PL4971B1 - A discharge tube with a zarowa cathode and two or more additional electrodes placed on the common cylindrical surface, and a method of making such tubes. - Google Patents

A discharge tube with a zarowa cathode and two or more additional electrodes placed on the common cylindrical surface, and a method of making such tubes. Download PDF

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Publication number
PL4971B1
PL4971B1 PL4971A PL497125A PL4971B1 PL 4971 B1 PL4971 B1 PL 4971B1 PL 4971 A PL4971 A PL 4971A PL 497125 A PL497125 A PL 497125A PL 4971 B1 PL4971 B1 PL 4971B1
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PL
Poland
Prior art keywords
grid
cathode
tubes
cylindrical surface
zarowa
Prior art date
Application number
PL4971A
Other languages
Polish (pl)
Filing date
Publication date
Application filed filed Critical
Publication of PL4971B1 publication Critical patent/PL4971B1/en

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Description

Wynalazek niniejszy dotyczy rury wy- ladowawczej z katoda zarowa i dwiema lub wiecej elektrodami dodatkowemi, lezace- mi w tej samej powierzchni walcowej, i ma na celu ulatwienie dokladnego wyko¬ nywania podobnych przyrzadów. Wynala¬ zek obejmuje równiez sposób wyrobu po¬ dobnych rur.Rury wyladowawcze wedlug wyna¬ lazku niniejszego odrózniaja sie od rur znanych tern, ze siatka wzglednie siatki skladaja sie z pewnej ilosci pierscieni wzglednie grup pierscieni drucianych lub zwojów drutu, umieszczonych tuz kolo sie¬ bie i ze anoda, skoro miesci sie w tej sa¬ mej powierzchni walcowej, sklada sie rów¬ niez z polaczonych ze soba pierscieni lub zwojów drutu, umieszczonych pomiedzy wymienionemi czesciami siatki.Budowe nadzwyczaj prosta otrzymuje sie wówczas, jezeli druty, tworzace zarów¬ no anode, jak i siatke lub siatki, maja po¬ stac zwojów srubowych.Nowy sposób budowy wyróznia sie, w mysl wynalazku niniejszego, tern, ze pier¬ scienie czy zwoje, tworzace anode albo siatke wzglednie siatki, nawija sie na rdzen, który nastepnie usuwa sie, gdy czesci ano¬ dowe lub siatkowe zostana zamocowane zapomoca wsporników i utrzymywane w nalezytej odleglosci od siebie zapomoca odpowiednich laczników; wsporniki moga sluzyc do doprowadzania pradu.Jezeli anode i siatke wykonywa sie wpostaci zwojów srubowych, to w mysl Wy¬ nalazku mozna stosowac rdzen, zaopatrzo¬ ny na powierzchni zewnetrznej w zlobek srubowy wielozwojny, i rdzen ten, po nawi¬ nieciu i zamocowaniu anody i siatki, z cze¬ sci tych wykrecic.Na zalaczonym rysunku fig. 1 wyobra¬ za elektrode, wykonana w mysl wynalazku, a fig. 2 — rdzen do wyrobu tejze.Siatka nawija sie po linji srubowej z trzech ulozonych tuz obok siebie drutów /, 2, 3. W tej samej powierzchni walcowej nawija ^ie, pomiedzy zwojami ^siatki, w niewielkiej od nich odleglosci, drut 4 ano¬ dy. Druty siatki 1, 2, 3 umocowane sa kon¬ cami we wspornikach 5, 6, wlutowanych w splaszczone czesci nózki lampki (na rysun¬ ku pominiete), przyczem oba te wsporniki lub tylko jeden z nich sluza do doprowa¬ dzania pradu siatkowego. Drut anodowy 4 umocowany jest na wspornikach 7, 8, o których nalezaloby powiedziec to samo.Umocowana miedzy biegunami 10, 11 katoda zarowa 9 biegnie po osi rury, utwo¬ rzonej z drutów 1 — 4.Caly ten uklad wlutowuje sie w jaki¬ kolwiek sposób znany w pominieta na ry¬ sunku banke, wykonana calkowicie lub cze¬ sciowo ze szkla.Zaleca sie, aby skok sruby, a w przy¬ padku zastosowania pierscieni odleglosc pomiedzy osiami dwu sasiednich pierscieni jednomiennych nie przekraczaly srednicy walca.Przy wyrobie elektrod mozna poslugi¬ wac sie rdzeniem, przedstawionym na fig. 2. Rdzen ten w postaci ciala walcowego 12 najkorzystniej jest wykonac z tworzywa trudnotopliwego, np. wolframu, co pozwoli wyzarzac na nim anode i siatke. Na po¬ wierzchni zewnetrznej rdzenia wykonany jest waski zlobek srubowy 13 tudfciez po- dobnyz szerszy zlobek 14 tej samej glebo¬ kosci, co i tamten. Pomiedzy zlobkami te- uri pozostaja zeberka 15, 16, wyznaczajace odleglosc pomiedzy anoda i siatka. Na jed¬ nym koncu rdzen 12 przechodzi w cienszy graniastoslup kwadratowy 17, ulatwiajacy obracanie rdzenia. Druty siatkowe / — 3 i drut anodowy 4 mozna nawijac na r&ztn badz jednoczesnie; badz kolejno. Po umo¬ cowaniu ich zapomoca wsporników 5, 6 i 7, 8 w nózce lampki mozna je wyzarzyc, ? a nastepnie wysrubowac rdzen z walca, poczem zaklada sie drut katodowy 9.Rzecz prosta, ze anode, siatke, albo o- bie te czesci mozna wykonac z drutu pla¬ skiego (zamiast okraglego); w wypadku tym najpraktyczniej jest uzyc na siatke tasmy szerokiej, a na anode — wezszej.Wykonanie równiez prosie, jak poprzedi- nio.Poniewaz wspólczynnik wzmacniania rurki trójelektrodowej jest funkcja stosun¬ ku pojemnosci ukladu z wlókna zarowego i siatki do pojemnosci ukladu z wlókna za¬ rowego i anody, mozna przeto, dobierajac w sposób odpowiedni stosunek powierzch^ ni siatki do powierzchni anody, otrzymac wszelka (byle nie nadmierna) wartosc tego wspólczynnika. W wypadku, przedstawio¬ nym na rysunku, wspólczynnik wzmacnia¬ nia wynosi okolo 3. PL PL PL PL PL PL PL PL PL PL PL PL PLThe present invention relates to a discharge tube with a glow cathode and two or more additional electrodes lying in the same cylindrical surface, and is intended to facilitate the accurate manufacture of similar devices. The invention also includes a method for manufacturing similar tubes. The discharge tubes according to the present invention differ from known tubes in that the grid or grids consist of a number of rings or groups of wire rings or wire coils placed close together and that the anode, since it fits in the same cylindrical surface, also consists of interconnected rings or wire coils placed between the mentioned parts of the grid. An extremely simple structure is obtained if the wires forming both the anode and the grid or grids are in the form of helical coils. The new method of construction is distinguished, in accordance with the present invention, in that the rings or coils, forming the anode or grid or grids, are wound onto the core, which is then removed once the anode or grid parts have been fixed by means of supports and held at the appropriate distance from each other by means of suitable fasteners; the supports can be used to supply current. If the anode and the grid are made in the form of helical coils, then in accordance with the invention, a core can be used, provided with a multi-turn helical groove on its outer surface, and this core, after winding and fastening the anode and grid, can be unscrewed from these parts. The attached drawing, Fig. 1, shows an electrode made in accordance with the invention, and Fig. 2 - a core for producing it. The grid is wound in a helical line from three wires 1, 2, 3, arranged right next to each other. On the same cylindrical surface, between the grid coils, at a short distance from them, the anode wire 4 is wound. The grid wires 1, 2, 3 are fixed with their ends in supports 5, 6, soldered to the flattened parts of the lamp leg (omitted in the drawing), and both of these supports or only one of them serves to supply the grid current. The anode wire 4 is mounted on supports 7, 8, about which the same should be said. The cathode 9, mounted between poles 10, 11, runs along the axis of the tube formed by wires 1 — 4. This entire system is soldered in any known way to a bank omitted in the drawing, made entirely or partially of glass. It is recommended that the screw pitch and, in the case of rings used, the distance between the axes of two adjacent rings of the same value do not exceed the diameter of the cylinder. When manufacturing electrodes, the core shown in Fig. 2 can be used. This core in the form of a cylindrical body 12 is preferably made of a refractory material, e.g. tungsten, which will allow for annealing at anode and grid. On the outer surface of the core, a narrow helical slot 13 or a similar, wider slot 14 of the same depth as the former is made. Between the slots are ribs 15, 16, defining the distance between the anode and grid. At one end, the core 12 merges into a thinner square prism 17, facilitating core rotation. The grid wires 1-3 and the anode wire 4 can be wound on the wire either simultaneously or sequentially. After fastening them to the lamp leg using supports 5, 6 and 7, 8, they can be annealed, and then unscrew the core from the cylinder, after which the cathode wire 9 is mounted. It is simple: the anode, the grid, or both parts can be made of flat wire (instead of round); in this case, it is most practical to use a wide strip for the grid and a narrower one for the anode. The construction is also simple, as before. Since the amplification factor of the three-electrode tube is a function of the ratio of the capacitance of the filament and grid system to the capacitance of the filament and anode system, any (as long as not excessive) value of this factor can be obtained by appropriately selecting the ratio of the grid surface to the anode surface. In the case shown in the figure, the amplification factor is approximately 3. PL PL PL PL PL PL PL PL PL PL PL PL PL PL PL

Claims (1)

1.1.
PL4971A 1925-10-05 A discharge tube with a zarowa cathode and two or more additional electrodes placed on the common cylindrical surface, and a method of making such tubes. PL4971B1 (en)

Publications (1)

Publication Number Publication Date
PL4971B1 true PL4971B1 (en) 1926-07-31

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