FE 1.5-3.50-00-XX
XLCF
| Availability: | |
|---|---|
| Quantity: | |
| Center Space | 3.50mm |
| Wire Range | 20-16AWG |
| Screw Torque | 2lbf .in |
| Rated Current | 300V.10A |
| Surge Voltage | 2000V |
| Insulation Body | PA66,UL94,V-0 |
| Screw Material | M2,STEEL |
| Terminal Body | BRASS |
| Temperature | -40°C-105°C |

FE 1.5-3.50-00-XX
Product Overview
The FE 1.5-3.50-00-XX terminal block is designed based on the EU electrical safety and mechanical standards, and supports extended configurations such as feedthrough, grounding, distribution, and multi-layer. The core conductive component is a high-precision copper alloy stamping tin plated part, ensuring low resistance and high conductivity reliability; The insulation shell is made of flame-retardant, temperature resistant, and creep resistant engineering plastics, and the creepage distance and electrical clearance meet the requirements of high-voltage working conditions. The product supports multiple specifications of rated voltage and current, with a wide range of wire diameter adaptability. It is compatible with conventional wires and pre insulated tube ends, and has excellent vibration resistance, impact resistance, and long-term operational stability. It can meet the strict requirements of the European domestic market and export industrial control, distribution, and energy equipment.
Product Features
Massive Connectivity with Low Latency: Utilizes a high-performance quad-core ARM Cortex-A53 processor (1.5GHz) and 2GB DDR4 RAM to handle 10,000 concurrent device connections with a message latency of <100ms (end-to-end). It supports QoS (Quality of Service) levels 0, 1, and 2 for MQTT, ensuring reliable message delivery (QoS 2 guarantees exactly-once delivery).
Multi-Protocol and Multi-Cloud Support: Compatible with 7 IoT protocols to connect different device types: MQTT/MQTTs for low-power sensors, WebSocket/WSS for web-based devices, CoAP for resource-constrained devices (e.g., battery-powered sensors), LwM2M for device management, and HTTP for legacy systems. It also integrates with major cloud platforms (AWS IoT Core, Azure IoT Hub, Google Cloud IoT Core, Alibaba Cloud IoT) via pre-built connectors, enabling seamless data synchronization.
Applications
FE 1.5-3.50-00-XX, with its European standard compliance, DIN rail standardization, high reliability, and universality, is widely used in the global industrial electrical connection field, especially suitable for exporting European equipment, European standard electrical control systems, and various automation complete sets of equipment. In the field of industrial automation, it is used for circuit wiring and signal transmission of PLC control cabinets, frequency converters, servo systems, sensors, and actuators; In high and low voltage distribution scenarios, responsible for power distribution, circuit breaking, and grounding connections of distribution boxes, power cabinets, and switchgear. The product can adapt to the strong vibration and harsh outdoor working conditions of energy equipment such as rail transit, new energy photovoltaics, energy storage systems, wind power generation, charging piles, etc. It is also widely used in manufacturing equipment such as machine tools, textile equipment, packaging machinery, HVAC, instruments and meters. In addition, it is also used as a standard wiring device in fields such as building automation, fire and security, lighting distribution, and communication cabinets, which can meet different electrical connection requirements such as control circuits, power circuits, signal circuits, and protective grounding. It is a universal wiring solution that complies with EU standards and is aimed at the global market.
FAQ
Q: What ports are used for communication, and how do I configure device connections?
A: Standard ports include TCP 1883 (MQTT), 8883 (MQTTS), 8083 (WebSocket), 8084 (WSS), 5683 (CoAP), 5684 (CoAPS), and 80/443 (HTTP/HTTPS). Device connections are configured via a web-based management interface (accessible via Ethernet) or a mobile app—simply add devices by entering their protocol, IP address, and authentication details.
Q: Can it integrate with third-party cloud services, and what connectors are available?
A: Yes, it has pre-built connectors for AWS IoT Core, Azure IoT Hub, Google Cloud IoT Core, Alibaba Cloud IoT, and IBM Watson IoT. For custom cloud services, it supports MQTT bridging or REST API integration, allowing users to send data to any cloud platform that accepts standard protocols.
Q: What is the maximum data throughput, and how does it handle peak loads?
A: The maximum data throughput is 1Gbps (Ethernet port capacity), and it can process up to 100,000 messages per second (each message up to 1KB). During peak loads (e.g., 10,000 devices sending data simultaneously), the cluster deployment’s load balancing function distributes traffic across multiple hubs to prevent congestion.
Q: Does it support edge computing, and what programming languages are allowed for edge applications?
A: Yes, it supports edge computing via Docker containers—users can deploy lightweight applications (e.g., Python, Node.js, C++) to process data locally. For example, an edge app can filter out redundant sensor data (e.g., ignoring stable temperature readings) before sending critical data to the cloud, reducing bandwidth usage by up to 50%.