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EAT ECC-803s Cool Valve

ecc803s
The Cool Valve ECC803S is the finest twin triode with separate cathodes available in today’s market. Double triode means the valve is built with two totally independent triode systems. ...Read more

The Cool Valve ECC803S is the finest twin triode with separate cathodes available in today’s market. Double triode means the valve is built with two totally independent triode systems.

Manufacturer Site Link: EAT ECC-803s

Brand: EATEAT £ 145.00 each


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The most demanding tube for both sound and build quality is Telefunken ECC 803S. This original tube can only be sourced from old inventories and not reliable sources offering no warranty period. There is the risk of forgeries, functionless valves or overpriced goods.

We tried to fi nd a way to make a better product for high requirements of exclusive amplifi ers.

EAT has set a high standard by trying all existing ECC 803S by defi ning sophisticated selection methods to get only the very best to our demanding customers.

The selection procedure uses several measurements. All measurements are performed after a long burn-in procedure and thermal stabilization of its parameters. Only a few valves pass the Selection process and even fewer pass the strict Diamond selection.

The inseparable part of the Cool Valve ECC 803S is the EAT Cool Damper. EAT developed a special high temperature glue to fi × the damper to the valve glass envelope. This glue is designed to transform vibration energy into thermal energy, which is then dissipated as heat. The Cool Damper is a truly effective vibration & micro-phonic absorbing device.

Heating 6,3 V / 300 mA or 12,6 V / 150 mA

Typical Characteristic

Uba 100 250 V

Rk 2 1,6 k

Ia 0,5 1,25 ± 0,15 mA

S 1,25 1,6 ± 0,3 mA/V

μ 100 100

Ri 80 62,5 k

-Ig ≤ 0,2 μA

-Ug (Ia=20 μA) ≤ 4 V

-Ug (Ig= +0,3 μA) ≤ 1 V

End of the life time (see “Typical Characteristic values“, Ua = 250 V)

Plate current Ia reduced from initial value to 0,8 mA

Mutual conductance S reduced from initial value to 1,05 mA/V

Negative grid current –Ig increased from initial value to 0,5 μA