83752A HP Sweep Generator
Additional Features:
Frequency Range: 10 MHz to 20 GHz
Fully phase locked analog sweep for accuracy and speed
Flat and accurate output power to characterize the linear response of the test device
Offset frequency sweep for mixer test
Agilent 8350 programming mode for backwards compatibility
Standard 10 MHz time base: ±10 ppm
High stability time base (Option IE5): accuracy = calibration ± aging rate ± temperature effects ± line voltage effects
Aging rate: 5 x 10-10/day, 1 x 10-7/year
With temperature: 1 x 10-10/°C
With line voltage: 5 x 10-10 for 10% change
CW mode
Resolution: 1 Hz
Accuracy: same as time base
Switching time: 70 ms max
Stepped sweep mode
Resolution: settable 1 Hz, display 1 kHz
Accuracy: same as timebase
Minimum step size: same as resolution
Number of points: 2 to 1601
Switching time/point: 7 ms + 8 ms/GHz step
Dwell time/point: 1 ms to 1 s
Ramp (analog, phase locked) sweep mode
Resolution: 1 kHz
Accuracy (25 ±5 °C):
For 100 ms sweeps the greater of: ±.01% of span ±time
base or ±75 kHz ±time base
At other sweep speeds: [±.001% of span]/[sweep time (s)] ±time base
Markers
10 independent continuously variable markers
Display modes: z-axis intensity or RF amplitude pulse
Sweep functions
Start/stop, center frequency/span, marker, ramp,
stepped, manual, alternate and power sweep
Marker sweep: sweeps between markers one and two
Alternate sweep: alternates successive sweeps between current front panel setting and stored setup
RF output
Maximum leveled power (25 ±5 °C): +10 dBm
With option 1E1 (step attenuator): reduce by 1 dB
Minimum settable power: -15 dBm
With option 1E1: -85 dBm
Resolution
Settable: 0.01 dB
Display: 0.1 dB
The Agilent 83752A sweeper brings outstanding synthesized performance to the component-test marketplace. It delivers the best performance for the price in general purpose benchtop, swept test or scalar applications. This sweeper provides superior accuracy and stability while maintaining the speed of an analog source. Fully synthesized CW, stepped and ramp sweep modes are available in broadband and narrowband operation.
The synthesis capability is particularly useful for the characterization of narrowband devices, in which the frequency instabilities of open-loop sources become most apparent. Excellent output power flatness and accuracy can be translated to the input port of the device under test with the power flatness correction feature of this source.
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