LiDAR & Time-of-Flight
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Seeing Distance. Making Decisions.
Whether enabling autonomous systems, monitoring infrastructure or measuring complex environments, LiDAR and Time-of-Flight (ToF) technologies depend on high-performance laser sources to deliver the speed, range and resolution their applications demand.
Laser 2000 helps customers develop high-performance LiDAR and ToF solutions by selecting the right laser technology for their specific sensing requirements.
Connecting Photonics for Intelligent Sensing.
Your Challenge
Reliable distance measurement requires more than precision.
Performance depends on the right balance of wavelength, pulse characteristics, measurement range, ambient light rejection and eye safety — all of which vary with application and environment.
The challenge is not measuring distance. It’s capturing reliable data in real-world conditions.
Why Lasers Matter for LiDAR
Every LiDAR system starts with the laser.
The laser source determines measurement range, resolution, scanning performance and system reliability. Selecting the right wavelength and pulse characteristics is essential for accurate, robust sensing in demanding environments.
Pulse Duration & Range
Short, high-peak-power pulses enable accurate time-of-flight range measurement.
Wavelength Selection
Eye-safe wavelengths and detector compatibility determine system architecture and range.
Peak Power
High peak power maximises detection range and signal-to-noise in challenging conditions.
Beam Divergence & Optics
Controlled beam divergence enables precise angular resolution across the measurement field.
What You Gain
Long-Range Accuracy
Reliable distance measurement across challenging operational ranges and environments.
3D Point Clouds
Build high-density spatial maps for navigation, inspection and environmental analysis.
Real-Time Response
Instant data capture enables on-the-fly decision-making for autonomous and dynamic systems.
Environmental Robustness
Optimised laser selection delivers reliable performance in outdoor and industrial conditions.
How We Help
Every sensing application has different requirements.
Laser 2000 works closely with customers to define the optimum laser strategy based on performance, eye safety, integration constraints and operating environment — from component evaluation to full system support.
Connecting Photonics. Creating Solutions.
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Frequently Asked Questions
Which laser is best for LiDAR applications?
The optimum solution depends on measurement range, wavelength, eye safety requirements and environmental conditions. Common choices include 905 nm and 1550 nm pulsed sources. We help customers evaluate the right technology for their specific use case.
Can Laser 2000 support OEM LiDAR development?
Yes. We help customers evaluate and integrate laser technologies for industrial and research-based LiDAR systems — including source selection, optical design and system integration support.
Which industries use LiDAR and Time-of-Flight?
Typical applications include industrial automation, robotics, surveying, mobility, infrastructure monitoring and environmental sensing — wherever accurate, real-time 3D data is required.
Let’s Connect
Developing a LiDAR or Time-of-Flight system? Talk to our experts about laser solutions for intelligent sensing.





