Description :
Vadzo's dual sensor GigE camera pairs the onsemi AR0234 2.3MP Full HD global shutter visible sensor with a 256×192 uncooled LWIR thermal module on a single Gigabit Ethernet interface, delivering synchronized visible imaging and radiometric temperature measurement from one compact OEM camera. The AR0234 global shutter pixel design captures fast-moving scenes at up to 120 fps without motion blur or rolling shutter distortion, a fundamental advantage for robotics, machine vision, and traffic monitoring, while the 12 µm wafer-level-packaged microbolometer detector resolves thermal differences down to 40 mK across the 8–14 µm spectral band.
Every frame, full HD global shutter video, thermal video, and the full per-pixel radiometric temperature matrix are streamed to your host over GigE, so your team runs detection, classification, and alarm logic on your own edge or server platform with complete algorithm freedom. Point, region, min/max/average temperature measurement, and isotherm functions are supported natively, with a measurement range of –20°C to +550°C across two selectable modes and ±2°C / ±2% accuracy. ONVIF compliance, IEEE 1588 PTP synchronization, and PoE (802.3af) round out a single-cable, standards-based integration path. Vadzo NXT software and SDK provide stream configuration, thermal/visible channel control, pseudo-color palette selection, and radiometric data access APIs across Windows, Linux, and Android.
Core Benefits:
Dual sensing over a single GigE link: 2MP Full HD global shutter visible + LWIR radiometric thermal
2.3MP onsemi AR0234 sensor with industry-leading global shutter efficiency, zero motion blur at 120 fps
3.0 µm × 3.0 µm pixel, 1/2.6" optical format, 1920(H) × 1200(V) active array
71.4 dB dynamic range with 38 dB SNR for clear imaging across challenging lighting conditions
256×192 uncooled microbolometer, 12 µm pixel pitch, 8–14 µm response band
High thermal sensitivity: NETD ≤40 mK @ F1.0, 300K
Radiometric output: per-pixel temperature matrix streamed to host
Wide measurement range: –20°C to +550°C in two selectable modes, ±2°C / ±2% accuracy
Point and region temperature analysis with max / min / average reporting; isotherm support
Onboard thermal image pipeline: NUC, 3DNR, 2D denoising, DRC, edge enhancement, SFFC
11 pseudo-color palettes with custom palette support
Customizable thermal lens options from 90° wide angle to 17.5° telephoto, all F1.0, IP67-rated optics
GigE interface with ONVIF compliance; IEEE 1588 PTP multi-camera synchronization
Power over Ethernet (PoE 802.3af) for single-cable deployment
GPIO for external trigger and synchronization
Vadzo NXT SDK for Windows, Linux, and Android
Applications:
Robotics, AGV & UAV Payloads
Smart Traffic & Tunnel Monitoring
Fire Prevention & Early Hotspot Detection (host-side analytics)
Industrial Process & Equipment Temperature Monitoring
Perimeter Security & Low-Visibility Surveillance
Battery Energy Storage (BESS) Thermal Monitoring
Substation & Power Asset Condition Monitoring
Related Videos:
General Information
Product Family Quanta Series
Camera Model Vadzo Quanta-234CG-E13050-QVGA3.2-EIB670000
Visible Sensor
Sensor AR0234 CMOS Sensor from Onsemi
Sensor Format 1/2.6"
Pixel Size 3.0 µm x 3.0 µm
Max Resolution 2.3MP - 1920(H) × 1200(V)
Frame Rate 120 fps @ Full HD (1080p); 60 fps @ HD (720p)
Dynamic Range 71.4 dB
SNR 38 dB
Shutter Global Shutter
Chroma Color (RGB Bayer)
Optics S-Mount (M12)
Thermal Sensor
Detector Type Uncooled microbolometer, wafer-level packaging
Resolution 256 × 192
Pixel Pitch 12 µm
Spectral Band 8–14 µm (LWIR)
Thermal Sensitivity (NETD) ≤40 mK @ F1.0, 300K
Frame Rate 9 Hz / 25 Hz / 30 Hz
Thermal Lens Options F1.0, fixed focus, IP67 — 3.2mm (56.2°×42.2°)
Temperature Measurement Range –20°C to +550°C (–20°C to +150°C | +100°C to +550°C, two modes)
Measurement Accuracy ±2°C or ±2% of reading (whichever is greater)
Temperature Analysis Point / region measurement with max, min, and average values; temperature matrix; isotherm
Image Processing NUC, 3DNR, 2D Denoising (DNS), DRC, Edge Enhancement (EE),
SFFC
Pseudo Color 11 palettes, custom palettes supported
Camera & Interface
Interface Gigabit Ethernet (100Base-T / 1000Base-T)
Connector Standard RJ45 Ethernet Interface
Streams Visible Full HD global shutter + thermal video + radiometric data over single GigE link
Synchronization NTP; IEEE 1588 PTP; GPIO external trigger
Power Power over Ethernet (PoE 802.3af, 36–57V)
Operating Temperature –40°C to +70°C
Storage Temperature –40°C to +85°C
OS Supported Windows, Linux, and Android.
Software Vadzo NXT Application + NXT SDK
Conformity OnVIF Compliant, RoHS 3, REACH
Price Details
QUANTITY
UNIT PRICE
NOT INCLUSIVE
50 - 99
$900
Lens & Cable
100 - 249
$900
Lens & Cable
250+
$900
Lens & Cable
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Quanta-234CGE
Camera can be customized to meet your needs.
Vadzo team shall be able to assist you with the details on this. Reach Vadzo Team for customization & quotation for bulk quantities.
Form Factor Modification & Board Redesigns.
Firmware Modifications to Incorporate Custom Features.
Design & Integration of NIR and Color LED Array Boards.
Design & Integration of Microphones & Speakers.
Design & Integration of Advanced Sensors: ToF, mmWave Radar, IMU.
Lens Holder Modifications & Electro-Mechanical Lens Filter Control.
Enclosure Design & Manufacturing: IP-Rated and Non IP-Rated.
Experience Our Software Suite
Vadzo NXT is a software suite designed for seamless integration and control of GigE & Wi-Fi cameras. It provides precise camera configuration, real-time imaging adjustments, and firmware update management for Windows, Linux and Android platforms. The SDK ensures reliable performance with features like Region of Interest (ROI) configuration, Smart GPIO control, and fail-safe firmware updates.

Vadzo NXT Software
NXT SDK: GigE & Wi-Fi Camera Control and Integration
Vadzo NXT SDK enables real-time streaming, codec control, and onboard storage management for GigE and Wi-Fi cameras. It supports camera functions, SMART IO, and secure firmware updates with API integration.
Windows
Android
Linux

A dual sensor GigE camera combines a visible-light image sensor and a thermal (LWIR) sensor in a single camera, streaming both video channels over one Gigabit Ethernet connection. This camera pairs a 2MP onsemi AR0234 global shutter visible sensor with a 256×192 radiometric thermal module, giving host systems simultaneous distortion-free visual detail and per-pixel temperature data.
What is a dual sensor GigE camera?
What are the video formats supported by the camera?
Unlike rolling shutter sensors that scan the image row by row, introducing skew and motion artifacts for fast-moving subjects, the AR0234 captures all pixels simultaneously. This means moving objects such as conveyor belt items, robots, vehicles, or people are imaged without distortion in both the visible and thermal channels, making scene correlation and overlay more accurate for your host-side algorithms.
Does this camera have built-in AI analytics?
No. This camera is intentionally designed without onboard AI. It streams Full HD global shutter video, thermal video, and the full radiometric temperature matrix to your host system, allowing you to run your own detection, classification, and alarm algorithms on any edge or server platform.
What temperature range can the camera measure?
The thermal channel measures from –20°C to +550°C across two selectable modes: –20°C to +150°C for ambient and body-adjacent applications, and +100°C to +550°C for high-temperature industrial targets. Accuracy is ±2°C or ±2% of the reading, whichever is greater.
What is the thermal sensitivity (NETD) of the camera?
The thermal module achieves an NETD of ≤40 mK at F1.0 and 300K, meaning it resolves temperature differences as small as 0.04°C, sufficient for early hotspot detection in electrical panels, battery systems, and industrial equipment monitoring.
Can I access raw radiometric temperature data?
Yes. The camera supports temperature matrix output, streaming per-pixel temperature values to the host alongside the thermal video. The Vadzo NXT SDK provides APIs to read point and region temperatures, including maximum, minimum, and average values, and to configure isotherm display.
What thermal lens options are available?
Four fixed-focus F1.0 lens options are offered: 2.1mm (90° HFOV) for wide-area coverage, 3.2mm (56.2° HFOV) for general monitoring, 7mm (24.7° HFOV) for mid-range, and 10mm (17.5° HFOV) for long-range targets. All thermal lens options carry an IP67 rating.
How does this camera differ from a standard thermal security camera?
Standard thermal security cameras are closed, finished products with fixed onboard analytics. This is an OEM camera module: it delivers open global shutter visible and radiometric thermal data over GigE for integration into your own product, with customizable form factor, lenses, firmware, and enclosure, and your own analytics stack on the host.
Does the camera support ONVIF and PoE?
Yes. The camera is ONVIF compliant for standardized network integration and supports Power over Ethernet (PoE 802.3af), enabling single-cable deployment for both data and power. IEEE 1588 PTP is supported for frame-accurate multi-camera synchronization.
Are there Minimum Order Quantities for the camera?
No. There are no Minimum Order Quantity (MOQ) restrictions. Our sales team can help you with the purchase process for any volume that suits you.

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