A calibration by Custom-Cal is performed by engineers with extensive OEM experience. We have the expertise and the necessary standards to perform the ANRITSU OSLN50A-8 Calibration, onsite calibration may be available. We specialize in quick turnaround times and we can handle expedited deliveries upon request.

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   ANRITSU OSLN50A-8   Description / Specification:    
ANRITSU OSLN50A-8 50 ohm 8 GHz Type-N Calibration Kit

The Anritsu OSLN50A-8 calibration kit has been designed to provide superior measurement results when used with precision instruments. It is designed for use in both field and lab environments.

Frequency range: DC to 8 GHz.
C0 (1E-15) F: 4.000.
C1 (1E-27) F/Hz: 200.000.
C2 (1E-36) F/Hz2: 0.000.
C3 (1E-45) F/Hz3: 1.100.
Phase (DC to 6 GHz): ≤ ± 2.0°.
Phase (6 to 8 GHz): ≤ ± 3.0°.

L0 (1E-12) H: 0.000.
L1 (1E-24) H/Hz: 0.000.
L2 (1E-33) H/Hz2: 0.000.
L3 (1E-42) H/Hz3: 0.000.
Phase (DC to 6 GHz): ≤ ± 1.5°.
Phase (6 to 8 GHz): ≤ ± 2.5°.

DC Resistance: 50 Ω ± 0.25 Ω.
Return Loss (DC to 6 GHz): ≥ 42 dB.
Return Loss (6 to 8 GHz): ≥ 37 dB.
Max Power: 1.0 W.


Standard Calibration $125.00 *
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*This is a Web introductory price for one calibration of the ANRITSU OSLN50A-8. 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.

Clipping is the limiting of a signal so that it never exceeds some threshold.

Modulation is the coding of information onto the carrier frequency. This includes amplitude, frequency, or phase modulation techniques.

Sensitivity is the smallest signal that can reliably detected. Sensitivity specifies the strength of the smallest signal at the input that causes the output signal power to be M times the output noise power where M must be specified. M=1 is very popular

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