (32) has at least two chip-conveying grooves (22) delimited on their flanks by ribs (26), and in that there is arranged in each of the ribs (26) of the basic body (32) a coolant duct which has, at the drill-bit-side end of the basic body, an outlet orifice (36) arranged within one of the chip-conveying grooves (22).
26. The drilling tool as claimed in claim 25, characterized in that at least one of the chip-conveying grooves (22) and at least one of the coolant ducts (28) are curved helically.