1460744278-0fba8d0b-998c-465f-a4da-4f22fe1a8a08

1. A solid state multi-spectral light source comprising:
a plurality of light-emitting diodes,
wherein:
at least two of the light-emitting diodes produce two different colors, and
the light source is configured to produce at least two different color light bars that scroll through selective activation of like colored light-emitting diodes in dependence upon an image signal.
2. The light source according to claim 1, wherein the light-emitting diodes are arranged in groups, each group having at least two light-emitting diodes which produce the two different colors.
3. The light source according to claim 2, wherein the light-emitting diode groups each include three light-emitting diodes which produce three different colors.
4. The light source according to claim 1, wherein
the light-emitting diodes are defined on a wafer.
5. The light source according to claim 1, wherein
the light-emitting diodes are formed by a plurality of substrates disposed on a circuit board,
each of the light-emitting diodes corresponding to one of the plurality of substrates.
6. A multi-spectral light source system comprising:
a light valve; and
a solid state multi-spectral light source that scrolls different colored light bars onto the light valve to produce a color image, the light source including a plurality of light-emitting diodes, wherein at least two of the light-emitting diodes produce two different colors.
7. The light source system according to claim 6, wherein the light-emitting diodes of the light source are arranged in groups, each group having at least two light-emitting diodes which produce the two different colors.
8. The light source system according to claim 7, wherein the light emitting diode groups of the light source each include three light-emitting diodes which produce three different colors.
9. The light source system according to claim 7, wherein the light-emitting diode groups of the light source produce two different color light bars that scroll through selective actuation of like colored light-emitting diodes.
10. The light source system according to claim 6, wherein the light-emitting diodes of the light source are defined on a wafer.
11. The light source system according to claim 6, wherein the light-emitting diodes of the light source are defined by a plurality of substrates disposed on a circuit board, each of the light-emitting diodes corresponding to one of the plurality of substrates.

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 waterproof structure for zippers, comprising two tapes and two toothed bars, said two toothed bars respectively fixed at opposite inner side edges of said two tapes, said two tapes having one side surface applied with bonding glue, said bonding glue having its topside closely stuck with an electroplating membrane for preventing external water from seeping in said tapes.
2. The waterproof structure for zippers as claimed in claim 1, wherein said waterproof structure is formed by:
a first step of inputting material;
a second step of applying bonding glue, said bonding glue evenly applied to one side surface of said two tapes of a half-finished zipper by a roller unit;
a third step of gluing said electroplating membrane; said electroplating membrane closely stuck to a superficial layer of said bonding glue;
a fourth step of drying; said half-finished zipper with said bonding glue and said electroplating membrane on its surface conveyed to a roaster oven to be roasted and dried;
a fifth step of hot pressing and shaping, said bonding glue and said electroplating membrane on a surface of said tapes of said half-finished zipper pressed and closely bonded together by a hot-pressing device;
a sixth step of drying for a second time; said half-finished zipper, after pressed, conveyed to a roaster oven to be roasted and dried again;
a seventh step of keeping static for maturity; said half-finished zipper cooling off and then kept static to let said bonding glue of said half-finished zipper matured; and
an eighth step of moving-out of products.
3. The waterproof structure for zippers as claimed in claim 2, wherein a time of roasting carried out in said fourth step of drying is set according to an amount of said bonding glue and said electroplating membrane applied on said tapes.
4. The waterproof structure for zippers as claimed in claim 2, wherein a hot pressing temperature in said fifth step of hot pressing and shaping is 80\xb0 C. to 220\xb0 C.
5. The waterproof structure for zippers as claimed in claim 2, wherein an output pressure needed in said fifth step of hot pressing and shaping is 0.5 to 12 kgcm2.
6. The waterproof structure for zippers as claimed in claim 2, wherein a time of keeping static for maturity needed in said seventh step is above 6 hours.

1460744270-49b4496d-a18e-40cc-bf23-113a732ad95b

1. An apparatus for securing a device, the apparatus comprising:
a connector having walls defining an interior wherein the connector attaches to the device to provide electrical power to the device;
a controller connected to the device wherein the controller is within the interior of the connector and further wherein the controller is in communication with the device;
a sensor in communication with the controller wherein the sensor is within the interior of the connector;
an alarm in communication with the controller wherein the sensor communicates with the alarm via the controller; and
a pin sensed by the sensor wherein the sensor detects a position of the pin and activates the alarm in response to a change in the position of the pin.
2. The apparatus of claim 1 further comprising:
a light emitting diode in communication with the controller.
3. The apparatus of claim 1 further comprising:
a passage in the wall of the connector wherein the pin extends through the passage.
4. The apparatus of claim 1 further comprising:
a cable connecting the controller to the alarm.
5. A system for monitoring a device wherein the device is secured to a fixture, the system comprising:
a base having an interior;
a first controller attached to an alarm and a power source wherein the first controller communicates with the alarm and the power source;
an attaching means connecting the device to the first controller wherein the attaching means extends from the first controller through the base to the device wherein the attaching means provides electrical power from the power source to the device; and
a sensor detecting a condition between the attaching means and the device wherein the sensor activates the alarm via the first controller.
6. The system of claim 5 wherein the base is attached to the fixture.
7. The system of claim 5 wherein the attaching means is a cable.
8. The system of claim 5 further comprising:
a pulley in the interior of the base.
9. The system of claim 5 further comprising:
a second controller connecting the device to the first controller.
10. The system of claim 5 further comprising:
a pin detected by the sensor.
11. The system of claim 5 further comprising:
a monitor in communication with the device.
12. A method for monitoring a secured condition of a device wherein the device requires a voltage, the method comprising the steps of:
providing a first controller having an alarm and a power source wherein the power source provides the voltage to the device;
providing a second controller that communicates with the device wherein the second controller provides the voltage to the device from the power source and further wherein the first controller is remotely positioned from the second controller; and
activating the alarm wherein the second controller senses a breach of the secured condition and signals the first controller.
13. The method of claim 12 further comprising the step of:
providing an external sensor to communicate with the second controller.
14. The method of claim 12 further comprising the step of:
providing a monitor in communication with the device.
15. The method of claim 12 further comprising the step of:
programming the second controller with a voltage necessary to power the device.
16. The method of claim 12 further comprising the step of:
communicating the voltage required to operate the device from the device to the first controller via the second controller.
17. The method of claim 12 further comprising the step of:
indicating that the second controller is in communication with the first controller.
18. The method of claim 12 further comprising the step of:
transmitting a signal from the device to the first controller.
19. An apparatus for extending a cable wherein the cable has a continuous length defined between a first end and a second end opposite to the first end, the apparatus comprising:
a fixed end and a movable end wherein the fixed end is remotely positioned from the movable end wherein the first end of the cable is secured to the fixed end and further wherein the cable extends between the fixed end and the movable end; and
a pulley between the fixed end and the movable end wherein the pulley receives the cable and further wherein the pulley guides the second end of the cable outward with respect to the movable end wherein the pulley moves between the fixed end and the movable end.
20. The apparatus of claim 19 further comprising:
a roller between the pulley and the fixed end.
21. The apparatus of claim 19 wherein the second end of the cable extends from the movable end in a direction that is non-parallel to the cable.
22. The apparatus of claim 19 further comprising:
an arm attaching the pulley and the movable end.
23. The apparatus of claim 19 further comprising:
a passage in the fixed end.
24. A method for extending a cable wherein the cable has a length defined between a first end and a second end, the method comprising the steps of:
providing a base having an interior defined between a first end and a second end;
providing a pulley in the interior of the base; and
extending the cable from the interior of the base wherein the cable moves the pulley within the interior of the base between the first end and the second end of the base as the length of the cable extends exterior to the base.
25. The method of claim 24 further comprising the step of:
moving the pulley inward with respect to the second end of the base.
26. The method of claim 24 further comprising the step of:
pulling the second end of the cable inward with respect to the interior of the base.
27. The method of claim 24 further comprising the step of:
directing the cable through the interior of the base.
28. The method of claim 24 further comprising the step of:
attaching an arm between the pulley and the second end of the base.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

What is claimed is:

1. A compound of the formula:

215
or a pharmaceutically acceptable salt or solvate thereof, wherein:
a represents N or NO;
R1 and R3 are the same or different halo atom;
R2 and R4 are selected from H and halo, provided that at least one of R2 and R4 is H;
the dotted line (—) represents an optional bond;
X is N, C when the optional bond is present, or CH when the optional bond is absent;
T is a substituent selected from:

216
wherein:
A represents (CH2)b;
B represents (CH2)d;
b and d are independently selected from: 0, 1, 2, 3, or 4 such that the sum of b and d is 3 or 4; and
Y is selected from: O, S, SO, or SO2;

217
wherein:
D represents (CH2)e;
B represents (CH2)f;
e and f are independently selected from: 0, 1, 2, or 3 such that the sum of e and f is 2 or 3; and
Z is O;

218
wherein:
F represents (CH2)g;
G represents (CH2)h;
H represents (CH2)i;
h represents 1, 2, or 3
g and i are independently selected from: 0, 1 or 2 such that the sum of h, g and i is 2 or 3; and
V and W are independently selected from O, S, SO, or SO2;

219
wherein:
the dotted line (—) represents an optional bound;
k is 1 or 2 such that when the optional bond is present k represents 1, and when the optional double bond is absent then k represents 2;
R5, R6, R7 and R8 are the same alkyl (preferably methyl); or
R5 and R7 are the same alkyl (preferably methyl), and R6 and R8 are H;

220
wherein:
the dotted lines (—) represent optional bonds 1 and 2 such that optional bonds 1 and 2 are both present, or optional bonds 1 and 2 are both absent;
Y represents O, S, SO, or SO2;

221
wherein:
Y represents O, S, SO, or SO2;

222
wherein:
R9 is selected from: CN, CO2H, or C(O)N(R10)2;
each R10 is the same or diferent alkyl group (preferably, methyl);

223
wherein:
I represents (CH2)m;
m represents 2 or 3;
Y represents O, S, SO, or SO2; and
R11 represents alkyl;

224
2. The compound of claim 1 having the formula:

225
3. The compound of claim 1 wherein R1 is halo, R2 is H, R3 is halo, and R4 is H.
4. The compound of claim 3 wherein R1 is Br and R3 is Cl.
5. The compound of claim 4 wherein X is CH, a is N, and the C5-C6 double bond is absent.
6. The compound of claim 1 wherein R1 is halo, R2 is halo, R3 is halo, and R4 is H; or R1 is halo, R2 is H, R3 is halo, and R4 is halo.
7. The compound of claim 6 wherein X is CH or N.
8. The compound of claim 7 wherein X is CH.
9. The compound of claim 7 wherein a is N, and the C5-C6 double bond is absent.
10. The compound of claim 9 wherein R1 is Br, R2 is Br, R3 is Cl, and R4 is H; or R1 is Br, R2 is H, R3 is Cl, and R4 is Br.
11. The compound of claim 10 wherein X is CH.
12. The compound of claim 11 wherein R1 is Br, R2 is H, R3 is Cl, and R4 is Br.
13. The compound of claim 12 having the formula:

226
14. The compound of claim 13 wherein T is

227
15. The compound of claim 14 wherein T is

228
16. The compound of claim 1 having the formula:

229
wherein R12 is selected from:

230
15. The compound of claim 14 wherein R12 is

231
16. The compound of claim 1 selected from:

232
17. The compound of claim 1 having the formula:

233
18. A method of treating tumor cells expressing an activated ras oncogene comprising administering an effective amount of a compound of claim 1.
19. The method of claim 18 wherein the tumor cells treated are pancreatic tumor cells, lung cancer cells, myeloid leukemia tumor cells, thyroid follicular tumor cells, myelodysplastic tumor cells, epidermal carcinoma tumor cells, bladder carcinoma tumor cells, colon tumors cells, breast tumor cells and prostate tumor cells.
20. A method of treating tumor cells wherein the Ras protein is activated as a result of oncogenic mutation in genes other than the Ras gene, comprising administering an effective amount of a compound of claim 1.
21. A method of inhibiting farnesyl protein transferase comprising the administration of an effective amount of the compound of claim 1.
22. A pharmaceutical composition for inhibiting farnesyl protein transferase comprising an effective amount of compound of claim 1 in combination with a pharmaceutically acceptable carrier.