Honeywell CC-PDOD51 Digital Output Module
Working voltage: usually 220V, but there are also other voltage specifications to choose from.
Output frequency: usually 50 or 60Hz.
Structural form: modular, easy to install, disassemble, and maintain.
Dimensions: Approximately 35mm in length, but specific dimensions may vary slightly due to actual product design.
Weight: Approximately 2.5KG.
Output type: Transistor: 24VDC/0.5A (per channel)
Isolation level: 1500Vrms between channels, 3000Vrms between groups
Response time: ≤ 1ms (instruction to physical output)
Environmental adaptability: Operating temperature: -40 ° C~+70 ° C, anti vibration 5g (10-500Hz)
Product Performance
Flexible control: Supports mixed control methods such as continuous, logical, and sequential, and can flexibly configure and modify control circuits according to different production process requirements to adapt to diverse control tasks.
High precision output: It can accurately output digital signals, ensure control accuracy of external devices, reduce control errors, improve production process stability and product quality.
Multiple protocol support: Supports multiple Ethernet communication protocols such as Ethernet/IP, EtherCAT, PowerLink, Profinet, etc., facilitating data exchange and communication with other devices or systems, enabling remote monitoring and control, and facilitating the construction of complex industrial automation networks.
High speed data transmission: capable of quickly transmitting control instructions and feedback information, ensuring real-time performance and response speed of the system, reducing data transmission delays, and improving the overall operational efficiency of the control system.
Fault protection mechanism: Each output circuit includes built-in protection that allows for short-term surges while protecting the driver. It can also prevent short-circuit loads caused by wiring errors, improve equipment reliability and stability, and reduce production interruptions caused by faults.
High MTTF: Due to the use of more integrated circuits and fewer components, it has a higher mean time to failure (MTTF), reducing maintenance costs and equipment downtime.

















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