6N7P Triode Vacuum Tube

Also known as 6N7

Medium-gain triode for voltage amplification applications

Dual triodeHeater 6.3 V · 0.8 AOctal2 sectionsRussian 1955
Plate dissipation
6W
Max plate voltage
300V
Transconductance
3.2mA/V
6N7P

Characteristics

Datasheet values, once each. Every value cites its sheet.

HeaterIndirectly heated

Specifications of 6N7P — Heater
Heater voltageVh6.3 V
Heater currentIh0.8 A

Limiting valuesDatasheet maximum ratings — not to be exceeded

Specifications of 6N7P — Limiting values
Plate voltageVa max300 V
Plate dissipationPa max6 W

Mechanical

Specifications of 6N7P — Mechanical
BaseOctal
RarityCommon
Pinout

Small signalDatasheet parameters at the reference operating point — not limits

Specifications of 6N7P — Small signal
Transconductance3.2 mA/V
Plate resistance10.9 kΩ
Amplification factor35

Capacitances

Specifications of 6N7P — Capacitances
Grid–cathode3.6 pF
Grid–plate2.6 pF
Plate–cathode4.6 pF

Charactereditorial reading, not a measurement

Specifications of 6N7P — Character
Gain35%
Power15%
Drive89%
Linearity83%

datasheet cited · model or editorial reading · catalogue value, no citation attached yet · nothing invented

Using this tube

Applications

  • Push-pull output
  • Phase splitter
Generic triode driver stage

Replace or compare

Sources

Manufacturer datasheets

1 manufacturer datasheets cross-checked for 6N7P1 verified

6N7P DatasheetLocal mirror · PDF

SPICE models

Revision and verification status

Source
RCA RC-15 6N7 datasheet · Norman Koren SPICE model
Reviewed
2026-05-29
Status
DataModelCalc
Model
Norman Koren

Context

The 6N7P is a dual indirectly-heated triode from Russian, introduced around 1955. It provides a gain factor (μ) of 35 with 10.9kΩ plate resistance. Commonly used in driver applications. Russian equivalent.

History

Introduced
1955
Manufacturer
Russian
Era
Golden Age
METRIX TESTER

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