Keysight (Agilent) E5574A REPAIR and Keysight (Agilent) E5574A CALIBRATION

The Keysight (Agilent) E5574A is currently in stock and available for purchase on our  Sales Page
It is also available for immediate rental.
Custom-Cal has a high success rate in the repair of the Keysight (Agilent) E5574A. 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) E5574A 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) E5574A   Description / Specification:   Spec Sheet 
Keysight (Agilent) E5574A Optical Loss Analyzer

Optical loss Analyzer. Is a solution for the loss/gain characterization of active and passive optical components. A pigtailed optical output provides polarization dependent loss measurements with the highest performance. A selection of optical heads covers 800 to 1700 nm wavelengths and power levels between +27 and - 90 dBm. Insertion Loss/Gain and Coupling Ratio Measurement Specifications. Laser Source: Fabry-Perot laser with built-in isolator. Center wavelength, 1310 ±20 nm (Option 013), 1550 ±20 nm (Option 015), 1310/1550 ±20 nm (Option 135). Fiber Type: single-mode. 9/125 um. Display Resolution: 0.001 dB. Output Power: =10 dBm. =8 dBm typical. CW-Stability (15 min. T =const): ±0.01 dB. Backreflection Sensitivity (typical): < 0.001 dB p-p @ 4 % reflection. Maximum measurable gain (dB): upper power limit of optical head (dBm) minus source output power (dBm). Maximum measurable insertion loss (dB): output power of source (dBm) minus sensitivity of optical head (dBm).



 

Standard Calibration $475.00 *
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*This is a Web introductory price for one calibration of the Keysight (Agilent) E5574A. 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 Optical Terms and Definitions. For a complete list go to our  Terms and Definitions Page.

Bandwidth
Bandwidth is the difference between the upper and lower frequencies in a contiguous set of frequencies within which a fiber optic component, link or network will operate.

Extinction Ratio (ER)
Extinction Ratio is the ratio of two optical power levels, of a digital signal generated by an optical source, (example a laser diode), where P1 is the optical power level generated when the light source is "on," and P0 is the power level generated when the light source is "off." The extinction ratio may be expressed as a fraction, in dB, or as a percentage.

Optical Signal-to-noise Ratio (OSNR)
Optical Signal-to-noise ratio is the ratio between the signal power and the noise power in a given bandwidth. Most commonly a reference bandwidth of 0.1 nm is used. This bandwidth is independent from the modulation format, the frequency and the receiver. For instance a OSNR of 20dB/0.1nm could be given, even the signal of 40 GBit DPSK would not fit in this bandwidth. OSNR is measured with a Optical Spectrum Analyzer. It is generally measured at the wavelength of interest.

Repeatability
Repeatability is the variation in a number of repeated measured quantities when measurement conditions are changed and restored. The value corresponds to half the spread between the minimum and maximum value measured.

Wavelength Repeatability
Wavelength Repeatability is the random uncertainty in reproducing a wavelength after detuning and re-setting the wavelength. The wavelength repeatability is ± half the span between the maximum and the minimum value of all actual values of these wavelengths. Example test condition: uninterrupted TLS output power, constant power level, temperature within operating temperature range, coherence control off, short time span. Note: NOTE The long-term wavelength repeatability can be obtained by taken the wavelength repeatability and wavelength stability into account.


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