¸ðµ¨
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±¸¼º / ¼³¸í
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GT-1050A
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2GHz to 50GHz
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Output Power
Output power is specified as minimum saturated power into 50 Ohm load with +5 dBm input, at 23°C ± 5°C Input power for normal operation should be limited to +20 dBm maximum.
Range
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Specification*
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2 to 10GHz
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+30 dBm (1 Watts) typical, +26 dBm (400 mW) minimum
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10 to 30GHz
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+28 dBm (600 mW) typical, +25 dBm (300 mW) minimum
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30 to 40GHz
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+27 dBm (500 mW) typical, +23 dBm (200 mW) minimum
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40 to 50GHz
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+24 dBm (250 mW) typical, +20 dBm (100mW) minimum
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Gain Flatness
Nominal gain is 25dB. Gain flatness is specified as maximum variation with -5dBm input and 50 Ohm load.
Range
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Specification
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2 to 40GHz
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± 3 dB typical
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2 to 50GHz
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± 5 dB typical
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Input and Output VSWR
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2 to 30GHz
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30 to 40GHz
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40 to 50GHz
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Input, 50 ohms
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1.5:1 typical
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2.0:1 typical
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2.3:1 typical
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Output, 50 ohms
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2.0:1 typical
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2.3:1 typical
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2.9:1 typical
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Additional Specifications
Parameter
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Specification
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Stability
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Unconditionally Stable
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Maximum Load VSWR
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3:1
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Harmonic Distortion*
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< -30 dBc typical
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Spurious*
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< -60 dBc typical
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Noise Figure
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< 10 dB typical, < 14 dB maximum
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* Note : Harmonics measured at +10 dBm output power. Spurious measured at -5 dBm input power level
General Specifications
Line Voltage
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100 to 240 VAC, 47 to 63 Hz, Single Phase
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Line Power
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100 VA maximum
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Operating Temperature
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0°C to +50°C
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Storage Temperature
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-20°C to +75°C
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RF Connectors
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GT-1040A 2.92mm(f); GT-1050A 2.4mm(f)
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GT-1000A Rear Panel Connections
Connection
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Description
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RF Input
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SMA (f) standard or Type-N (f) with Option 02
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Coupler/Detector Output
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SMA (f), -1 Volt DC nominal detector output at 10 Watts RF out, and nominally -250 mV at 1 Watt RF out, into high impedance.
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AC Power Input
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85 to 264 VAC, 47 to 63 Hz, Single Phase, 300 VA max.
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Overview
The Giga-tronics GT-1050A Microwave Power Amplifier offers linear high-power amplification across multioctive bandwidths. Ideal for testing in EMC, wireless communications applications, and Defense EW systems.
The Giga-tronics GT-1050A Microwave Power Amplifiers incorporates broadband MMIC based architecture. These state-of-the-art amplifiers are based on solid-state parallel MMIC design with exceptionally wide bandwidth and high power. The unique circuit topology is highly reliable, with performance that excels where extremes of bandwidth and power are demanded.
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