Keysight (Agilent) 83050A REPAIR and Keysight (Agilent) 83050A CALIBRATION

Custom-Cal has a high success rate in the repair of the Keysight (Agilent) 83050A. A calibration by Custom-Cal is performed by engineers with extensive OEM experience. We have the expertise and the necessary standards to perform the Keysight (Agilent) 83050A Calibration, onsite calibration may be available. We specialize in quick turnaround times and we can handle expedited deliveries upon request.

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   Keysight (Agilent) 83050A   Description / Specification:    
Keysight (Agilent) 83050A 50 GHz Microwave System Amplifier

The Agilent 83050A 50 Ghz microwave system amplifier is used to recover system losses and to boost available power in RF and microwave ATE systems.

Frequency Range: 2-50 GHz.
Small Signal Gain: 21 dB min.
Small Signal Gain Flatness: ±3.5 dB max.
Output Power (At P max): +20 dBm (2-40 GHz), +19 dBm-0.2 dB/GHz (40Output Power (At 1 dB compression): +15 dBm (2-40 GHz), +13 dBm 40-50 GHz.
Noise Figure: <6 dB typ (2-26.5 GHz), <10 dB typ 26.5-50 GHz.
Harmonics (At Spec’d value of P1 dBC): -20 dBc typ (2-18 GHz), -18 dBc typ (18-25 GHz).
Input SWR: 2.1 max.
Output SWR: 2.8 max (2-18 GHz), 2.1 max (18-50 GHz).
Non-Harmonically Related Spurious: -50 dBc typ.
Rise Time: 250 ps typ.
Third Order Intercept (TOI): 27 dBm typ.
Impedance: 50Ω typ.
Reverse Isolation (typ): -50 dB.
Survival Input Power: +20 dBm max.
Power Dissipation: 11 W.
Bias Voltage and Current (nominal): 12 ±1 Vdc at 830 mA, -12 ±1 Vdc at 50 mA.
RF Connectors: 2.4 mm (f).


Related RF Terms and Definitions. For a complete list go to our  Terms and Definitions Page.

dBm (sometimes dBmW) is an abbreviation for the power ratio in decibels (dB) of the measured power referenced to one milliwatt (mW). Zero dBm equals one milliwatt. A 3 dB increase represents roughly doubling the power, a 3 dB decrease, the power is reduced by about one half.

Noise Figure
Noise Figure the ratio of the signal-to-noise power ratio at the input to the signal-to-noise power ratio at the output.

Standing Wave Ratio (SWR)
Standing wave ratio (SWR) is the ratio of the amplitude of a partial standing wave at an antinode (maximum) to the amplitude at an adjacent node (minimum).

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