Claims
- 1. An environmentally sealed modular computing platform comprising
(a) a control means for executing instructions wherein said instructions direct the operation of said computing platform, (b) an end-fitting means for joining modules mechanically and electrically with said control means, (c) a power supply means, said power supply means comprising a source of electrical energy for use by said platform electronics, (d) a bus, and (e) at least one electronics enclosure module enclosing said bus.
- 2. The computing platform of claim 1 wherein said computing platform further comprises said at least one electronics enclosure module further comprising connection means for connecting said at least one electronics enclosure module electrically.
- 3. The computing platform of claim 1 wherein said computing platform further comprises said at least one electronics enclosure module further comprising connection means for connecting said at least one electronics enclosure module mechanically.
- 4. The computing platform of claim 1 wherein said computing platform comprises integral end fittings in said at least one electronics enclosure module for connecting said modules together electrically and mechanically.
- 5. The computing platform of claim 1 wherein said at least one electronics enclosure module is of a cylindrical shape.
- 6. The computing platform of claim 1 where said end fitting means further comprises an O ring.
- 7. The computing platform of claim 1 wherein said computing platform further comprises a mass storage disk drive module.
- 8. A modular weather resistant computer platform comprising
(a) a data processing means wherein computer instructions are executed, (b) a data storage means for storage of a control program and data, and (c) a digital communication circuit passing from said computing platform to at least one residence of a person, (d) wherein said communication circuit carries digital information to said at least one residence and from said at least one residence, and (e) wherein said person may pass communications signals by passing said communications signals through said communications circuit to communicate with said computing platform.
- 9. The modular weather resistant computer of claim 8 wherein said communications circuit to at least one residence is a coaxial cable.
- 10. The modular weather resistant computer of claim 8 wherein said communications circuit communicating to at least one residence is at least two twisted wires.
- 11. The modular weather resistant computer of claim 8 wherein said communications circuit communicating to at least one residence is a fiber optic communications means.
- 12. A modular sensor computing platform comprising
(a) a cylindrical electronic enclosure module comprising an end fitting for mechanically and electrically connecting said enclosure module with another enclosure module comprising at least one end fitting, each end fitting of each module comprising electrical contacts for electrically connecting the modules, (b) thereby comprising a configuration means for selectively assembling said modular sensor computing platform wherein operation of said modules fitted together comprise a modular sensor computing platform.
- 13. A circular circuit board comprising at least one communication signal connection means on perimeter of said circular circuit board, said signal connection means extending circumferentially beyond the outer edge of said circular circuit board.
- 14. The circuit board of claim 13 wherein said circuit board comprises a circular voided opening at the center of said circuit board for receiving a support post.
- 15. The circuit board of claim 14 wherein said circular voided opening further comprises signal connection means on the circumference of said circular voided opening at said center of said circular circuit board.
- 16. A vertically mounted mother board comprising connection means on a front surface and connection means on a rear surface wherein ancillary circuit boards may be connected at said connection means on said front surface and said rear surface.
- 17. An enclosure means comprising support means for maintaining the vertically mounted mother board of claim 16 in a vertical position when installed in said enclosure means.
- 18. The vertical mounted mother board of claim 16 further comprising a connection means at the bottom of said vertical mounted mother board.
- 19. The vertical mounted circuit board of claim 16 further comprising a connection means at the top of said vertical mounted mother board.
- 20. A cylindrical circuit board enclosure comprising bus traces along a length of interior wall of said enclosure to carry communications signals between circular circuit boards mounted within said cylindrical circuit board enclosure wherein said circuit boards comprise signal communications contact points that are in communication with said bus traces.
- 21. The cylindrical circuit board enclosure of claim 20 wherein said bus traces are metallic electrical transmission means.
- 22. The cylindrical circuit board enclosure of claim 20 wherein said bus traces are a light carrying transmission means.
- 23. A modular sensor platform terminating module comprising
an optical sensor wherein data from said optical sensor is delivered to a guidance module computer means after said platform is released from an airship and during descent of said modular sensor platform said guidance module computer means communicates to a guidance means module wherein said guidance means module comprising an actuator means wherein said actuator means actuates an airfoil means to modify and correct a flight path of said modular sensor platform.
- 24. A computing platform comprising a parabolic air brake means for reducing speed of descent when falling through the atmosphere from an altitude, comprising a controller means, and an actuator means wherein said actuator means is actuated by said controlling means to modify positions of said parabolic air brake means, and when said computing platform has landed on earth said controller means actuates said actuator means to position said parabolic air brake means to an operating position appropriate for use as an antenna.
- 25. In combination
(a) a utility pole providing support for utility lines and services (b) a computer supported on said utility pole wherein said computer provides utility computer services to a plurality of users.
- 26. A method of manufacturing circuit assemblies comprising flexible circuitry wrapped around circular circuit boards wherein
(a) said flexible circuitry wraps onto said circular circuit boards wherein said circular circuit boards are rotated to heated rollers (b) and said heated rollers heat solder joints between said flexible circuitry and said circular circuit boards whereby (c) said flexible circuitry is joined to circuits on said circular circuit boards.
- 27. The method of claim 26 where said circular circuit boards further comprise at least one tooth on perimeter of said circular circuit boards and said one tooth penetrates into a void within said flexible circuitry and rotational energy of said circular circuit board is transferred to said flexible circuitry to pull said flexible circuitry onto circular circuit boards rotating within said heated rollers.
- 28. The method of manufacturing of claim 26 wherein said circular boards comprise a hole at the center of said circuit boards said hole further comprising a key opening to align circular circuit boards with a keyed shaft which passes through said circular circuit boards wherein said keyed shaft imparts rotational energy to circular circuit boards fitted onto said keyed shaft as said keyed shaft is turned.
- 29. The modular weather resistant computer of claim 8 wherein the enclosure for said computer is cylindrical.
- 30. The modular weather resistant computer of claim 8 further comprising an end-fitting.
- 31. A modular sensor computing platform comprising a cylindrical electronic enclosure module comprising raised threads on the enclosure exterior for mounting, and an end fitting for connecting said enclosure module with another enclosure module comprising at least one end fitting, wherein operation of said modules fitted together comprises a modular sensor computing platform.
- 32. A sensor and computer communications system comprising at least one slave of a set of possible slaves wherein said at least one slave monitors events and will activate a radio frequency communication link to contact an associated parent device, said parent device operating as a master in a communications protocol with said slave wherein said slave is requesting at least one service from said master.
- 33. The sensor and communications system of claim 32 wherein the at least one of a set of services is a request to said parent device requesting assistance to transport a data signal to a network not available to said slave.
- 34. The sensor and communications system of claim 32 wherein the at least one of a set of services is a request for said parent device to provide updated software for a slave computer program.
- 35. The sensor and communications system of claim 32 wherein the at least one of a set of services is a request for said parent device to provide a direct connection between said slave and a remote storage server.
- 36. The sensor and communications system of claim 32 wherein the at least one of a set of services is a request for said parent device to download any stored information addressed to said slave.
- 37. The sensor and communications system of claim 32 wherein the at least one of a set of services is a request for said parent device to provide a list of capabilities available from said parent device to which said slave may have access.
- 38. An environmentally sealed communications access server comprising a server which is environmentally sealed and which promiscuously accepts transmissions from known and unknown wireless computing platforms that are soliciting services, wherein solicitations are acknowledged by said access server and said server provides at least one service.
- 39. The server of claim 38 wherein said at least one service is to accept said wireless computing platforms default protocol and provide a protocol bridge to enable said wireless computing platform to interact with networks that will not operate with said wireless computing platforms default protocol.
- 40. The server of claim 39 wherein said at least one service is a connection to high speed Internet resources.
- 41. The server of claim 39 wherein said at least one service is an interactive spread sheet application program.
- 42. The server of claim 39 wherein said at least one service is an interactive word processing application program.
- 43. The server of claim 39 wherein said at least one service is an Interactive Internet browser.
- 44. The server of claim 39 wherein said at least one service is a connection to a digital radio source.
- 45. The server of claim 39 wherein said at least one service is a connection to a CODEC coder/decoder to interface an analog telephone.
- 46. The server of claim 39 wherein said at least one service is to activate an alarm monitoring software program.
- 47. The server of claim 39 wherein said at least one service is to connect with a video entertainment stream.
- 48. The server of claim 39 wherein said at least one service is a list of available services.
- 49. The server of claim 39 wherein said at least one service is a connection to a cellular telephone network.
- 50. The server of claim 39 wherein said at least one service is a connection to a personal communications network.
- 51. The server of claim 39 wherein said at least one service is to be added to a local area network as peer.
- 52. The server of claim 39 wherein said at least one service is to download software.
- 53. The server of claim 39 wherein said at least one service is to request a stronger wireless signal.
- 54. A modular computer architecture comprising a distributed architecture, said architecture comprising scalable weather resistant computer platforms interconnected to operate as a digital grid connecting multiple processors and peripheral nodes within a neighborhood of user residences and office buildings.
- 55. The architecture of claim 54 wherein said digital grid executes a Beowolf multi-processor operating system transforming said digital grid into a supercomputer capacity utility connected to users to provide digital services to residential digital devices and whereby upgraded capacity can be obtained by installing more servers on said digital grid.
- 56. The architecture of claim 54 comprising wireless high speed access points to provide convenient locations throughout said neighborhood where high speed wireless service is available from said communications servers.
- 57. The architecture of claim 54 wherein residential computing capacity is installed to interface residential digital services with neighborhood digital servers.
- 58. The architecture of claim 54 wherein said architecture is connected using media types selected from the group consisting of fiber optics, infrared signaling, coaxial cable, twisted pair, wireless, and lasers.
- 59. The architecture of claim 54 wherein said scalable platforms are structured to meet mission specific functionality by configuring modules on platforms to apply resources required as needed.
- 60. The scalable platforms of claim 59 wherein said mission specific functionality is a data storage platform.
- 61. The scalable platforms of claim 59 where said mission specific functionality is a multi-processor platform.
- 62. The scalable platforms of claim 59 where said mission specific functionality is a wireless access platform.
- 63. The scalable platforms of claim 59 where said mission specific functionality is an external networks communications interface server providing protocol conversion and connections to networks and resources external to said grid.
- 64. A stack of circular circuit boards wherein each of said boards comprises a center circular void wherein said stack provides a center passage in said stack.
- 65. The stack of circular circuit boards of claim 64 further comprising a hollow post passing through said center passage for adding support to said stack of said boards.
- 66. The stack of circular circuit boards of claim 64 further comprising lenses configured for optical focusing of light onto sensors.
- 67. The stack of circular circuit boards of claim 64 further comprising a hollow support post with signal transfer bus tracks to connect circuitry on said circuit boards wherein said circuit boards are in contact via signal contacts on a periphery of said center circular void.
- 68. The stack of circular circuit boards of claim 67 wherein said signal transfer tracks are comprised of superconducting material and liquid nitrogen is circulated through said hollow support post for cooling said tracks to superconducting temperatures.
- 69. The stack of circular circuit boards of claim 64 further comprising a telescoping antenna within said center passage.
- 70. The stack of circular circuit boards of claim 64 further comprising a laser beam operation space in said passage.
- 71. A circular integrated circuit die comprising a center hole for accepting a robot grip said grip comprising a penetrating post configured to grasp said die.
- 72. A circular integrated circuit passage comprising a center hole wherein said center hole can accept a post, said post comprising signal tracks that are in communications with integrated circuit contacts arranged around a periphery of said center hole.
- 73. A computer architecture comprising a core computer in a cylindrical enclosure, said core computer comprising transparent light-ports in said enclosure for projecting light signals into and out of said core computer for communication.
- 74. The computer of claim 73 inserted into a cylindrical void in an associated computer, said associated computer also comprising transparent light ports wherein said transparent light-ports become aligned with transparent light-ports of said core computer for passing signals between said core computer and said associated computer.
- 75. The computer of claim 73 wherein said cylindrical void is comprised in an associated computer that is also a cylindrical computer and said cylindrical void is in the center of said associated cylindrical computer, said associated cylindrical computer also having transparent light ports in its enclosure that come into alignment for communication when installed.
- 76. A sensor platform operating under water comprising a water resistant sensor platform having a radio frequency transmission line extending from said sensor out of said water onto dry land and terminating at an antenna, wherein said sensor sends radio frequency messages to receivers over said transmission line.
- 77. The sensor of claim 76 further comprising a power generator for developing electrical power, wherein said power generator is driven by torque from a propeller, said propeller being rotated by water current.
- 78. A sensing and computing platform comprising a user interface module, said interface module comprising a keyboard and a display, and a curser control device for selecting screen icons.
- 79. The sensing and computing platform of claim 78 also comprising a GPS module for navigation.
- 80. The sensing and computing platform of claim 78 also comprising a spring driven power generator module wherein user twisting of a spring stores energy and said stored energy drives a small power generator.
- 81. The sensing and computing platform of claim 78 comprising cylindrical openings to insert memory inserts, wherein the memory inserts contain mission related information.
- 82. The sensing and computing platform of claim 78 also comprising a communications encryption module for protecting data during operation.
- 83. The sensing and computing platform of claim 78 further comprising a command and control module configured to interface with deployed sensors and sensor parent communications servers.
- 84. A cylindrical computing and communications platform comprising a digital camera and a digital memory and a Radio Frequency transceiver and a communications controller and a light bulb and a button and a switch and a battery functioning together to provide a flashlight that will take a picture by activating said digital camera when said button is depressed and will store said picture in said memory and will transport said picture stored in said memory to a remote receiver by activating said transceiver and can function in the dark when said light bulb is lighted by closing said switch and said light bulb is illuminating the subject of said picture.
- 85. The cylindrical computing and communications platform of claim 84 comprising additional light bulbs for brighter illumination of subject.
- 86. The cylindrical computing and communications platform of claim 84 further comprising another switch to initiate storage of pictures without transmitting them to said receiver.
- 87. The cylindrical computing and communications platform of claim 84 also comprising an LCD that can provide information to a user operating said platform.
- 88. The cylindrical computing and communications platform of claim 84 further comprising a reflector to project light from said light-bulbs toward the direction that the camera is pointed.
- 89. The cylindrical computing and communications platform of claim 84 additionally comprising a lens over said light bulbs and said camera lens, said lens being enclosed in a retainer mounted upon threads whereby twisting said retainer will adjust a focal distance of said lens and camera.
- 90. A stack of circular circuit boards, said boards comprising protruding contacts on the perimeter of said boards, said stack being wrapped with a flexible circuit board comprising precise openings that are aligned to provide a point where said protruding contacts pass through said openings and make electrical contact between the said circular circuit boards protruding contacts and electrical contacts on said flexible circuit board and thereby provide electrical connectivity among said stack of circular circuit boards.
- 91. The stack of circular circuit boards of claim 90 wherein said flexible circuit boards comprise mounted electronic components.
- 92. A stack of hex-shaped circuit boards comprising hex-shaped circuit boards wherein contacts protrude from the perimeter of said boards and said stack is wrapped with a combination of flexible joints and rigid circuit boards whereby a wrapper is provided for the hex shaped circuit board wherein said hex circuit boards flat rigid parts of said wrapper rest on a flat part of said hex boards and said flex joints are comprised to allow the rigid portion of the wrapper to fold around a corner of said hex board, and aligned contacts protruding from said hex boards penetrate openings in said wrapper and join circuitry from said rigid boards on the wrapper with said hex shaped wrapper.
- 93 Computer bus track comprising a flat ribbon of transparent material terminated on both ends with a light absorbent material to reduce reflections, and a surface coating of reflective material on said flat ribbon's non-connector side to enhance reflections, said ribbon comprising v-shaped notches along the ribbon length, said v-shaped notches being in place to mate with v-shaped probes made of transparent material fitted into said notches to absorb light signals traveling on said bus and also to project light signals onto said bus.
- 94. A video camera comprising an audio trigger to initiate at least one photograph exposure in response to an audible threshold occurring in the area of the video camera mount point.
- 95. A camera as claimed in claim 94 wherein the audible threshold is achieved by a gunshot.
- 96. A camera as claimed in claim 94 wherein the audible threshold is achieved by a vehicle collision.
- 97. A camera as claimed in claim 94 wherein said camera additionally comprises a micro-controller and a radio frequency transceiver.
- 98. A weather resistant communications and computing platform comprising a video camera which is remotely controlled over a network by a user, and said video camera is enclosed in a transparent enclosure module.
RELATED APPLICATION
[0001] This is a Continuation-In-Part of application Ser. No. 08/997,188, filed Dec. 16, 1997, for MODULAR ARCHITECTURE SENSING AND COMPUTING PLATFORM. The entire disclosure of prior application Ser. No. 08/977,188, filed Dec. 16, 1997, is considered to be part of the disclosure of this application and is hereby incorporated by reference herein in its entirety.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
08997188 |
Dec 1997 |
US |
Child |
10165951 |
Jun 2002 |
US |