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 DATA S H E E T
HIGH POWER CW KLYSTRONAMPLIFIER FOR GROUND TERMINALS
LD4606A
30 GHz, 380 W CW, HIGH EFFICIENCY, HIGH POWER GAIN
GENERAL DESCRIPTION
The NEC LD4606A is a five-cavity Klystron amplifier and ideal for use in the earth-to-satellite communications transmitter. This is designed for operating at 380 W CW power levels in the frequency range of 27.50 to 29.10 GHz. The instantaneous bandwidth of minus one-decibel is at least 70 MHz over the entire 1.6 GHz range. The tube is forced-air-cooled at the 380 W operation. Furthermore, this is of rugged and reliable design offering long-life service.
FEATURES
1 High Efficiency The DC to RF conversion efficiency is typically 23 % by incorporating a 39 % depressed collector. 2 High Power Gain The power gain is typically 40 dB at the 380 W level, so the driving power is less than 50 mW. 3 Simple Cooling System The klystron is all forced air cooled with only one blower, so that the cooling systems are greatly simplified. 4 Permanent Magnet The klystron is permanent magnet focused, eliminating entirely the requirement for focusing power supplied and interlock circuits. 5 Rugged Construction The klystron is designed to be rugged.
For safe use of microwave tubes, refer to NEC document "Safety instructions to all personnel handling electron tubes" (ET0048EJVUM00)
The information in this document is subject to change without notice.
Document No. ET0117EJ3V1DS00 (3rd edition) Date Published August 1998 M Printed in Japan
(c)
1989
LD4606A
GENERAL CHARACTERISTICS
ELECTRICAL Frequency ...................................................... Output Power ................................................ Heater Voltage ................................................ Heater Current ................................................ Type of Cathode ............................................. MECHANICAL Dimensions ................................................... Focusing ...................................................... Electrical Connections Heater ...................................................... Heater-Cathode .......................................... Body, Collector .......................................... RF Connections Input ......................................................... Output ...................................................... Mounting Position .......................................... Weight ......................................................... Cooling Gun ......................................................... Collector ................................................... Body ......................................................... Cavity Tuning Method .................................... Forced Air Forced Air Forced Air Hand Tuning Mates with FUBR-260 Mates with FUBR-260 Vertical (Cathode down) 45 kg approx. AMP (861647-8) Receptacle AMP (861647-8) Receptacle AMP (861647-8) Receptacle See Outline Permanent Magnet 27.50 to 29.10 GHz 380 W 4.3 V 2.5 A Indirectly Heated, Impregnated
ABSOLUTE RATINGS ( Note 1, 2 and 3 )
ELECTRICAL Heater Voltage ................................................ Heater Surge Current .................................... Heater Warm-up Time .................................... Body Voltage ................................................ Collector Voltage ............................................. Beam Current ................................................ Body Current ................................................ Collector Current ............................................. DC Input Power ............................................. Load VSWR Normal Value ............................................. Instantaneous Value .................................... MECHANICAL Collector Temperature .................................... Cooling Air Temperature ................................. Air Flow for Collector Body and Gun ............... Ambient Temperature Operating ................................................... Storage ...................................................... -10 -40 45 70 C C - -10 238 200 45 - C C kg/hr - - 1.2 1.5 Min. 3.5 - 300 - - - - - - Max. 5.5 5.5 - 9.5 9.0 400 20 400 2.5 Unit V A s kV kV mA mA mA kW
2
LD4606A
TYPICAL OPERATION (Note 3, 4 and 5)
Unit Frequency ............................................................... Heater Voltage (Note 4) ............................................. Heater Current ......................................................... Body Voltage ............................................................ Body Current ............................................................ Collector Voltage ...................................................... Collector Current ...................................................... DC Input Power ...................................................... Driving Power ......................................................... Output Power ......................................................... Power Gain ............................................................ Band Width (-1 dB) ................................................... Air Flow of Collector, Body and Gun ........................... 28.5 4.3 2.5 8.5 10 5.2 300 1.65 44 380 40 80 250 GHz V A kV mA kV mA kW mW W dB MHz kg/hr
Note 1 : Absolute rating should not be exceeded under continuous or transient conditions. A single absolute rating may be the limitation and simultaneous operation at more than one absolute rating may not be possible. Equipment design should limit voltage and environmental variations so that ratings will be exceeded. Note 2 : The Klystron body should be at ground potential in operation. Note 3 : All voltages are referred to the cathode potential except the heater voltage. Note 4 : The optimum operating value is shown on a test performance sheet for each tube. Note 5 : Characteristics and operating values on this Data Sheet are based on performance test. These values may be changed as a result of additional information or product improvement. NEC should be consulted before using this information for equipment design. This data sheet should not be referred to a contractual specification.
No part of this document may be copied in any form or by any means without the prior written consent of NEC Corporation. NEC Corporation does not assume any liability for infringement of patents, copyrights or other intellectual property rights of third parties by or arising from use of a device described herein or any other liability arising from use of such device. No license, either express, implied or otherwise, is granted under any patents, copyrights or other intellectual property rights of NEC Corporation or of others.
3
LD4606A
LD4606A OUTLINE (Unit in mm)
TOP VIEW
270 MAX. 148 1.5 90 87.4 4- 12
BOTTOM VIEW
152 122 105
291.6 1.5
370 MAX.
6
85
Heater Cathode 42.5 Heater 1 2 3 4 Collector
Ground 6 5 Body Electrical Connection AMP (861647-8) Air Outlet Air Inlet
AMP (861647-8) Receptacle PIN Connection
5th Cavity 3rd Cavity 1st Cavity
132 1.5
100
SIDE VIEW
344
270 MAX.
21.2
238.5
15.5
4th Cavity RF Output (MATES WITH FUBR-260) 2nd Cavity RF INput (MATES WITH FUBR-260)
82.1
108.5


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