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Product Documentation Overview

This page provides a quick navigation entry for YenGear industrial connectivity documentation. Field-Ready Products form the complete-product collection; component and infrastructure products remain organized by technical family.

The Field-Ready collection contains seven products for monitoring, alarming, circuit control, temporary-power safety, and on-site wireless control. The remaining documentation covers Serial Gateways, I/O Modules, Remote I/O Modules, Wireless I/O Modules, and Smart Circuit Breakers.


Quick Access

Product FamilyCore Positioning
Field-Ready ProductsComplete products for data collection, alarms, circuit control, temporary power, and local wireless controlDetails
Serial GatewaySerial device networking, protocol bridging, and remote maintenanceDetails
I/O ModuleLocal I/O acquisition and control expansionDetails
Remote I/O ModuleRemote I/O access and control for distributed deploymentsDetails
Wireless I/O ModulesCable-replacement I/O signalling across point-to-point, one-to-many, multi-node, and configurable master/slave relationshipsDetails
Smart Circuit BreakerPower distribution circuit monitoring, protection, and remote controlDetails

1. Field-Ready Products

The Field-Ready Products collection contains seven products with distinct operating boundaries:

Start with the Field-Ready Products overview to select by field task.


2. Serial Gateway

The Serial Gateway family is used to bring RS485, RS232, and TTL serial devices onto 4G, Wi-Fi, Ethernet, or LoRa networks, enabling legacy equipment to go online and field data to be transmitted remotely. Its core strengths are broad connectivity coverage, reliable transparent transmission, and a low deployment threshold. It is suitable for cloud-enabling existing equipment, maintaining remote sites, and standardizing edge gateway deployments.

Documentation:


3. I/O Module

The I/O Module family is intended for local digital and analog signal acquisition and control expansion, supporting DI, DO, AI, and AO combinations with Modbus RTU access. Its core strengths are flexible model coverage, a consistent wiring and register structure, and easy integration with PLCs and industrial PCs. It is suitable for cabinet I/O expansion, production line retrofits, and building electromechanical control.

Documentation:


4. Remote I/O Module

The Remote I/O Module family is designed for distributed sites and remote equipment, providing wireless I/O data acquisition and control while significantly reducing long-distance cabling and maintenance cost. Its core strengths are flexible remote deployment, controllable retrofit cost, and suitability for dispersed points such as pump stations, utility tunnels, and distributed control cabinets.

Documentation:


5. Wireless I/O Modules

The Wireless I/O Modules family carries discrete field states over a private LoRa link, replacing long control cables across point-to-point, one-to-many, multi-node, and configurable master/slave relationships. Y401, Y402, and Y403 provide fixed topology choices; Y412 adds 2-, 4-, and 8-channel variants with selectable direction and output action. Its core strengths are passive dry-contact/NPN inputs, relay outputs, and field expansion without a SIM card or gateway. It is suitable for access-control signal extension, multi-point linkage alarms, and remote wireless equipment control. The specified range is up to 10 km in open areas as a model-, antenna-, and site-dependent planning value.

Documentation:


6. Smart Circuit Breaker

The Smart Circuit Breaker family is intended for digital management of low-voltage power distribution circuits. It supports status monitoring, remote switching, alarm linkage, and protection parameter configuration. Its core value is upgrading conventional circuit breakers into visualized, linkable, and remotely maintainable power distribution nodes for campuses, buildings, and industrial power systems.

Documentation:


  • Start with the family index to identify the correct product family and model.
  • Then review the specification to confirm power supply, interfaces, dimensions, and environmental parameters.
  • Finally, use the technical manual for parameter configuration, commissioning, and system integration.