ADVANTEST R3162 CALIBRATION and ADVANTEST R3162 REPAIR

 
A calibration by Custom-Cal is performed by engineers with extensive OEM experience. We have the expertise and the necessary standards to perform the ADVANTEST R3162 Calibration, onsite calibration may be available. We specialize in quick turnaround times and we can handle expedited deliveries upon request.

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   ADVANTEST R3162   Description / Specification:    
ADVANTEST R3162 8 GHz Portable Spectrum Analyzer

The Advantest R3162 is a 8 GHz portable spectrum analyzer which realizes basic functions adaptable to various measurement needs. It can be used as dedicated measuring instrument for diversified applications, such as cable TV, EMC measurement and digital mobile communications. The internal automatic calibration function guarantees the total level accuracy of ±1.5 dB, level correction factor can be stored in the internal memory, DDS is employed to improve frequency reading accuracy, and frequency span error is lowered to less than 1%. As a result of increasing the sweep repetition cycles by improving the synthesized local oscillator, 20 cycle/s (typ.) of trace data rewriting becomes possible, enabling far more real-time waveform measurement. High speed GPIB increase, the throughput of automatic measurement, thus saving valuable time. For EMI precompliance measurement, 6-dB bandwidth filters for 9 kHz, 120 kHz and 1 MHz as well as QP detector are equipped as standard. Optional 200 Hz narrow band-pass filter can be added. For high-speed time domain measurement function which is indispensable for mobile communications, optional 50 µs sweep is effective. For power measurement, AVE. POWER and TOTAL POWER processing functions are provided. Counter function, ACP, OBW, dBc/Hz, %AM and many other functions are provided for various measurement purposes. The internal preamplifier is equipped as standard. The high-resolution, 6.5-inch TFT color LCD realizes easy-to-see display of data. Display data is output through the VGA video output on the rear panel and can be output to external monitor. Specifications. Frequency range: 9 kHz to 8 GHz. Frequency reading accuracy (Start, stop, center frequency, marker frequency): ±(Reading of frequency × Frequency reference accuracy + Span × 1% + Resolution bandwidth × 15% + 60 Hz). Frequency span Range: 1 kHz to 8 GHz, 0Hz (Zero span). Frequency span Accuracy: <= ± 1%. Resolution bandwidth (3 dB) Range: 1kHz to 3MHz, 1-3-10 sequence, 30 Hz to 300 Hz (Option). Measuring range: +30 dBm to the average of displayed noise level. Maximum input level (Input ATT >= 10 dB) Preamplifier OFF: + 30dBm, ± 50VDC max. Sweep time: 20 ms to 1000 s, 50 µs to 1 s (Option29, Zerospan). Options. OPT.20 High-stability frequency reference. OPT.27 Narrow-band resolution bandwidths. OPT.29 Time-domain high-speed sweeps. OPT.74 Tracking generator. OPT.73 Wide-range FM demodulation.



 

Standard Calibration $430.00 *
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*This is a Web introductory price for one calibration of the ADVANTEST R3162. 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.

Adjacent Channel Power
Adjacent Channel Power is the power from a modulated communications channel that leaks into an adjacent channel. This leakage is usually specified as a ratio to the power in the main channel, but is sometimes an absolute power.

Fall Time
Fall time is the time required for the amplitude of a pulse to decrease (fall) from a specified value (usually 90 percent of the peak value exclusive of overshoot or undershoot) to another specified value (usually 10 percent of the maximum value exclusive of overshoot or undershoot).

Overshoot
Overshoot is the distortion that follows a major transition; the difference between the peak power point and the pulse-top amplitude computed as a percentage of the pulse-top amplitude.


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