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LUCID Vision Labs Triton2™ TRT033S-WC, Sony IMX993 InGaAs, 3.2MP, SWIR

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LUCID Vision Labs Triton2™ 2.5GigE Power over Ethernet (PoE) Cameras - Front

LUCID Vision Labs Triton2™ 2.5GigE Power over Ethernet (PoE) Cameras - Front

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General

Type:
SWIR
Manufacturer:
Lucid Vision Labs
Note:
Requires an End User Statement to Be Completed Before Shipment
Camera Family:
Triton2™ SWIR
Model Number:
TRT033S-WC

Physical & Mechanical Properties

Dimensions (mm):
44.0 x 29.0 x 45.3 (excludes connectors and lens mount)
Weight (g):
90
Housing:
Full

Sensor

Image Buffer:
128
Imaging Sensor:
Sony IMX993 InGaAs
Type of Sensor:
Progressive Scan CMOS
Type of Shutter:
Global
Camera Sensor Format:
1/1.8″
Resolution (MegaPixels):
3.20
Pixels (H x V):
2,048 x 1,536
Pixel Size, H x V (μm):
3.45 x 3.45
Sensing Area, H x V (mm):
7.07 x 5.30
Frame Rate (fps):
80.30
Pixel Depth:
8, 10, 12 bit
Exposure Time:
22.656 μs to 10 s
Dynamic Range (dB):
42
Machine Vision Standard:
GigE Vision v2.0

Electrical

Power Consumption (W):
5W via PoE, 4.5W when powered externally

Hardware & Interface Connectivity

Video Output:
2.5GigE (PoE)
Connector:
2.5GigE, GigE, M12
Power Supply:
Power Supply Required and Sold Separately:
USA: #18-364
Europe: #18-365
Japan: #18-364
Korea: Not Available
China: #18-365
GPIOs:
1 opto-isolated input, 1 opto-isolated output, 2 non-isolated bi-directional ports
Synchronization:
Hardware Trigger (GPIO), Software Trigger, or PTP (IEEE 1588)
Interface Port Orientation:
Back Panel
GPIO Connector Type:
8-pin M8

Threading & Mounting

Mounting Threads:
¼-20 with Tripod Mount Adapter
Mount:
C-Mount

Environmental & Durability Factors

Operating Temperature (°C):
-20 to +50
Storage Temperature (°C):
-30 to +60

Regulatory Compliance

RoHS:
Certificate of Conformance:

제품설명

  • Up to 5.20MP Resolution with Framerates up to 49.40FPS
  • Actively Aligned Image Sensor for Precise Optical Axis Alignment
  • Ideal for Electronic and Agricultural Inspection, Surveillance, and More
  • Requires an End User Statement to Be Completed Before Shipment

LUCID Vision Labs Triton2™ Power over Ethernet (PoE) SWIR Cameras are designed to provide high-resolution images across the visible, near-infrared (NIR), and shortwave infrared (SWIR) spectrum from 400 – 1750nm. Featuring an actively aligned image sensor, these cameras are designed to minimize sensor tilt and rotation and ensure alignment of the image sensor to the lens optical axis. For harsh environments with dust or water, accessory lens tubes are available to ensure an IP67 rating. LUCID Vision Labs Triton2™ Power over Ethernet (PoE) SWIR Cameras feature excellent thermal management with a wide operating temperature range from -20°C to 55°C. These cameras are ideal for automotive, process control, and food and beverage applications.

SWIR is an acronym meaning Short Wavelength Infrared, also frequently referred to as shortwave infrared. SWIR generally refers to the wavelength band of light between 900nm and 2500nm.

Since standard silicon sensors have an upper limit of approximately 1000nm, SWIR imaging requires sensors and camera components capable of operation in the shortwave infrared range, which exceeds the upper limit of silicon. Indium gallium arsenide (InGaAs) sensors are commonly used in SWIR imaging, typically covering the 900nm to 1700nm range. But InGaAs devices are inherently expensive and face challenges in scaling to smaller pixel pitches and higher resolution arrays.

Unlike Long Wave Infrared (LWIR) light, which is emitted from the object itself, SWIR or shortwave infrared light is similar to visible light in that photons are reflected or absorbed by an object, providing the strong contrast needed for high-resolution imaging. While LWIR imagers give off more poorly defined thermal images, SWIR imagers deliver high-resolution images, much like visible light cameras.

SWIR imagers are used in a large number of applications including silicon inspection, laser beam profiling, hyperspectral imaging, chemical and plastics sensing, machine vision imaging, agricultural sensing, surveillance systems, and medical imaging. They are also intended for use in mobile phone facial recognition sensors, and autonomous vehicle imaging though obscured environments.

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