Agilent N1016A-K99 Stressed Eye Test Set Repeatable, adjustable, IEEE 802.3ae optical compliance testing The N1016A-K99 is a unique optical solution for the design, verification and manufacturing of 10 Gigabit Ethernet modules and linecards. The 10 Gigabit Ethernet methodology for measuring receiver impairment tolerance is designed to verify that a receiver is capable of operating at a BER of better than 1x 10-12 when presented with the worst case realworld signal. The methodology is very elaborate, effectively measuring more than just jitter. Called the stressed receiver conformance test, as described in the recently ratified IEEE Standard 802.3ae, the methodology requires an eye impairment that includes: sinusoidal jitter inter-symbol interference sinusoidal interference and attenuation The Agilent N1016A-K99 Stressed eye test set overcomes these difficulties by enabling the generation of an 802.3ae compliant optical stressed eye. As part of a complete system, the N1016A-K99 is designed to provide a stable, calibrated impaired eye. Beyond compliance, the N1016A-K99 allows for adjustability of the level of stress, providing the design or verification engineer the ability to determine the breaking point of the receiver, or to determine where and how a particular device is failing. Referred to as the stressed eye, this concept is relatively straightforward, however, construction of the stressed eye can prove to be difficult. Insufficient stress can allow weak receivers to appear compliant, while excessive stress might result in potentially good receivers appearing to be non-compliant. An IEEE 802.3ae compliant optical stressed eye as described by the stressed receiver conformance test
The N1016A-K99 is designed for compliance at 10.3125 Gb/s, with a 1310 nm transmitter. The N1016A-K99 leverages Agilent s expertise in instrument grade optics and high-speed digital design. Agilent has developed the techniques and technology to ensure that the optical performance remains stable and repeatable over temperature and time. This means that the stress will remain constant from module to module, and test system to test system, providing confidence in data collection and analysis. Stressed eye calibration Figure 1 shows a complete stressed eye test system. The 71501D provides the required levels of sinusoidal jitter, the E4422B provides the sinusoidal interfering signal, and the inter-symbol interference is added by switching in a filter in the N1016A K99. In order to ensure that the stress levels attained are compliant to the standard, a step-by-step process to set and calibrate the sinusoidal jitter, inter-symbol interference (ISI) and sinusoidal interference level is described in the N1016A-K99 manual. A calibration program, supplied on CD with the system controls the digital communications analyzer (DCA) during calibration. The program automates the DCA s measurement and calculation of vertical eye-closure penalty (VECP), optical modulation amplitude (OMA), jitter, and extinction ratio during calibration. Once compliant testing is completed, the elements of the stressed eye can be changed, whether the required level is above or below the level defined by the standard. This adjustability is possible with all of the elements of the stressed eye. As for example, the ISI can be switched in and out. The amplitude for the sinusoidal jitter can be stepped up in search mode to determine the robustness of the device under test. The attenuation and sinusoidal interference can also be adjusted. The N1016A-K99 may also be used as an instrument grade 1310 nm reference transmitter in a transmission and dispersion penalty test system as shown in Figure 2. Figure 1. Setup for generating the stressed eye from the IEEE 802.3ae Clause 52 Stressed Eye Conformance Test. Figure 2. Setup for testing transmitter and dispersion penalty from IEEE 802.3ae Clause 52 2
Ordering Information N1016A K99 Stressed eye test set (Includes test set, manual, calibration CD) Required Test Set-up Equipment Model/Option 71501D 202 71501D 203 Description 70004A MMS color display mainframe 70820A Microwave transition analyzer (jitter receiver/system controller) N1015A Modulation test set 305 or 310 20 & 80 MHz (305) or 80 MHz (310) 71501D 250 33250A 80 MHz Function / arbitrary waveform generator 71501D 440 Two OC-192 (9.953 Gb) hardware bandpass filters 71501D 467 Two12.4 GHz lowpass hardware filters 71501D 874 Jitter analysis system software 8648D or RF generator (Synthesized signal E4422B generator, 9 khz to 4000 MHz / ESG-A Series analog RF signal generator, 4 GHz) One of: 71501D 720 83752A Performance signal generator (250 khz to 20 GHz) 83732B Synthesized signal generator, 10 MHz to 20 GHz 71612 A/B/C Error performance analyzer 86100A/B 001 Infiniium digital communications analyzer mainframe One of: 86105B 101, 15 GHz Optical / 20 GHz Electrical 102, 103 plug-in module (best selection) 86106B 410 28 GHz optical/40 GHz Electrical plug-in module (alternative, lower sensitivity) Personal computer with National GPIB card, Windows operating systems, NT4.0, Win2K, WinXP Optional Equipment: Model/Option Description 86107A 010 Precision timebase reference module 8163B Lightwave multimeter 81560A Optical attenuator module 81591A Optical 1x2 switch module 83494A 103 Clock recovery module 3
Agilent N1016A-K99 10GbE Stressed Eye Generator and Reference Transmitter Performance Specifications and Characteristics Specifications describe the warranted performance of the instrument over the operating temperature and after a 1-hour warm-up period. Characteristics (italicized) provide information about non-warranted performance in the form of nominal values. General Optical Output Parameter Minimum Nominal Maximum Units Output power dbm Wavelength 1298 1308 1318 nm Output return loss 27 db RIN 136 db/hz Reference Mode Output Parameter Minimum Nominal Maximum Units Adjustable extinction ratio 1 10 db Rise and fall time (20-80%) 30 ps Jitter 2 0.15 0.20 UI pk-pk VECP (20% center of eye) 2 1 db Stressed Eye Mode Output Parameter Minimum Nominal Maximum Units Adjustable extinction ratio 1 3 3.5 db Jitter 2 0.15 UI pk-pk VECP (with only ISI filter) 2 1.5 2.0 db Maximum VECP (with SI) 2 5 db Digital Data Input (AC-coupled) Parameter Minimum Nominal Maximum Units Amplitude 600 900 mv pk-pk Impedance 50 ohms Return loss 9 db Data rates 10.3 Gb/s Sinusoidal Interferer Input (AC-coupled) Parameter Minimum Nominal Maximum Units Amplitude 0 10 dbm Impedance 50 ohms Return loss 10 db Frequency range 1 20 GHz Maximum Safe Input Levels Parameter Maximum Units Digital data input 1.2 V pk-pk Sinusoidal interferer input 20 dbm 1. Measured with a 2 7-1 PRBS on an Agilent 86100B, 86105B with OC-192, and 86017A 2. Measured to IEEE802ae definition 4
General Specifications Digital data input connector: APC-3.5 male Sinusoidal interferer input connector: Type-N female Optical output connector: Diamond HMS10/HP with FC/PC optical adapter Laser safety: 21 CFR 1040 Class IIIb, 60825-1 Class 3B General safety: Meets or exceeds CAN/CSA-C22.2 NO.1010 and EN 61010/IEC 61010-1 and all amendments EMI: Radiated and conducted emissions are in compliance with the requirements of CISPR Publication 11, Class A and immunity in compliance with IEC 61326-1. Power: 36 VA, 25 watts; 100, 120 VAC, 47 63 Hz 50 VA, 35 watts; 220, 240 VAC (±10%), 47 63 Hz Operating temperature: 10 to +45 deg C Storage temperature: 40 to +70 deg C Weight: 10 kg (22 lbs) Dimensions: 89mm (3.5") height, 430 mm (17") wide, 476 mm (18.75") depth 5
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