Head Mounted Night Vision Goggles
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Head Mounted Night Vision Goggles

Head Mounted Night Vision Goggles

HAWKEEP Gen3 / Gen 2 military helmet night vision goggles. Supports head-mounted use and handheld use. This model is a monocular, which can also be assembled into a binocular. The lens supports 1x/4x/6x/8x. Built-in infrared indicator light, also equipped with independent long-range infrared light.

Description

HAWKEEP HEAD MOUNTED NIGHT VISION GOGGLES

 

Products Description

 

HAWKEEP Gen3 / Gen 2 military helmet night vision goggles. Supports head-mounted use and handheld use. This model is a monocular, which can also be assembled into a binocular. The lens supports 1x/4x/6x/8x. Built-in infrared indicator light, also equipped with independent long-range infrared light.

 

night vision goggles

 

Features

 

The night vision can be outfitted with high-performance Gen 2 and Gen 3 image intensifier tubes in green or white phosphor.

Battery Cover - Spring-Built-in Design

IR Indicator in FOV;Low Battery Indicator in FOV

IP65 waterproof and dustproof level (upgradeable to IP67)

Multilayer wideband lens coating

Automatic brightness control

Bright light cut-off

Built-in Infrared illuminator

Helmet Flip Up On/Off

Support detachable remote infrared light

Support replacing high-magnification lenses (4X/6X/8X) for distant viewing.

Supports both 1X CR123A lithium battery

Support connecting to mobile phones/digital cameras/SLR cameras for photo and video recording.

 

Technical Parameters

 

Brand Hawkeep
Model HKP-2011
Generation(IIT) Gen2+ Gen3
Resolution(lp/mm) 60-64 64-72
Figure Of Merit(FOM) 1400-1800 1600-2300
Sensitivity(µA/lm) 700-1000 850-1200
SNR 23-28 28-32
Luminance Gain(cd/㎡/lx) 8000-12000 10000-20000
Photocathode Type S25 GaAs
Magnification(X) 1
FOV (deg°) 40
Focal Length 25
Diopter Adjustment(deg°) -1
Parallelism of Optical Axis <0.1 ° /0.5
MTF 120lp/mm
Optical Distortion <0.5% Max / 3% Max
Relative Illumination >75%
Range of Focus (m) 0.25m to infinity
Dimensions(mm) 145×68×42
Weight(kg) 0.327
Switch Style Button switch
Switch Position OFF / ON / IR
Power Supply (v) 2.6-4.2
Battery Type (v) 1 × CR123A lithium battery
Battery Life(h) 60 h – 100 h
Low Battery Indicator Yes
Overall Power Consumption <0.1W
Bright Light Cut-off Yes
Automatic Brightness Control Yes
Multilayer Wideband Lens Coating Yes
Flip-Up On-Off Yes
Infrared Illuminator Built-in
IR Indicator Yes
IR Wavelength(nm) 850
Support detachable remote infrared light Yes
Support replacing high-magnification lenses Yes
Support connecting to mobile phones/digital cameras/SLR cameras Yes
Battery Cover - Spring-Built-in Design Yes
Rapid switching between left and right eyes Yes
Assemble a binocular night vision device Yes
Operating Temperature (°C ) -51 to +49
Storage Temperature(°C ) -51 to +85
Relative Humidity 5%-98%
MTTF (h) 10000
Environmental Rating IP65/ IP67
Guarantee(yr) 1

 

Description of components

 

product-918-546

 

1. Rubber Eye Cap

 

2. Mounting Part

 

3. Objective Lens (focusing ring of objective lens)

 

4. IR Illuminator

 

5. Battery Compartment

 

6. Eyepiece(focusing ring of eyepiece)

 

7. ON/IR Swith

 

8. Light Detector(Light Sensor)

 

product display

 

product-800-800 product-800-800
product-800-800 product-800-800

 

Additional supplement

 

Figure of Merit (FOM)

 

Figure of Merit (FOM) is an important indicator for measuring a certain attribute or performance, and is generally used in scientific research, engineering design, and quality control. The unit of the figure of merit depends on the specific attribute or performance. Several common application areas and corresponding units and reference content are given below.

 

Transmittance Figure of Merit of Optical Devices

The transmittance figure of merit is an important parameter for measuring the transparency and optical performance of optical devices. The common unit is percentage. Reference content may include:

-Transparency curve, showing the transmittance at different wavelengths.

Optical resonance peak, indicating a significant increase in transmittance at a certain wavelength.

Polarization characteristics, describing the response of the device to light with different polarization directions.

 

SINR

 

 

SINR: Signal to Interference plus Noise Ratio refers to the ratio of the strength of the received useful signal to the strength of the received interference signal (noise and interference); it can be simply understood as "signal to noise ratio".

 

Signal to Interference plus Noise Ratio first appeared in multi-user detection. Suppose there are two users 1 and 2, and two signals from the transmitting antenna (code orthogonality is used in CDMA, and spectrum orthogonality is used in OFDM, which is used to distinguish different data sent to the two users); at the receiving end, user 1 receives the data sent to 1 by the transmitting antenna, which is a useful signal signal, and also receives the data sent to user 2 by the transmitting antenna, which is interference interference, and of course there is noise.

 

SINR often appears because many decodings use interference cancellation technology, such as BLAST space-time structure. When decoding in V-BLAST, the data with a relatively large signal to noise ratio is first decoded (layered), and the decoded data is subtracted (cancelled) during the subsequent decoding, and so on, until all data are decoded. Here, SINR is an important parameter.

 

 

 

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