(30)
Ring
Also written ring-winding · stationary ring-winding · rings
Where it is first named
With particular reference to FIG. 2 there is illustrated the winding ring 30 comprising a non-magnetic loop 32 having a conductive wire 35 wound thereon. The number of windings 35 on ring 30 is determined by the desired output at the ring-winding output—within practical limitations. It can be appreciated, the greater the number of turns the greater the induced output voltage at terminals 37.
How it is written
- (ring 30) 13×
- (ring-winding 30) 2×
- (rings 30) 1×
- (stationary ring-winding 30) 1×
Drawings 5
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Page 2 · Electrical Pulse Generator
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Page 8 · Electrical Pulse Generator
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Page 9 · Electrical Pulse Generator
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Page 10 · Electrical Pulse Generator
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Page 10 of the original patent document · Electrical Pulse Generator
Where it is named · 17
Electrical Pulse Generator 17×
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ring (ring 30)
With particular reference to FIG. 2 there is illustrated the winding ring 30 comprising a non-magnetic loop 32 having a conductive wire 35 wound thereon. The number of windings 35 on ring 30 is determined by the desired output at the ring-winding output—within practical limitations. It can be appreciated, the greater the number of turns the greater the induced output voltage at terminals 37.
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ring (ring 30)
With particular reference to FIG. 2 there is illustrated the winding ring 30 comprising a non-magnetic loop 32 having a conductive wire 35 wound thereon. The number of windings 35 on ring 30 is determined by the desired output at the ring-winding output—within practical limitations. It can be appreciated, the greater the number of turns the greater the induced output voltage at terminals 37.
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ring (ring 30)
With reference to FIG. 2A there is illustrated the winding ring 30 with more than one winding 35a xxx n thereon. The purpose of windings 35a xxx n as set forth below, is to provide isolated voltage sources for a like number of utilization devices.
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ring (ring 30)
… 3 is the winding ring 30 positioned in the gap between electromagnets 13a xxx and 15a@ xxx n. The winding ring 30 is supported by 'support 31 to the underside of rotating disc 44.
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ring (ring 30)
… The winding ring 30 is supported by 'support 31 to the underside of rotating disc 44.
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ring (ring 30)
… Considering now that disc 44 is rotating there will be a relative motion between the first and second series of magnets with the winding ring 30 and in consequence the winding ring 30 is traversing the series of magnetic fields 20a xxx n. …
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ring (ring 30)
… Considering now that disc 44 is rotating there will be a relative motion between the first and second series of magnets with the winding ring 30 and in consequence the winding ring 30 is traversing the series of magnetic fields 20a xxx n. …
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ring (ring 30)
… As the winding ring 30 passes through each of the magnetic fields there will be induced a voltage/current in each of the windings 35a xxx n thereon.
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ring (ring 30)
… Finally and perhaps most significantly, is the speed of rotation of the winding ring 30 via rotating disc 44, through the magnetic fields. …
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ring (ring 30)
… Since there is induced in winding 35 of ring 30 a voltage only as it passes through one of the magnetic fields, the output voltage at terminal 42 will be a pulsed direct current.
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ring-winding (ring-winding 30)
On the upper side of the rotating disc 44 there is fixed thereon a third 17a xxx n and fourth 19a xxx n are positioned on the rotating disc 44. Hence the output of the Stationary ring-winding 30 may be readily connected by simple wire 31 as the input to the stationary third 17a xxx m and fourth 19a xxx n series of electromagnets.
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ring (ring 30)
In the arrangement.of FIG. 3 the voltage induced in the ring 30 is not utilized via an output purpose. In this arrangement, the output voltage induced in first coil winding ring 30 is connected via terminal wire 31 to the input to energize the third and fourth series of electromagnets 17a xxx n and 19a xxx n.
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ring (ring 30)
In the arrangement.of FIG. 3 the voltage induced in the ring 30 is not utilized via an output purpose. In this arrangement, the output voltage induced in first coil winding ring 30 is connected via terminal wire 31 to the input to energize the third and fourth series of electromagnets 17a xxx n and 19a xxx n.
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ring-winding (ring-winding 30)
It must be appreciated that the ring-winding 30 and the third and fourth series of electromagnets 17a xxx n and 19a xxx n are positioned on the rotating disc 44. Hence the output of the stationary ring-winding 30 may be readily connected by simple wire 31 as the input to the stationary third 17a xxx n and fourth 19¢@ xxx n series of electromagnets.
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stationary ring-winding (stationary ring-winding 30)
It must be appreciated that the ring-winding 30 and the third and fourth series of electromagnets 17a xxx n and 19a xxx n are positioned on the rotating disc 44. Hence the output of the stationary ring-winding 30 may be readily connected by simple wire 31 as the input to the stationary third 17a xxx n and fourth 19¢@ xxx n series of electromagnets.
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ring (ring 30)
As aforesaid, there is wound on winding ring 30 and- /or winding ring 40, multiple windings each with its respective output terminals. In certain utilitarian applications there may be multiple devices each requiring its own energization isolated from the other devices. Again, the devices may be of a nature that infinite current would be drawn; hence, the need for current limiting.
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rings (rings 30)
In certain other instances, terminal 52 may comprise a more practical arrangement. That is, winding rings 30 and 40 may comprise a fixed number of windings for instance 15; and similarly terminal 52 will comprise 15 taps—one for each winding. Then depending on the application up to 15 voltage outputs may be utilized; or alternatively the series or parallel connections can be made at the taps 521 xxx 535.