Smart camera · SC5000 series
Hikrobot MV-SC5100XC
- Warranty
- 36 months

High-sample imaging within SC5000X
A 4096 × 2816 frame on a 2 µm pixel pitch is the central imaging characteristic of MV-SC5100XC. The format provides a dense rectangular sampling grid for scenes where many features must remain separable in one view. Compared with the 3200 × 1920 MV-SC5060XC, it adds sample positions in both axes without changing the stated pitch, placing MV-SC5100XC above MV-SC5060XC in spatial coverage potential.
The resolution suits inspection layouts that divide a broad image among multiple regions, locate small edges across a large component, or examine extended print and surface patterns. Optical selection must account for both the full 4096 × 2816 field and the 2 µm sensor sampling. Stable focus and appropriate magnification are necessary if object detail is to be represented by the available pixel grid.
MV-SC5060XC is the lower-resolution neighbour at 3200 × 1920 with the same 2 µm pitch, fitting a scene that needs fewer samples. MV-SC5120XC-00C-NNN increases the image to 4096 × 2944, uses 3.45 × 3.45 µm pixels and lists colour output with a global shutter. MV-SC5100XM matches MV-SC5100XC at 4096 × 2816 and 2 µm, so those core spatial values are shared by the paired models.
Available versions
Same device, different configuration. We match the part number to your working distance and field of view.
| Part number | PN | Lens | Focusing | Light source | |
|---|---|---|---|---|---|
| MV-SC5100XC-00C-NNN | 308601473 | C-mount, lens not included | C-mount | no built-in light | |
| MV-SC5100XC-08M-WBN | 308601467 | 8mm | mechanical | white, basic | |
| MV-SC5100XC-12M-WBN | 308601466 | 12mm | mechanical | white, basic | |
| MV-SC5100XC-16M-WBN | 308601459 | 16mm | mechanical | white, basic |
Specifications
| Resolution | 4096 × 2816 |
| Pixel size | 2 µm |
| Certification | CE-EMC,KC |
Selection and applications
Dense inspection imaging at 4096 × 2816. Multi-region feature localisation. Optical design around a 2 µm pixel pitch.
Minimum kit: Set up MV-SC5100XC around its 4096 × 2816 imaging grid and 2 µm pixel pitch.
Nearby in the range: MV-SC5060XC — Prefer it when 3200 × 1920 is sufficient at the same 2 µm pitch.; MV-SC5120XC-00C-NNN — Prefer it for 4096 × 2944 colour capture with global shutter and C-mount.; MV-SC5100XM — Consider it as the paired 4096 × 2816 model with the same 2 µm pitch..
Cables and accessories for this model
Compatibility per manufacturer data.
- Data cables
- ID Ethernet, M12 8-pin
- I/O & power cables
- ID power, M12 12-pin
- Power
- Power
- Optics
- M12 lenses
- Lighting
- SC lightingID/SC lighting
- Mounting
- Reader mountsCamera mounts
- Protection
- Covers & filters
FAQ
What image format defines the MV-SC5100XC selection point?
MV-SC5100XC provides 4096 × 2816 sampling positions with a 2 µm pixel pitch. This is the largest horizontal count among the SC5000X entries, shared with MV-SC5120XM and MV-SC5120XC-00C-NNN, while its vertical count sits below their 2944 samples.
How does MV-SC5060XC compare at the same sensor pitch?
Both models state a 2 µm pitch. MV-SC5060XC uses 3200 × 1920, whereas MV-SC5100XC uses 4096 × 2816. MV-SC5100XC therefore provides more sample positions along both axes for the field mapped by the optics.
Which model adds vertical samples beyond the 4096 × 2816 frame?
MV-SC5120XC-00C-NNN retains a 4096-pixel width and increases the height from 2816 to 2944. It also lists 3.45 × 3.45 µm pixels, colour output, global shutter, C-mount and a maximum frame-rate value of 30.
What optical calculation should start a 2 µm-pixel application?
Begin with the object field that must fit across 4096 × 2816 samples and the smallest feature that must remain distinct. Those values determine the required image scale, while the lens must transfer appropriate detail to the 2 µm sampling pitch.
Do MV-SC5100XC and MV-SC5100XM have different spatial entries?
The spatial entries are equal: MV-SC5100XC and MV-SC5100XM both state 4096 × 2816 resolution and 2 µm pixel pitch. A resolution or pitch comparison alone therefore gives no reason to select one of these variants over the other.