INGENERIC Fast-Axis-Collimation
Precision Glass Micro-Optics for High-Performance Laser Systems
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INGENERIC FACs
FAC optics made of high-precision glass are key components for beam shaping in modern high-power diode lasers. They collimate the highly divergent fast axis of the emitter, thereby ensuring stable, efficient, and reproducible beam quality.
INGENERIC FAI
As a leading partner in the development and production of optical solutions, we set the standard with our micro-optics. We serve as a pioneer for innovative technologies that enable sustainable progress.
Maximum Optical Performance for Diode Lasers
Our glass FACs are based on performance-optimized designs that enable diffraction-limited collimation.
Technical Highlights:
Very high numerical
aperture (NA 0,8)
Extremely low
residual divergence
High transmission
(>99% with AR coating)
Broad
focal length range
Wide range
of wavelengths
Excellent surface
and form accuracy
Our FACs at A Glance
Choose from our standard products or contact us for a customized solution.
| Lens type: FAC made of K-VC89 | NA | EFL (mm) | BFL (mm) | L (mm) | H (mm) | CT (mm) | D (mrad) |
|---|---|---|---|---|---|---|---|
| Standard Products | |||||||
| FAC06-150 | 0.60 | 0.15 | 0.03 | tbd | 0.70 | 0.22 | 4.60 |
| FAC08-300 | 0.80 | 0.30 | 0.075 | tbd | 0.50 | 0.40 | 2.30 |
| FAC08-320 | 0.80 | 0.32 | 0.083 | tbd | 0.57 | 0.43 | 2.10 |
| FAC08-360 | 0.80 | 0.36 | 0.11 | tbd | 0.70 | 0.45 | 1.90 |
| FAC07-400 | 0.70 | 0.40 | 0.11 | tbd | 0.70 | 0.50 | 1.73 |
| FAC05-500 | 0.50 | 0.50 | 0.105 | tbd | 0.60 | 0.70 | 1.34 |
| FAC07-500 | 0.70 | 0.50 | 0.11 | tbd | 0.90 | 0.70 | 1.34 |
| FAC08-600 | 0.80 | 0.60 | 0.14 | tbd | 1.00 | 0.83 | 1.20 |
| FAC07-700 | 0.70 | 0.70 | 0.14 | tbd | 1.00 | 1.00 | 1.00 |
| FAC08-900 | 0.80 | 0.90 | 0.09 | tbd | 1.50 | 1.50 | 0.80 |
| FAC08-920 | 0.80 | 0.92 | 0.18 | tbd | 1.50 | 1.30 | 0.80 |
| FAC08-1000 | 0.8 | 1.00 | 0.165 | tbd | 1.60 | 1.50 | 0.70 |
| FAC06-1100 | 0.60 | 1.10 | 0.16 | tbd | 1.50 | 1.69 | 0.65 |
| FAC06-1200 | 0.60 | 1.20 | 0.10 | tbd | 1.50 | 1.97 | 0.60 |
| FAC08-1200 | 0.80 | 1.20 | 0.10 | tbd | 1.90 | 1.97 | 0.60 |
| FAC05-1500 | 0.50 | 1.50 | 0.09 | tbd | 1.50 | 2.47 | 0.48 |
| FAC08-1500 | 0.80 | 1.50 | 0.09 | tbd | 2.30 | 2.47 | 0.48 |
| FAC07-2000 | 0.70 | 2.00 | 0.096 | tbd | 2.80 | 3.41 | 0.36 |
| FAC07-2500 | 0.65 | 2.50 | 1.124 | tbd | 3.50 | 2.47 | 0.29 |
| FAC08-2800 | 0.80 | 2.80 | 0.095 | tbd | 4.00 | 4.84 | 0.26 |
| Special Solutions | |||||||
| FAC08-600 | 0.80 | 0.60 | 0.16 | tbd | 1.00 | 0.80 | 1.20 |
| FAC06-1500 | 0.60 | 1.50 | 0.97 | tbd | 2.30 | 0.95 | 0.48 |
| FAC053-1500 | 0.53 | 1.50 | 0.92 | tbd | 2.00 | 1.05 | 0.48 |
| FAC03-2300** | 0.30 | 2.30 | 0.97 | tbd | 1.5 | 1.00 | 0.40 |
| **) Collimation of SA for Single Emitter |
| Lens type: Special Products | NA | EFL (mm) | BFL (mm) | L (mm) | H (mm) | CT (mm) | Mag. | Image Dist. [mm] | D (mrad) | Material |
|---|---|---|---|---|---|---|---|---|---|---|
| FAI065-M200-80 | 0.60 | 0.38 | 0.075 | tbd. | 1.00 | 0.55 | 200 | 80 | 0.48 | K-VC89 |
NA: Numerical aperture
EFL: Effective focal length @ 808 nm
BFL: Back focal length @ 808 nm
Coating: Standard AR 780-1020 nm
Transmission: > 99%
Length (L): Length (+/-0.10 mm) according to customer specification (maximum length: 14.00 mm)
Height (H): (K-VC89: +/- 0.02 mm)
CT: Center Thickness (K-VC89: +/- 0.02 mm)
Material: K-VC89
Refractive Index n @808 nm: 1.77584
Quality specification for laser bar with divergence of 35° (FWHM)
Diverse Options for Every Laser Architecture
INGENERIC FACs are available in numerous designs:
- Single elements (Single FACs) for single emitters, high-power diodes, and compact laser sources.
- FAC arrays (FAC² XS / FAC² XL) — ideal for laser bars and stacks, e.g. for collimating QWC stacks.
- FACs on tabs with mounting tolerances of +-5 µm
- FACs with support structures, e.g. mounted with a bottom tab or side tab.
- FAC modules, such as pre-assembled FAC + SAC combinations.
- Customized solutions with tailored focal lengths and apertures, special geometries and lens lengths, and optimized AR coatings.
- FAC lenses with 90° beam deflection.
Isothermal Precision Glass Molding
Our manufacturing process offers numerous advantages:
Wafer-scale optics manufacturing for high volumes and cost-efficiency
Extremely tight manufacturing tolerances for precise optical properties
Precision molding for high geometric accuracy and uniformity
In-mold compression molding for high reproducibility of the optical shape
In-house metrology for inspecting optical and geometric properties
Automated assembly processes for reproducible optical alignment
Thermally stable optical glasses with low absorption
Great geometric freedom for custom designs
The result is micro-optics and lens arrays that offer series-production quality, stability, and excellent reproducibility.
Additional Services:
Coatings for Maximum Efficiency and Laser Resistance
- - Standard broadband coatings cover the entire wavelength range from 400–2,100 nm. Customized coatings are also available.
- - Transmission >99% within the target wavelength range.
- - Minimal absorption to reduce thermal lensing and power drift.
Automated Assembly
Customized Packaging and Supply
Quality
We maintain a rigorous quality management system.
The optical elements are characterized within the production line based on their beam profile, residual divergence, and geometry along the longitudinal axis. By measuring them in the beam path, we ensure that no deviations occur that could affect the optics’ later use in the application. Combined with our reliable manufacturing technology, this allows us to guarantee optics free of secondary maxima and without a “smile.”
Upon request, you will receive complete documentation for your optics.
Frequently Asked Questions – FAQs
Why micro-optics made of high-quality glass?
- Exceptional thermal and mechanical stability
- Significantly lower absorption, resulting in longer service life
- Excellent shape fidelity, even at high power levels
- Consistent optical performance throughout the entire operating lifetime
- High surface quality without the need for polishing
- Excellent suitability for high-volume production: precision glass molding delivers identical optics in large quantities at cost-effective production rates
- Molded glass optics are highly resistant to heat and laser power
- Precision molding enables complex optical surfaces with a high degree of accuracy.
What are the benefits of our automated assembly?
- Highest precision and repeatability through the use of camera-based alignment systems
- No risk of damage from manual handling or assembly fixtures
- Positioning accuracy in the micrometer range
- Assembly and packaging in a cleanroom environment
- Packaging designed for automated pick-and-place handling
How is pricing calculated for INGENERIC products?
Customized Products / Custom-Made Optics: For our precision glass molding process, dedicated tooling is required. Depending on the project and production volume, this may involve one or multiple molds or inserts, resulting in a one-time non-recurring engineering (NRE) and tooling cost. Product pricing is determined based on order volume, with higher quantities benefiting from lower unit prices.
Development costs depend on the complexity and size of the molds. In particular, smaller molds can often be realized more cost-effectively during the prototype or sampling phase. As projects progress toward serial production, unit costs can frequently be reduced through economies of scale. The one-time development costs also cover tooling maintenance and replacement, if required.
Get in Touch!
INGENERIC – Your Partner for Precision Optical Solutions
Do you have suggestions, specific requirements, or a concrete enquiry? We can help you select the right micro-optics for your application—from standard components to customised solutions. Please feel free to contact us for personal advice or an individual quotation.
We look forward to hearing from you!
