20000TP8G12

The Model 20000TP8G12 is a self-contained, forced air-cooled, broadband traveling wave tube (TWT) microwave amplifier system designed for pulse applications at low to moderate duty factors where instantaneous bandwidth and high gain are required. Reliable TWT subsystems provide a conservative 20000 W minimum RF pulse power at the amplifier output connector. Stated power specifications are… Continue reading 20000TP8G12

8300TP8G12

The Model 8300TP8G12 is a self-contained, forced air-cooled, broadband traveling wave tube (TWT) microwave amplifier system designed for pulse applications at low to moderate duty factors where instantaneous bandwidth and high gain are required. Reliable TWT subsystems provide a conservative 8300 W minimum peak RF pulse power at the amplifier output connector. Stated power specifications… Continue reading 8300TP8G12

4000TP8G12

The Model 4000TP8G12 is a self-contained, forced air-cooled, broadband traveling wave tube (TWT) microwave amplifier designed for pulse applications at low to moderate duty factors where instantaneous bandwidth and high gain are required. A reliable TWT provides a conservative 4200 W minimum peak RF pulse power at the amplifier output connector. Stated power specifications are… Continue reading 4000TP8G12

1500T8G18

The Model 1500T8G18 is a self-contained, forced air-cooled, broadband traveling wave tube (TWT) microwave amplifier designed for applications where instantaneous bandwidth, high gain, moderate harmonic levels, and high power output are required. Reliable TWT subsystems provide a conservative 1500 W minimum at the amplifier output connector. Stated power specifications are at the fundamental frequency. The… Continue reading 1500T8G18

1000T8G18B

The Model 1000T8G18B is a self-contained, forced air-cooled, broadband traveling wave tube (TWT) microwave amplifier designed for applications where instantaneous bandwidth, high gain, and high power output are required. Reliable TWT subsystems provide a conservative 1000 W minimum at the amplifier output connector over most of the frequency range. Stated power specifications are at the… Continue reading 1000T8G18B

500T8G18

The Model 500T8G18 is a self-contained, forced air-cooled, broadband traveling wave tube (TWT) microwave amplifier designed for applications where instantaneous bandwidth, reduced harmonics, and high gain are required. A reliable TWT subsystem provides a conservative 500 W minimum at the amplifier output connector. Stated power specifications are at the fundamental frequency. The amplifier’s front panel… Continue reading 500T8G18

250T8G18

The Model 250T8G18 is a self-contained, forced air-cooled, broadband traveling wave tube (TWT) microwave amplifier designed for applications where instantaneous bandwidth and high gain are required. A reliable TWT provides a conservative 250 W minimum at the amplifier output flange. Stated power specifications are at the fundamental frequency. The amplifier’s front panel digital display shows… Continue reading 250T8G18

2000TP8G18

The Model 2000TP8G18 is a self-contained, forced air-cooled, broadband traveling wave tube (TWT) microwave amplifier designed for pulse applications at low to moderate duty factors where instantaneous bandwidth, reduced harmonics, and high gain are required. A reliable TWT subsystem provides a conservative 2000 W minimum peak RF pulse power at the amplifier output connector. Stated… Continue reading 2000TP8G18

1000TP8G18

The Model 1000TP8G18 is a self-contained, forced air-cooled, broadband traveling wave tube (TWT) microwave amplifier designed for pulse applications at low to moderate duty factors where instantaneous bandwidth and high gain are required. A reliable TWT subsystem provides a conservative 1000 W minimum peak RF pulse power at the amplifier output connector. Stated power specifications… Continue reading 1000TP8G18

500T6G18

The Model 500T6G18 is a self-contained, forced air-cooled, broadband traveling wave tube (TWT) microwave amplifier designed for applications where instantaneous bandwidth, reduced harmonics, and high gain are required. A reliable TWT subsystem provides a conservative 500 W minimum at the amplifier output connector. Stated power specifications are at the fundamental frequency.