INDUSTRIAL RF HEATING RS 3026 CL Water-cooled triode 32 kW Output power: 32 kW in CW mode Anode voltage: 12 kV Anode dissipation: 15 kW max. Frequency up to 120 MHz INDUSTRIAL RF HEATING The RS 3026 CL is a RF power triode designed specifically for industrial applications. This tube uses a coaxial design and metal-ceramic technology. This triode is designed to operate in CW mode. For operation in pulse mode, the parameters depend on each equipment characteristics, contact us for specific information. The RS 3026 CL is a forced-air cooled triode. This product is designed, developed and manufactured at an ISO 9001 production site registered. RS 3026 CL Electrical characteristics Filament Filament voltage (+ 5 %, - 10 %) Filament current Surge current Capacitance: • grid-anode • grid-cathode • cathode-anode (1) Amplification factor Transconductance (Va: 3 kV, Ia: 2 A) thoriated tungsten 7 115 345 26 59 1.5 20 33 V A A max. pF pF pF mA/V approx. approx. kg approx. Mechanical characteristics Operating position Weight Dimensions vertical, anode up or down 11 see outline drawing Maximum ratings Frequency Anode voltage: • up to 40 MHz • from 40 to 80 MHz • from 80 to 120 MHz Control-grid voltage Control-grid current (F < 40 MHz): • at full load, CW • at no load, CW Peak cathode current, CW Anode dissipation Grid dissipation: • up to 40 MHz • from 40 to 80 MHz • from 80 to 120 MHz Grid resistance (at blocked tube) (1) Measured with a 30 cm diameter shielding plate in the grid terminal plane. 120 MHz 12 11 9 - 1.5 kV kV kV kV 1.1 1.4 30 15 A A A kW 550 450 350 15 W W W kΩ RS 3026 CL Cooling Anode cooling Cooling water flow and pressure gradient Inlet air temperature Temperature at any point on tube envelope forced air see cooling curves 25 220 °C °C typ. max. Typical operation (2) Class C RF oscillator for industrial applications 1 2 < 40 < 40 MHz 10 8 kV - 800 - 650 V 1 200 1 050 V 4.1 4.2 A 700 760 mA 41 33.6 kW 32 25 kW 8.2 7.8 kW 240 260 W 1.15 0.86 kΩ 13.5 15 % 78 74.5 % Examples Frequency Anode voltage Control grid bias RF control grid voltage Anode current Control grid current Anode input power Anode output power (3) Anode dissipation Control grid dissipation Grid resistance Feedback ratio Oscillator efficiency (2) Operation with higher frequencies on request. (3) Without taking circuit losses into account. Nota: Data sheets are for information only. For design purpose, please ask for our latest specification. Cooling air curves (air flow from anode side) t1 = 25° C Pa : anode dissipation 200 20 10 150 15 7.5 ∆p : pressure drop 100 q 5 10 Tout 50 5 0 0 2.5 ⌬p 0 0 5 10 Pa (kW) ⌬p (mbar) Tout (°C) Tout : air outlet temperature q (m3/min) q : air flow rate 15 RS 3026 CL Outline drawing (mm) Constant current characteristics Vg1 Ø 98 400 300 Ø 78 Ø 25.8 3A 2A Filament Filament- cathode Grid 1A 0.5A 0.4A 8 81 200 9 100 115.9 500 96.5 7A 6A 5A 4A 0 105 0.3A 0.2A 0A Anode 100 20A 200 15A 300 21.5 10A Ø 25 400 5A 3A 500 Ø 196 1A 600 0.4A 0.1A 700 0 1 2 Ia (A) 3 4 5 Ig1 (A) 6 7 8 9 10 11 12 13 Va (kV) This document cannot be considered to be a contractual specification. The information given herein may be modified without notice due to product improvement or further development. Consult Thales Electron Devices before making use of this information for equipment design. For further information, please contact: THALES ELECTRON DEVICES 2 bis, rue Latécoère - 78941 Vélizy Cedex - France Tel: + 33 1 30 70 35 00 - Fax: + 33 1 30 70 35 35 www.thalesgroup.com/electrondevices P.515/ 2004.03 - Photos : Thales Electron Devices 800 0A