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Artikel 21 / 88
Artikeldetails
HF-Triode GS-24B
Art.Nr.: roe-send-0018Keramik Triode GS-24B, russisch ГС-24Б
HF-Triode GS-24B
Russische HF-Triode, Keramiktriode Typ GS-24B, GC-24B
Senderöhre, Hochfrequenztriode zur Erzeugung hochfrequenter Schwingungen
technische Daten:
* Triode, Senderöhre, Keramiktriode Typ GS-24B, GC-24B,
* russische Bezeichnung ГС-24Б,
* Металлокерамические лампы, Металлокерамические триоды
* Frequenzbereich: MHz
* Design: Keramik, Metall, Silver
* Kühlung: Luft
* Höhe: 69,5 mm
* Durchmesser: 35 mm
* Masse: ca. 80 g
The GS-24B triode is used as an oscillator and power amplifier in grounded-grid circuits for continuous operation with anode modulation.
technical data:
Cathode: indirectly heated, oxide-coated
Envelope: metal-ceramic with ring leads
Anode cooling: forced air
Height: at most 69.5 mm
Diameter: at most 35 mm
Mass: at most 80 g
technische Daten:
Russische HF-Triode, Keramiktriode Typ GS-24B, GC-24B
russische Bezeichnung ГС-24Б
Senderöhre, Hochfrequenztriode zur Erzeugung hochfrequenter Schwingungen
technische Daten:
* Triode, Senderöhre, Keramiktriode Typ GS-24B, GC-24B,
* russische Bezeichnung ГС-24Б,
* Металлокерамические лампы, Металлокерамические триоды
* Frequenzbereich: MHz
* Design: Keramik, Metall, Silver
* Kühlung: Luft
* Höhe: 69,5 mm
* Durchmesser: 35 mm
* Masse: ca. 80 g
The GS-24B triode is used as an oscillator and power amplifier in grounded-grid circuits for continuous operation with anode modulation.
technical data:
Cathode: indirectly heated, oxide-coated
Envelope: metal-ceramic with ring leads
Anode cooling: forced air
Height: at most 69.5 mm
Diameter: at most 35 mm
Mass: at most 80 g
technische Daten:
OPERATING ENVIRONMENTAL CONDITIONS | |
Vibration loads: | |
frequencies, Hz | 5-2,500 |
acceleration, m/s² | 147 |
Multiple impacts: | |
acceleration, m/s² | 735 |
number of impacts | 10,000 |
Ambient temperature, °C | -60 to +125 |
Relative humidity at +40 °C, % | 95-98 |
BASIC DATA Electrical Parameters | |
Heater voltage (AC or DC), V | 6.3 |
Heater current, A | 0.38-1.38 |
Cutoff voltage (negative), V | 13 |
Anode current, mA | 60-125 |
Mutual conductance, mA/V | 20-30 |
Penetration factor, % | 0.8-1.5 |
Warm up time, s | 60 |
Oscillator output power, W: | |
in continuous-wave generation | 32 |
with heater voltage 11.3 V | 26 |
interelectrode capacitance, pF: | |
input | 7.3-10.5 |
transfer | 2.9-3.7 |
Limit Operating Values | |
Heater voltage (AC or DC), V: | |
maximum | 13.85 |
minimum | 11.35 |
Maximum anode voltage (DC), V | 900 |
Dissipation, W: | |
anode | 120 |
grid | 2.5 |
Maximum cathode current (DC component), mA: | |
in prolonged operation | 250 |
in operation for not above 100 h | 270 |
Grid current (DC component), mA: | |
at wavelength below 60 cm | 50 |
at wavelength above 60 cm: | |
prolonged operation | 80 |
operation for not longer than 100 h | 90 |
Minimum cathode heating time, s | 60 |
Maximum temperature, °C: | |
anode | 200 |
grid ring | 140 |
cathode ring | 140 |
Maximum resistance in grid circuit, kOm | 1 |
TYPICAL MODES OF OPERATION Power Amplification | |
Anode voltage, V | 350 |
Cathode current (DC component), mA | 240 |
Grid current (DC component), mA | 70 |
Oscillator output power, W | 20 |
Operating frequency, MHz | 100-400 |
Self-Sustained Oscillation | |
Anode voltage,V | 800 |
Cathode current (DC component), mA | 150 |
Grid current (DC component), mA | 40 |
Oscillator output power, W | 30 |
Operating frequency, MHz | 600 |
Artikel 21 / 88