Laser Spectrum Analyzer (LSA Series)
The Laser Spectrum Analyzer (LSA Series) is a compact and robust spectrometer designed for precise measurement of both pulsed and continuous lasers. It offers high resolution and customizable range and resolution parameters, making it ideal for academic research and industrial applications.
Specification Snapshot
Resolving Power LSA 2R
40000 (singlemode fiber), 20000 (multimode fiber)
Resolving Power LSA Standard/UV
20000 (singlemode fiber), 10000 (multimode fiber)
Resolving Power LSA VIS/IR-I
15000 (330–1060nm singlemode fiber), 7500 (330–1060nm multimode fiber), 4000 (1060–1750nm singlemode fiber), 2000 (1060–1750nm multimode fiber)
Resolving Power LSA IR-II
2800 (1000–2250nm singlemode fiber), 2000 (1000–2250nm multimode fiber), 2000 (500–1000nm singlemode fiber), 1000 (500–1000nm multimode fiber)
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Overview
The Laser Spectrum Analyzer (LSA Series) is a compact and robust spectrometer designed for precise measurement of both pulsed and continuous lasers. It offers high resolution and customizable range and resolution parameters, making it ideal for academic research and industrial applications.
Specifications
| Parameter | Value |
|---|---|
| Measurement Range LSA 2R VIS | 330–1180nm |
| Measurement Range LSA Standard/UV | 330–1180nm, 192–1180nm, 192–800nm |
| Measurement Range LSA VIS/IR-I | 330–1750nm |
| Measurement Range LSA IR-II | 1000–2250nm, 500–1000nm |
| Absolute Accuracy LSA 2R | 2pm (330–420nm), 3GHz (420–1180nm) |
| Absolute Accuracy LSA Standard/UV | 6pm (192–330nm), 3pm (330–390nm), 6GHz (390–1180nm) |
| Absolute Accuracy LSA VIS/IR-I | 6pm (330–420nm), 6GHz (420–1060nm), 25GHz (1060–1750nm) |
| Absolute Accuracy LSA IR-II | 25GHz (1000–2250nm), 60GHz (500–1000nm) |
| Wavelength Deviation Sensitivity LSA 2R | 1pm (330–420nm), 1.5GHz (420–1180nm) |
| Wavelength Deviation Sensitivity LSA Standard/UV | 5pm (192–330nm), 3pm (330–420nm), 3GHz (420–1180nm) |
| Wavelength Deviation Sensitivity LSA VIS/IR-I | 3pm (330–420nm), 6GHz (420–1060nm), 12GHz (1060–1750nm) |
| Wavelength Deviation Sensitivity LSA IR-II | 12GHz (1000–2250nm), 30GHz (500–1000nm) |
| Resolving Power LSA 2R | 40000 (singlemode fiber), 20000 (multimode fiber) |
| Resolving Power LSA Standard/UV | 20000 (singlemode fiber), 10000 (multimode fiber) |
| Resolving Power LSA VIS/IR-I | 15000 (330–1060nm singlemode fiber), 7500 (330–1060nm multimode fiber), 4000 (1060–1750nm singlemode fiber), 2000 (1060–1750nm multimode fiber) |
| Resolving Power LSA IR-II | 2800 (1000–2250nm singlemode fiber), 2000 (1000–2250nm multimode fiber), 2000 (500–1000nm singlemode fiber), 1000 (500–1000nm multimode fiber) |
| Linewidth Estimation Accuracy LSA 2R | 4GHz |
| Linewidth Estimation Accuracy LSA Standard/UV | 7GHz |
| Linewidth Estimation Accuracy LSA VIS/IR-I | 3pm (330–420nm), 7GHz (420–1060nm), 40GHz (1060–1750nm) |
| Linewidth Estimation Accuracy LSA IR-II | 60GHz (1000–2250nm), 70GHz (500–1000nm) |
| Maximum Linewidth LSA 2R | 0.6THz (FWHM) |
| Maximum Linewidth LSA Standard/UV, LSA VIS/IR-I, LSA IR-II | 1.5THz (FWHM) |
| Measurement Speed LSA Standard/UV, LSA VIS/IR-I, LSA IR-II | 500Hz (Data Acquisition), 300Hz (Wavelength and spectrum calculation), 100Hz (Wavelength and spectrum calculation with live display) |
| Measurement Speed LSA 2R VIS | 60Hz (Data Acquisition, Wavelength and spectrum calculation) |
| Minimum Required Input Energy and Power LSA Standard, LSA 2R | 0.0001–0.04μJ (or μW) |
| Minimum Required Input Energy and Power LSA UV-I, LSA UV-II, LSA UV-II/VIS | 0.0001–0.1μJ (or μW) |
| Minimum Required Input Energy and Power LSA VIS/IR-I | 0.0001–0.04μJ (330–1060nm), 0.02–2μJ (1060–1750nm) |
| Minimum Required Input Energy and Power LSA IR-II | 0.02–2μJ |
| Diffraction Grating Free Spectral Range LSA 2R | 2.3THz |
| Diffraction Grating Free Spectral Range LSA Standard/UV, LSA VIS/IR-I, LSA IR-II | ~5.4THz |
| Dimensions | 325×180×77mm |
| Weight | 2.8kg |
| Interface | High-speed USB 2.0 connection |
| Power Supply | <2.3W, supply directly via USB cable; LSA IR-II: external power supply included |
Applications
1. Laser diagnostics and development 2. Academic research 3. Industrial applications for production certification of laser linewidths and lineshapes
Key Features
1. High resolution up to 40000 λ/Δλ 2. Measurement speed up to 500Hz 3. Compact and robust design 4. Ability to measure both pulsed and continuous lasers 5. Customizable range and resolution parameters
Datasheet
Product Datasheet
PDF
Supplier Information
<p>The TOPTICA Group is headquartered in Grafelfen, near Munich, Germany. Based on this, we have grown into a family of photonics experts from around the world and have established further research and production bases in Rochester, New York, USA, and Bordeaux, Nouveau-Aquitaine, France. In addition, we have also established a global sales service network and cooperation system, such as TOPTICA Japan companies located in Tokyo and Osaka, and TOPTICA China companies located in Beijing and Shanghai. You can find TOPTICA's solid business network in various photonic technology hotspots around the world.</p><p><br></p><p>What is our core business? We develop and manufacture high-end laser systems for scientific discovery and industrial innovation. From semiconductor lasers and fiber lasers to amplifiers and frequency conversion technologies, we focus on providing high-quality photonic solutions.</p><p><br></p><p>As a group, we cover many important aspects of the photonics value chain. This started with the in-house design of laser diodes by TOPTICA EAGLEYARD, a member of the Group since 2013. We work closely with partners in the crystal and fiber fields to ensure seamless synergy of laser systems. Our business scope extends to many cutting-edge projects, such as building artificial guide stars for the world's largest astronomical telescopes in TOPTICA PROJECTS, and developing optical quantum clocks that can redefine time measurement. TOPTICA Group can provide a variety of photonics solutions from "rare earth elements to sodium guide stars".</p>
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