INFRARED CAPTURE DEVICE
20240015376 ยท 2024-01-11
Inventors
Cpc classification
H04N23/20
ELECTRICITY
International classification
Abstract
The high-definition or ultra-high-definition infrared capture device comprises a housing (1) with a socket (2) for connection to an electronic device and one or more cameras (4) configured for infrared capture. The device enables high definition to be achieved. It can be used as a complement to electronic devices, such as mobile phones, thereby increasing their usefulness.
Claims
1. An infrared capture device, for high or ultra high definition infrared capture, wherein the device is formed by a housing with a socket for connection to an electronic device, and with one or more cameras configured to capture in infrared.
2. The infrared capture device, according to claim 1, wherein the socket is a USB type C socket.
3. The infrared capture device, according to claim 1, wherein the housing further comprises one or more infrared lamps.
4. The infrared capture device, according to claim 1, wherein the housing further comprises an infrared photometer.
5. The infrared capture device according to claim 3, being configured to measure the time of flight of light from the spotlights.
6. The infrared capture device according to claim 5, comprising two cameras.
7. The infrared capture device according to claim 1, comprising autofocus.
Description
EXPLANATION OF THE FIGURES
[0010] In order to complete the above description and to assist the better understanding of the features of the invention, this description is accompanied, as an integral part thereof, by a FIGURE in which, by way of illustration and not limitation, the following has been depicted.
[0011]
PREFERRED EMBODIMENT OF THE INVENTION
[0012] The following is an example of an embodiment of the invention, which is intended for illustrative purposes only and does not limit the invention.
[0013]
[0014] For example, an Apple mobile phone (3) uses a different standard than a Samsung mobile phone (3).
[0015] The housing (1) has one or more cameras (4) each with a suitable lens, as is known in the art. The cameras (4) are configured to capture in the infrared. One or more spotlights (5), preferably LEDs, are arranged next to the cameras (4), as well as a photometer (6). All elements are prepared to operate in the infrared and optionally in the visible spectrum. For example, the camera can operate in the near infrared (800-2500 nm). Other options are 300-1000 nm. Physical filters can be integrated to limit the wavelength range.
[0016] The cameras (4) shall preferably be UHD (Ultra High Definition), or ultra high definition, with autofocus. Ideally a Time of Flight (ToF) will be programmed to detect the time since the light takes from the focus (5) to the target. In this way, distances and 3D reconstructions can be calculated with a single camera-TOF pair or, even more robustly, with two cameras (4) and their respective ToF spotlights.
[0017] Infrared cameras (4) also allow for night vision, in two or three dimensions.
[0018] The mobile phone (3) will comprise a device management application, which commands the taking of photos or videos, receives the photos, manages its settings, etc.