6С33С — 6C33C-B — 6S33S-V Triode Vacuum Tube

Also known as 6C18S · 6S33S-V (EW)

High-power directly-heated triode for single-ended amplification

TriodeHeater 6.3 V · 6.4 A7-pin Soviet septar (РШ-3) — oversized anode pin 4Svetlana · Ulyanovsk 1960
Plate dissipation
60W
Max plate voltage
250V
Transconductance
39mA/V
6С33С — 6C33C-B — 6S33S-V

Characteristics

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

HeaterIndirectly heated

Specifications of 6C33C(2 cath) — Heater
Heater voltageVh6.3 V
Heater currentIh6.4 A
Series wiring12.6 V · 3.3 A

Limiting valuesDatasheet maximum ratings — not to be exceeded

Specifications of 6C33C(2 cath) — Limiting values
Plate voltageVa max250 V
Plate dissipationPa max60 W

Mechanical

Specifications of 6C33C(2 cath) — Mechanical
Base7-pin Soviet septar (РШ-3) — oversized anode pin 4
RarityModerate
Pinout

Small signalDatasheet parameters at the reference operating point — not limits

Specifications of 6C33C(2 cath) — Small signal
Transconductance39 mA/V
Plate resistance69 Ω
Amplification factor2.7

Capacitances

Specifications of 6C33C(2 cath) — Capacitances
Grid–cathode30 pF
Grid–plate31 pF
Plate–cathode10.5 pF

Charactereditorial reading, not a measurement

Specifications of 6C33C(2 cath) — Character
Gain3%
Power100%
Drive100%
Linearity95%

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

Using this tube

Applications

  • SET output
  • Push-pull output
  • Headphone output
Generic triode otl / series regulator stage
Headphone ampPA/public address

Replace or compare

Sources

Manufacturer datasheets

6C33C(2 cath) Datasheet3 variants · pick below
Manufacturer datasheets (PDF downloads)
PDF

Michael Boele (compilation of Soviet documentation)

Rev 1.1, 2005-02-03 · 7 pp · EN

PRIMARY consolidated source. Seven pages covering nomenclature, mechanical data with Septar 7 pinout, filament options, typical operating point, full small-signal parameters with capacitances, service-life criteria, absolute maxima, environmental specs, extended-life de-rating tables, and the parallel-operation de-rating table for multi-tube banks. Defines the modern -B / -V notation (Russian: 6C33C-B / Western: 6S33S-V) and the high-reliability -EB / -EV variant (3000 h).

PDF

Penta Laboratories, Inc., Chatsworth CA

Penta Laboratories commercial sheet (undated) · 2 pp · EN

Western re-issue of the Soviet datasheet for the US replacement-tube market. Carries the canonical Class-A push-pull audio operating point used by Atma-Sphere / Graaf / BAT OTL designers: Va = 200 V, Vg = −65 V, Ia = 480 mA, Raa = 800 Ω, Wo = 55 W for two tubes. Also publishes Ia/Va curves at Ef = 6.3 V from Ec1 = 0 down to −100 V in 10 V steps (Ua 0–200 V, Ia 0–1000 mA), and announces Va max 400 V (slightly more conservative than the Soviet 450 V / Pa ≤ 30 W ceiling).

PDF

Soviet electron-tube reference book (publisher TBD)

Original Soviet справочник, p. 363–364 (translated) · 2 pp · RU

Original-source Russian datasheet for the base 6С33С (pre-B variant) covering: nominal Ia = 540 ± 90 mA, gm = 39 ± 11 mS, Ri ≤ 130 Ω, Cfk ≤ 70 pF, end-of-life criteria after 1000 h (Ia ≥ 340 mA / Igrid ≥ 15 µA), and the less stringent environmental envelope of the base type (vibration 4 g, shock 35 g, ambient −60…+70 °C). The -B / -V uplift figures (6 g vibration, 100–500 g shocks, +100 °C ambient) come from Boele's compilation, not this card.

Datasheet limits (full)
Va0 (cut-off plate V)
600 V
max, valve biased to cut-off
Va max
250 V
Pa max
60 W
Ik max
600 mA
Rg max
0.2 MΩ
Vhk max
300 V (f−/k+) · 300 V (f+/k−)
Bulb temp
260 °C
Va_max 250 V applies when plate dissipation exceeds 30 W; relaxes to 450 V when Pa ≤ 30 W, and to 600 V cold (no plate current at power-up). Penta Labs prints a more conservative 400 V ceiling. Wa_max 60 W is for both internal triodes simultaneously (45 W if only one section is energized — single-filament operation). Ik_max 600 mA for both / 350 mA for one. Negative grid voltage range −0.5 V to −150 V; Rg max 200 kΩ for fixed bias, relaxes to 1.5 MΩ in active feedback regulator loops where the grid leak also serves as the plate load of the control amplifier. Bulb temperature: 260 °C at ϑamb = 20 °C, 300 °C at 100 °C (max 100 h), 320 °C at 150 °C (max 2 h). Filament voltage tolerance: 11.3–13.9 V series or 5.7–6.9 V parallel.
Per-section / per-manufacturer capacitances
Capacitanceboele_b_variantpenta_labssoviet_original_legacy
Cin30 pF30 pF30 pF
Cout10.5 pF10.5 pF10.5 pF
Cga31 pF31 pF31 pF
Cfk60 pF—70 pF
SPICE variants per manufacturer
Each card below is a named subcircuit inside the downloadable .subckt file. Same physical tube, different manufacturer / measurement convention. The Ampera loadline calculator uses the Philips/1953 family; copy the Koren line from any card into your own simulator to bias the engine the same way.
6C33C_AMPERA_KOREN_FIT
Ampera engine — Koren synthesized fit
Va120 V
Vg0 V
Ia550 mA
μ3.27
gm40 mA/V
rp0.1 kΩ
Cag31 pF
Koren fit
MU=3.27 EX=1.397 KG1=150.9 KP=13.94 KVB=300
Default Ampera load-line and load-curve calculator fit, with mu pushed slightly above the 2.7 datasheet value to match the published Ia/Va curves over the full plate-dissipation envelope. Use this variant for in-page calculations.
6C33C_BOELE_KOREN_FIT
Boele / Penta — Koren-like fit (datasheet-matched mu)
Va120 V
Vg0 V
Ia550 mA
μ2.67
gm40 mA/V
rp0.1 kΩ
Cag31 pF
Koren fit
MU=2.67 EX=1.45 KG1=418 KP=14.6 KVB=5
Lower-mu fit that hews exactly to the datasheet typical value µ = 2.7. Better matches the steep, low-Va part of the family (the actual OTL working zone) at the cost of a slight roll-off near Pa_max. Available as the public SUBCKT '6C33C' shipped with Ampera.
Transfer curve comparison

Ia vs Vg at Va = 250 V — each manufacturer Koren fit overlaid. The de-rated French families (μ=30) read lower than the Philips/1966 high-gm family (μ=32) at the same grid voltage.

051015-10-8-6-4-20Vg (V)Ia (mA)
Ampera engine — Koren synthesized fitBoele / Penta — Koren-like fit (datasheet-matched mu)
Original descriptive texts

Verbatim excerpts from the four manufacturer datasheets. Expand each section to read the original text — the Philips technical article carries the richest application content.

SPICE models

Revision and verification status

Source
Boele Rev 1.1 (2005) · Penta Labs · Original Soviet datasheet
Reviewed
2026-05-29
Status
DataModelCalc
Model
Norman Koren
3 Koren fits

Context

The 6C33C(2 cath) is a indirectly-heated triode from Svetlana · Ulyanovsk, introduced around 1960. It provides a gain factor (μ) of 2.7 with 69Ω plate resistance. Commonly used in otl / series regulator applications. Soviet power triode designed as a series-pass regulator (тube ballast) — two internal triode systems with paralleled anodes/grids/cathodes but separate filaments. Very low μ ≈ 2.7, very low Ri ≈ 80-120 Ω, transconductance gm ≈ 40 mA/V at 550 mA: the rare combination of low gain and high current that the OTL crowd (Atma-Sphere, Graaf, BAT, Lamm) bent the tube toward in the late 1980s. Built like a tank (200 g, internal bracing, oversized anode pin) with documented vibration/shock specs (6 g / 150-500 g for the -B/-V variant). Famously slow to reach thermal equilibrium (≥ 600 s) and prone to runaway if biasing isn't actively managed.

History

Introduced
1960
Manufacturer
Svetlana · Ulyanovsk
Era
Late Production
METRIX TESTER

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