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Artikel 20 / 27
Artikeldetails
Impuls-Senderöhre GMI-14B
Art.Nr.: roe-send-0007
Impuls-Senderöhre GMI-14B, russisch ГМИ-14Б, Impulstriode
Impuls-Senderöhre GMI-14B
Riesige Senderöhre Typ GMI-14B, russische Bezeichnung ГМИ-14Б, original verpackt aus russischer Produktion.
Die Tetrode GMI-14B wird als Impulsstromschalter in der HF-Geräten verwendet.
Die Senderöhre Typ GMI14B, ГМИ-14Б, zur Erzeugung hochfrequenter Schwingungen.
Die Röhre Typ GMI-14B, ГМИ-14Б, ist aus militärischem Reservebestand und original verpackt.
* Design: Glas, Metall
* Kühlung: Luft
* Zylinder - Air mindestens 100 m3 / h
* Kathode: indirekt beheizt, Oxid-beschichtet
* Durchmesser höchstens 148 mm
* Masse: höchstens 2,8 kg
* Höhe: maximal 235 mm
* Datenblätter zur Senderöhre GMI-14B, ГМИ-14Б
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russische Senderöhre Typ GMI-14B, russische Bezeichnung ГМИ-14Б, Impulstriode
Riesige Senderöhre Typ GMI-14B, russische Bezeichnung ГМИ-14Б, original verpackt aus russischer Produktion.
Die Tetrode GMI-14B wird als Impulsstromschalter in der HF-Geräten verwendet.
Die Senderöhre Typ GMI14B, ГМИ-14Б, zur Erzeugung hochfrequenter Schwingungen.
Die Röhre Typ GMI-14B, ГМИ-14Б, ist aus militärischem Reservebestand und original verpackt.
* Design: Glas, Metall
* Kühlung: Luft
* Zylinder - Air mindestens 100 m3 / h
* Kathode: indirekt beheizt, Oxid-beschichtet
* Durchmesser höchstens 148 mm
* Masse: höchstens 2,8 kg
* Höhe: maximal 235 mm
downloads:
* Datenblätter zur Senderöhre GMI-14B, ГМИ-14Б
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technische Daten zur Senderöhre GMI-14B, ГМИ-14Б
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Name | GMI14B |
Type | tetrode |
Cathode type | oxide,indirect heating |
Application field | application in pulse modulators in special equipment |
Brief application | modulation |
Envelope | metall-glass |
Cooling method | air |
Dimensions | 235mmx145mm |
Mass | 2,8kg |
Pulse duration | 10us |
Output power | 600W |
Maximum anode voltage | 36kV |
OPERATING ENVIRONMENTAL CONDITIONS | |
Vibration loads: | |
frequencies, Hz | 1-200 |
acceleration, m/s² | 98 |
Multiple impact with acceleration, m/s² | 392 |
Ambient temperature, °C | -60 to +250 |
Relative humidity at +35 °C, % | 98 |
BASIC DATA Electrical Parameters |
|
Heater voltage (AC or DC), V | 26 |
Heater current, A | 1.5-1.7 |
Peak anode current (at anode voltage 3.5 kV, grid 2 voltage 2.15 kV, grid 1 bias voltage -0.9 kV, peak grid 1 excess voltage 350 V), A, at least | 130 |
Peak grid 2 current (at anode voltage 3.5 kV, grid 2 voltage 2.15 kV, grid 1 bias voltage -0.9kV, peak grid 1 excess voltage 350 V), A, at most | 15 |
Peak grid 1 current (at anode voltage 3.5 kV, grid 2 voltage 2.15 kV, grid 1 bias voltage - 0,9 kV, peak grid 1 excess voltage 350 V), A, at most | 22 |
Grid 1 inverse current, µA, at most | 350 |
Negative cutoff voltage (at anode voltage 36 kV, grid 2 voltage 2 kV, anode current 1.5 mA), absolute value, kV, at most | 1 |
Interelectrode capacitance, pF: | |
input, at most | 220 |
output, at most | 35 |
transfer, at most | 2 |
Limit Operating Values | |
Heater voltage (AC or DC), V | 23.5-28.5 |
Anode voltage (DC), kV | 36 |
Grid 2 voltage, kV | 2.15 |
Grid 1 bias voltage, kV | -1 |
Grid 1 excess voltage, V | 350 |
Dissipation, W: | |
anode | 600 |
grid 2 | 35 |
grid 1 | 6 |
Peak cathode current, A | 165 |
Maximum pulse duration, µs | 10 |
Minimum warm up time, s | 240 |
Minimum pulse 1/duty factor | 1,000 |
Bulb temperature, °C | 120 |
Artikel 20 / 27