This technology demonstration offers a innovative method for visualizing multi-dimensional data on a half-sphere (full-dome) Geoscope. The intent is to realize the Geoscope vision of R. Buckminster Fuller as stated in his Critical Path, "With the Geoscope humanity would be able to recognize formerly invisible patterns and thereby to forecast and plan in vastly greater magnitude than heretofore."
for more information you can watch the video:
http://www.youtube.com/watch?v=neeC23RW1B0
Showing posts with label Tool. Show all posts
Showing posts with label Tool. Show all posts
Sunday, November 28, 2010
Sunday, October 31, 2010
Full and Empty within seconds
by who?
In which way?
Which type do you prefere? Round or Flat?
A syringe is a simple piston pump consisting of a plunger that fits tightly in a tube. The plunger can be pulled and pushed along inside a cylindrical tube (the barrel), allowing the syringe to take in and expel a liquid or gas through an orifice at the open end of the tube. The open end of the syringe may be fitted with a hypodermic needle, a nozzle, or tubing to help direct the flow into and out of the barrel. Syringes are often used to administer injections, insert intravenous drugs into the bloodstream, apply compounds such as glue or lubricant, and measure liquids.
The word "syringe" is derived from the Greek συριγξ syrinx = "tube" via back-formation of a new singular from its Greek-type plural "syringes" (συριγγες syringes)
Full of Hot, Full of Red
A thermometer (from the Greek θερμός (thermo) meaning "warm" and meter, "to measure") is a device that measures temperature or temperature gradient using a variety of different principles. A thermometer has two important elements: the temperature sensor (e.g. the bulb on a mercury thermometer) in which some physical change occurs with temperature, plus some means of converting this physical change into a value (e.g. the scale on a mercury thermometer). Thermometers increasingly use electronic means to provide a digital display or input to a computer.
http://en.wikipedia.org/wiki/Thermometer
Thursday, October 28, 2010
Level meter (new)
LEVEL METER
Document Type and Number:
A level meter for measuring the fill level of a medium in a vessel, includes a reference container that can be connected to the vessel in a manner whereby the level in the reference container is identical to that in the vessel. The reference container is provided with an adapter unit for a microwave level meter operating by the radar principle which adapter unit encompasses an injection device for coupling-in a microwave signal. This constitutes a low-cost solution for connecting a microwave level meter to a reference container, ensuring optimized signal injection.
Level meter (old)
For the item of Patent we found 381970 different patent in the subject of Level meter and we chose two of them. One older and a new one.
first, old one :
United States Patent 4389888
first, old one :
United States Patent 4389888
Abstract:
According to a level meter of this invention, a pressure corresponding to a fixed water level formed by means of a reference chamber and a vertical pipe is applied to one pressure inlet port of a differential pressure detector, and a pressure corresponding to a water surface or water level inside a container to be measured is applied to the other pressure inlet port of the differential pressure detector by means of a lower pipe. Then, the water level inside the container is measured through the difference between these two pressures, the density of water to generate the pressures to be applied to the differential pressure detector, and the density of steam inside the container and the reference chamber. Adiabatic jackets are attached to the peripheries of the vertical pipe and the lower pipe
Sunday, October 24, 2010
Filling Machine
United States Patent US2285627
Inline Bottle Filler 
The inline bottle filler is typical of a motion control application generally referred to as a flying shear. This application is common to several industries such as filling, cutting, punching, stamping, forming, labeling, and printing. Flying shear applications require work to be performed on a material while the material is in motion. A flying shear control must accelerate from a stop to match the speed of the moving material at a specific position, and then maintain synchronization of both position and velocity while the work is performed. After the operation is completed, the tool decelerates to a stop and returns to the start or home position. When the correct point on the moving material approaches, the process is repeated. The motion of the flying shear occurs within a fixed distance which cannot be exceeded, so the control must accelerate, track the material while the operation is performed, and decelerate within this distance at the maximum machine throughput.
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