Centennial Nobel
Dual-Wavelength Femtosecond Laser
The JZUFL-DW-01 Dual-Wavelength Femtosecond Laser is a series-based laser product developed with proprietary intellectual property. Built on a modular design philosophy and high-efficiency frequency-doubling technology, it achieves simultaneous dual-wavelength output in both the 1560 nm and 780 nm bands to satisfy diverse application requirements. Due to their ultra-short time scales and ultra-high peak power, ultrafast lasers have attracted significant attention across quantum optics, optical communications, super-resolution imaging, spectroscopy, biomedicine, and precision processing. Ultrafast laser technology represents a major research frontier worldwide and largely defines the development direction of modern laser technology.

Product Advantages

Dual-Wavelength Output

Femtosecond-Level Pulse Output (minimum down to 50 fs)

Distributed Chirp Management for near Fourier-transform-limited pulse output

Modular Architecture with multi-parameter adjustability and automated electronic/thermal control

All-PM Fiber Seed Source Design for superior environmental adaptability
Product Advantages

Dual-Wavelength Output

Femtosecond-Level Pulse Output (minimum down to 50 fs)

Distributed Chirp Management for near Fourier-transform-limited pulse output

Modular Architecture with multi-parameter adjustability and automated electronic/thermal control

All-PM Fiber Seed Source Design for superior environmental adaptability
Application Fields
01 Quantum Optics & Photonic Quantum Computing
02 Precision Ranging & Optical Frequency Comb Light Sources
03 Super-Resolution Imaging & Spectroscopy
04 Pump-Probe Spectroscopy Systems & Asynchronous Sampling Systems
05 Optical Communications & Semiconductor Device Testing
06 Ultrafast & Nonlinear Process Research
07 Micro/Nano-Fabrication & Precision Processing


Application Fields
01 Quantum Optics & Photonic Quantum Computing
02 Precision Ranging & Optical Frequency Comb Light Sources
03 Super-Resolution Imaging & Spectroscopy
04 Pump-Probe Spectroscopy Systems & Asynchronous Sampling Systems
05 Optical Communications & Semiconductor Device Testing
06 Ultrafast & Nonlinear Process Research
07 Micro/Nano-Fabrication & Precision Processing

1560 nm & 780 nm Laser Output Spectrum

1560 nm & 780 nm Laser Output Pulse Profiles
Specifications
JZUFL-DW-01
| Parameter |
Specification
|
| Center Wavelength | 1560nm&780nm |
| Pulse Duration | 80fs |
| Repetition Rate | 80MHz |
| Average Output Power | >150mW@1560nm;>50mW@780nm |
| Polarization Extinction Ratio (PER) | 20dB |
| Pigtail Length | 0.5m |
| Power Stability | 0.1(%RMS) |
| Optical Interface | FC/APC, Free Space |
| Number of Channels | 2 |
| Output Mode | PM Panda Fiber & Free-Space Beam |
| Electronics Interface | SMA/USB |
| Thermal Control | TEC Temperature Control |
| Power Consumption | 100W |
| Dimensions | 230×190×80mm³ |
| Operating Temperature | 5~40℃ |
| Operating Humidity | 20%~80%RH |
Specifications
JZUFL-DW-01
| Parameter |
Specification
|
| Center Wavelength | 1560nm&780nm |
| Pulse Duration | 80fs |
| Repetition Rate | 80MHz |
| Average Output Power | >150mW@1560nm;>50mW@780nm |
| Polarization Extinction Ratio (PER) | 20dB |
| Pigtail Length | 0.5m |
| Power Stability | 0.1(%RMS) |
| Optical Interface | FC/APC, Free Space |
| Number of Channels | 2 |
| Output Mode | PM Panda Fiber & Free-Space Beam |
| Electronics Interface | SMA/USB |
| Thermal Control | TEC Temperature Control |
| Power Consumption | 100W |
| Dimensions | 230×190×80mm³ |
| Operating Temperature | 5~40℃ |
| Operating Humidity | 20%~80%RH |
Service System

Pre-sales Consultation

Customized Solutions

Installation & Commissioning

After-Sales & Maintenance