Our 633 nm Frequency/Intensity Stabilized Helium-Neon Lasers use a highly refined thermal compensation technique to provide an excellent balance of high output power and stability, low temperature sensitivity, and reliability. This extremely versatile research and instrumentation tool can toggle instantly between intensity and frequency stable modes.
- Stable-frequency mode with a quick feedback
- Stable-intensity mode with an adjustable power output
- Frequency drift 3 MHz maximum over 8 hours
- Intensity stability better than 0.2% over 1 hour
- Superior output power from single line, linearly polarized output
- Long coherence length See All Features
| Compare | Description | Drawings, CAD & Specs | Avail. | Price | ||
|---|---|---|---|---|---|---|
![]() | N-STP-910 Stabilized HeNe LasersStabilized HeNe Laser, Frequency and Intensity, 633 nm, 0.5 mW, CE | |||||
![]() | N-STP-912 Stabilized HeNe LasersStabilized HeNe Laser, Frequency and Intensity, 633 nm, 1.0 mW, CE | |||||
![]() | R-14286 Stabilized HeNe LasersOEM HeNe Laser, Frequency and Intensity Stabilized, 633 nm, 1.5 mW, CE | Discontinued | ||||
![]() | R-32734 Stabilized HeNe LasersStabilized HeNe Laser, Frequency and Intensity, 633 nm, 1.5 mW, CE | Discontinued | ||||
Features
Frequency Stabilized Mode
Frequency stability for long path difference interferometry, metrology, holography, spectroscopy and frequency marking. The short-term frequency stability of the laser makes it an excellent choice for interferometers with unequal arms. With the coherence length on the order of 100 m, the helium neon (HeNe) laser is ideal for large depth-of-field applications in holography and metrology. Frequency stability further enhances coherence length for critical measurements or exposures. The N-STP lasers are unique in that they use induction heating to control the length of a specially designed mirror mount structure, instead of heating over the entire cavity length. In this way, the overall package can be more compact, and the servo response to correct the cavity length can happen at a higher rate.
Intensity Stabilized Mode
Intensity stability for surface texture characterization, velocimetry, scattering and polarization. The simple, one-button intensity lock ensures highly stable (less than 0.1% over short intervals) output power, ideal for applications where optical signal strength varies with changes in the test subject. Examples include surface scattering, profilometry, and single axis velocimetry. After the normal warm-up period, the output power of the laser can be adjusted to the desired level via a potentiometer adjustment.
Optimized Cavity Mirror Performance
HeNe Laser Advantages
Applications
- Interferometry
- Holography
- Laser Doppler anemometry
- Spectroscopy
- Inspection systems
- Medical imaging
- Flow cytometry
Accessories
HeNe Laser Mounts
| Compare | Description | Drawings, CAD & Specs | Avail. | Price | ||
|---|---|---|---|---|---|---|
![]() | ULM Cylindrical Laser Mount, 1.0-1.75 in. Diameter, Fixed | |||||
![]() | ULM-TILT Cylindrical Laser Mount, 1.0-1.75 in., High-Resolution AJS Adjusters | |||||
![]() | ULM-TILT-M Cylindrical Laser Mount, 1.0-1.75 in. Diameter, SM-13 Micrometers |
Resources
Manuals
Stabilized HeNe Laser Operating Manual(632.2 kB, PDF)
Literature
N-STP-910 Spec Sheet(366.9 kB, PDF) N-STP-912 Spec Sheet(359.1 kB, PDF)












