Electron Tube RCA 810 strong emission used - Transmitting Vacuum Tube RCA 810 used, with strong emission, made in USA
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Electron Tube 6N3P-E 6CC42 6385 ECC42 NOS Reflector (with box)
Electron Tube 6N3P-E 6CC42 6385 ECC42 NOS Reflector (with box) - Electron Tube 6N3P-E 6CC42 6385 ECC42 NOS Individual reflector box
E series long lasting
The main technical specifications for 6N3P-E:
The heating voltage ...... 6.3 ± 0.6 V
Heating current ...... 350 ± 30 mA
The anode voltage is nominal (constant) ...... 150 V
Anode voltage limit (constant) ...... 300 V
The current of the anode of each triode ...... 8.5 ± 3.5 mA
The cathode current of each triode is limiting ...... 18 mA
The grid voltage is rated (constant) ...... -2 V
The reverse grid current of each triode ...... is not more than 0.1 A
Power dissipated by each anode, limiting ...... 1.8 W
The voltage between the cathode and the heater is the maximum (constant):
- with a negative potential of the heater ...... 150 V
- with a positive potential of the heater ...... 100 V
The steepness of the characteristics of each triode ...... 5.9 ± 1.9 mA
The gain of each transistor ...... 36 ± 8
Input resistance at a frequency of 60 MHz ...... 14 kΩ
Output impedance at 60 MHz ... 19 kΩ
Equivalent resistance of intra-lamp noise ...... 0.7 kΩ
Input capacitance of each triode ...... 2.45 ± 0.55 pF
Output capacitance of each triode ...... 1.25 ± 0.35 pF
The capacitance of each triode ...... is not more than 1.6 pF
Capacity between anodes ...... not more than 0.13 pF
E series long lasting
The main technical specifications for 6N3P-E:
The heating voltage ...... 6.3 ± 0.6 V
Heating current ...... 350 ± 30 mA
The anode voltage is nominal (constant) ...... 150 V
Anode voltage limit (constant) ...... 300 V
The current of the anode of each triode ...... 8.5 ± 3.5 mA
The cathode current of each triode is limiting ...... 18 mA
The grid voltage is rated (constant) ...... -2 V
The reverse grid current of each triode ...... is not more than 0.1 A
Power dissipated by each anode, limiting ...... 1.8 W
The voltage between the cathode and the heater is the maximum (constant):
- with a negative potential of the heater ...... 150 V
- with a positive potential of the heater ...... 100 V
The steepness of the characteristics of each triode ...... 5.9 ± 1.9 mA
The gain of each transistor ...... 36 ± 8
Input resistance at a frequency of 60 MHz ...... 14 kΩ
Output impedance at 60 MHz ... 19 kΩ
Equivalent resistance of intra-lamp noise ...... 0.7 kΩ
Input capacitance of each triode ...... 2.45 ± 0.55 pF
Output capacitance of each triode ...... 1.25 ± 0.35 pF
The capacitance of each triode ...... is not more than 1.6 pF
Capacity between anodes ...... not more than 0.13 pF
Tube Electron Tube G807 807 FU7 NOS Ulyanovks brown/black base
Tube Electron Tube G807 807 FU7 NOS Ulyanovks brown/black base - ElectronTube G807 made in USSR equivalent to 807 FU7 ULYANOVSK Brown or Black base
G-807 (Г-807) beam tetrode designed to amplify and generate high-frequency oscillations. Used to the transmitter, as well as in cascades line scan
television receivers. Can be used in terminal stages of low-frequency power. Indirectly heated oxide cathode.
General characteristics:
Name: G807 (G-807)
Type: beam tetrode
Cathode type: oxide, indirect heating
Application field: oscillation and power amplification up to 60MHz
Brief application: oscillation, amplification
Envelope: glass with base
Cooling method: water
Dimensions, mm: 146 x 53
Mass, g: 100
Filament voltage, V: 6.3
Filament current, A: 0.81 - 0.99
normal anode voltage, V: 600
Output power, W: 25
Maximum anode voltage, V: 600
Maximum operating frequency, MHz: 60
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