Ever looked at two 14-pin butterfly modules side-by-side and realized they look completely identical?
You are not alone. Both SLEDs (Superluminescent Diodes) and DFB (Distributed Feedback) Lasers frequently share the exact same TEC-cooled package and FC/APC pigtails, making sourcing and selection errors incredibly common.
Here is how to tell them apart in under two minutes.
1. Core Physics: Broadband vs. Single-Frequency
- SLED (Superluminescent Diode)
- Mechanism: Uses an angled waveguide and AR coatings to eliminate cavity resonance. It outputs Amplified Spontaneous Emission (ASE).
- Light Profile: Broadband, low temporal coherence (LED-like spectrum), with no sharp lasing threshold. It is not a laser diode.
- DFB Laser Diode
- Mechanism: Integrates a Bragg grating to force single-longitudinal-mode stimulated emission.
- Light Profile: Highly coherent, single-frequency light with a narrow linewidth and a distinct current threshold.
2. Quick Identification Tips
I. Check the Label
- SLED: Labeled
SLEDorSLD. Shows a central wavelength and bandwidth (e.g.,1550nm FWHM = 40nm). Specifies 3dB Bandwidth and Spectral Ripple. - DFB: Labeled
DFB,Laser, orLD. Shows a single precise wavelength (e.g.,1550.12nm). Specifies Linewidth and SMSR.
II. Fiber & Drivers
- Fiber: Both use SMF or PM fiber. However, SLEDs almost never use Multimode Fiber (MMF) as it ruins their spatial single-mode quality.
- Drivers: DFB drivers require frequency tuning or wavelength locking; SLED drivers focus strictly on high-stability temperature (TEC) control to prevent spectral drift.
3. Application Summary
| SLED (Broadband / Low Coherence) | DFB (Single-Freq / High Coherence) |
| Fiber Optic Gyros (IFOG): Eliminates phase noise. | Coherent Telecom: Long-haul DWDM networks. |
| Medical OCT: High-resolution tissue imaging. | Gas Sensing (TDLAS): Precise gas absorption. |
| Component Testing: Scanning filters and FBGs. | Fiber Sensing: Brillouin temperature/strain. |
| Metrology: Eliminates laser speckle/artifacts. | Coherent LiDAR: Velocity and ranging. |
