System positioning and architecture
WINbloc is a modular distributed I/O system used to connect field sensors and actuators to control systems via fieldbus. Its basic structure consists of three parts: bridge module, electronic module, and base module. The bridge module is responsible for connecting Profibus DP or CANopen buses, and each I/O module is hung on the bus as a passive network station, which can connect up to 10 I/O modules. The bus address is set through the rotary encoder switch on the I/O module, and the bus side is electrically isolated from the I/O side, with a working voltage of 24 V DC. This architecture allows engineers to assemble digital, analog, relay, and other modules according to actual needs like building blocks, making it particularly suitable for renovation projects, spare parts replacement, and small and medium-sized automation systems.
From the perspective of communication capability, WINbloc provides three types of bridging modules: DP Bridge with a maximum transmission rate of 1.5 Mbit/s, DP Bridge/12 MBaud with a maximum transmission rate of 12 Mbit/s, and CAN Bridge with a maximum transmission rate of 1 Mbit/s. DP Bridge/12 MBaud is suitable for multi axis synchronization or high-speed counting scenarios with high refresh rate requirements, while CAN Bridge is commonly used in CANopen networks with a maximum speed of 1 Mbit/s. The bridge module and I/O module are connected through an internal bus, and the bus address is set by a rotary encoder switch, without the need for additional software configuration of the address. The fieldbus interface can use SUB-D connectors or tension clamp terminals, with flexible wiring and electrical isolation design that can effectively suppress ground circulation and interference.
Bridge module and network configuration
The bridging module is the communication core of the entire WINBloc site. The Profibus DP bridge module supports the standard DP protocol, with adjustable transmission rates, and is typically used in conjunction with the DP master station of a PLC. The DP Bridge/12 MBaud version supports higher baud rates, making it suitable for long-distance and high real-time requirements. The CAN Bridge supports the CANopen protocol with a maximum transmission rate of 1 Mbit/s and is suitable for CANopen master station networks. Regardless of the type of bridging module, it is required that the bus cable use shielded twisted pair and the terminal resistance be set according to the protocol requirements. Terminal resistors must be connected at both ends of the Profibus DP network, and 120 Ω terminal resistors must also be connected at both ends of the bus for the CANopen network.
Address setting is the most error prone step in debugging. Each I/O module has a rotary encoder switch, typically consisting of two decimal knobs, set to ten and one bits respectively. The address range of Profibus DP station is generally from 0 to 99, and the address range of CANopen node is usually from 1 to 99. When setting up, it is necessary to ensure that the address is unique and cannot conflict with other sites. After modifying the address, it must be powered on again for the module to read the new address. The bridging module itself may also require setting address or protocol parameters, depending on the model. If bus communication fails, first check the address, terminal resistance, baud rate, and cable shielding.
In terms of power supply, the WINBloc system uses 24V DC power supply. Bridge modules and I/O modules usually share power supply, but the bus side is electrically isolated from the I/O side, so power fluctuations on the field side will not directly enter the bus. Power terminals generally have anti reverse protection, but polarity should still be taken into account when wiring. The current consumption depends on the number of modules and load, and it is recommended to reserve sufficient margin inside the cabinet. If a high-power output module is used, it should be powered separately for the load to avoid excessive voltage drop inside the module.
Digital I/O module
The digital input module offers 8-channel, 16 channel, and 32 channel versions, with models including CAN-8- (16) DI/P and CAN-16- (32) DI/P-2x8 (2x16). P usually represents positive logic input and is suitable for PNP sensors. The input module converts signals such as field switches, proximity switches, buttons, etc. into bus data. When wiring, pay attention to the sensor power supply and module power supply being grounded together. If the sensor is far away, it is recommended to use shielded cables.
The digital output module provides channels 4, 8, 16, and 32, with output currents of 0.5 A and 2 A. Models such as CAN-4DO/2.0A-PK, CAN-8- (16) DO/0.5A-PK, CAN-16- (32) DO/0.5A-P-2x8 (2x16). PK stands for short circuit protection design with short circuit monitoring LED. When the output is short circuited or overloaded, the module will limit the current and light up the fault LED for quick positioning. 0.5 A output is suitable for indicator lights, small relays, and solenoid valves; 2A output is suitable for larger loads. If the load is inductive (such as solenoid valves, contactor coils), a freewheeling diode or RC absorption circuit must be installed, otherwise the high voltage at the moment of shutdown may damage the output.