In the field of industrial machine vision and scientific imaging, GigE Vision has become the mainstream digital camera interface due to its standardized protocol, long-distance transmission capability, and flexible networking method. PoE (Power over Ethernet) technology simultaneously transmits data and power through a single Ethernet cable, greatly simplifying on-site wiring and reducing system complexity and maintenance costs. ADLINK PCIe-GIE74V is a four channel Gigabit Ethernet PoE frame acquisition card based on PCI Express x4 interface, strictly following the IEEE 802.3af standard. Each port provides a maximum power supply of 15.4W and integrates multiple protection mechanisms such as overvoltage, undervoltage, and overcurrent, providing a stable and reliable hardware platform for multi camera vision systems. This article will provide engineers with a detailed operation guide from the aspects of hardware specifications, PoE power management, installation configuration, signal interfaces, and common troubleshooting, to help them quickly complete system deployment and solve on-site problems.
Product positioning and core features
PCIe-GIE74V is positioned in visual application scenarios that require simultaneous connection of multiple GigE Vision cameras, such as multi station AOI detection, 3D scanning, medical image acquisition, etc. Its core features include:
Four independent Gigabit Ethernet ports: each port has a speed of 1 Gb/s, supports Link Aggregation and jumbo frames (9KB), and improves the concurrent transmission efficiency of multiple cameras.
IEEE 802.3af PoE power supply: maximum output of 15.4W per port, voltage range of 44-57V, automatic detection of connected device type, compatible with PoE and non PoE cameras.
Onboard hardware features: Supports IEEE 1588 Precision Time Protocol (hardware level, hardware support only, software implementation required) and PCIe v2.1 x4 interface, providing sufficient bandwidth.
Multiple protection mechanisms: overvoltage protection (OVP, trigger threshold 62V), undervoltage protection (UVP, trigger threshold 29V), and overcurrent protection (OCP, 350mA per mode) to ensure power supply safety.
Compact size: 167.6mm × 64.9mm (half height card design), suitable for industrial computers with limited space.
Compared with high-end models in the same series (such as GIE74V PRO), this card is positioned for standard PoE applications and does not support ToE (Trigger over Ethernet) and software license management, but it is sufficient to meet most conventional vision system requirements.
Deep analysis of PoE power supply
1. PoE standard and power budget
PCIe-GIE74V complies with the IEEE 802.3af (PoE) standard, with a maximum output of 15.4W per port on the PSE (Power Sourcing Equipment) side. After 100 meters of Cat5e cable loss, the available power on the PD (Powered Device) side is approximately 12.95W. In practical use, it should be noted that if the camera power consumption is close to 15.4W, shorter or higher quality Ethernet cables should be used to reduce line voltage drop.
2. Total power budget and power input
The total power supply capacity of the board depends on the connected power source:
Only powered through PCIe slot: maximum 20W+ 12V@2.1A ). In this mode, simultaneous operation of all four ports may not be fully loaded and needs to be allocated based on the actual power consumption of each camera.
External 4-pin auxiliary power supply (CN2): maximum 60W+ 12V@6A ). This is the recommended power supply method, which can ensure that all four ports are simultaneously at full power (15.4W × 4=61.6W, slightly exceeding 60W, so actual margin or load reduction is required).
Important reminder: If four PoE ports are simultaneously enabled and each channel is close to full load, the total demand of 61.6W exceeds the budget of 60W, and the system may not be able to provide stable power. It is recommended to choose a camera with lower power consumption (such as<13W per channel) or only use three channels at full load. The manual does not provide PoE power management function (PoE Power Management is "No"), which means there is no intelligent priority allocation, so the power budget must be manually controlled by the user.
3. Detailed explanation of protection mechanism
Undervoltage protection (UVP): When the output voltage is below 29V, the PoE of this circuit is automatically cut off to prevent low voltage from causing equipment abnormalities.
Overvoltage protection (OVP): When the output voltage exceeds 62V, immediately turn off the output to avoid overvoltage damage to the camera.
Overcurrent protection (OCP): The IEEE 802.3af standard specifies a maximum current of 350mA per pair of wires, beyond which the port will interrupt power supply.
Once the protection is triggered, power supply needs to be restored by unplugging the network cable or restarting the system, without an automatic recovery mechanism.
4. PoE detection and classification
PCIe-GIE74V performs automatic detection and classification process when connected to a camera: