Frame grabber · GE Series

Hikrobot MV-GE2002L V2.0

RJ45 × 2PCI-E gen2 × 4860 MB/s
Price on requestAn engineer will confirm pricing and lead time in the first reply.
Warranty
36 months
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Hikrobot MV-GE2002L V2.0

Low-profile dual-camera networking

A 161.4 × 79.2 × 20.7 mm outline distinguishes MV-GE2002L V2.0 as the compact two-port GigE NIC in the GE2000 group. Two RJ45 links accept 10/100/1000 Mbit/s GigE industrial cameras, with two streams and 9 KB jumbo frames explicitly supported. The PCI-E gen2 × 4 interface runs as a gen2 × 2 link and provides 860 MB/s maximum or 800 MB/s sustained host transfer.

The short board fits a space-constrained acquisition computer serving a pair of Ethernet cameras. At 4.3 W typical and 125 g, it uses natural cooling fins without fans. That passive arrangement is intended to operate from 0 to 60 °C and at 10 to 95% RH, so the chassis layout must still move board heat into an environment inside those limits. Windows 7/10/11 and Linux hosts are listed.

MV-GE2002L V2.0 matches MV-GE2002 V2.0 in camera count, 125 g weight, link rates and 800 MB/s sustained bandwidth, but changes the board outline from 161 × 120 × 21.6 mm to the lower 79.2 mm height and explicitly identifies 9 KB jumbo frames. MV-GE2002P V2.0 is the PoE-equipped two-port alternative at 7.5 W and 190 g. MV-GE2004L V2.0 retains the compact outline and doubles the interface and stream count to four.

Specifications

Camera portsRJ45 × 2
Cameras supported2 max
Camera connection speed10/100/1000 Mbps
Camera type supportedGigE industrial camera
InterconnectPCI-E gen2 × 4, PCI-E gen2 × 2 link
Delivery bandwidth860 MB/s (max. transmission bandwidth), 800 MB/s (sustained transmission bandwidth)
Power consumption4.3 W typ.
Operating temperature0 to 60 °C
Storage temperature-30 to 70 °C
Humidity10 to 95 % RH
Dimensions161.4 mm × 79.2 mm × 20.7 mm
Weight125 g
CertificationCE-EMC,KC
StandardIEEE 802.3
Stream2
Jumbo frame9 KB
Cooling modeNatural cooling, cooling fins without fans
Supported OSWindows 7/10/11, Linux

Selection and applications

Compact dual-GigE acquisition. Two-stream jumbo-frame capture. Passively cooled camera networking.

Minimum kit: Fit MV-GE2002L V2.0 to a PCI-E gen2 host, add one or two GigE industrial cameras with RJ45 network cables, and power each camera through its specified power connection.

Nearby in the range: MV-GE2002 V2.0 — Prefer it when the 161 × 120 × 21.6 mm full-height outline fits the host.; MV-GE2002P V2.0 — Prefer it when two-port GigE acquisition also needs PoE support.; MV-GE2004L V2.0 — Prefer it for four compact RJ45 ports and four streams..

Cameras that connect to this board

RJ45 × 2 · up to 2 cameras · 860 MB/s:

Matched by interface and port count.

FAQ

What makes MV-GE2002L V2.0 the compact GE2002 variant?

Its board dimensions are 161.4 × 79.2 × 20.7 mm, compared with 161 × 120 × 21.6 mm for MV-GE2002 V2.0. The L model still weighs 125 g and supports two GigE camera connections.

Are 9 KB jumbo frames supported by the MV-GE2002L V2.0 NIC?

Yes. The NIC explicitly lists 9 KB jumbo frames and two streams. Its two RJ45 ports accept 10/100/1000 Mbit/s GigE industrial-camera links, and the sustained host-transfer figure is 800 MB/s.

What sustained bandwidth reaches the MV-GE2002L V2.0 host?

The card delivers 860 MB/s at maximum and 800 MB/s sustained through a PCI-E gen2 × 2 link on its gen2 × 4 interconnect. Both camera-port streams share that host connection.

How is the MV-GE2002L V2.0 acquisition board cooled?

It uses natural cooling with fins and no fans. Typical power consumption is 4.3 W, the working-temperature range is 0 to 60 °C, and storage is specified from -30 to 70 °C.

Can the MV-GE2002L V2.0 NIC be used with a Linux host?

Linux is included in the supported operating systems, together with Windows 7, 10 and 11. The board connects over PCI-E gen2 and exposes two RJ45 camera interfaces.

Which related card doubles the MV-GE2002L V2.0 port count?

MV-GE2004L V2.0 keeps the 161.4 × 79.2 × 20.7 mm dimensions but provides four RJ45 ports and four streams. It retains 9 KB jumbo frames and 800 MB/s sustained bandwidth, with 5.5 W typical consumption.

Typical applications