| Code | 671613 | Type | Spectral Analyzer | |
| Wavelength Range | 600–1700nm | Spectral Resolution | 0.02–2nm (adjustable) | |
| Wavelength Repeatability | ±0.008nm | Wavelength Accuracy | ±0.06nm | |
| Wavelength Linearity | ±0.02nm (1450–1520nm, 1580–1620nm); ±0.01nm (1520–1580nm) | Power Range | –90dBm to +20dBm | |
| Power Accuracy | ±0.25dB @1310/1550nm, –20dBm | Power Linearity | ±0.06dB (input power: –50 to +10dBm) | |
| Power Sensitivity | – –90dBm (1300–1620nm, resolution ≥ 0.05nm) – –85dBm (1000–1300nm, resolution ≥ 0.05nm) – –55dBm (600–1000nm, resolution ≥ 0.05nm) |
Scan Speed | 120nm/s | |
| Optical Return Loss | >35dB (APC) | Polarization Dependent Loss | ±0.05dB @1550nm | |
| Input Fiber | MMF (50/125µm, 62.5/12 µm), SMF (9.5/125µm) | Display | 1280 × 800mm | |
| Interfaces | USB 2.0 ×5, USB 3.0, VGA, GP-IB, Ethernet (10M/100M/1000M), RS232-DB9 | Dimensions | 427 × 221 × 448mm | |
| Weight | 17kg | Operating Temperature | +5 to +35°C | |
| Storage Temperature | –10 to +50°C | Power Supply | 100–240 VAC, 50–60Hz, 1.7A |
AE8600E High-Performance Spectrometer
Input Fiber: SMF (9.5/125 µm), MMF (50/125 µm, 62.5/125 µm) Wavelength Range: 600–1700 nm Resolution Bandwidth: 0.02–2 nm
The AE8600E High-Performance Spectrometer is a diffraction-grating-based instrument designed for precise optical spectrum analysis of fiber signals. Covering a wavelength range of 600–1700 nm, it supports both single-mode and multimode fiber inputs and offers a dynamic range up to 75 dB, enabling effective separation and accurate measurement of closely spaced spectral signals.
The AE8600E provides seven adjustable spectral resolution settings (0.02–2 nm) to accommodate various testing requirements, with a built-in calibration function achieving wavelength accuracy up to ±0.01 nm. It is widely applicable to WDM fiber communication, fiber sensing, fiber gyroscopes, pulsed lasers, LiDAR, photonic integrated circuits, and optical coherence tomography (OCT)—meeting the needs of high-resolution spectral detection and analysis across diverse photonics applications.














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