ROHDE & SCHWARZ FSEA30 REPAIR and ROHDE & SCHWARZ FSEA30 CALIBRATION

 
Custom-Cal has a high success rate in the repair of the ROHDE & SCHWARZ FSEA30. A calibration by Custom-Cal is performed by engineers with extensive OEM experience. We have the expertise and the necessary standards to perform the ROHDE & SCHWARZ FSEA30 Calibration, onsite calibration may be available. We specialize in quick turnaround times and we can handle expedited deliveries upon request.

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   ROHDE & SCHWARZ FSEA30 (1065.6000.35)   Description / Specification:    
ROHDE & SCHWARZ FSEA30 3.5 GHz Spectrum Analyzer

The Rohde & Schwarz FSEA30 (1065.6000.35) 3.5 GHz Spectrum Analyzer has been optimized both for general-purpose measurements and meeting the stringent requirements of testing advanced digital communication systems. The FSEA 30 combines the capabilities of high-end RF or microwave spectrum analysis with those of universal digital-signal demodulation and analysis. This becomes possible with the vector signal analyzer option. The spectrum analyzer function offers the wide dynamic range necessary for many measurements on digitally modulated signals (e.g. burst measurements), and the vector signal analyzer option adds demodulation capability to bit stream level for signals such as – BPSK, QPSK, pi/4-DQPSK and 16QAM, (G)MSK, (G)FSK. FSEA 30 features a minimum full-span sweep time of 5 ms with a fully synchronized sweep. This means that added speed is not at the expense of frequency accuracy but even enhances it. The shortest zero-span sweep time is 1 µs (100 ns/div) – ideal for high-resolution measurements on pulse edges. Up to 25 sweeps per second is an optimal prerequisite for rapid and easy alignments and for applications in production. Specifications. Frequency range: 20 Hz to 3.5 GHz. Frequency resolution: 0.01 Hz. Resolution bandwidths (3 dB bandwidths (in 1/2/3/5 steps)): 1 Hz to 10 MHz. Sweep time Span = 0 Hz: 1 µs to 2500 s in 5% steps. Displayed average noise floor in dBm (0 dB RF attenuation, RBW 10 Hz, VBW 1 Hz, 20 averages, trace average, span 0 Hz, termination 50 ohm): <–145, –150 typ (10 MHz to 3.5 GHz). Max. dynamic range, bandwidth 1 Hz Displayed noise floor to 1 dB compression: 160 dB. Maximum input level CW RF power: 20 dBm (=0.1 W). Trigger: free run, line, video, RF, external. Display: 24 cm LC TFT colour display (9.5"). IEC/IEEE-bus control interface to IEC625-2 (IEEE 488.2), command set: SCPI 1994.0. Options. FSE-B2, 7 GHz Frequency Extension. FSE-B7, Vector Signal Analyzer. FSE-B10, Tracking Generator 7 GHz. FSE-B11, Tracking Generator 7 GHz with I/Q modulator. FSE-B12, Switchable Attenuator for Tracking Generator. FSE-B13, 1 dB Attenuator. FSE-B15, Controller for FSE (mouse and keyboard included). FSE-B16, Ethernet Interface. FSE-B17, 2nd IEC/IEEE-Bus Interface for FSE. FSE-B18, Removable Hard Disk. FSE-B19, 2nd Hard Disk for FSE-B18 (firmware included). FSE-B22, Increased Level Accuracy up to 2 GHz. FSE-B23, Broadband Output 741.4 MHz. FS-K3, Noise Measurement Software, Windows. FS-K4, Phase Noise Measurement Software, Windows. FSE-K10, GSM Application Firmware Mobile station. FSE-K11, GSM Application Firmware Base station. FSE-K20, EDGE Application Firmware Mobile station. FSE-K21, EDGE Application Firmware Base station.



 

Standard Calibration $635.00 *
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*This is a Web introductory price for one calibration of the ROHDE & SCHWARZ FSEA30. Price does not in most cases include measurement performance data. Pricing does include NIST traceable calibration and issue of a calibration certificate and calibration label. Pricing may vary slightly due to volume and location of laboratory supporting calibration. Volume pricing may apply. On-site fees may apply depending on logistics, location and volume of work to be completed during the visit.


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

Average Power
Average power means that the energy transfer rate is to be averaged over many periods of the lowest frequency involved. For a CW signal, the lowest frequency and highest frequency are the same, so average power and power are the same. For an amplitude modulated wave, the power must be averaged over many periods of the modulation component of the signal as well.

Harmonic
A harmonic of a wave is a component frequency of the signal that is an integer multiple of the fundamental frequency, i.e. if the fundamental frequency is f, the harmonics have frequencies 2f, 3f, 4f, . . . etc.

Phase Noise
Phase noise is the frequency domain representation of rapid, short-term, random fluctuations in the phase of a waveform, caused by time domain instabilities. Phase noise (L(f)) is typically expressed in units of dBc/Hz, representing the noise power relative to the carrier contained in a 1 Hz bandwidth centered at a certain offsets from the carrier.


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