Lwir area camera · CI Series

Hikrobot MV-CI003-GL-N25

640 × 51250 fps @640 × 512Gigabit Ethernet
Price on requestAn engineer will confirm pricing and lead time in the first reply.
Warranty
36 months
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Applications and CI neighbours

Networked thermal observation is the role of MV-CI003-GL-N25. A vanadium oxide uncooled detector produces 640 × 512 images with 17 µm pixels, and the camera maintains that format at up to 50 fps. Gigabit Ethernet carries the thermal stream and remains compatible with Fast Ethernet, so the imaging head can be considered for both network classes without changing its stated detector format.

Use the N25 variant to follow heat distribution across process material, energized components, or machine surfaces where a two-dimensional thermal view is needed. Its 50 fps output gives successive frames for changing processes, while 640 × 512 preserves the listed spatial sampling at that rate. Mechanical integration starts with a 48 mm × 48 mm front profile and a 117.9 mm body length, suitable for narrow mounting zones with adequate rear clearance.

MV-CI003-GL-N25 occupies the same listed performance point as MV-CI003-GL-N15 and MV-CI003-GL-N35: all use the same detector type, 17 µm pitch, 640 × 512 format, 50 fps ceiling, and Ethernet description. N25 is the choice when the installation calls for the N25 designation. MV-CI003-GL-N6 and MV-CI003-GL-T6 can be assessed as other named variants while preserving these published imaging, networking, and housing dimensions.

Specifications

Product type0.3 MP GigE Thermal Camera
Sensor typeVanadium oxide uncooled detector
Resolution640 × 512
Pixel size17 μm
Maximum frame rate50 fps @640 × 512
Data interfaceGigabit Ethernet, compatible with Fast Ethernet
Dimensions48 mm × 48 mm × 117.9 mm (1.9″ × 1.9″ × 4.6″)
CertificationCE-EMC

Selection and applications

Full-frame thermal monitoring at 50 fps. Ethernet-based inspection of heat patterns. Thermal observation from compact mounting zones.

Minimum kit: Connect MV-CI003-GL-N25 through a Gigabit Ethernet cable for thermal data transfer; Fast Ethernet compatibility is also stated for the interface.

Nearby in the range: MV-CI003-GL-N15 — Prefer N15 when the N15 designation is called for at the same listed resolution and rate.; MV-CI003-GL-N35 — Prefer N35 when that named variant is needed with the same Gigabit Ethernet description.; MV-CI003-GL-T6 — Prefer T6 for the T6 variant while keeping the published 640 × 512, 17 µm imaging core..

Cables and accessories for this model

Compatibility per manufacturer data.

Data cables
GigE
Power
Power

All accessory families →

FAQ

Which sensor architecture is built into the MV-CI003-GL-N25 variant?

MV-CI003-GL-N25 uses a vanadium oxide uncooled detector. It outputs a 640 × 512 thermal image from 17 µm pixels, and its product type is listed as a 0.3 MP GigE thermal camera for network-based thermal observation.

Does MV-CI003-GL-N25 hold 50 fps at the complete 640 × 512 format?

Yes. The maximum frame rate is stated as 50 fps at 640 × 512. Selection therefore does not require trading the listed full-frame format for that stated maximum rate, which helps when both spatial heat patterns and their time evolution matter.

Which network interfaces can carry images from the N25 thermal camera?

The camera uses Gigabit Ethernet for data and is compatible with Fast Ethernet. This gives two stated network classes for integration; the actual image-stream configuration should be chosen around the throughput available on the installed Ethernet path.

How much mechanical depth does an MV-CI003-GL-N25 installation need?

The camera body is 48 mm × 48 mm × 117.9 mm. Plan around the 117.9 mm depth as well as the square 48 mm front profile, leaving practical connection clearance beyond the body wherever the Ethernet and power paths are routed.

What changes in the listed core figures between N25, N15, and T6?

Nothing in the listed detector, image, rate, interface, or body figures changes: each has a vanadium oxide uncooled detector, 640 × 512 resolution, 17 µm pixels, 50 fps output, Gigabit Ethernet, and 48 mm × 48 mm × 117.9 mm dimensions.

Typical applications