PDC-F-112D
The Sanyo Denki PDC-F-112D is a precision panel display controller from the esteemed SANDIC Digital Controllers series, developed and manufactured by Sanyo Denki. This DIN rail-mounted unit weighs 450g and incorporates 12 output channels with a maximum current capacity of 2A per channel, enabling diverse actuation tasks. With its compact dimensions of 120mm x 85mm x 50mm, the controller is ideal for space-constrained industrial panels. Its primary function is to manage and distribute power signals in automated machinery and process control applications, ensuring synchronized multi-point output operations.
Engineered for high-performance industrial automation, the PDC-F-112D operates on a standard 24V DC supply and features a rapid 5ms response time through its robust RS485 communication interface, making it suitable for real-time control. The device is enclosed in a rugged aluminum enclosure that maximizes heat dissipation and shields internal electronics against mechanical stress. Its core technical specifications include a solid-state design with an IP20 protection rating, reliable operation at low latency, and seamless integration via the widely adopted DIN rail mounting system. These attributes guarantee both electrical and mechanical stability even under continuous duty cycles.
Optimized for durability and compatibility, the PDC-F-112D maintains consistent performance within an operating temperature range of -10°C to 60°C, making it resilient to fluctuations in factory environments. The RS485 interface offers long-distance communication resilience, while the IP20 rating provides adequate protection in clean indoor settings. The aluminum housing confers additional mechanical robustness and corrosion resistance. As part of the SANDIC lineup, this controller streamlines wiring complexity, accelerates system commissioning, and reduces maintenance overhead. In industrial applications, it delivers efficient multi-channel control, enhanced system reliability, and optimized panel layouts for improved operational efficiency.