Raman Spectrometers
Raman UNIKA
The ELODIZ UNIKA is a compact single-channel (532nm or 785nm) Raman system that offers research-grade performance whilst maintaining simplicity and ease of use. The system is flexible and upgradeable up to three laser channels enabling expansion of data with the user’s growing analytical requirements.
| Laser Wavelength | 532nm or 785nm | 
| Spectral Range | 532nm: 200 .. 4200 cm-1 785nm: 200 .. 3000 cm-1 | 
| 532nm: 7 cm-1 @ 2520 cm-1785 nm: | |
| Max Laser Power | 532 nm: 80 mW 785 nm: 300 mW | 
| Adjustable laser | 532 nm – in 10% steps 785 nm – in 1% steps | 
| Operation | Standard 2m long fibre-optic probe included (other models and lengths available on demand) | 
| Slit | 10um | 
| Unit Calibration | Permanent factory calibration under EU CHARISMA protocols for standardisation | 
| Size (WxDxL) | 31x31x16 cm (portable version) 43x43x18 cm (rack version) | 
| Weight (Kg) | 5.5 | 
| NA Fibre | 0.22 | 
| Detector Type | Si based CCD detector | 
| Software Control | SOMPAS by ELODIZ, under Windows 10/Windows 11, Linux (Ubuntu 20.04 LTS) | 
| PC Connection | Ethernet; device also includes two built-in USB connectors | 
*subject to change without notice
Supported Industries
- Art conservation and archaeology studies 
- Bioscience and Medical Diagnosis 
- Surface enhancement Raman spectroscopy 
- Polymers and Chemical Processes 
- Online Reaction monitoring 
- Semiconductor & Solar Industry 
- Geology, Gemology and Mineralogy 
- Pharmaceutical Industry 
- Environmental Science 
- Police and Forensic Analysis 
- Teaching laboratories and Physics 
- Quality Control and Quality Assurance 
- General Research 
Key Applications
- Direct Raman analysis of samples with selected laser line 
- Reaction monitoring/PAT analysis using 
- Process analysis 
- Academic research 
Raman NEEGALA™
ELODIZ NEEGALA™ is our most popular compact multi-laser system that offers research-grade performance while maintaining ease of use. The system combines flexibility, functionality, and user-friendly design with full control via software. It consists of ultra-stable diode lasers and high-performance spectrometers, designed to operate in a variety of modes to address the limitations of single-line portable or modular Raman units.
| Laser Wavelength | 532nm & 785nm | 
| Spectral Range | 532 nm: 200 .. 4200 cm-1 785 nm: 200 .. 3000 cm-1 | 
| Spectral Raman Resolution | 532 nm: 785 nm: | 
| Max Laser Power | 532 nm: 80 mW 785 nm: 300 mW | 
| Adjustable laser | 532 nm – in 10% steps 785 nm – in 1% steps | 
| Operation | Neegala™ 2 individual probes (one per channel); standard 2m long fibre-optic probe (other models and lenghts available on demand) | 
| Slit | 10um | 
| Unit Calibration | Permanent factory calibration under EUROPEAN CHARISMA protocols for standardisation | 
| Size (WxDxL) (mm) | 31x31x16 cm (portable version) 43x43x18 cm (rack version) | 
| Weight (Kg) | 7 | 
| NA Fibre | 0.22 | 
| Detector Type | Si based CCD detector | 
| Software Control | SOMPAS by ELODIZ, under Windows 10/Windows 11, Linux (Ubuntu 20.04 LTS) | 
| PC Connection | Ethernet; device also includes two built-in USB connectors | 
*subject to change without notice
Supported Industries
- Art conservation and archaeology studies 
- Bioscience and Medical Diagnosis 
- Surface enhancement Raman spectroscopy 
- Polymers and Chemical Processes 
- Online Reaction monitoring 
- Semiconductor & Solar Industry 
- Geology, Gemology and Mineralogy 
- Pharmaceutical Industry 
- Environmental Science 
- Police and Forensic Analysis 
- Teaching laboratories and Physics 
- Quality Control and Quality Assurance 
- General Research 
Key Applications
- Direct Raman analysis of samples with selected laser lines 
- Reaction monitoring/PAT analysis using immersion-safe fiber-optic probe shaft accessory 
- Attachment to other accessories for process analysis 
- Studying changes or distribution of composition across a sample, and/or with time e.g. stability of pharmaceutical preparations, sample homogeneity in pharmaceuticals and additives, and crystallinity in polymers 
Raman DUPLA™
The ELODIZ DUPLA™ Raman system is another of our compact multi–lay Raman devices offering research-grade performance while maintaining ease of use. The product can detect low signal levels and provide long-term operational stability – features required in a broad number of applications. This makes DUPLA the ideal partner for general material characterization and reaction monitoring processes.
| Laser Wavelength | 532 & 532 nm | 785 & 785 nm | 
| Spectral Range | 200 .. 4400 cm-1 | 200 .. 3000 cm-1 | 
| Spectral Raman Resolution | 7 cm-1 @ 2520 cm-1 | 5 cm-1 @ 968 cm-1 | 
| Max Laser Power | 80 mW | 300 mW | 
| Adjustable laser | In 10% steps | In 1% steps | 
| Operation | 2 individual probes (one per channel); standard 2m long fibre-optic probe (other models and lengths available on demand) | 2 individual probes (one per channel); standard 2m long fibre-optic probe (other models and lengths available on demand) | 
| Slit | 10um | 10um | 
| Unit Calibration | Permanent factory calibration, under EUROPEAN CHARISMA protocols for standardization | Permanent factory calibration, under EUROPEAN CHARISMA protocols for standardization | 
| Size (WxDxL) (mm) | 310x310x160 (portable version) 430x430x180 (rack version) | 310x310x160 (portable version) 430x430x180 (rack version) | 
| Weight (Kg) | 7 | 7 | 
| NA Fibre | 0.22 | 0.22 | 
| Detector Type | Si based CCD detector | Si based CCD detector | 
| Software Control | SOMPAS by ELODIZ, under Windows 10/Windows 11, Linux (Ubuntu 20.04 LTS) | SOMPAS by ELODIZ, under Windows 10/Windows 11, Linux (Ubuntu 20.04 LTS) | 
| PC Connection | Ethernet/on demand touchscreen interface | Ethernet/on demand touchscreen interface | 
*subject to change without notice
Supported Industries
- Art conservation and archaeology studies 
- Bioscience and Medical Diagnosis 
- Surface enhancement Raman spectroscopy 
- Polymers and Chemical Processes 
- Online Reaction monitoring 
- Semiconductor & Solar Industry 
- Geology, Gemology and Mineralogy 
- Pharmaceutical Industry 
- Environmental Science 
- Police and Forensic Analysis 
- Teaching laboratories and Physics 
- Quality Control and Quality Assurance 
- General Research 
Key Applications
- Direct Raman analysis of samples with selected laser lines 
- Reaction monitoring / PAT analysis using immersion-safe fiber-optic probe shaft accessory 
- Attachment to other accessories for process analysis 
- Studying changes or distribution of composition across a sample, and/or with time e.g. stability of pharmaceutical preparations, sample homogeneity in pharmaceuticals and additives and crystallinity in polymers 
Raman TRIPLA™
ELODIZ TRIPLA™ is a compact multi-channel Raman system that offers three independent optical paths that can be run simultaneously to transform your experiment. The ability to integrate three Raman setups in a single device makes TRIPLA particularly valuable in reaction monitoring and process control, where multiple readouts can be simultaneously obtained via three different probes.
| Laser Wavelength | 532nm and/or 785nm + another laser wavelength** | 
| Spectral Range | Any combination of the below 532nm: 200 .. 4200 cm-1 | 
| Spectral Raman Resolution | 532nm: 7 cm-1 @ 2520 cm-1785 nm: 5 cm-1 @ 968 cm-1 | 
| Max Laser Power | 532 nm: 80 mW 785 nm: 300 mW | 
| Adjustable laser | 532 nm – in 10% steps 785 nm – in 1% steps | 
| Operation | Standard 2m long fibre-optic probe included (other models and lengths available on demand) | 
| Slit | 10um | 
| Unit Calibration | Permanent factory calibration under EU CHARISMA protocols for standardization | 
| Size (WxDxL) | 31x31x16 cm (portable version) 43x43x18 cm (rack version) | 
| Weight (Kg) | 9 | 
| NA Fibre | 0.22 | 
| Detector Type | Si based CCD detector | 
| Software Control | SOMPAS by ELODIZ, under Windows 10/Windows 11, Linux (Ubuntu 20.04 LTS) | 
| PC Connection | Ethernet; device also includes two built-in USB connectors | 
*subject to change without notice
**other laser models (632/830) available on demand
Supported Industries
- Art conservation and archaeology studies 
- Bioscience and Medical Diagnosis 
- Surface enhancement Raman spectroscopy 
- Polymers and Chemical Processes 
- Online Reaction monitoring 
- Semiconductor & Solar Industry 
- Geology, Gemology and Mineralogy 
- Pharmaceutical Industry 
- Environmental Science 
- Police and Forensic Analysis 
- Teaching laboratories and Physics 
- Quality Control and Quality Assurance 
- General Research 
Key Applications
- Multiple chemical reaction monitoring (simultaneous multipoint analysis with one single device) 
- Process control with 1, 2 or 3 independent channels 
- High throughput Quality Control Assurance environments 
- Multiple setups and laser configurations in the Production chain (versatile and flexible Raman configurations with little to no user interaction) 
 
                         
            
              
            
            
          
               
            
              
            
            
          
               
            
              
            
            
          
              