Frame grabber · GE Series
Hikrobot MV-GE2204P
- Warranty
- 36 months

PoE four-stream system fit
Four WX1860-managed GigE links with 15.4 W PoE on every channel place MV-GE2204P in powered multi-camera acquisition. Its RJ45 ports accept 10/100/1000 Mbit/s industrial cameras, support four streams and use 9.5 KB jumbo frames. Host transfer over PCI-E gen2 × 4, with a gen2 × 2 link option, reaches 860 MB/s maximum and 800 MB/s sustained, while board consumption is 3 W.
A four-view inspection cell can run one network cable to each camera for both its image stream and PoE power, provided the device stays within the 15.4 W channel rating. Natural cooling supports fanless board operation inside a host maintained from 0 to 60 °C. The 181 × 126.3 × 21.6 mm card weighs 201 g and is listed for 64-bit Windows 7/10/11 or Linux systems.
MV-GE2204 has the same WX1860 chip, four streams, 9.5 KB frames, 3 W consumption and 800 MB/s host path, while the P variant adds the powered camera channels. MV-GE2202P reduces the design to two ports and two streams at 2 W, retaining 15.4 W PoE per channel. MV-GE1104P also connects four powered 1 Gbit/s cameras and sustains 800 MB/s, but uses a 512 MB DDR3 buffer and lists 4.7 W typical consumption without PoE.
Specifications
| Camera ports | RJ45 × 4 |
| Cameras supported | 4 max |
| Camera connection speed | 10/100/1000 Mbps |
| Camera type supported | GigE industrial camera |
| Interconnect | PCI-E gen2 × 4, PCI-E gen2 × 2 link |
| Delivery bandwidth | 860 MB/s (max. transmission bandwidth), 800 MB/s (sustained transmission bandwidth) |
| Sustained transmission bandwidth | 800 MB/s |
| PoE support | PoE, each channel provides 15.4 W |
| Power consumption | 3 W |
| Operating temperature | 0 to 60 °C |
| Storage temperature | -30 to 70 °C |
| Humidity | 10% to 95% RH |
| Dimensions | 181 × 126.3 × 21.6 mm |
| Weight | 201 g |
| Certification | CE-EMC,KC |
| Main chip | WX1860 chip |
| Camera interface standard | IEEE 802.3 |
| Stream | 4 |
| Jumbo frame | 9.5 KB |
| Cooling mode | Natural cooling |
| Supported OS | 64-bit Windows 7/10/11, Linux |
Selection and applications
Four-camera powered acquisition. PoE jumbo-frame image intake. Multi-view WX1860 networking.
Minimum kit: Fit MV-GE2204P to a PCI-E gen2 host and connect as many as four PoE-capable GigE industrial cameras using RJ45 network cables, keeping every channel within its 15.4 W output.
Nearby in the range: MV-GE2204 — Prefer it for four WX1860-managed streams and 3 W board consumption.; MV-GE2202P — Prefer it for two powered streams and 2 W board consumption.; MV-GE1104P — Prefer it for four PoE ports with a 512 MB DDR3 acquisition buffer..
Cameras that connect to this board
RJ45 × 4 · up to 4 cameras · 860 MB/s:
Matched by interface and port count.
FAQ
How much power can each MV-GE2204P camera port supply?
Every RJ45 channel is rated to provide 15.4 W through PoE. The rating applies separately to all four ports, so each connected camera must fit within the stated channel allowance.
Which stream and jumbo-frame settings are listed for MV-GE2204P?
The WX1860-based board supports four camera streams and 9.5 KB jumbo frames. Each of its four RJ45 interfaces accepts 10/100/1000 Mbit/s GigE industrial-camera links.
What PCI-E bandwidth does MV-GE2204P make available?
Transfer is rated at 860 MB/s maximum and 800 MB/s sustained. The board connects through PCI-E gen2 × 4 and also lists operation with a PCI-E gen2 × 2 link.
What are the thermal and mechanical limits of MV-GE2204P?
Natural cooling handles the 3 W board. It measures 181 × 126.3 × 21.6 mm, weighs 201 g and operates from 0 to 60 °C at 10% to 95% RH; storage spans -30 to 70 °C.
Can the MV-GE2204P acquisition card run on 64-bit Windows 11?
Yes. The operating-system list includes 64-bit Windows 7, 10 and 11, as well as Linux. This host support applies to the four-port PCI-E gen2 acquisition card.
When is the two-port MV-GE2202P preferable to MV-GE2204P?
MV-GE2202P is the factual alternative when only two camera ports and two streams are needed. It retains 15.4 W PoE, 9.5 KB jumbo frames and 800 MB/s sustained transfer while reducing board consumption from 3 W to 2 W.