Holographic sight

Holosight (Holographic Sight) is a revolutionary quick-targeting device based on holographic imaging
technology. It generates a reticle virtual image at optical infinity, enabling rapid aiming with a “two-point,
one-line” alignment, which fundamentally changes the traditional aiming logic of mechanical sights and
red dot sights.
The core component is a holographic film that records the light wave information of the reticle. Using laser
diffraction technology, the sight projects the reticle virtual image at optical infinity in front of the sight. The
shooter only needs to align the virtual reticle with the target to complete the aiming process, overturning
the traditional “three-point, one-line” aiming method of mechanical and red dot sights, and achieving rapid
“two-point, one-line” aiming

Category:

Typical Application Scenarios

1. Military and Counter-Terrorism
• Dynamic Combat Situations: Suitable for high-speed mobile scenarios such as urban warfare, beach landing, and airborne operations, supporting rapid aiming at targets within a direct line of sight up to 3 kilometers.
• Field Validation: In a recent military exercise, a squad equipped with holographic sights achieved “every shot a bullseye” during vehicle-mounted mobile shooting, increasing fire suppression efficiency by 40%.

2. Law Enforcement and Public Safety
• SWAT Close-Quarters Operations: In high-pressure scenarios such as hostage rescue and indoor raids, the reticle allows rapid target acquisition, improving shooting accuracy and reaction speed.
• Maritime Law Enforcement: Adapted to the rocking environment of boats, ensuring precise shooting on unstable platforms, effectively enhancing the success rate of law enforcement missions.

3. Civilian and Competitive Use
• Shooting Sports: Supports Olympic shooting events, military simulation training, and other scenarios, meeting the high-precision demands of fast-moving target tracking.
• Hunting Applications: The reticle stability outperforms traditional high-magnification scopes during target tracking in motion, aiding accurate hunting.

What is a holographic sight?

Core Principle: Laser Holographic Imaging
It uses the principles of laser interference and diffraction, employing a highly coherent laser as the light source. The laser is collimated into parallel light by a concave mirror and projected onto the holographic reticle, diffracting the reticle’s image into the viewer’s eye. The image appears at infinity. To reduce the influence of temperature on the aiming point, a holographic grating is added in the optical path for compensation.

Core Difference from Red Dot Sights
Red Dot Sight: Forms a virtual image using a reflected LED dot, which has parallax.
Holographic Sight: Projects a laser-diffracted image perceived at infinity, with almost no parallax and higher accuracy.

Holographic sight
Typical Appearance and Structure of a Holographic Sight

Holographic Sight – Product Manual

Download the full product manual (PDF) for the Holographic Sight — installation guide, optical specifications, brightness & adjustment settings, and maintenance instructions.

PDF

Click the button to open a new window. From there, click the download icon to download the manual.

Core Optical Path Analysis: What is Holography?
Step 1 – Recording:
When the reference light directly illuminates the recording material and interferes with the object light reflected from the object, an interference pattern of alternating light and dark fringes is formed. The phase information of the object is encoded in the spacing, shape, and distribution of these interference fringes.
Step 2 – Reconstruction:
When the reference light illuminates the recorded material, part of the light is diffracted at specific angles. These diffracted rays propagate in directions consistent with the original object-reflected light, thereby reconstructing a three-dimensional image of the object at a specific spatial location.
Analysis of the Core Optical Path
01. Laser Emission
An internal laser diode generates a highly coherent and stable laser light source.

02. Beam Collimation
The beam direction is adjusted by a mirror and then collimated into parallel light using a concave mirror.

03. Holographic Diffraction
The parallel light illuminates the holographic grating, where diffraction occurs, directing the diffracted light toward the holographic reticle.

04. Image Reconstruction
The diffracted light enters the human eye, allowing the reticle image to be perceived at infinity.
Key Component Overview
Laser Diode
The “heart” of the system, providing a stable and highly coherent laser light source.
Holographic Grating
A core optical component that diffracts collimated light onto the holographic reticle. Used together with the reticle to compensate for thermal drift.
Collimating Mirror
Typically a concave mirror, responsible for collimating the laser beam into parallel light.
Optical Holographic Reticle
A core component that diffracts the incoming collimated laser into the reticle image perceived by the human eye.
Electronics (Control Unit)
Controls laser brightness, power management, and automatic shutdown to ensure stable operation.
Product Specifications
CategoryItemValue
Optical SpecificationsMagnification1X
Optical SpecificationsWindows size≥31mm×22mm
Optical SpecificationsTargeting mode1MOA Dot, 68MOA Circle
Optical SpecificationsParallax≤2MOA
Optical SpecificationsLaser wavelength650nm
Electrical SpecificationsBatteryCR123A
Electrical SpecificationsMax battery life≥1000 hours (Middle brightness)
Electrical SpecificationsBrightness positions20 Daylight visible / 10 Night visible (Customization available)
Electrical SpecificationsShake awakeYes
Electrical SpecificationsLow battery alertAiming cursor flashing
Mechanical SpecificationMaterialAluminium
Mechanical SpecificationProcessing methodCNC
Mechanical SpecificationSurface treatmentBlack oxidation
Mechanical SpecificationAdjusting range±40MOA (Height, orientation)
Mechanical SpecificationAdjusting accuracy0.7MOA
Mechanical SpecificationInterfacePicatinny
Mechanical SpecificationOuter size≤75mm×54mm×62mm
Mechanical SpecificationAiming baseline38mm
Mechanical SpecificationWeight240g (without battery)
Environmental SpecificationOperating temperature-40℃~+55℃
Environmental SpecificationStorage temperature-45℃~+60℃
Environmental SpecificationImpact-resistant1000G
Environmental SpecificationIP levelIP67
Holographic sight
Holographic sight
1. Exclusive Core Technology
Our holographic sight, developed based on proprietary patented polymer materials, completely solves the common issue of “window darkening” found in traditional holographic sights. Even under prolonged use in outdoor environments with strong direct sunlight, the sight window maintains high transparency and clarity.

2. Full Industry Chain Support
In addition to complete sight products, we also provide key optical components such as gratings and holographic reticle plates for firearm aiming. We support customized optical solution development to meet the technical requirements of various scenarios.
Product Advantage Comparison (vs. Red Dot Sight)
FeaturesHolographic SightRed Dot Sight
Imaging PrincipleHolographic Diffraction
(Virtual image generated by holographic film)
Reflection
(Virtual image generated by concave beam splitter)
Parallax ControlTheoretically no thermal drift; dual gratings suppress wavelength effectsParallax always present; errors significantly increase with distance
Reticle ClarityMinimal reticle obstruction, high resolution
(1 MOA center dot)
Larger reticle, prone to obscuring target details at long distances
Environmental AdaptabilityTemporary use possible despite lens dirt/damage; supports extreme weatherLens contamination or damage directly causes failure