US925060A - Vapor electric apparatus. - Google Patents
Vapor electric apparatus. Download PDFInfo
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- US925060A US925060A US34450006A US1906344500A US925060A US 925060 A US925060 A US 925060A US 34450006 A US34450006 A US 34450006A US 1906344500 A US1906344500 A US 1906344500A US 925060 A US925060 A US 925060A
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- electrodes
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- receptacle
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- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B41/00—Circuit arrangements or apparatus for igniting or operating discharge lamps
- H05B41/14—Circuit arrangements
- H05B41/36—Controlling
- H05B41/38—Controlling the intensity of light
- H05B41/39—Controlling the intensity of light continuously
- H05B41/392—Controlling the intensity of light continuously using semiconductor devices, e.g. thyristor
- H05B41/3921—Controlling the intensity of light continuously using semiconductor devices, e.g. thyristor with possibility of light intensity variations
- H05B41/3922—Controlling the intensity of light continuously using semiconductor devices, e.g. thyristor with possibility of light intensity variations and measurement of the incident light
Definitions
- My present invention relates to vapor electric apparatus and comprises more especially a device of this character arranged to operate as a receiver or wave-detector for w1relcss telegraph systems.
- the device which I thus employ to make evident the presence of electromagnetic waves is one in which the properties of a mercury or other va or are come into play.
- a highly evacuated receptacle of some light-transmitting material, as glass, having a plurality of electrodes.
- One of the electrodes is of mercury or other vaporizab le material and the other electrodes may or may not be of vaporizable material though, for convenience, I prefer that they should be of some solid, and therefore non-vaporizable, material.
- the receiver or detector proper consists of a highly exhausted glass receptacle 1 carried by a pivoted support 2. This support moves stifily upon its pivot, indicated in dotted lines at 8, and thus permits the position of inclination of the receiver to be adjusted at will.
- a mercury electrode 4 Within the receptacle are-three electrodes, one a mercury electrode 4, another a platinum wire 5 the lower end of which extends into very close proximity to electrode 4, and the third a cylindrical body of carbon or graphite 6. The distance between the platinum wire and the mercury electrode may be adjusted by turning the apparatus on its pivot 3. All of these electrodes are provided with suitable leading-in conductors by which connections may be made to the circuits of the apparatus.
- the platinum wire electrode 5 isconnectcd to one terminal of the secondary 7 of a stepup transformer, the other terminal of which is connected with the leading-in conductor of the mercury electrode 4.
- the primary 8 of this step up transformer has one terminal grounded as at 9 and the other connected to a lead 10 extending to the antennas or other mechanism for receiving the electromagnetic waves transmitted through space.
- the electrode 6 is connected with one terminal of a source of direct current 11, the
- the source of current 11, instead of being a direct current source may, if desired, produce alternating current, in which case the resistance 12 would not be necessary since the alternating current are will exist only long enough, after it is started, to complete the half wave during which it starts.
- a wave detector In a wave detector, the'combination of a source of current having an interposed arcing path, means for limiting the current be low that necessary for stability, and means operated by the waves to be detected for rendering said path conductive.
- a wave detector consisting of an exhausted receptacle provided with electrodes, a source of current connected with electrodes in said rece tacle, and means connected to one of said e ectrodes and controlled by electromagnetic waves for starting arcs or flashes in said receptacle due to energy supplied from said source.
- a wave detector for s ace telegraph systerns consisting of an ex iausted receptacle provided with electrodes, a connection between two of the electrodes and a source of direct current, and connections from one of said electrodes and another electrode to a device upon which the effect of the electromagnetic waves is impressed.
- a wave detector for space telegraph sys- -tems consisting of a sealed receptacle, .electrodes therein one at least of Whichis of vaporizable material, a source ofcurrent connected between the vaporizable electrode andanother electrode, an operative connection from the vaporizable electrode and a third electrode to the wave receiving conductor ,of the system, and means for securing a non-stable operation of the are produced by current from said source.
- a wave detector consisting of a sealed receptacle, and electrodes in said receptacle ing a potential across the space separating and means for transmitting said electrodes, the effect of electro-magnetic waves to sai receptacle to, eiiect an ionization at one of said electrodes.
- a wave detector comprising a sealed re ceptacle having an attenuated atmosphere, ananode within said receptacle, a cathode separated from said anode by a space, a local source of energy impressing a potential across said space, and means for transmitting oscillations to excite said cathode.
- a wave detector comprising a sealed receptacle having an attenuated atmosphere, an anode within said receptacle, a cathode separated froinsaid anode by a space, means for introducing high frequency oscillations into said reoeptacleto excite said cathode and a local source of energy initially impressing a potential across said space and operative to detect the presence of said high frequency oscillations.
- a wave detector comprising a sealed receptacle, electrodes therein separated by a highly attenuated medium, means for i1n-. pressing oscillations upon said medium to decrease the resistance between said electrodes, and a local source of electrical energy connected across said electrodes and .adjusted to give an unstable current flow.
- a wave detector comprising a sealed receptacle, a plurality of electrodes therein separated by a gapfon atleast of said electrodes being of vaporizable material, a local source impressing a potential strain across said ga to render it sensitive to electrizal oscillations, and means for introducing oscillations into said receptacle to vary the resistance of said gap.
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- Elimination Of Static Electricity (AREA)
Description
E. WEINTRAUB.
- VAPOR ELEGTRIG APPARATUS.
APPLICATION FILED DEC. 21, 1903. RENEWED NOV. 21, 1906.
Patented June 15, 1909.
\A/g'bnesses' inventor: Elzechiel Wei ntraub,
ares rarer-tr enrich.
EZECEIEL WEINTRAUB, OF SOHENEOTADY, NEW YORK, ASSIGNOR TO GENERAL ELECTRIC COMPANY, A CORPORATION OF NEW YORK.
.vnron nnnc'rnrc arranarfes.
Speciflcation of Letters Patent.
Patented June s, race.
Application filed. December 21, 1903, Serial No. 185,931. Renewed November 21, 1906. Serial No. 344,5130.
' To all whom it may concern:
Be it known that I EznoHInL WEINTRAUB, a subject of the Czar of Russia, residing at Schenectady, county of Schenectady, State of New York, have invented certain new and useful Tm rovements in Vapor Electric Apparatus, 0 which the following isa specification. 1
My present invention relates to vapor electric apparatus and comprises more especially a device of this character arranged to operate as a receiver or wave-detector for w1relcss telegraph systems. The device which I thus employ to make evident the presence of electromagnetic waves is one in which the properties of a mercury or other va or are come into play. To this end l emp ioy a highly evacuated receptacle, of some light-transmitting material, as glass, having a plurality of electrodes. One of the electrodes is of mercury or other vaporizab le material and the other electrodes may or may not be of vaporizable material though, for convenience, I prefer that they should be of some solid, and therefore non-vaporizable, material. Between the mercury electrode and one of the companion electrodes I cause a spark to pass due to the influence of the electro-magnetic wave the presence of which is to be detected. This spark is ordinarily so small as to be practically invisible except upon the closest possible scrutiny. I therefore connect between the mercury electrode and one of the other electrodes a source of direct current of suitable voltage, which source causes an arc to pass between the electrodes to which it is connected, whenever'an are or spark is produced as the result of the electro-magnetic wave. This are produces a bright flash with in the glass receptacle and serves as a visual signal.
The novel features which characterize my invention I have endeavored to point out with particularity in the appended claims. The invention itself however will be best understood, both as to its details of construction and mode of operation, by reference to the following description taken in connection with the accompanying drawing which represents, in a lar ely diagrammatic manner, one mode of em odyi'ng my invention.
The receiver or detector proper consists of a highly exhausted glass receptacle 1 carried by a pivoted support 2. This support moves stifily upon its pivot, indicated in dotted lines at 8, and thus permits the position of inclination of the receiver to be adjusted at will. Within the receptacle are-three electrodes, one a mercury electrode 4, another a platinum wire 5 the lower end of which extends into very close proximity to electrode 4, and the third a cylindrical body of carbon or graphite 6. The distance between the platinum wire and the mercury electrode may be adjusted by turning the apparatus on its pivot 3. All of these electrodes are provided with suitable leading-in conductors by which connections may be made to the circuits of the apparatus.
The platinum wire electrode 5 isconnectcd to one terminal of the secondary 7 of a stepup transformer, the other terminal of which is connected with the leading-in conductor of the mercury electrode 4. The primary 8 of this step up transformer has one terminal grounded as at 9 and the other connected to a lead 10 extending to the antennas or other mechanism for receiving the electromagnetic waves transmitted through space.
The electrode 6 is connected with one terminal of a source of direct current 11, the
other terminal ofwhich makes connection with the mercury electrode 4.. In series with this direct current source is a resistance 12.
When now an electro-magnetic wave causes allow of current through the primary 8, the effect of this. current is transmitted to the seconda 7 by means of which a greatly magnified v0 tage-is impressed upon the electrodes 4. and 5. These electrodes areclose enough together so that the effect of even. a very small current in the primary 8 is Suficient to cause a smallspark to jump from the electrode 5- to the electrode This spark produces aslight ionization of the mercury surface 4 thereby rendering the space between the electrodes 6 and 4 suiiiciently conducting to enable an arc to be produced by current from the source 11. This arc, being produced by current from a source of ample power, renders luminous the space between the electrodes through which it acts, and; so serves with great clea'rness as a signal. Ordinarily when such anarc is started it continues indefinitely andto prevent this I provide the resistance 12, which is of such mag nitude as to reduce the current value below the point at which an arc can be maintained with stability by the source 11. Almost as soon, therefore, as the arc is started it goes the platinum wire and the mercury 4..
out, and starts again only when another magnetic wave produces a starting spark betweien nstead of the resistance I may of course use a circuit interrupter actuated by the current from the source 11.
u The source of current 11, instead of being a direct current source may, if desired, produce alternating current, in which case the resistance 12 would not be necessary since the alternating current are will exist only long enough, after it is started, to complete the half wave during which it starts.
My invention in.certain oi its aspects is not limited to wireless telegraphy but covers broadly the starting of a vaporarc by the influence of energy transmitted through space without the use of wires or similar conductors. I therefore do not wish my claims to be limited to the details shown and described.
What I claim as new and desire to secure by Letters Patent of the United States,is, 1. The combination of a vapor electric lamp having a vap'orizable cathode, a receiving circuit for electro-magnetic waves, and
means controlled by said electro-magnetic waves for starting said lamp.
2. In a wave detector, the'combination of a source of current having an interposed arcing path, means for limiting the current be low that necessary for stability, and means operated by the waves to be detected for rendering said path conductive.
3. A wave detector consisting of an exhausted receptacle provided with electrodes, a source of current connected with electrodes in said rece tacle, and means connected to one of said e ectrodes and controlled by electromagnetic waves for starting arcs or flashes in said receptacle due to energy supplied from said source.
4. A wave detector for s ace telegraph systerns consisting of an ex iausted receptacle provided with electrodes, a connection between two of the electrodes and a source of direct current, and connections from one of said electrodes and another electrode to a device upon which the effect of the electromagnetic waves is impressed.
5. A wave detector for space telegraph sys- -tems, consisting of a sealed receptacle, .electrodes therein one at least of Whichis of vaporizable material, a source ofcurrent connected between the vaporizable electrode andanother electrode, an operative connection from the vaporizable electrode and a third electrode to the wave receiving conductor ,of the system, and means for securing a non-stable operation of the are produced by current from said source.
6. A wave detector consisting of a sealed receptacle, and electrodes in said receptacle ing a potential across the space separating and means for transmitting said electrodes, the effect of electro-magnetic waves to sai receptacle to, eiiect an ionization at one of said electrodes.
8. A wave detectorconsisting of a sealed loca source of current connected to said electrodes and impressing a potential therebetween, and meanslor transmitting oscillations to excite one of said electrodes.
9. A wave detector comprising a sealed re ceptacle having an attenuated atmosphere, ananode within said receptacle, a cathode separated from said anode by a space, a local source of energy impressing a potential across said space, and means for transmitting oscillations to excite said cathode.
10. A wave detector comprising a sealed receptacle having an attenuated atmosphere, an anode within said receptacle, a cathode separated froinsaid anode by a space, means for introducing high frequency oscillations into said reoeptacleto excite said cathode and a local source of energy initially impressing a potential across said space and operative to detect the presence of said high frequency oscillations.
11. A wave detector comprising a sealed receptacle, electrodes therein separated by a highly attenuated medium, means for i1n-. pressing oscillations upon said medium to decrease the resistance between said electrodes, and a local source of electrical energy connected across said electrodes and .adjusted to give an unstable current flow.
12. A wave detector comprising a sealed receptacle, a plurality of electrodes therein separated by a gapfon atleast of said electrodes being of vaporizable material, a local source impressing a potential strain across said ga to render it sensitive to electrizal oscillations, and means for introducing oscillations into said receptacle to vary the resistance of said gap.
In witness whereof, I have hereunto set my hand this 18th day of December, 1903. EZEOHIEL WEINTRAUB. Witnesses:
BENJAMIN B. HULL, HELEN ORFORD.
receptacle, electrodes therein spaced apart, a
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US34450006A US925060A (en) | 1906-11-21 | 1906-11-21 | Vapor electric apparatus. |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US34450006A US925060A (en) | 1906-11-21 | 1906-11-21 | Vapor electric apparatus. |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US925060A true US925060A (en) | 1909-06-15 |
Family
ID=2993489
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US34450006A Expired - Lifetime US925060A (en) | 1906-11-21 | 1906-11-21 | Vapor electric apparatus. |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US925060A (en) |
-
1906
- 1906-11-21 US US34450006A patent/US925060A/en not_active Expired - Lifetime
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